An intelligent image forming apparatus

CN122606992APending Publication Date: 2026-08-21ZHUHAI PANTUM ELECTRONICS CO LTD
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Patent Information

Application Number
CN202610953099.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-06-29
Publication Date
2026-08-21

Smart Images

  • Figure CN122606992A_ABST
    Figure CN122606992A_ABST
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Abstract

The present disclosure relates to the field of printing technology, and particularly to an intelligent image forming device. The intelligent image forming device comprises a printing device and an intelligent device, the printing device comprises a printing shell component and a printing main body component, the printing main body component is arranged in the printing shell component, the printing main body component comprises a main body assembly and a printing data board assembly, the printing data board assembly is arranged to the main body assembly, and the intelligent device is arranged on the printing shell component and close to the printing data board assembly. Thus, the intelligent device can directly identify and execute the instructions of the user, the intelligent device does not need to occupy the internal space of the printing device, the printing device avoids occupying too much space, thereby realizing the miniaturization of the intelligent image forming device and meeting the functional requirements.
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Description

Technical Field

[0001] This disclosure relates to the field of printing technology, and in particular to an intelligent image forming apparatus. Background Technology

[0002] An image forming apparatus is a device that forms an image on a printing medium based on an input signal. Generally, for ease of use and space saving, image forming apparatuses are designed to be small and convenient for users, thus their size should not be too large. User demands for the functionality of image forming apparatuses are also gradually increasing. Summary of the Invention

[0003] The disclosure section introduces a series of simplified concepts, which will be further explained in detail in the detailed description section. This disclosure section is not intended to limit the key features and essential technical features of the claimed technical solutions, nor is it intended to determine the scope of protection of the claimed technical solutions.

[0004] This disclosure provides an intelligent image forming apparatus, which includes a printing device and an intelligent device. The printing device includes a printing housing component, and the intelligent device is disposed on the printing housing component.

[0005] According to the intelligent image forming apparatus disclosed herein, the intelligent image forming apparatus includes a printing device and an intelligent device. The printing device includes a printing housing component and a printing main body component, the printing main body component being disposed within the printing housing component. The printing main body component includes a main assembly and a printing data board assembly, the printing data board assembly being disposed on the main assembly. The intelligent device is disposed on the printing housing component, with the intelligent device positioned close to the printing data board assembly. Therefore, the intelligent device can directly recognize and execute user commands. The overall external structure of the printing device remains consistent, facilitating placement. The intelligent device does not occupy internal space within the printing device. The user can directly control the intelligent device and intuitively receive feedback signals from it. The overall layout achieves a reasonable arrangement of the various functional areas of the intelligent image forming apparatus, avoiding an increase in the overall size of the printing device and preventing it from occupying excessive space. This results in the miniaturization of the intelligent image forming apparatus while still meeting functional requirements.

[0006] Optionally, the printed housing component includes a housing upper wall assembly, to which the smart device is mounted.

[0007] Optionally, the main body component includes a main body upper wall component, a print data board component disposed on the main body upper wall component, and a smart device located above the print data board component.

[0008] Optionally, the smart device is positioned at the center of the rear of the upper wall assembly of the housing.

[0009] Optionally, the smart device protrudes from the printing device along the height direction of the printing device, and / or the smart device does not protrude from the printing device in a direction perpendicular to the height direction of the printing device.

[0010] Optionally, the upper wall assembly of the housing includes a first upper shell member and a second upper shell member, the first upper shell member and the second upper shell member being obliquely connected.

[0011] Optionally, the second upper shell member extends downward and forward from the front of the first upper shell member.

[0012] Optionally, the angle between the second upper shell member and the reference plane is an acute angle, and the reference plane is configured as an extension of the upper surface of the first upper shell member facing the front of the printing device.

[0013] Optionally, the printed housing component also includes a panel assembly, with the smart device disposed on the first upper housing component and the panel assembly disposed on the second upper housing component.

[0014] Optionally, the intelligent image forming apparatus also includes a writing information processing device, which is detachably connected to the printing device.

[0015] Optionally, the printing housing component includes a housing upper wall assembly, which includes a first upper housing member and a second upper housing member. The first upper housing member and the second upper housing member are obliquely connected. The smart device is disposed on the first upper housing member, and the writing information processing device is disposed on the second upper housing member.

[0016] Optionally, the second upper shell component is provided with a groove that accommodates and supports the writing information processing device.

[0017] Optionally, the writing information processing device can be detachably connected to the recess.

[0018] Optionally, the writing information processing device includes electronic components and protective components, with the protective components being detachably mounted to the electronic components.

[0019] Optionally, the electronic component is movable between a flat position and an upright position. The electronic component in the flat position is located in a groove, and the protective component covers the electronic component in the flat position. The electronic component in the upright position protrudes from the groove, and the angle between the electronic component and the protective component is an acute angle.

[0020] Optionally, the protective component includes a grip assembly that can flip between a covered state and a supported state. In the covered state, the grip assembly covers the front of the electronic component in the flat position, and in the supported state, the grip assembly supports the back of the electronic component in the upright position.

[0021] Optionally, the back of the electronic component includes a first magnetic member, and the grip assembly includes a second magnetic member. The first magnetic member of the electronic component in the upright position is attracted to the second magnetic member of the grip assembly in the supported position.

[0022] Optionally, the image forming apparatus also includes a writing information processing device, which is located closer to the front of the printing device than the smart device.

[0023] Optionally, the printing device also includes a power control component disposed on the first upper housing member and located to the side of the smart device.

[0024] Optionally, the smart device includes a smart cover component, which includes a cover assembly and a seat assembly, the cover assembly being connected to the printing housing component via the seat assembly.

[0025] Optionally, the cover assembly includes an upper cover member, a lower cover member, a front cover member, and a side cover member. The upper cover member is detachably connected to the lower cover member, the lower cover member is connected to the base assembly, the front cover member faces the front of the printing device, and the side cover member is connected to the side of the lower cover member.

[0026] Optionally, the top cover component is provided with through holes.

[0027] Optionally, the smart device also includes a smart control component located inside the smart cover component.

[0028] Optionally, the intelligent control component includes a voice control component and an adapter component. The intelligent cover component is provided with a connection hole that communicates with the interior of the printing device. The voice control component and the adapter component are located on opposite sides of the connection hole.

[0029] Optionally, the smart cover component includes an upper cover component and a lower cover component, and the smart control component further includes a playback component and a radio component, with the playback component connected to the upper cover component and the radio component connected to the lower cover component.

[0030] Optionally, the intelligent control component also includes a voice control component and an adapter component, both of which are connected to the lower cover component, with the voice control component being closer to the microphone component than the adapter component.

[0031] Optionally, the playback component and the radio component are offset along the height direction of the printing device, and / or the playback component and the radio component are offset along a direction perpendicular to the height direction of the printing device.

[0032] Optionally, the intelligent control component includes at least two microphones, the distance between the two microphones being greater than or equal to the distance between the microphone and the playback component.

[0033] Optionally, the smart device includes a display component, which includes a display screen assembly facing the front of the printing device.

[0034] Optionally, the smart device also includes a smart control component, which includes a voice control component and a switching component, located on opposite sides of the display component.

[0035] Optionally, the smart device also includes a smart cover component, which includes a cover assembly, a lower cover component, and a display component that engages with the lower cover component.

[0036] Optionally, the lower cover component is provided with a positioning component, and the display component includes a mating assembly, wherein the positioning component and the mating assembly are mated and connected.

[0037] Optionally, the lower cover member includes an upper edge and a lower edge, and the distance from the positioning member to the upper edge is different from the distance from the positioning member to the lower edge.

[0038] Optionally, the cover assembly includes a faceplate member that covers the display component.

[0039] Optionally, the smart device includes a lighting component located on at least one side of the smart device.

[0040] Optionally, the smart device also includes a smart cover component, which includes a cover assembly that engages with a lighting component.

[0041] Optionally, the lighting component includes a light-emitting component and a light-guiding component, the cover component includes a lower cover member, the light-emitting component is connected to the lower cover member, and the light-guiding component is closer to the outside of the smart device than the light-emitting component.

[0042] Optionally, the light guide assembly includes a first inclined member and a second inclined member, which are inclinedly connected to form a light guide groove member, with the opening of the light guide groove member facing the outside of the smart device.

[0043] Optionally, the light guide assembly also includes a light-focusing component, which is located between the light guide groove component and the light-emitting component, and the light-focusing component protrudes toward the light guide groove component.

[0044] Optionally, the cover assembly also includes a side cover member located outside the lighting component.

[0045] Optionally, the cover assembly also includes an upper cover member that applies a force toward the side cover member to the light-emitting component.

[0046] Optionally, the lighting component also includes a light-shielding component, and the light-emitting component also includes a light source component, with the light-shielding component arranged around the light source component.

[0047] Optionally, the smart device includes a smart cover component and an image recognition component, the image recognition component being located inside the smart cover component and used to recognize image information.

[0048] Optionally, the smart device can be detachably connected to the printing device.

[0049] Optionally, the smart device can be connected to the printing device in a rotatable, height-adjustable, or horizontally movable manner. Attached Figure Description

[0050] The following drawings, which are incorporated herein by reference as part of this disclosure, are provided for understanding the disclosure. The drawings illustrate embodiments of the disclosure and their descriptions, serving to explain the apparatus and principles of the disclosure. In the drawings,

[0051] Figure 1 A three-dimensional schematic diagram of an intelligent image forming apparatus according to the present disclosure;

[0052] Figure 2 for Figure 1 A partial schematic diagram of the interior of the intelligent image forming apparatus shown;

[0053] Figure 3 for Figure 1 Another perspective view of the intelligent image forming apparatus shown, in which the electronic components are positioned in a flat position;

[0054] Figure 4 for Figure 3 The diagram shows a three-dimensional representation of an intelligent image forming apparatus, in which the electronic components are positioned upright.

[0055] Figure 5 for Figure 3 The diagram shows a front view of the intelligent image forming apparatus.

[0056] Figure 6 for Figure 5 An exploded view of the intelligent image forming apparatus shown;

[0057] Figure 7 for Figure 1 The diagram shows a front view of a writing information processing device for an intelligent image forming apparatus, in which the gripping component is covered.

[0058] Figure 8 for Figure 7 The diagram shows a rear view of the writing information processing device.

[0059] Figure 9 for Figure 7 The diagram shows a side view of the writing information processing device, in which the grip component is in a supported state;

[0060] Figure 10 This is another perspective view of the intelligent image forming apparatus according to the present disclosure;

[0061] Figure 11 This is a side view schematic diagram of an intelligent device according to the intelligent image forming apparatus of the present disclosure;

[0062] Figure 12 for Figure 11 An exploded view of the smart device shown.

[0063] Figure 13 for Figure 12 Another exploded view of the smart device shown;

[0064] Figure 14 for Figure 12 The diagram shows the front view cross-section of the smart device.

[0065] Figure 15 for Figure 12 The diagram shows a top-view cross-section of the smart device.

[0066] Figure 16 for Figure 12 A three-dimensional schematic diagram of the top cover component of the smart device shown;

[0067] Figure 17 for Figure 12 A three-dimensional schematic diagram of the lower cover component of the smart device shown; and

[0068] Figure 18 for Figure 17 Another three-dimensional schematic diagram of the lower cover component shown.

[0069] Explanation of reference numerals in the attached figures:

[0070] 1: Intelligent image forming device;

[0071] 11: Printing equipment;

[0072] 111: Printed housing components;

[0073] 1111: Upper wall assembly of the housing;

[0074] 1111a: First upper shell component; 1111b: Second upper shell component; 1111c: Upper surface of the first upper shell component;

[0075] 1112: Panel component;

[0076] 1112a: Panel recess;

[0077] 1113: Rear wall assembly of the housing; 1114: Front wall assembly of the housing; 1115: Side wall assembly of the housing;

[0078] 112: Print the main body components;

[0079] 1121: Main body assembly; 1122: Main body upper wall assembly; 1123: Printing data board assembly; 1124: Printing power board assembly;

[0080] 113: Power control components;

[0081] 12: Smart devices;

[0082] 121: Intelligent cover component;

[0083] 1211: Cover component;

[0084] 1211a: Upper cover component; 1211b: Lower cover component; 1211c: Face cover component; 1211d: Side cover component; 1211e: Amplifying through hole; 1211f: Cover connecting hole; 1211g: First positioning component; 1211h: Second positioning component; 1211j: Upper edge; 1211k: Lower edge; 1211m: Insertion component; 1211n: Receiving component; 1211p: Slot component;

[0085] 1212: Seat assembly;

[0086] 1212a: Connecting hole for seat;

[0087] 1213: Upper cover receiving cavity; 1214: Lower cover receiving cavity; 1215: Front annular wall; 1216: Side annular wall;

[0088] 122: Intelligent control components;

[0089] 1221: Voice control component; 1222: Adapter component; 1223: Playback component; 1224: Radio component;

[0090] 123: Display component;

[0091] 1231: Display screen assembly; 1232: First mating assembly; 1233: Second mating assembly; 1234: Light-transmitting assembly; 1235: Engaging assembly;

[0092] 124: Lighting components;

[0093] 1241: Light-emitting component;

[0094] 1241a: Light source component;

[0095] 1242: Light guide assembly;

[0096] 1242a: First inclined member; 1242b: Second inclined member; 1242c: Light guide groove member; 1242d: Light focusing member;

[0097] 1243: Light-shielding component;

[0098] 13: Writing and information processing equipment;

[0099] 131: Electronic components;

[0100] 1311: Front view of the electronic component; 1312: Back view of the electronic component;

[0101] 1312a: First magnetic component;

[0102] 132: Protective components;

[0103] 1321: Grip component;

[0104] 1321a: Second magnetic component. Detailed Implementation

[0105] In the following description, numerous specific details are set forth in order to provide a more thorough understanding of this disclosure. However, it will be apparent to those skilled in the art that this disclosure may be practiced without one or more of these details. In other instances, certain technical features well-known in the art have not been described in order to avoid obscuring this disclosure.

[0106] To fully understand this disclosure, detailed portions will be set forth in the following description in order to illustrate it. It is obvious that implementation of this disclosure is not limited to the specific details familiar to those skilled in the art. Preferred embodiments of this disclosure are described in detail below; however, other embodiments may exist besides these detailed descriptions and should not be construed as being limited to the embodiments set forth herein.

[0107] It should be understood that the terminology used herein is intended only to describe particular implementations and is not intended to limit this disclosure, and the singular forms “a,” “an,” and “the” are also intended to include the plural forms unless the context clearly indicates otherwise.

[0108] The ordinal numbers such as “first” and “second” used in this disclosure are merely identifiers and have no other meaning, such as a specific order. In this disclosure, unless otherwise expressly specified and limited, “above” or “below” a second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, “above,” “over,” and “on top” of a second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. “Below,” “under,” and “below” of a second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0109] In the following description, an exemplary configuration of the intelligent image forming apparatus 1 according to a preferred embodiment of the present disclosure will be described with reference to the accompanying drawings.

[0110] like Figure 1 As shown, this disclosure provides an intelligent image forming apparatus 1, which is capable of forming an image on a printing medium according to an input signal. The intelligent image forming apparatus 1 includes a printing device 11, which may be an inkjet printer, where ink can form an image on the printing medium. The printing device 11 may also be a laser printer, where toner can form an image on the printing medium, etc. It should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of the stated feature, integral, step, operation, component, element, and / or assembly, but do not exclude the presence or addition of one or more other features, integrals, steps, operations, components, elements, assemblies, and / or combinations thereof.

[0111] In the following description, the orientation of the printing device 11 is indicated according to the user's usual position when using the printing device 11, and is represented by arrows in the accompanying drawings. For example, in Figure 4 The left-hand side of the observer is referred to as the front side of the printing device 11, and the right-hand side, which is opposite to the front side in the figure, is referred to as the rear side. The side corresponding to the observer's proximal side is referred to as the user's right side, and the side corresponding to the observer's distal side, which is opposite to the right side, is referred to as the user's left side. Figure 4 The vertical direction in the figure corresponds to the height direction D2 of the printing device 11. Furthermore, combined with... Figure 5 and Figure 6As shown, the right-left or left-right direction of the printing device 11 can be referred to as the width direction D1, and the front-back or back-forward direction can be referred to as the depth direction D3. The width direction D1 and the depth direction D3 are orthogonal to each other. The width direction D1 of the printing device 11 is perpendicular to the height direction D2 of the printing device 11. The width direction D1 of the printing device 11 is perpendicular to the depth direction D3 of the printing device 11. The height direction D2 of the printing device 11 is perpendicular to the depth direction D3 of the printing device 11.

[0112] For example, when describing "front surface facing forward," the front surface can be facing forward and upward. The front surface of printing device 11 is... Figure 3 The surface shown in the front-view stereoscopic diagram. When described as "rear surface facing rearward," this rear surface can face rearward. The rear surface of the printing device 11 is... Figure 1 The surfaces shown in the rear-view stereoscopic diagram.

[0113] The printing device 11 includes a printing housing component 111 and a printing main body component 112, with the printing main body component 112 disposed within the printing housing component 111. The printing main body component 112 is housed within the printing housing component 111. The printing housing component 111 accommodates the printing main body component 112. The printing housing component can be constructed as a cuboid structure. The overall external structure of the printing device 11 remains consistent for ease of placement.

[0114] The printing body component 112 can form an image on one or both sides of the printing medium. For example... Figure 1 and Figure 2 As shown, the main printing component 112 includes a main assembly 1121 and a print data board assembly 1123, with the print data board assembly 1123 disposed within the main assembly 1121. Both the main assembly 1121 and the print data board assembly 1123 are located within the printing device 11. Specifically, both the main assembly 1121 and the print data board assembly 1123 are located inside the printing housing component 111. The print data board assembly 1123 can receive graphic data sent by a remote control device and can parse printing commands, sending action signals to the main assembly 1121. The main assembly 1121 receives the action signals from the print data board assembly 1123, thereby completing the delivery of printing media and image output.

[0115] The intelligent image forming apparatus 1 also includes an intelligent device 12, which is disposed on the printing housing component 111. The intelligent device 12 is located outside the printing housing component 111. The intelligent device 12 is connected to the printing housing component 111. Preferably, the intelligent device 12 can be mechanically connected to the printing housing component 111, and the intelligent device 12 can also be electrically connected to the interior of the printing housing component 111. The intelligent device 12 can be configured as a human-computer interaction device. For example, the intelligent device 12 can be configured as a robot. The intelligent device 12 has human-computer interaction voice recognition functionality.

[0116] The smart device 12 can directly execute user commands via voice interaction. The smart device 12 is connected to the print data board assembly 1123 inside the printing device 11 via an electrical connection component to execute commands. The electrical connection component can be configured as a data cable. The smart device 12 includes a module capable of recognizing the user's voice and parsing it into a data signal, which is then sent to the printing device 11. The data signal is connected to the print data board assembly 1123 inside the printing device 11 via the electrical connection component to execute commands and perform printing. Correspondingly, the printing device 11 provides feedback on its operating status and fault indications through the smart device 12. The smart device 12 is positioned close to the print data board assembly 1123. This facilitates the arrangement of the electrical connection component between the smart device 12 and the print data board assembly 1123.

[0117] The print data board assembly 1123 can parse instructions from the smart device 12 and send execution commands to the main printing unit 112. The main printing unit 112 can also feed back fault information to the smart device 12 via the print data board assembly 1123. The smart device 12 then prompts the user to handle the issue through voice, on-screen text, and / or light. In this way, the smart device 12 does not occupy internal space in the printing device 11. The user can directly control the smart device 12 and intuitively receive feedback signals from it, avoiding an increase in the overall size of the printing device 11 and preventing it from occupying too much space. This achieves miniaturization of the smart image forming apparatus 1 while still meeting functional requirements.

[0118] According to the intelligent image forming apparatus 1 disclosed herein, the intelligent image forming apparatus 1 includes a printing device 11 and an intelligent device 12. The printing device 11 includes a printing housing component 111 and a printing main component 112. The printing main component 112 is disposed in the printing housing component 111 and includes a main assembly 1121 and a printing data board assembly 1123. The printing data board assembly 1123 is disposed on the main assembly 1121. The intelligent device 12 is disposed on the printing housing component 111 and is disposed close to the printing data board assembly 1123. Therefore, the intelligent device 12 can directly recognize and execute the user's instructions. The overall external structure of the printing device 11 remains consistent, making it easy to place. The intelligent device 12 does not need to occupy the internal space of the printing device 11. The user can directly control the intelligent device 12 and intuitively receive the feedback signals from the intelligent device 12. The overall layout can achieve a reasonable layout of the various functional areas of the intelligent image forming apparatus 1, avoiding an increase in the overall size of the printing device 11 and avoiding the printing device 11 occupying too much space. This achieves the miniaturization of the intelligent image forming apparatus 1 and meets functional requirements. In addition, the intelligent device 12 is set close to the printing data board assembly 1123 to avoid the intelligent device 12 being too far away from the printing data board assembly 1123. The longer the data cable, the greater the signal loss and interference of the received signal.

[0119] Specifically, the printing housing component 111 includes a housing upper wall assembly 1111, which faces upwards towards the printing device 11. The thickness direction of the housing upper wall assembly 1111 is parallel to the height direction D2 of the printing device 11. A smart device 12 is disposed on the housing upper wall assembly 1111. The smart device 12 is connected to the housing upper wall assembly 1111. For example, the smart device 12 is connected to the upper surface of the printing housing component 111. In this embodiment, the "upper surface of the printing housing component 111" refers to the upward-facing surface of the printing housing component 111. The smart device 12 is connected to the upper surface of the housing upper wall assembly 1111. In this embodiment, the "upper surface of the housing upper wall assembly 1111" refers to the upward-facing surface of the housing upper wall assembly 1111. This saves space around the printing device 11, reduces the footprint of the printing device 11, and facilitates user operation.

[0120] like Figure 5 As shown, the smart device 12 protrudes from the printing device 11 along the height direction D2. Preferably, the smart device 12 protrudes upward from the printing device 11 along the height direction D2. This ensures that the smart device 12 is positioned above the printing device 11. In particular, it can clearly and accurately receive the user's voice.

[0121] Now return Figure 1 and Figure 2The main body assembly 1121 includes a main body upper wall assembly 1122, which is located inside the printing housing component 111. The main body upper wall assembly 1122 faces the housing upper wall assembly 1111. The main body upper wall assembly 1122 faces upwards towards the printing device 11. The thickness direction of the main body upper wall assembly 1122 is parallel to the height direction D2 of the printing device 11. The print data board assembly 1123 is connected to the upper surface of the main body assembly 1121. In this embodiment, "the upper surface of the main body assembly 1121" refers to the upward-facing surface of the main body assembly 1121. The print data board assembly 1123 is disposed to the main body upper wall assembly 1122. The print data board assembly 1123 is connected to the main body upper wall assembly 1122 via a connector. The connector can be a bolt, etc. Preferably, the print data board assembly 1123 is connected to the upper surface of the main body upper wall assembly 1122. In this embodiment, "the upper surface of the main body upper wall assembly 1122" refers to the upward-facing surface of the main body upper wall assembly 1122. The upper surface of the main body upper wall assembly 1122 faces the housing upper wall assembly 1111.

[0122] The smart device 12 is located above the print data board assembly 1123. The smart device 12 is positioned above the print data board assembly 1123 along the height direction D2 of the printing device 11. In this embodiment, "above" includes both directly above and diagonally above. The smart device 12 can be positioned directly above the print data board assembly 1123 along the height direction D2 of the printing device 11. The smart device 12 can also be positioned diagonally above the print data board assembly 1123 along the height direction D2 of the printing device 11. This facilitates electrical connection between the smart device 12 and the print data board assembly 1123. The smart device 12 and the print data board assembly 1123 are spaced apart along the height direction D2 of the printing device 11. A housing upper wall assembly 1111 is provided between the smart device 12 and the print data board assembly 1123. This prevents direct contact between the smart device 12 and the print data board assembly 1123, thus preventing signal interference.

[0123] Furthermore, such as Figure 1 and Figure 3 As shown, the smart device 12 is positioned at the center of the rear portion of the upper housing assembly 1111. The smart device 12 is located at the center of the top rear side of the printing device 11. The smart device 12 is connected to the upper housing assembly 1111 via a connector, such as a bolt. The upper housing assembly 1111 includes a front and a rear portion along the depth direction D3 of the printing device 11, with the front portion closer to the user than the rear portion. The print data board assembly 1123 is disposed in the rear portion of the print housing assembly 111. Figure 5As shown, the smart device 12 is located at the center of the printing device 11 along the width direction D1 of the printing device 11. In particular, the smart device 12 is located at the center of the upper wall assembly 1111 of the housing along the width direction D1 of the printing device 11. This saves internal space of the printing device 11, reduces the distance between the smart device 12 and the print data board assembly 1123, and reduces the length of the electrical connection members inside the main body assembly 1121.

[0124] The main printing unit 112 also includes a printing power board assembly 1124, which is located inside the printing housing unit 111. The printing power board assembly 1124 is electrically connected to the printing data board assembly 1123. The printing power board assembly 1124 supplies power to the printing data board assembly 1123 to ensure its proper operation. The printing power board assembly 1124 is located at the rear of the main unit 1121.

[0125] The printing housing component 111 further includes a housing rear wall assembly 1113, which faces the rear of the printing device 11. The thickness direction of the housing rear wall assembly 1113 is parallel to the depth direction D3 of the printing device 11. The main body assembly 1121 also includes a main body rear wall assembly, which faces the rear of the printing device 11. The main body rear wall assembly is located inside the printing housing component 111. The main body rear wall assembly faces the housing rear wall assembly 1113. The main body rear wall assembly faces the rear of the printing device 11. The thickness direction of the main body rear wall assembly is parallel to the depth direction D3 of the printing device 11. The printing power board assembly 1124 is connected to the rear surface of the main body assembly 1121. In this embodiment, the "rear surface of the main body assembly 1121" refers to the rearward-facing surface of the main body assembly 1121. The printing power board assembly 1124 is disposed on the main body rear wall assembly. Preferably, the printing power board assembly 1124 is connected to the rear surface of the main body rear wall assembly. In this embodiment, "rear surface of the main body rear wall assembly" refers to the rearward-facing surface of the main body rear wall assembly. The rear surface of the main body rear wall assembly faces the housing rear wall assembly 1113.

[0126] The printer power board assembly 1124 is positioned below the printer data board assembly 1123. This reduces the distance between the printer data board assembly 1123 and the smart device 12, ensuring that the printer power board assembly 1124 supplies power to the printer data board assembly 1123, and facilitating connection of the printer 11 to an external power source. The distance between the smart device 12 and the printer power board assembly 1124 is greater than the distance between the smart device 12 and the printer data board assembly 1123. The smart device 12 is positioned closer to the printer data board assembly 1123 than the printer power board assembly 1124. This facilitates wiring between the smart device 12 and the printer data board assembly 1123.

[0127] like Figure 2 , Figure 5 and Figure 6 As shown, the smart device 12 does not protrude from the printing device 11 in a direction perpendicular to the height direction D2 of the printing device 11. For example, the smart device 12 does not protrude from the printing device 11 in the depth direction D3 of the printing device 11. The depth direction D3 of the printing device 11 is perpendicular to the height direction D2 of the printing device 11. The smart device 12 does not protrude from the rear wall assembly 1113 of the housing in the depth direction D3 of the printing device 11. The printing housing component 111 also includes a front wall assembly 1114 of the housing, which faces the front of the printing device 11. The thickness direction of the front wall assembly 1114 is parallel to the depth direction D3 of the printing device 11. The smart device 12 does not protrude from the front wall assembly 1114 of the housing in the width direction D1 of the printing device 11. Preferably, the ratio of the size of the smart device 12 in the depth direction D3 of the printing device 11 to the size of the printing device 11 is 1:3. The size of the smart device 12 in the depth direction D3 of the printing device 11 is 1 / 3 of the size of the printing device 11. In the horizontal direction, the ratio of the depth of the smart device 12 to the depth of the printing device 11 is 1 / 3. This prevents the smart device 12 from protruding beyond the printing device 11 along the depth direction D3, reduces the size of the smart image forming apparatus 1 in the depth direction D3 of the printing device 11, and reduces the area of ​​the smart image forming apparatus 1.

[0128] The smart device 12 does not protrude beyond the printing device 11 along the width direction D1. The width direction D1 of the printing device 11 is perpendicular to the height direction D2 of the printing device 11. The printing housing component 111 also includes a housing sidewall assembly 1115, which faces the side of the printing device 11. The thickness direction of the housing sidewall assembly 1115 is parallel to the width direction D1 of the printing device 11. The smart device 12 does not protrude beyond the housing sidewall assembly 1115 along the width direction D1 of the printing device 11. Preferably, the ratio of the size of the smart device 12 in the width direction D1 of the printing device 11 to the size of the printing device 11 is 1:2. The size of the smart device 12 in the width direction D1 of the printing device 11 is half the size of the printing device 11. In the horizontal direction, the ratio of the width of the smart device 12 to the width of the printing device 11 is 1 / 2. This prevents the smart device 12 from protruding beyond the printing device 11 along the width direction D1, reduces the size of the smart image forming apparatus 1 in the width direction D1 of the printing device 11, and reduces the area of ​​the smart image forming apparatus 1.

[0129] like Figure 3 As shown, the upper wall assembly 1111 includes a first upper shell member 1111a and a second upper shell member 1111b, which are connected together. The thickness direction of the first upper shell member 1111a is parallel to the height direction D2 of the printing device 11. The thickness direction of the second upper shell member 1111b intersects the height direction D2 of the printing device 11. The first upper shell member 1111a is connected to the second upper shell member 1111b along the depth direction D3 of the printing device 11. The first upper shell member 1111a and the second upper shell member 1111b are integrally formed.

[0130] The first upper shell member 1111a and the second upper shell member 1111b are connected at an angle. An angle α is formed between the first upper shell member 1111a and the second upper shell member 1111b. The first upper shell member 1111a and the second upper shell member 1111b are not on the same plane. The first upper shell member 1111a is located above the print data board assembly 1123. The first upper shell member 1111a is located above the print data board assembly 1123 along the height direction D2 of the printing device 11. The first upper shell member 1111a is located above the print power board assembly 1124. The first upper shell member 1111a is located above the print power board assembly 1124 along the height direction D2 of the printing device 11. This facilitates user operation of the printing device 11.

[0131] Furthermore, the second upper shell member 1111b is located in front of the first upper shell member 1111a. The second upper shell member 1111b is located in front of the first upper shell member 1111a along the depth direction D3 of the printing device 11. The first upper shell member 1111a is located behind the second upper shell member 1111b. The first upper shell member 1111a is located behind the second upper shell member 1111b along the depth direction D3 of the printing device 11. The second upper shell member 1111b extends downward and forward from the front portion of the first upper shell member 1111a. The first upper shell member 1111a includes a front portion and a rear portion, with the front portion of the first upper shell member 1111a being closer to the user than the rear portion. The front portion of the first upper shell member 1111a is closer to the user along the depth direction D3 of the printing device 11 than the rear portion. The second upper shell member 1111b includes a front portion and a rear portion, with the front portion of the second upper shell member 1111b being closer to the user than the rear portion. The front portion of the second upper shell member 1111b is closer to the user along the depth direction D3 of the printing device 11 than the rear portion. The rear portion of the second upper shell member 1111b is connected to the front portion of the first upper shell member 1111a. The second upper shell member 1111b extends obliquely from the front portion of the first upper shell member 1111a towards the bottom of the printing device 11 along the height direction D2. The second upper shell member 1111b extends obliquely from the front portion of the first upper shell member 1111a towards the front portion of the printing device 11 along the depth direction D3. The front portion of the second upper shell member 1111b is lower than the rear portion along the height direction D2 of the printing device 11. This makes it easier for the user to observe the second upper shell component 1111b and to place items onto it.

[0132] The angle α between the second upper shell member 1111b and the reference plane M is an acute angle. The reference plane M is configured as an extension of the upper surface 1111c of the first upper shell member 1111a toward the front of the printing device 11. In this embodiment, "the upper surface 1111c of the first upper shell member 1111a" refers to the surface of the first upper shell member 1111a facing upward toward the printing device 11. The first upper shell member 1111a extends toward the front of the printing device 11 along the depth direction D3 of the printing device 11 to form the reference plane M. The first upper shell member 1111a extends toward the front wall assembly 1114 of the housing along the depth direction D3 of the printing device 11 to form the reference plane M. In embodiments of this disclosure, the upper surface 1111c of the first upper shell member 1111a is parallel to a horizontal plane. The reference plane M is parallel to the upper surface 1111c of the first upper shell member 1111a. Preferably, the reference plane M can be a horizontal plane.

[0133] In embodiments of this disclosure, the angle α between the second upper shell member 1111b and the reference plane M can be an acute angle. The angle α is between 5 and 7 degrees. For example, the angle α between the second upper shell member 1111b and the reference plane M is 5 degrees or 7 degrees. This allows the second upper shell member 1111b to be slightly tilted relative to the first upper shell member 1111a. This allows the user to place items on the second upper shell member 1111b without them easily slipping.

[0134] To facilitate the placement of items, the second upper shell member 1111b also includes an upper shell groove, which is recessed downward from the upper surface of the second upper shell member 1111b. In this embodiment, the "upper surface of the second upper shell member 1111b" refers to the surface of the second upper shell member 1111b facing upward toward the printing device 11. Preferably, the depth of the upper shell groove along the height direction D2 of the printing device 11 is 12-15 mm. The depth of the upper shell groove along the height direction D2 of the printing device 11 can be 13 mm or 12.8 mm. The user can place items into the upper shell groove of the second upper shell member 1111b. This prevents items from slipping.

[0135] To ensure the connection stability of the smart device 12, the smart device 12 is mounted on the first upper shell member 1111a. The first upper shell member 1111a is parallel to the horizontal plane. The smart device 12 is connected to the first upper shell member 1111a. The smart device 12 can be connected to the first upper shell member 1111a via a connector, such as a bolt.

[0136] The printing device 11 also includes a power control component 113, which is disposed on the first upper housing member 1111a. The power control component 113 can serve as a printer power switch. The power control component 113 can turn the printing device 11 on or off. The power control component 113 is located on the rear side of the second upper housing member 1111b. The power control component 113 is located on the rear side of the second upper housing member 1111b along the depth direction D3 of the printing device 11. The power control component 113 can also be located to the side of the smart device 12. The smart device 12 can also be electrically connected to the power control component. The power control component can control the turning on and off of the smart device 12. Preferably, the power control component 113 can be located on the right side of the smart device 12. This places the power control component 113 on a side convenient for the user to operate, facilitating user operation.

[0137] In embodiments of this disclosure, such as Figure 6As shown, the printing housing component 111 further includes a panel assembly 1112, which is disposed to the second upper housing component 1111b. The panel assembly 1112 is connected to the second upper housing component 1111b. In the embodiments of this disclosure, the panel assembly 1112 and the second upper housing component 1111b are integrally formed. The panel assembly 1112 is located above the second upper housing component 1111b. The panel assembly 1112 is connected to the upper surface of the second upper housing component 1111b. The panel assembly 1112 is fixed to the upper surface of the second upper housing component 1111b. The panel assembly 1112 is parallel to the second upper housing component 1111b. A power control component 113 is located behind the panel assembly 1112. The power control component 113 is located behind the panel assembly 1112 along the depth direction D3 of the printing device 11. This facilitates user operation.

[0138] The thickness direction of the panel assembly 1112 is parallel to the thickness direction of the second upper shell member 1111b. The thickness direction of the panel assembly 1112 intersects the height direction D2 of the printing device 11. Therefore, the panel assembly 1112 can protect the second upper shell member 1111b, preventing damage to the second upper shell member 1111b and replacement of the upper shell assembly 1111.

[0139] The intelligent image forming apparatus 1 also includes a writing information processing device 13, which is installed in the printing device 11. The writing information processing device 13 can communicate with the intelligent device 12. The writing information processing device 13 and the intelligent device 12 can be electrically connected via electrical connection components. The writing information processing device 13 and the intelligent device 12 can also be connected via Bluetooth. Information from the writing information processing device 13 can be transmitted to the intelligent device 12, and then fed back to the printing device 11 via the intelligent device 12, whereby the printing device 11 executes a printing command.

[0140] The writing and information processing device 13 can be an electronic tablet, an electronic drawing tablet, or a non-electronic paper device. The writing and information processing device 13 is detachably connected to the printing device 11. For example, the writing and information processing device 13 can engage with the printing device 11 or be detachably connected to the printing device 11 via a connector. This facilitates writing on the writing and information processing device 13. When the writing and information processing device 13 is damaged, it can also be directly repaired.

[0141] A flat plate is placed on top of the printing device 11. In this embodiment of the present disclosure, a writing information processing device 13 is disposed to the upper wall assembly 1111 of the housing. The writing information processing device 13 is detachably connected to the upper wall assembly 1111 of the housing. The writing information processing device 13 is detachably connected to the upper surface of the upper wall assembly 1111 of the housing. The writing information processing device 13 is disposed to the second upper shell member 1111b. The writing information processing device 13 is detachably connected to the second upper shell member 1111b. The writing information processing device 13 is detachably connected to the upper surface of the second upper shell member 1111b. The second upper shell member 1111b supports the writing information processing device 13. The writing information processing device 13 is placed on the second upper shell member 1111b. The writing information processing device 13 is tilted towards the user. Therefore, it is convenient for the user to observe the writing information processing device 13 and to write on the writing information processing device 13.

[0142] The writing information processing device 13 is located on the upper surface of the printing housing component 111 near the front of the printing device 11. Preferably, the writing information processing device 13 is closer to the front of the printing device 11 than the smart device 12. The writing information processing device 13 is also closer to the front of the printing device 11 along the depth direction D3 than the smart device 12. The panel assembly 1112 is also closer to the front of the printing device 11 along the depth direction D3 than the smart device 12. The smart device 12 is located at the rear of the writing information processing device 13. The smart device 12 is also closer to the rear of the printing device 11 along the depth direction D3 than the writing information processing device 13. The smart device 12 is also closer to the rear of the printing device 11 along the depth direction D3 than the panel assembly 1112. This facilitates user operation of the writing information processing device 13.

[0143] The second upper shell member 1111b is provided with an upper shell groove, which accommodates and supports the writing information processing device 13. The writing information processing device 13 is placed in the upper shell groove. The groove wall of the upper shell groove fits against the writing information processing device 13. Preferably, the groove wall of the upper shell groove engages with the writing information processing device 13. The bottom wall of the upper shell groove supports the writing information processing device 13. The writing information processing device 13 may not protrude from the upper shell groove along the thickness direction of the second upper shell member 1111b. Thus, the upper shell groove can protect the writing information processing device 13. The writing information processing device 13 may also protrude from the upper shell groove along the thickness direction of the second upper shell member 1111b. The writing information processing device 13 is detachably connected to the upper shell groove. Thus, it is convenient for the user to remove the writing information processing device 13 from the upper shell groove.

[0144] like Figure 10As shown, the panel assembly 1112 is provided with a panel recess 1112a, which accommodates and supports the writing information processing device 13. The panel recess 1112a is recessed downward from the upper surface of the panel assembly 1112. In this embodiment, the "upper surface of the panel assembly 1112" refers to the surface of the panel assembly 1112 facing the printing device 11. Preferably, the depth of the panel recess 1112a along the height direction D2 of the printing device 11 is 12-15 mm. The depth of the panel recess 1112a along the height direction D2 of the printing device 11 can be 13 mm. The user can place the writing information processing device 13 into the panel recess 1112a of the panel assembly 1112. This prevents items from slipping. Of course, the panel assembly 1112 and the second upper shell member 1111b can also be an integral structure. The writing information processing device 13 is detachably connected to the panel recess 1112a. Thus, the user can easily remove the writing information processing device 13 from the panel recess 1112a.

[0145] like Figures 7 to 9 As shown, the writing information processing device 13 includes an electronic component 131 and a protective component 132, with the protective component 132 detachably mounted to the electronic component 131. The electronic component 131 can be constructed as an electronic flat panel. The electronic component 131 can be constructed as a plate-like structure. The thickness direction of the electronic component 131 is parallel to the thickness direction of the second upper shell member 1111b. The thickness direction of the electronic component 131 is parallel to the thickness direction of the panel assembly 1112. The electronic component 131 can receive graphic data sent by a remote control device and can parse printing instructions, sending action signals to the main body assembly 1121. The protective component 132 can be constructed as a protective sleeve. The protective component 132 can be detachably connected to the electronic component 131 by a snap-fit ​​mechanism. The protective component 132 can also be connected to the electronic component 131 by magnetic attraction. The protective component 132 can enclose the body of the electronic component 131, cushioning impacts, preventing scratches, and preventing bending. The inner layer of the protective component 132 may be provided with a velvet cloth to protect the screen of the electronic component 131.

[0146] Combination Figure 3 and Figure 4 As shown, electronic component 131 is movable between a flat position and an upright position. Electronic component 131 in the flat position can be moved to the upright position. Electronic component 131 in the upright position can be moved to the flat position. For example, electronic component 131 can be flipped between the flat position and the upright position. Electronic component 131 in the flat position can be flipped to the upright position. Electronic component 131 in the upright position can be flipped to the flat position.

[0147] The electronic component 131, positioned horizontally, is located within a recess. The recess is capable of accommodating the electronic component 131 in its horizontal position. For example... Figure 7 As shown, the protective component 132 covers the electronic component 131 in its flat position. The protective component 132 covers the screen of the electronic component 131 in its flat position. This prevents the electronic component 131 from being scratched. The electronic component 131 in its upright position protrudes from the recess. The electronic component 131 in its upright position protrudes from the recess along the height direction D2 of the printing device 11. Figure 9 As shown, the protective component 132 supports the electronic component 131. When the protective component 132 is unfolded and folded, it supports the electronic component 131. The angle β between the electronic component 131 and the protective component 132 is an acute angle. The angle β between the electronic component 131 and the protective component 132 is 65 degrees. That is, the supporting angle of the protective component 132 itself is 65 degrees. This facilitates observation by the user.

[0148] Furthermore, such as Figure 7 As shown, the protective component 132 includes a grip assembly 1321 located at the free end of the protective component 132. The connection point between the protective component 132 and the electronic component 131 can be constructed using a flexible material. The grip assembly 1321 may include a flat handle. A user can grip the grip assembly 1321 to move the protective component 132. The grip assembly 1321 is rotatable between a covered state and a supported state. The grip assembly 1321 in the covered state can be rotatable to the supported state. The grip assembly 1321 in the supported state can be rotatable to the covered state. The grip assembly 1321 is rotatable between a covered state and a supported state. The grip assembly 1321 in the covered state can be rotatable to the supported state. The grip assembly 1321 in the supported state can be rotatable to the covered state. The protective component 132 in the covered state can be rotatable to the supported state.

[0149] Combination Figure 3 and Figure 4 As shown, the grip assembly 1321 in the covered state covers the front surface 1311 of the electronic component 131 in its flat position. The screen of the electronic component 131 is located on the front surface 1311 of the electronic component 131. In this embodiment, "the front surface 1311 of the electronic component 131" refers to the surface of the electronic component 131 facing the user. The grip assembly 1321 in the covered state covers the screen of the electronic component 131 in its flat position. Thus, the front surface 1311 of the electronic component 131 can be protected. In particular, the grip assembly 1321 in the covered state can protect the screen of the electronic component 131.

[0150] like Figure 7 , Figure 8 and Figure 9 As shown, the grip assembly 1321 in a supported state supports the back surface 1312 of the electronic component 131 in an upright position. The grip assembly 1321 in the supported state can be flipped to the back surface 1312 of the electronic component 131. In this embodiment, "back surface 1312 of the electronic component 131" refers to the surface of the electronic component 131 facing away from the user. The protective component 132 includes three protective segments connected by a flexible material. The three protective segments flip to form a triangular structural region to stably support the electronic component 131.

[0151] Furthermore, the back surface 1312 of the electronic component 131 includes a first magnetic member 1312a, and the gripping assembly 1321 includes a second magnetic member 1321a, the first magnetic member 1312a and the second magnetic member 1321a having opposite magnetic properties. The first magnetic member 1312a can be constructed as a magnet. The second magnetic member 1321a can be constructed as a magnet. The first magnetic member 1312a of the electronic component 131 in the upright position is attracted together with the second magnetic member 1321a of the gripping assembly 1321 in the supported state. Thus, the electronic component 131 can attract the gripping assembly 1321. The electronic component 131 in the upright position is attracted together with the protective member 132 in the supported state. The protective member 132 in the supported state is located on the back surface of the electronic component 131 in the upright position. Thus, the connection strength between the gripping assembly 1321 in the supported state and the electronic component 131 is enhanced, and the protective member 132 can stably support the electronic component 131, so that the electronic component 131 remains in the upright position.

[0152] like Figure 3 As shown, the smart device 12 includes a smart cover component 121, which is connected to the printing housing component 111. The smart cover component 121 is connected to the upper surface of the printing housing component 111. The smart cover component 121 is connected to the housing upper wall assembly 1111. The smart cover component 121 is connected to the upper surface of the housing upper wall assembly 1111. Specifically, the smart cover component 121 is connected to a first upper shell member 1111a. The smart cover component 121 is connected to the upper surface 1111c of the first upper shell member 1111a.

[0153] Combination Figure 6As shown, the smart cover component 121 includes a cover assembly 1211 and a base assembly 1212. The cover assembly 1211 is connected to the printing housing component 111 via the base assembly 1212. The base assembly 1212 is provided with a connector, and the printing housing component 111 is provided with a connection hole; the connector and the connection hole are connected together. The cover assembly 1211 is spaced apart from the printing housing component 111. The cover assembly 1211 is spaced apart from the printing housing component 111 along the height direction D2 of the printing device 11. This increases the position of the cover assembly 1211, avoiding interference between the cover assembly 1211 and the printing housing component 111, and thus facilitating the installation of the cover assembly 1211.

[0154] like Figure 12 As shown, the cover assembly 1211 includes an upper cover member 1211a and a lower cover member 1211b, which are connected. The upper cover member 1211a is located above the lower cover member 1211b. The upper cover member 1211a is located above the lower cover member 1211b along the height direction D2 of the printing device 11. The lower cover member 1211b is connected to the base assembly 1212. The lower cover member 1211b and the base assembly 1212 are detachably connected together. The lower cover member 1211b and the base assembly 1212 are connected by a connector. The connector can be a bolt, etc. The upper cover member 1211a, the lower cover member 1211b, and the base assembly 1212 are installed sequentially from top to bottom, and the base assembly 1212 is fixedly installed on the printing housing component 111. Specifically, the base assembly 1212 is fixedly installed on the upper surface 1111c of the first upper housing member 1111a.

[0155] The upper cover member 1211a has a generally semi-enclosed structure. The lower cover member 1211b has a generally semi-enclosed structure. (As...) Figure 16 As shown, the upper cover member 1211a includes an upper cover receiving cavity 1213, the opening of which faces the lower cover member 1211b. Figure 18 As shown, the lower cover member 1211b includes a lower cover receiving cavity 1214, which opens upwards. The lower cover receiving cavity 1214 opens upwards along the height direction D2 of the printing device 11. The opening of the lower cover receiving cavity 1214 faces the upper cover member 1211a. The upper cover receiving cavity 1213 and the lower cover receiving cavity 1214 together form the internal chamber of the smart cover component 121.

[0156] The upper cover member 1211a is detachably connected to the lower cover member 1211b. Preferably, the upper cover member 1211a and the lower cover member 1211b engage together. Figure 13 and Figure 14As shown, the cover assembly 1211 further includes an insertion member 1211m and a receiving member 1211n, which are inserted together. The receiving member 1211n includes a hole whose axial direction is parallel to the height direction D2 of the printing device 11. The insertion member 1211m can be inserted into the hole of the receiving member 1211n. The insertion member 1211m is integrally formed with the upper cover member 1211a. The receiving member 1211n is connected to the lower cover member 1211b. The receiving member 1211n is integrally formed with the lower cover member 1211b. The insertion member 1211m is connected to the upper cover member 1211a. Thus, the upper cover member 1211a and the lower cover member 1211b are detachably connected together.

[0157] The cover assembly 1211 also includes a front cover member 1211c, which is connected to the lower cover member 1211b. The front cover member 1211c is detachably connected to the lower cover member 1211b. The front cover member 1211c faces the front of the printing device 11. The thickness direction of the front cover member 1211c is parallel to the depth direction D3 of the printing device 11. The front cover member 1211c faces the front of the printing device 11 along the depth direction D3 of the printing device 11. Thus, the user can directly observe the front cover member 1211c.

[0158] In embodiments of this disclosure, such as Figure 12 As shown, the lower cover member 1211b includes multiple annular walls that are sequentially connected along the circumferential direction of the smart device 12 to form a lower cover receiving cavity 1214. The multiple annular walls include a front annular wall 1215 facing the front of the printing device 11. The thickness direction of the front annular wall 1215 is parallel to the depth direction D3 of the printing device 11. The front cover member 1211c is detachably connected to the front annular wall 1215.

[0159] Combination Figure 11 and Figure 13 As shown, the cover assembly 1211 further includes a side cover member 1211d, which is connected to the lower cover member 1211b. The side cover member 1211d is connected to a side portion of the lower cover member 1211b. The side cover member 1211d is detachably connected to the lower cover member 1211b. The side cover member 1211d faces the side portion of the printing device 11. The thickness direction of the side cover member 1211d is parallel to the width direction D1 of the printing device 11. The side cover member 1211d faces the side portion of the printing device 11 along the width direction D1 of the printing device 11. In embodiments of this disclosure, a plurality of annular walls include a side annular wall 1216, which faces the side portion of the printing device 11. The thickness direction of the side annular wall 1216 is parallel to the width direction D1 of the printing device 11. The side cover member 1211d is detachably connected to the side annular wall 1216.

[0160] like Figure 12 As shown, the smart device 12 also includes a smart control component 122, which is located inside the smart cover component 121. The smart control component 122 is connected to the smart cover component 121. The smart control component 122 can also be electrically connected to the interior of the printed housing component 111. The smart control component 122 has a human-computer interaction voice recognition function.

[0161] The intelligent control unit 122 can directly execute user commands via voice interaction. The intelligent control unit 122 can recognize the user's voice and parse it into a data signal, which is then sent to the printing device 11. This data signal is connected to the print data board assembly 1123 inside the printing device 11 via an electrical connection component to execute commands and perform the printing action. Correspondingly, the printing device 11 provides feedback on its operating status and fault indications through the intelligent control unit 122. The print data board assembly 1123 can parse commands from the intelligent control unit 122 and send execution commands to the main printing unit 112. The main printing unit 112 can also feed back fault information to the intelligent control unit 122 via the print data board assembly 1123.

[0162] Specifically, the intelligent control component 122 includes a voice control component 1221 and a converter component 1222. The voice control component 1221 is connected to the print data board component 1123 via the converter component 1222. The voice control component 1221 can be configured as a voice module. The converter component 1222 can be configured as a converter board. The voice control component 1221 is capable of voice recognition and synthesis operations. The converter component 1222 is capable of signal conversion, audio conditioning, level matching, and peripheral expansion. The voice control component 1221 and the converter component 1222 work together to complete voice acquisition, command transmission, and voice broadcasting.

[0163] Both the voice control component 1221 and the adapter component 1222 are located at the bottom of the smart cover component 121. Specifically, both the voice control component 1221 and the adapter component 1222 are located at the bottom of the cover component 1211. Further, the voice control component 1221 is connected to the lower cover component 1211b. The voice control component 1221 is connected to the lower cover component 1211b via a connector. The connector can be a bolt, etc. The adapter component 1222 is also connected to the lower cover component 1211b via a connector. The connector can be a bolt, etc.

[0164] The smart cover component 121 is provided with a cover connection hole 1211f, which penetrates the lower cover component 1211b. The cover connection hole 1211f communicates with the interior of the printing device 11. Figure 13As shown, the base assembly 1212 is provided with a base connection hole 1212a, which penetrates the base assembly 1212. The base connection hole 1212a communicates with the cover connection hole 1211f. The voice control assembly 1221 and the adapter assembly 1222 are located on both sides of the connection hole, respectively. The voice control assembly 1221 and the adapter assembly 1222 are located on both sides of the connection hole (e.g., the cover connection hole 1211f) along the width direction D1 of the printing device 11. The electrical connection components (wires) of the voice control assembly 1221 and the adapter assembly 1222 can enter the printing device 11 through the connection hole. The first upper shell assembly 1111a is provided with a shell connection hole, which corresponds to the base connection hole 1212a. The electrical connection component can pass through the cover connection hole 1211f and the base connection hole 1212a in sequence, enter the shell connection hole, and then enter the printing shell component 111. The electrical connection component can be connected to the print data board assembly 1123 to transmit signals to the print data board assembly 1123. The electrical connection component can also be connected to the print power board assembly 1124, which can supply power to the voice control assembly 1221 and the adapter assembly 1222.

[0165] The intelligent control component 122 also includes a playback component 1223 and a microphone component 1224. The playback component 1223 is capable of playing audio, and the microphone component 1224 is capable of receiving the user's voice. The microphone component 1224 can be configured as a microphone. The playback component 1223 can be configured as a speaker. The playback component 1223 is connected to the upper cover component 1211a. The playback component 1223 is located in the upper cover receiving cavity 1213. The playback component 1223 is connected to the lower surface of the upper cover component 1211a via a connector. The connector can be a bolt or the like. In this embodiment, "the lower surface of the upper cover component 1211a" refers to the surface of the upper cover component 1211a facing the lower cover component 1211b. The lower surface of the upper cover component 1211a is the inner surface of the upper cover component 1211a. The lower surface of the upper cover component 1211a faces downward along the height direction D2 of the printing device 11.

[0166] The cover component 1211a is provided with a through hole. The through hole may include a sound amplification through hole 1211e, which corresponds to the playback component 1223 to diffuse the sound played by the playback component 1223 to the outside of the smart device 12. Of course, the through hole may also include a heat dissipation through hole to reduce the internal temperature of the cover component 1211.

[0167] like Figure 17 and Figure 18As shown, the microphone assembly 1224 is disposed at the bottom of the cover assembly 1211. The microphone assembly 1224 is connected to the lower cover member 1211b. The microphone assembly 1224 is connected to the lower cover member 1211b via a connector, such as a bolt. The microphone assembly 1224 is located in the lower cover receiving cavity 1214. The microphone assembly 1224 is fixed together with the upper cover member 1211a. The microphone assembly 1224 is connected to the bottom surface of the lower cover member 1211b. In this embodiment, the "bottom surface of the lower cover member 1211b" refers to the surface of the lower cover member 1211b facing the upper cover member 1211a. The bottom surface of the lower cover member 1211b is the inner surface of the lower cover member 1211b. The upper surface of the lower cover member 1211b faces upward along the height direction D2 of the printing device 11. To ensure the microphone reception effect, a sealing and sound-insulating member is also provided on the back of the microphone assembly 1224. For example, the sealed soundproofing components are made of soundproofing cotton. This prevents unwanted noise from being picked up by the microphone assembly 1224.

[0168] The voice control component 1221 is closer to the microphone component 1224 than the adapter component 1222. The microphone component 1224 is positioned closer to the voice control component 1221 than the adapter component 1222. The microphone component 1224 is close to the display component 123. In particular, the microphone component 1224 is close to the display screen component 1231.

[0169] The playback component 1223 and the microphone component 1224 are offset from each other along the height direction D2 of the printing device 11. The playback component 1223 is located above the microphone component 1224. The playback component 1223 is located above the microphone component 1224 along the height direction D2 of the printing device 11. The playback component 1223 is at least partially offset from the microphone component 1224 along the height direction D2 of the printing device 11. Preferably, the playback component 1223 is partially offset from the microphone component 1224 along the height direction D2 of the printing device 11, and partially overlaps with it. Preferably, the playback component 1223 is completely offset from the microphone component 1224 along the height direction D2 of the printing device 11. Thus, the playback component 1223 and the microphone component 1224 are not arranged on the same plane, and the playback component 1223 and the microphone component 1224 are not arranged in the same direction, avoiding the voice played by the playback component 1223 from affecting the sound reception effect of the microphone component 1224.

[0170] The playback component 1223 and the microphone component 1224 are offset from each other in a direction perpendicular to the height direction D2 of the printing device 11. The playback component 1223 is located to the side of the microphone component 1224. The playback component 1223 and the microphone component 1224 are offset from each other in the width direction D1 of the printing device 11. The playback component 1223 is located to the side of the microphone component 1224 in the width direction D1 of the printing device 11. The playback component 1223 is at least partially offset from the microphone component 1224 in the width direction D1 of the printing device 11. Preferably, the playback component 1223 is partially offset from the microphone component 1224 in the width direction D1 of the printing device 11, and partially overlaps with it. Preferably, the playback component 1223 is completely offset from the microphone component 1224 in the width direction D1 of the printing device 11. Therefore, the playback component 1223 and the radio receiver 1224 are not set on the same plane, and the playback component 1223 and the radio receiver 1224 are not set in the same direction, so as to avoid the voice played by the playback component 1223 from affecting the radio receiver 1224.

[0171] The playback component 1223 and the microphone component 1224 are offset from each other along the depth direction D3 of the printing device 11. The playback component 1223 is located to the side of the microphone component 1224 along the depth direction D3 of the printing device 11. The playback component 1223 is at least partially offset from the microphone component 1224 along the depth direction D3 of the printing device 11. Preferably, the playback component 1223 is partially offset from the microphone component 1224 along the depth direction D3 of the printing device 11, and partially overlaps with it. Preferably, the playback component 1223 is completely offset from the microphone component 1224 along the depth direction D3 of the printing device 11. Thus, the playback component 1223 and the microphone component 1224 are not arranged on the same plane, and the playback component 1223 and the microphone component 1224 are not arranged in the same direction, avoiding the voice played by the playback component 1223 from affecting the sound reception effect of the microphone component 1224.

[0172] The intelligent control component 122 includes at least two microphone components 1224, which are spaced apart. The at least two microphone components 1224 are arranged spaced apart along the width direction D1 of the printing device 11. The at least two microphone components 1224 are also arranged spaced apart along the depth direction D3 of the printing device 11. Preferably, the distance between the two microphone components 1224 is greater than 40 mm. The distance between the two microphone components 1224 is not less than the distance between the microphone component 1224 and the playback component 1223. In embodiments of this disclosure, the distance between the two microphone components 1224 is greater than the distance between the microphone component 1224 and the playback component 1223. In embodiments of this disclosure, the distance between the two microphone components 1224 is equal to the distance between the microphone component 1224 and the playback component 1223. The microphone components 1224 and the playback component 1223 are far apart. Therefore, good sound pickup function can be guaranteed. The number of the sound receiving components 1224 can be two, three or more, and the distance between any two sound receiving components 1224 is not less than the distance between the sound receiving component 1224 and the playback component 1223. This application does not limit the number of sound receiving components.

[0173] In order for the smart device 12 to display images, such as Figure 13 , Figure 15 , Figure 17 and Figure 18 As shown, the smart device 12 also includes a display component 123 for displaying information from the printing device 11. The display component 123 includes a display screen assembly 1231, which faces the exterior of the printing device 11. Preferably, the display screen assembly 1231 can be an LCD (Liquid Crystal Display) screen. The thickness direction of the display screen assembly 1231 is parallel to the depth direction D3 of the printing device 11. The display screen assembly 1231 faces the front of the printing device 11. The display screen assembly 1231 faces the front of the printing device 11 along the depth direction D3 of the printing device 11. The display screen assembly 1231 is located in the center of the smart device 12, directly in front. When the smart device 12 is executing instructions, the display screen assembly 1231 displays patterns, making it easy for the user to observe the images and text displayed on the display screen assembly 1231, allowing the user to intuitively understand the current instruction status.

[0174] The display component 123 can be electrically connected to the voice control component 1221. The display component 123 can display in real time the content received or fed back by the voice control component 1221. Furthermore, the voice control component 1221 and the adapter component 1222 are located on opposite sides of the display component 123. Specifically, this positions the voice control component 1221 and the adapter component 1222 on opposite sides of the display screen component 1231, thus preventing interference between the voice control component 1221 and the adapter component 1222.

[0175] The display component 123 is detachably connected to the smart cover component 121. Specifically, the display component 123 is detachably connected to the cover assembly 1211. This facilitates the maintenance and replacement of the display component 123. For easy installation of the display component 123, the display component 123 engages with the lower cover member 1211b. The display screen assembly 1231 engages with the lower cover member 1211b via a snap-fit ​​mechanism. Further, the cover assembly 1211 includes a slot member 1211p connected to the lower cover member 1211b. Preferably, the front annular wall 1215 is provided with the slot member 1211p.

[0176] The display component 123 also includes a snap-fit ​​assembly 1235, which is connected to the display screen assembly 1231. The snap-fit ​​assembly 1235 and the display screen assembly 1231 are integrally formed. The snap-fit ​​assembly 1235 is constructed as a hook. The snap-fit ​​assembly 1235 engages with the slot member 1211p. This facilitates disassembly. Of course, the slot member 1211p can also be provided to the display screen assembly 1231, with the snap-fit ​​assembly 1235 connected to the lower cover member 1211b, and the snap-fit ​​assembly 1235 and the slot member 1211p engaging together. This embodiment is not intended to limit this.

[0177] The lower cover member 1211b is also provided with a positioning member, and the display component 123 includes a mating assembly, with the positioning member and the mating assembly mating and connected. The mating assembly is connected to the display screen assembly 1231. This facilitates the positioning of the display component 123. In the embodiments of this disclosure, one of the positioning member and the mating assembly is a shaft, and the other is a hole. The shaft can be inserted into the hole. For example, the lower cover member 1211b is provided with a hole, preferably, the front annular wall 1215 is provided with a hole. The display screen assembly 1231 is connected to the shaft, and the shaft of the display component 123 can be inserted into the hole of the lower cover member 1211b. Of course, the lower cover member 1211b may also be provided with a shaft, and the display screen assembly 1231 may be provided with a hole, with the shaft of the lower cover member 1211b being able to be inserted into the hole of the display screen assembly 1231; this embodiment is not intended to limit this.

[0178] To prevent incorrect installation of display component 123, combined with Figure 12As shown, the lower cover member 1211b includes an upper edge 1211j and a lower edge 1211k, with the upper edge 1211j located above the lower edge 1211k. The upper edge 1211j is located above the lower edge 1211k along the height direction D2 of the printing device 11. Preferably, the front annular wall 1215 includes an upper edge 1211j and a lower edge 1211k, with the upper edge 1211j located at the upper part of the front annular wall 1215 and the lower edge 1211k located at the lower part of the front annular wall 1215. The distance from the positioning member to the upper edge 1211j is different from the distance from the positioning member to the lower edge 1211k. This prevents the display component 123 from being installed upside down.

[0179] Preferably, to reduce processing difficulty, the cover assembly 1211 includes a first positioning member 1211g and a second positioning member 1211h, both of which are disposed on the lower cover assembly 1211b. The first positioning member 1211g and the second positioning member 1211h are spaced apart along the width direction D1 of the printing device 11. The display component 123 includes a first mating component 1232 and a second mating component 1233, which are spaced apart along the width direction D1 of the printing device 11. The aperture of the first positioning member 1211g is larger than the aperture of the second positioning member 1211h. The aperture of the first positioning member 1211g is also larger than the diameter of the first mating component 1232. The aperture of the second positioning member 1211h is equal to the aperture of the second mating component 1233. In this way, the first positioning member 1211g can have an installation allowance, which facilitates the installation of the display component 123 onto the lower cover assembly 1211b.

[0180] To prevent scratches on the display component 123, a cover member 1211c covers the display component 123. The cover member 1211c is located outside the display component 123 along the depth direction D3 of the printing device 11. A lower cover member 1211b is provided with a through groove corresponding to the display component 123. The through groove exposes the display component 123. In particular, the through groove exposes the display screen assembly 1231. The cover member 1211c may be made of a gray material. When the image or text on the display screen assembly 1231 is lit, the user can see the display screen assembly 1231. When the image or text on the display screen assembly 1231 is not lit, the user cannot see the display screen assembly 1231 through the cover member 1211c.

[0181] Display component 123 also includes a light-transmitting component 1234, which covers display screen component 1231. The light-transmitting component 1234 is located outside the display screen component 1231. It is situated between the display screen component 1231 and the cover component 1211c. To enable the signal from the light-transmitting component 1234 to be transmitted to the intelligent control component 122, the light-transmitting component 1234 also includes a bending component, which is communicatively connected to the intelligent control component 122. The lower cover component 1211b has a slot extending through it. Specifically, the front annular wall 1215 has a slot. The bending component passes through the slot into the interior of the intelligent cover component 121 and connects to the intelligent control component 122. The light signal from the light-transmitting component 1234 can be transmitted to the intelligent control component 122 via the bending component. For example, the light signal from the light-transmitting component 1234 can be transmitted to the adapter plate assembly via the bending component.

[0182] In embodiments of this disclosure, the smart device 12 includes an illumination component 124 located on at least one side of the smart device 12. The illumination component 124 can be configured as a light module. This allows the smart device 12 to display an illumination, facilitating the user's judgment of the state of the smart image forming apparatus 1. In embodiments of this disclosure, the illumination component 124 is located on one side of the smart device 12. The illumination component 124 is located on one side of the smart device 12 along the width direction D1 of the printing apparatus 11. The smart device 12 may also include two illumination components 124, each located on one side of the smart device 12. The two illumination components 124 are located on both sides of the smart device 12 along the width direction D1 of the printing apparatus 11. This avoids interference of the illumination component 124 with the display component 123.

[0183] The cover assembly 1211 engages with the lighting component 124. Preferably, the lighting component 124 engages with the side annular wall 1216. The lighting component 124 is detachably connected to the side annular wall 1216. This facilitates the maintenance and replacement of the lighting component 124. Figure 14 As shown, the lighting component 124 includes a light-emitting component 1241 and a light-guiding component 1242. The light-emitting component 1241 is connected to the lower cover member 1211b, and the light-guiding component 1242 is closer to the outside of the smart device 12 than the light-emitting component 1241. The light-emitting component 1241 is capable of emitting light. The light-emitting component 1241 is connected to the side ring wall 1216. The light-guiding component 1242 is located outside the light-emitting component 1241. The light-guiding component 1242 is located outside the light-emitting component 1241 along the width direction D1 of the printing device 11. The light-guiding component 1242 is used to guide the light emitted by the light-emitting component 1241.

[0184] Specifically, the light guide assembly 1242 includes a first tilting member 1242a and a second tilting member 1242b, which are tilted together. The included angle between the first tilting member 1242a and the second tilting member 1242b is an obtuse angle. The first tilting member 1242a includes a first end and a second end, which are located at opposite ends of the first tilting member 1242a along the width direction D1 of the printing device 11. The second tilting member 1242b includes a third end and a fourth end, which are located at opposite ends of the first tilting member 1242a along the width direction D1 of the printing device 11. The first end of the first tilting member 1242a is connected to the third end of the second tilting member 1242b. The second end of the first tilting member 1242a extends forward and upward from the first end of the first tilting member 1242a. The first tilting member 1242a extends forward and upward along the width direction D1 of the printing device 11. The fourth end of the second tilting member 1242b extends forward and downward from the third end of the second tilting member 1242b. The second tilting member 1242b extends forward and downward along the width direction D1 of the printing device 11. The second end of the first tilting member 1242a and the fourth end of the second tilting member 1242b are spaced apart. The second end of the first tilting member 1242a and the fourth end of the second tilting member 1242b are spaced apart along the height direction D2 of the printing device 11.

[0185] The first inclined member 1242a and the second inclined member 1242b can form a light guide groove member 1242c. The first inclined member 1242a and the second inclined member 1242b are inclinedly connected to form the light guide groove member 1242c. The opening of the light guide groove member 1242c faces the outside of the smart device 12. The light guide groove member 1242c corresponds to the light-emitting component 1241. The light guide groove member 1242c and the light-emitting component 1241 correspond to each other along the width direction D1 of the printing device 11. The light guide groove member 1242c can guide the light from the light-emitting component 1241 to be emitted outward.

[0186] The light guide assembly 1242 also includes a light-focusing member 1242d, which is located between the light guide groove member 1242c and the light-emitting component 1241. The light-focusing member 1242d corresponds to the light guide groove member 1242c along the width direction D1 of the printing device 11. The light guide groove member 1242c is located outside the light guide assembly 1242, and the light-focusing member 1242d is located inside the light guide assembly 1242. The longitudinal cross-sectional shape of the light-focusing member 1242d is arc-shaped. The light-focusing member 1242d protrudes towards the light guide groove member 1242c. Therefore, the light-focusing member 1242d has good light-focusing performance and can guide the light emitted by the light-emitting component 1241 to propagate to the light guide groove member 1242c.

[0187] To protect the lighting component 124, a side cover member 1211d is located outside the lighting component 124. The side cover member 1211d is also located outside the light guide assembly 1242. Specifically, the side cover member 1211d is located outside the light guide groove member 1242c. The side cover member 1211d is located outside the light guide assembly 1242 along the width direction D1 of the printing device 11. This prevents wear on the light guide assembly 1242. The side cover member 1211d is mounted on the outside of the light guide assembly 1242, and the side cover member 1211d can be made of a nearly opaque material.

[0188] The upper cover member 1211a applies a force to the light-emitting component 1241 toward the side cover member 1211d. Specifically, the upper cover member 1211a includes a rib that abuts against the light-emitting component 1241. The light-emitting component 1241 is located outside the rib. The light-emitting component 1241 is located outside the width direction D1 of the printing device 11. The rib can apply a force to the light-emitting component 1241, and the direction of the force is parallel to the width direction D1 of the printing device 11. In particular, the direction of the force is toward the side cover member 1211d. This makes the connection between the light-emitting component 1241 and the lower cover member 1211b more secure.

[0189] The lighting component 124 also includes a light-shielding assembly 1243, and the light-emitting component 1241 also includes a light source component 1241a. The light-shielding assembly 1243 is arranged around the light source component 1241a. The light-emitting component 1241 is inserted into the lower cover component 1211b via a slot. The light-emitting component 1241 includes multiple light source components 1241a, all of which are located in the area enclosed by the light-shielding assembly 1243. The light-shielding assembly 1243 can be made of light-shielding cotton. Thus, the light-shielding assembly 1243 can prevent light from the light source component 1241a from leaking out from the surrounding gaps, preventing light leakage from the installation gaps.

[0190] The light-emitting component 1241 includes an RGB light panel (Red, Green, Blue), and the light source component 1241a can be an LED (Light Emitting Diode), which has a long lifespan and high photoelectric conversion efficiency. After the upper cover component 1211a is installed onto the lower cover component 1211b, the light-emitting component 1241 is pressed together by the ribs of the upper cover component 1211a, preventing it from detaching. The light guide component 1242 is located outside the light-emitting component 1241 and refracts the light from the light source component 1241a at a 90-degree angle, emitting light from all sides of the light guide component 1242. The light emission angle of the light source component 1241a is 120 degrees. During the execution of commands, the lighting components 124 on both sides of the smart device 12 emit different colors of light, allowing the user to intuitively understand the current command status.

[0191] The smart device 12 also includes an image recognition component located inside the smart cover component 121. Preferably, the image recognition component is connected to the display component 123. The image recognition component is used to recognize image information. For example, the image recognition component is constructed as a camera that captures image information. The camera can recognize images on the writing information processing device 13. The camera can be located on top of the display component 123. The image recognition component is communicatively connected to the adapter component 1222 to transmit the recognized image information to the adapter component 1222. For example, the image recognition component and the adapter component 1222 are connected via an electrical connection component, or the image recognition component and the adapter component 1222 are communicatively connected via Bluetooth. The adapter component 1222 then sends the image information to the print data board component 1123, which issues control commands to the main component 1121 based on the image information, causing the main component 1121 to operate. For example, the main component 1121 can print the image drawn by the writing information processing device 13.

[0192] For ease of maintenance, the smart device 12 is detachably connected to the printing device 11. The smart device 12 can be connected to the printing device 11 via a connector. Specifically, the base assembly 1212 is detachably connected to the first upper housing member 1111a via a connector. The smart device 12 can be secured to the printing device 11 with screws. Alternatively, the smart device 12 can be secured to the printing device 11 using a snap-fit ​​mechanism.

[0193] The smart device 12 can also be rotatably connected to the printing device 11. The smart device 12 is capable of rotating relative to the printing device 11. The smart device 12 is capable of rotating about the height direction D2 of the printing device 11. The smart device 12 can face different directions to receive signals from different directions. The smart device 12 also includes a position sensor capable of detecting the user's position. The position sensor is electrically connected to the adapter assembly 1222. The position sensor transmits the detected position signal to the adapter assembly 1222. The adapter assembly 1222 can also control the rotation of the base assembly 1212 or the cover assembly 1211 so that the display component 123 remains facing the user, thereby enabling the smart device 12 to follow the user.

[0194] The smart device 12 is vertically and vertically connected to the printing device 11. The smart device 12 can be raised and lowered relative to the printing device 11. This allows for flexible adjustment of the smart device 12's position. The smart device 12 can move along the height direction D2 of the printing device 11. The smart device 12 can move upwards along the height direction D2 of the printing device 11, thus bringing it closer to the user. The smart device 12 can also move downwards along the height direction of the printing device 11, thereby avoiding objects above the smart image forming apparatus 1.

[0195] The smart device 12 is horizontally movably connected to the printing device 11. The smart device 12 is capable of horizontal movement relative to the printing device 11. This allows for flexible adjustment of the smart device 12's position. The smart device 12 can move along the width direction D1 of the printing device 11. The smart device 12 can move to the left along the width direction D1 of the printing device 11 to avoid objects to the right of the smart image forming apparatus 1. The smart device 12 can also move to the right along the width direction of the printing device 11 to avoid objects to the left of the smart image forming apparatus 1. The smart device 12 can move along the depth direction D3 of the printing device 11. The smart device 12 can move forward along the depth direction D3 of the printing device 11 to avoid objects behind the smart image forming apparatus 1. The smart device 12 can also move backward along the depth direction of the printing device 11 to avoid objects in front of the smart image forming apparatus 1.

[0196] According to the intelligent image forming apparatus 1 disclosed herein, the overall layout can achieve a reasonable arrangement of the various functional areas of the intelligent image forming apparatus 1, and can also achieve miniaturization of the apparatus.

[0197] Unless otherwise defined, the technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure pertains. The terminology used herein is for descriptive purposes only and is not intended to limit the scope of this disclosure. Terms such as “part” or “component” appearing herein can refer to a single part or a combination of multiple parts. Terms such as “installation” or “installation” appearing herein can refer to one component being directly attached to another component or one component being attached to another component via an intermediary. A feature described in one embodiment herein may be applied, alone or in combination with other features, to another embodiment, unless that feature is not applicable in that other embodiment or is otherwise specified.

[0198] This disclosure has been described through the above embodiments; however, it should be understood that the above embodiments are for illustrative purposes only and are not intended to limit this disclosure to the described embodiments. Furthermore, those skilled in the art will understand that this disclosure is not limited to the above embodiments, and many more variations and modifications can be made based on the teachings of this disclosure, all of which fall within the scope of protection claimed by this disclosure. The scope of protection of this disclosure is defined by the appended claims and their equivalents.

Claims

1. An intelligent image forming apparatus, characterized in that, The intelligent image forming apparatus includes: The printing device includes: a printing housing component; A smart device, which is mounted on the printed housing component.

2. The intelligent image forming apparatus according to claim 1, characterized in that, The printed housing component includes a housing upper wall assembly, and the smart device is disposed on the housing upper wall assembly.

3. The intelligent image forming apparatus according to claim 2, characterized in that, The smart device is positioned at the middle of the rear part of the upper wall assembly of the housing.

4. The intelligent image forming apparatus according to claim 2, characterized in that, The smart device protrudes from the printing device along its height, and / or, The smart device does not protrude from the printing device in a direction perpendicular to the height direction of the printing device.

5. The intelligent image forming apparatus according to claim 1, characterized in that, The intelligent image forming apparatus further includes a writing information processing device, which is detachably connected to the printing device.

6. The intelligent image forming apparatus according to claim 5, characterized in that, The printing housing component includes a housing upper wall assembly, which includes a first upper shell member and a second upper shell member. The first upper shell member and the second upper shell member are obliquely connected. The smart device is disposed on the first upper shell member, and the writing information processing device is disposed on the second upper shell member.

7. The intelligent image forming apparatus according to claim 6, characterized in that, The second upper shell member extends downward and forward from the front part of the first upper shell member; The angle between the second upper shell component and the reference plane is an acute angle, and the reference plane is configured as an extension of the upper surface of the first upper shell component toward the front of the printing device.

8. The intelligent image forming apparatus according to claim 7, characterized in that, The second upper shell component is provided with a groove, which accommodates and supports the writing information processing device.

9. The intelligent image forming apparatus according to claim 8, characterized in that, The writing information processing device is detachably connected to the groove.

10. The intelligent image forming apparatus according to claim 1, characterized in that, The image forming apparatus further includes a writing information processing device, which is located closer to the front of the printing device than the smart device.

11. The intelligent image forming apparatus according to claim 6, characterized in that, The printing device also includes a power control component, which is disposed on the first upper shell member and located to the side of the smart device.

12. The intelligent image forming apparatus according to any one of claims 1-11, characterized in that, The smart device is detachably connected to the printing device.

13. The intelligent image forming apparatus according to any one of claims 1-11, characterized in that, The smart device can be rotatably, vertically, or horizontally connected to the printing device.