Electronic device with electronic components

By designing a combination of multiple electronic component groups with signal receivers and transmission circuits in an electronic device, the problem of uneven current transmission was solved, and uniform current transmission and quality improvement of electronic components were achieved.

CN115796102BActive Publication Date: 2026-01-13INNOLUX CORP
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Patent Information

Application Number
CN202111060484.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-09-10
Publication Date
2026-01-13
Estimated Expiration
2041-09-10

AI Technical Summary

Technical Problem

As electronic devices become larger, the unevenness of current transmission paths leads to uneven brightness of electronic components, affecting quality.

Method used

Multiple electronic component groups are used to receive two power signals from the control circuit through the first, second and third signal receiving terminals, and the power signals are uniformly transmitted to the electronic components through the first and second transmission circuits, and the current uniformity is improved by utilizing the trace cut-off area.

Benefits of technology

This achieves current uniformity in electronic components, improving the quality and consistency of electronic devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

An electronic device includes a plurality of electronic component groups and a control circuit. The control circuit is electrically connected to the plurality of electronic component groups. One of the plurality of electronic component groups receives two power signals from the control circuit through a first signal receiving terminal, a second signal receiving terminal, and a third signal receiving terminal.
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Description

Technical Field

[0001] This disclosure relates to an electronic device, and more particularly to an electronic device having electronic components. Background Technology

[0002] As electronic devices become increasingly larger, the number of electronic components that circuit boards need to drive also increases. In existing technologies, the transmission of current may vary with the length of the transmission path, causing uneven current flow to electronic components at different locations, resulting in inconsistent brightness and thus affecting quality. Summary of the Invention

[0003] An electronic device according to an embodiment of the present disclosure includes a plurality of electronic component groups and a control circuit. The control circuit is electrically connected to the plurality of electronic component groups. One of the plurality of electronic component groups receives two power signals from the control circuit through a first signal receiver, a second signal receiver, and a third signal receiver. Attached Figure Description

[0004] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings, wherein:

[0005] Figure 1 This is a schematic diagram of an electronic device 100 according to an embodiment of the present disclosure;

[0006] Figure 2 Embodiments of this disclosure Figure 1 A schematic diagram of one of the multiple electronic component groups of the electronic device 100;

[0007] Figure 3 Another embodiment of this disclosure Figure 1 A schematic diagram of one of the multiple electronic component groups of the electronic device 100;

[0008] Figure 4 Another embodiment of this disclosure Figure 1 A schematic diagram of one of the multiple electronic component groups of the electronic device 100;

[0009] Figure 5 Embodiments of this disclosure Figure 1 A schematic diagram of one of a group of electronic components having a circuit-cutting region in an electronic device 100;

[0010] Figure 6 Embodiments of this disclosure Figure 5 Circuit layout diagram of the middle electronic components;

[0011] Figure 7 Embodiments of this disclosure Figure 5 Circuit layout diagram of the middle electronic components;

[0012] Figure 8 A circuit layout diagram of part of electronic components for an embodiment of the present disclosure; Figure 5 A circuit layout diagram of part of electronic components for an embodiment of the present disclosure;

[0013] Figure 9 A schematic diagram of one of a plurality of groups of electronic components of an electronic device 100 for another embodiment of the present disclosure.

[0014] Symbol explanation

[0015] 100: electronic device

[0016] 102: circuit substrate

[0017] 104: active region

[0018] 106: inactive region

[0019] 108: control circuit

[0020] 108-1: power supply circuit

[0021] 110, 112, 114, 116, 118, 120, 122, 124: group of electronic components

[0022] 130, 132, 134, 136, 138, 140, 142, 144: control unit

[0023] 200: first signal receiving end

[0024] 202: second signal receiving end

[0025] 204: third signal receiving end

[0026] 210: first transmission circuit

[0027] 220: second transmission circuit

[0028] 212: first trace

[0029] 214: second trace

[0030] 222: third trace

[0031] 224: fourth trace

[0032] 230: first side

[0033] 240: second side

[0034] 400: fourth signal receiving end

[0035] 402: fifth signal receiving end

[0036] 404: Sixth signal receiver

[0037] 406: Control Unit

[0038] 500, 502: Trace cut-off area

[0039] 600: First through hole

[0040] 604: Second through hole

[0041] 1-25: Electronic Components

[0042] X: Second direction

[0043] Y: First direction Detailed Implementation

[0044] Reference will now be made in detail to exemplary embodiments of the invention, examples of which are illustrated in the accompanying drawings. Wherever possible, the same component reference numerals are used in the drawings and description to denote the same or similar parts.

[0045] Throughout this specification and the appended claims, certain terms are used to refer to specific components. Those skilled in the art will understand that electronic device manufacturers may use different names to refer to the same components. This document is not intended to distinguish between components that have the same function but different names. In the following specification and claims, words such as "containing" and "comprising" are open-ended terms and should therefore be interpreted as "containing but not limited to...".

[0046] The directional terms used herein, such as "up," "down," "front," "back," "left," and "right," are for reference only to the accompanying drawings. Therefore, the directional terms used are for illustrative purposes and not for limiting this disclosure. In the accompanying drawings, each figure illustrates general features of the methods, structures, and / or materials used in specific embodiments. However, these figures should not be construed as defining or limiting the scope or nature covered by these embodiments. For example, for clarity, the relative dimensions, thicknesses, and positions of various films, regions, and / or structures may be reduced or enlarged.

[0047] The structure (or layer, component, substrate) described in the present disclosure is located on / above another structure (or layer, component, substrate), which can mean that the two structures are adjacent and directly connected, or can mean that the two structures are adjacent but not directly connected. Non-direct connection means that there is at least one intermediate structure (or intermediate layer, intermediate component, intermediate substrate, intermediate spacing) between the two structures, the lower surface of a structure is adjacent to or directly connected to the upper surface of the intermediate structure, and the upper surface of another structure is adjacent to or directly connected to the lower surface of the intermediate structure. The intermediate structure can be a single-layer or multi-layer solid structure or non-solid structure, and is not limited. In the present disclosure, when a structure is arranged "on" another structure, it can mean that the structure is "directly" on the other structure, or that the structure is "indirectly" on the other structure, i.e. at least one structure is sandwiched between the structure and the other structure.

[0048] The terms "about", "equal to", "equal", or "same", "substantially", or "approximately" are generally interpreted to be within 20% of a given value or range, or within 10%, 5%, 3%, 2%, 1%, or 0.5% of a given value or range.

[0049] The ordinal numbers used in the specification and claims, such as "first", "second", etc., are used to modify components and do not inherently mean and represent any previous ordinal number of the component, nor represent the order of a component relative to another component or the order of a manufacturing method. The use of these ordinal numbers is only used to clearly distinguish a component with a certain name from another component with the same name. The same words can not be used in the claims and the specification, so that the first member in the specification can be the second member in the claims.

[0050] The electrical connection or coupling described in the present disclosure can mean direct connection or indirect connection. In the case of direct connection, the end points of the two circuit components are directly connected or connected to each other by a conductor segment, and in the case of indirect connection, there is a switch, diode, capacitor, inductor, resistor, other suitable component, or combination of the above components between the end points of the two circuit components, but not limited thereto.

[0051] In the present disclosure, the measurement of thickness, length and width can be by optical microscopy, and the measurement of thickness or width can be by cross-sectional image of electron microscopy, but not limited thereto. In addition, there can be an error in any two values or directions used for comparison. In addition, the terms "equal to", "equivalent to", "identical to", "substantially" or "approximately" in the present disclosure generally represent a value or range within 10% of a given value or range. In addition, the phrase "a given range is from a first value to a second value" or "a given range falls within a range from a first value to a second value" means that the given range includes the first value, the second value and other values therebetween. If a first direction is perpendicular to a second direction, the angle between the first direction and the second direction can be between 80 degrees and 100 degrees; if the first direction is parallel to the second direction, the angle between the first direction and the second direction can be between 0 degrees and 10 degrees.

[0052] It should be understood that the following examples can be substituted, reorganized, mixed to complete other examples without departing from the spirit of the present disclosure. The features of each example can be arbitrarily mixed and used as long as they do not conflict with each other or deviate from the spirit of the invention.

[0053] Unless otherwise defined, all terms (including 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 belongs. It will be understood that terms such as those defined in commonly used dictionaries, should be interpreted as having a meaning that is consistent with their meaning in the context of the relevant art and the present disclosure, and should not be interpreted in an idealized or overly formal sense unless expressly so defined in the present disclosure.

[0054] In the present disclosure, the electronic device can include a display device, a backlight device, an antenna device, a sensing device, or a tiled device, but is not limited thereto. The electronic device can be a foldable or flexible electronic device. The display device can be a non-self-emissive display device or a self-emissive display device. The antenna device can be a liquid crystal type antenna device or a non-liquid crystal type antenna device, and the sensing device can be a sensing device that senses capacitance, light, heat energy, or ultrasound, but is not limited thereto. The electronic component can include passive components and active components, such as a capacitor, a resistor, an inductor, a diode, a transistor, etc. The diode can include a light emitting diode or a photodiode. The light emitting diode can include, for example, an organic light emitting diode (OLED), a mini LED, a micro LED, or a quantum dot LED, but is not limited thereto. The tiled device can be, for example, a display tiled device or an antenna tiled device, but is not limited thereto. Note that the electronic device can be any arrangement combination of the aforementioned, but is not limited thereto. Hereinafter, the display device will be described as the electronic device or the tiled device to explain the present disclosure, but the present disclosure is not limited thereto.

[0055] Figure 1 A schematic diagram of an electronic device 100 according to an embodiment of the present disclosure is shown. As shown, the electronic device 100 includes a plurality of electronic component groups and a control circuit 108. The control circuit 108 is electrically connected to the plurality of electronic component groups, such as electronic component group 110, electronic component group 112, electronic component group 114, electronic component group 116, electronic component group 118, electronic component group 120, electronic component group 122, and electronic component group 124, but is not limited thereto. Figure 1 A schematic diagram of one of the plurality of electronic component groups of the electronic device 100 according to an embodiment of the present disclosure is shown. In the present disclosure, electronic component group 118 is taken as an example. The electronic component group 118 can include, for example, a plurality of electronic components, such as electronic components 1-25, but is not limited thereto. In some embodiments, the plurality of electronic component groups can be arranged in sequence along a direction, but is not limited thereto. In some embodiments (not shown), the plurality of electronic component groups can be arranged in an array or staggered. The number or arrangement of the electronic component groups can be changed according to requirements. The electronic components of the present disclosure can include, for example, light emitting components, display components, sensing components, antenna components, or other suitable components. Figure 2 Figure 1 Figure 2

[0056] ​​​In some embodiments, the control circuit 108 may, for example, include a plurality of control units (e.g., control unit 130, control unit 132, control unit 134, control unit 136, control unit 138, control unit 140, control unit 142, and control unit 144) and / or a power supply circuit 108-1, but not limited thereto. In some embodiments, the plurality of control units may, for example, be electrically connected between the power supply circuit 108-1 and the plurality of electronic component groups, but not limited thereto. In some embodiments, different electronic component groups may, for example, receive signals provided by the power supply circuit 108-1 via the electrically connected control units, but not limited thereto. In some embodiments, the number of control units is the same as the number of electronic component groups, for example, and each control unit may, for example, be electrically connected to one electronic component group respectively, but not limited thereto. In detail, the control unit 130, the control unit 132, the control unit 134, the control unit 136, the control unit 138, the control unit 140, the control unit 142, and the control unit 144 may, for example, be electrically connected to the electronic component group 110, the electronic component group 112, the electronic component group 114, the electronic component group 116, the electronic component group 118, the electronic component group 120, the electronic component group 122, and the electronic component group 124 respectively, but not limited thereto. In other embodiments (not shown), the control circuit 108 may, for example, include a plurality of power supply circuits, and different control units may, for example, be electrically connected to different power supply circuits 108-1, but not limited thereto.

[0057] In some embodiments, one of the plurality of electronic component groups, for example, the electronic component group 118, may, for example, receive two power signals from the control unit 138 via the first signal receiving end 200, the second signal receiving end 202, and the third signal receiving end 204, and the two power signals may, for example, include operating voltages (e.g., VDD), common connection voltages (e.g., VSS), or other suitable voltages, but not limited thereto. Similarly, the other electronic component groups 110, 112, 114, 116, 120, 122, and 124 may, for example, receive two power signals from the control units 130, 132, 134, 136, 140, 142, and 144 respectively, but not limited thereto. In some embodiments, the voltage difference between the two power signals may, for example, have a voltage difference. For example, the first power signal may, for example, be a positive voltage, and the second power signal may, for example, be a ground voltage (GND), a negative voltage, or a positive voltage, but not limited thereto. In some embodiments, the electronic component groups may, for example, include a plurality of electronic components respectively. For example, as shown in FIG. 1, the electronic component group 118 may, for example, include a plurality of electronic components 118-1, 118-2, 118-3, 118-4, 118-5, 118-6, 118-7, 118-8, 118-9, and 118-10, but not limited thereto. Figure 2The electronic component group 118 can include a plurality of electronic components 1-25. When the electronic components are light emitting components, for example, the electronic components 1-25 can each include at least one transistor (not shown) and at least one light emitting diode (not shown), but are not limited thereto. In some embodiments, the electronic components 1-25 can each be electrically connected to two power signals, such as a working voltage and a common connection voltage, but are not limited thereto. The electronic components 1-25 can drive the light emitting diodes in the electronic components by a voltage difference between the two power signals, but are not limited thereto. In some embodiments, the electronic components can include micro-LEDs, mini-LEDs, quantum dot light emitting diodes (QLEDs / QDLEDs), organic light emitting diodes (OLEDs), or combinations thereof, but are not limited thereto.

[0058] In some embodiments, the electronic device 100 can further include a circuit substrate 102, which can have an active area 104 and a non-active area 106 adjacent to the active area 104. In some embodiments, the non-active area 106 can surround the active area 104 or be adjacent to at least one side of the active area 104, but is not limited thereto. In some embodiments, a plurality of electronic component groups (such as the electronic component groups 110, 112, 114, 116, 118, 120, 122, 124) can be disposed on the active area 104. In some embodiments, the control circuit 108 (such as the control units 130, 132, 134, 136, 138, 140, 142, 144) can be disposed on the non-active area 106. In other words, the active area 104 can be defined as an area where the electronic component groups are disposed, and the non-active area 106 can be defined as an area where external traces (not shown) are disposed. In some embodiments, the circuit substrate 102 can include an array substrate or a circuit board, but is not limited thereto. The circuit substrate 102 can be applied to a panel or a backlight module, but is not limited thereto, and the panel can include a display panel, a touch panel, a detection panel, an antenna panel, or other suitable panels.

[0059] In Figure 2 In an embodiment in which the electronic component group 118 includes 25 electronic components, the electronic components 1-25 can be arranged in an array, but are not limited thereto. The number of electronic components in an electronic component group or the arrangement of the electronic components can be adjusted as needed. It should be noted that Figure 2 The electronic components 1-25 are shown as being located in different regions, but the present disclosure is not limited thereto, and more electronic components can be selectively inserted between the electronic components 1-25.

[0060] In Figure 1 and Figure 2In some embodiments, the electronic component group 118 has a first side 230 and a second side 240 opposite the first side 230. The first signal receiving end 200, the second signal receiving end 202, and the third signal receiving end 204 can be disposed on the inactive region 106 and adjacent to the first side 230 of the electronic component group 118. In some embodiments, the control unit 138 can include a rigid printed circuit board, a flexible printed circuit (FPC), or other suitable components, but is not limited thereto. In some embodiments, a plurality of control units can be disposed, for example, on the same side or different sides of the electronic component group 118, but is not limited thereto.

[0061] As shown in FIG. 1, the electronic component group 118 includes a plurality of electronic components 21, 23, and 25. In some embodiments, the electronic components 21, 23, and 25 can be disposed, for example, on the same side of the electronic component group 118, but is not limited thereto. Figure 2 In some embodiments, the electronic component 21 of the electronic component group 118 can be electrically connected and adjacent to the first signal receiving end 200, the electronic component 23 can be electrically connected and adjacent to the second signal receiving end 202, and the electronic component 25 can be electrically connected and adjacent to the third signal receiving end 204, but is not limited thereto. When it is mentioned that “a certain electronic component is electrically connected and adjacent to a certain signal receiving end”, it means that the signal received by the certain signal receiving end is preferentially transmitted to the certain electronic component relative to other electronic components. In some embodiments, the second signal receiving end 202 is located, for example, between the first signal receiving end 200 and the third signal receiving end 204, but is not limited thereto. In some embodiments, the electronic component group 118 receives a first power signal from the control unit 138 through the first signal receiving end 200 and / or the third signal receiving end 204, and can receive a second power signal through the second signal receiving end 202, but is not limited thereto. In some embodiments, the first power signal is one of an operating voltage and a common connection voltage, and the second power signal is the other of the operating voltage (VDD) and the common connection voltage (VSS), but is not limited thereto.

[0062] In some embodiments, the circuit substrate 102 can include a first transmission circuit 210 and a second transmission circuit 220 electrically connected to each of the plurality of electronic component groups, as shown in FIG. 2. In some embodiments, the first transmission circuit 210 can be electrically connected to the first signal receiving end 200 and / or the third signal receiving end 204. The second transmission circuit 220 can be electrically connected to the second signal receiving end 202. As shown in FIG. 2, the first transmission circuit 210 and the second transmission circuit 220 are electrically connected to the electronic component group 118. Figure 2 In some embodiments, the circuit substrate 102 can include a first transmission circuit 210 and a second transmission circuit 220 electrically connected to each of the plurality of electronic component groups, as shown in FIG. 2. In some embodiments, the first transmission circuit 210 can be electrically connected to the first signal receiving end 200 and / or the third signal receiving end 204. The second transmission circuit 220 can be electrically connected to the second signal receiving end 202. As shown in FIG. 2, the first transmission circuit 210 and the second transmission circuit 220 are electrically connected to the electronic component group 118. Figure 2As shown, the first transmission circuit 210 can include a plurality of first traces 212 and a plurality of second traces 214 electrically connected to the plurality of first traces 212, the plurality of first traces 212 extending along a first direction Y, for example, and the plurality of second traces 214 extending along a second direction X, for example, and the first direction Y is different from the second direction X, but not limited thereto. In some embodiments, the first direction Y can be substantially perpendicular to the second direction X. In some embodiments, the second transmission circuit 220 can include a plurality of third traces 222 and a plurality of fourth traces 224 electrically connected to the plurality of third traces 222, the plurality of third traces 222 extending along the first direction Y, for example, and the plurality of fourth traces 224 extending along the second direction X, for example, but not limited thereto.

[0063] In some embodiments, a portion of the first traces 212 of the first transmission circuit 210 can be electrically connected to the first signal receiving end 200 and / or the third signal receiving end 204, and this portion of the first traces 212 can be used to transmit power signals received from the first signal receiving end 200 and / or the third signal receiving end 204 to the electrically connected electronic components (e.g., electronic components 1-25), but not limited thereto. In some embodiments, a portion of the third traces 222 of the second transmission circuit 220 can be electrically connected to the second signal receiving end 202, and this portion of the third traces 222 can be used to transmit power signals received from the second signal receiving end 202 to the electrically connected electronic components (e.g., electronic components 1-25).

[0064] Figure 3 For another embodiment of the present disclosure Figure 1 a schematic view of one of the plurality of electronic component groups of the electronic device 100. In Figure 3 In the present disclosure, the electronic component group 118 in the plurality of electronic component groups is exemplified. Figure 3 and Figure 2 The difference between the electronic component group 118 and the electronic component group 116 is that the electronic component 22 of the electronic component group 118 can be electrically connected and adjacent to the first signal receiving end 200, the electronic component 23 can be electrically connected and adjacent to the second signal receiving end 202, and the electronic component 24 can be electrically connected and adjacent to the third signal receiving end 204. Relative to the electronic component group 116, Figure 1 , Figure 3 The first signal receiving end 200 and the third signal receiving end 204 of the electronic component group 118 are more adjacent to the second signal receiving end 202, for example. The distance between the first signal receiving end 200 and the third signal receiving end 204 in the second direction X is reduced, but not limited thereto, and the above-mentioned distance can be defined as the minimum distance between the two in the second direction X. In other embodiments (not shown), the distance between the first signal receiving end 200 and the third signal receiving end 204 in the second direction X is different from the distance between the second signal receiving end 202 and the first signal receiving end 200 in the second direction X, and the above-mentioned distances can be defined as the minimum distance between the two in the second direction X.

[0065] Figure 4 Another embodiment of this disclosure Figure 1 A schematic diagram of one of the multiple electronic component groups of the electronic device 100. Figure 4 In this disclosure, electronic component group 118 is used as an example among multiple electronic component groups. For example... Figure 4 As shown, multiple electronic component groups can receive two types of power signals from a control circuit (e.g., including control unit 138 and / or control unit 406) through N signal receiving terminals. The N signal receiving terminals include the first signal receiving terminal 200, the second signal receiving terminal 202, and the third signal receiving terminal 204, and N is an even number greater than 3. In some embodiments, the circuit board 120 has a first transmission circuit 210 and a second transmission circuit 220, which are electrically connected to one of the multiple electronic component groups (e.g., electronic component group 118). The first transmission circuit 210 can be electrically connected to a portion of the N signal receiving terminals, and the second transmission circuit 220 can be electrically connected to another portion of the N signal receiving terminals. In some embodiments, the electronic component group 118 can receive one type of power signal from the control unit 138 through a portion of the N signal receiving terminals, and receive another type of power signal from the control unit 406 through another portion of the multiple signal receiving terminals, but is not limited thereto. For example, the first signal receiving terminal 200, the third signal receiving terminal 204, and / or the fifth signal receiving terminal 402 may receive a power signal from the control unit 138 of the control circuit, while the second receiving terminal 202, the fourth signal receiving terminal 400, and / or the sixth signal receiving terminal 404 may receive another power signal from the control unit 406 of the control circuit, but are not limited thereto. In some embodiments, a portion of the N signal receiving terminals may be disposed on the first side 230 of the non-active region 106 and adjacent to one of the multiple electronic component groups (e.g., electronic component group 118), and another portion of the N signal receiving terminals may be disposed on the second side 240 of the non-active region 106 and adjacent to one of the multiple electronic component groups (e.g., electronic component group 118), with the second side 240 relative to the first side 230. For example, the first signal receiver 200, the third signal receiver 204, and / or the fifth signal receiver 402 may be disposed, for example, on the active region 106 and adjacent to the first side 230 of the electronic component group 118, and the second signal receiver 202, the fourth signal receiver 400, and / or the sixth signal receiver 404 may be disposed, for example, on the active region 106 and adjacent to the second side 240 of the electronic component group 118, but are not limited thereto. In some embodiments (not shown), the number of signal receivers adjacent to the first side 230 and the second side 240 of the electronic component group 118 may be the same or different.

[0066] See Figure 4In some embodiments, the electronic components 21 of the group of electronic components 118 can be electrically connected to and adjacent to the first signal receiving end 200, the electronic components 23 can be electrically connected to and adjacent to the fifth signal receiving end 402, the electronic components 25 can be electrically connected to and adjacent to the third signal receiving end 204, the electronic components 1 can be electrically connected to and adjacent to the sixth signal receiving end 404, the electronic components 3 can be electrically connected to and adjacent to the second signal receiving end 202, and the electronic components 5 can be electrically connected to and adjacent to the fourth signal receiving end 400, but the present disclosure is not limited thereto. In some embodiments, the first transmission circuit 210 can be electrically connected to the first signal receiving end 200, the fifth signal receiving end 402, and / or the third signal receiving end 204. In some embodiments, the second transmission circuit 220 can be electrically connected to the sixth signal receiving end 404, the second signal receiving end 202, and / or the fourth signal receiving end 400, but the present disclosure is not limited thereto. In some embodiments, the group of electronic components 118 can receive one of the operating voltage (VDD) and the common connection voltage (VSS) from the control unit 138 through the first signal receiving end 200, the fifth signal receiving end 402, and / or the third signal receiving end 204, but the present disclosure is not limited thereto. In some embodiments, the group of electronic components 118 can receive the other of the operating voltage (VDD) and the common connection voltage (VSS) from the control unit 406 through the sixth signal receiving end 404, the second signal receiving end 202, and / or the fourth signal receiving end 400, but the present disclosure is not limited thereto. Although Figure 4 The present disclosure discloses that the first power supply signal (e.g., one of the operating voltage or the common connection voltage) from the control unit 138 is received through the three receiving ends adjacent to the first side 230, and the second power supply signal (e.g., the other of the operating voltage or the common connection voltage) from the control unit 406 is received through the other three receiving ends adjacent to the second side 240, but the present disclosure is not limited thereto. The present disclosure does not limit the number of the signal receiving ends adjacent to different sides of the group of electronic components 118, the type of the power supply signal of each receiving end, or the connection manner of each signal receiving end and the electronic components. In other embodiments (not shown), the number of the signal receiving ends electrically connected by the second transmission circuit 220 and the number of the signal receiving ends electrically connected by the first transmission circuit 210 can be the same or different. In other embodiments (not shown), the receiving ends receiving the same power supply signal can be adjacent to the same side or different sides of the group of electronic components, for example, the receiving ends receiving the same power supply signal can be adjacent to the first side 230 and / or the second side 240 of the group of electronic components 118.

[0067] Figure 5 The present disclosure discloses that the first power supply signal (e.g., one of the operating voltage or the common connection voltage) from the control unit 138 is received through the three receiving ends adjacent to the first side 230, and the second power supply signal (e.g., the other of the operating voltage or the common connection voltage) from the control unit 406 is received through the other three receiving ends adjacent to the second side 240, but the present disclosure is not limited thereto. The present disclosure does not limit the number of the signal receiving ends adjacent to different sides of the group of electronic components 118, the type of the power supply signal of each receiving end, or the connection manner of each signal receiving end and the electronic components. In other embodiments (not shown), the number of the signal receiving ends electrically connected by the second transmission circuit 220 and the number of the signal receiving ends electrically connected by the first transmission circuit 210 can be the same or different. In other embodiments (not shown), the receiving ends receiving the same power supply signal can be adjacent to the same side or different sides of the group of electronic components, for example, the receiving ends receiving the same power supply signal can be adjacent to the first side 230 and / or the second side 240 of the group of electronic components 118. Figure 1 The present disclosure discloses that the first power supply signal (e.g., one of the operating voltage or the common connection voltage) from the control unit 138 is received through the three receiving ends adjacent to the first side 230, and the second power supply signal (e.g., the other of the operating voltage or the common connection voltage) from the control unit 406 is received through the other three receiving ends adjacent to the second side 240, but the present disclosure is not limited thereto. The present disclosure does not limit the number of the signal receiving ends adjacent to different sides of the group of electronic components 118, the type of the power supply signal of each receiving end, or the connection manner of each signal receiving end and the electronic components. In other embodiments (not shown), the number of the signal receiving ends electrically connected by the second transmission circuit 220 and the number of the signal receiving ends electrically connected by the first transmission circuit 210 can be the same or different. In other embodiments (not shown), the receiving ends receiving the same power supply signal can be adjacent to the same side or different sides of the group of electronic components, for example, the receiving ends receiving the same power supply signal can be adjacent to the first side 230 and / or the second side 240 of the group of electronic components 118. Figure 6 to Figure 8 The present disclosure discloses that the first power supply signal (e.g., one of the operating voltage or the common connection voltage) from the control unit 138 is received through the three receiving ends adjacent to the first side 230, and the second power supply signal (e.g., the other of the operating voltage or the common connection voltage) from the control unit 406 is received through the other three receiving ends adjacent to the second side 240, but the present disclosure is not limited thereto. The present disclosure does not limit the number of the signal receiving ends adjacent to different sides of the group of electronic components 118, the type of the power supply signal of each receiving end, or the connection manner of each signal receiving end and the electronic components. In other embodiments (not shown), the number of the signal receiving ends electrically connected by the second transmission circuit 220 and the number of the signal receiving ends electrically connected by the first transmission circuit 210 can be the same or different. In other embodiments (not shown), the receiving ends receiving the same power supply signal can be adjacent to the same side or different sides of the group of electronic components, for example, the receiving ends receiving the same power supply signal can be adjacent to the first side 230 and / or the second side 240 of the group of electronic components 118. Figure 5 The present disclosure discloses that the first power supply signal (e.g., one of the operating voltage or the common connection voltage) from the control unit 138 is received through the three receiving ends adjacent to the first side 230, and the second power supply signal (e.g., the other of the operating voltage or the common connection voltage) from the control unit 406 is received through the other three receiving ends adjacent to the second side 240, but the present disclosure is not limited thereto. The present disclosure does not limit the number of the signal receiving ends adjacent to different sides of the group of electronic components 118, the type of the power supply signal of each receiving end, or the connection manner of each signal receiving end and the electronic components. In other embodiments (not shown), the number of the signal receiving ends electrically connected by the second transmission circuit 220 and the number of the signal receiving ends electrically connected by the first transmission circuit 210 can be the same or different. In other embodiments (not shown), the receiving ends receiving the same power supply signal can be adjacent to the same side or different sides of the group of electronic components, for example, the receiving ends receiving the same power supply signal can be adjacent to the first side 230 and / or the second side 240 of the group of electronic components 118.

[0068] In Figure 5 , the present disclosure is exemplified by the electronic component group 118 in the plurality of electronic component groups. Figure 5 With Figure 2 the difference is that, Figure 5 The first transmission circuit 210 in Figure 2 may have a wire cut-off region 500 (e.g. a cut-off region of the second wire 214) for example, or the second transmission circuit 220 may have a wire cut-off region 502 (e.g. a cut-off region of the fourth wire 224) for example, but not limited thereto. Through the above design, part of the electronic components included in the electronic component group 118 can not correspond to the plurality of second wires 214 or the plurality of fourth wires 224. In detail, please refer to Figure 2 , the electronic components 1-25 may, for example, not correspond to any wire cut-off region 500. In other words, the electronic components 1-25 may, for example, correspond to the first wire 212 and the second wire 214 respectively, so that the electronic components 1-25 can receive a power signal from the control unit 138 through two paths of the first wire 212 and the second wire 214, which may, for example, be the power signal received through the first signal receiving end 200 and the third signal receiving end 204. In addition, the electronic components 1-25 may, for example, not correspond to any wire cut-off region 502. In other words, the electronic components 1-25 may, for example, correspond to the third wire 222 and the fourth wire 224 respectively, so that the electronic components 1-25 can receive another power signal from the control unit 138 through two paths of the third wire 222 and the fourth wire 224, which may, for example, be the power signal received through the second signal receiving end 202.

[0069] In Figure 5 , the first transmission circuit 210 may have a wire cut-off region 500, and the electronic component 23 and / or the electronic component 18 corresponding to the wire cut-off region 500 may, for example, not correspond to any second wire 214, which can be referred to in detail in the subsequent Figure 8 description. In addition, the second transmission circuit 220 may have a wire cut-off region 502, and the electronic component 25 and / or the electronic component 20 corresponding to the wire cut-off region 502 may, for example, not correspond to any fourth wire 224, which can be referred to in detail in the subsequent Figure 7The disclosure that "electronic component 23 does not correspond to any second trace" means that the electronic component 23 does not receive the power signal from the control unit via the second trace 214, in other words, the electronic component 23 receives the power signal from the control unit via the first trace 212, and so on. The disclosure that "electronic component 25 does not correspond to any fourth trace" means that the electronic component 25 does not receive the power signal from the control unit via the fourth trace 224, in other words, the electronic component 25 receives the power signal from the control unit via the third trace 222, and so on. Through the design of the trace cutting area 500 and / or the trace cutting area 502, the current uniformity of the electronic components 1-25 can be improved.

[0070] It should be noted that since the first trace 212 and the second trace 214 of the first transmission circuit 210 can transmit the power signal from the first signal receiving end 200 and / or the third signal receiving end 204 to the electronic components 1-25, in order for the electronic components 1-25 to all receive the power signal, the electronic component corresponding to the trace cutting area 500 cannot be the electronic component corresponding to the first trace 212 connected to the first signal receiving end 200 and / or the third signal receiving end 204. In detail, Figure 5 For example, the electronic components corresponding to the first trace 212 connected to the first signal receiving end 200 are electronic components 21, 16, 11, 6 and 1, and the electronic components corresponding to the first trace 212 connected to the third signal receiving end 204 are electronic components 25, 20, 15, 10 and 5, so the above-mentioned electronic components are not the electronic components corresponding to the trace cutting area 500 (such as electronic component 23 and / or electronic component 18), and through the above-mentioned design, the electronic components 1-25 can all receive the power signal, which helps the uniformity of current transmission to the electronic components.

[0071] Similarly, since the third trace 222 and the fourth trace 224 of the second transmission circuit 220 transmit the power signal from the second signal receiving end 202 to the electronic components 1-25, the electronic component corresponding to the trace cutting area 502 cannot be the electronic component corresponding to the third trace 222 connected to the second signal receiving end 202. In detail, the electronic components corresponding to the third trace 222 connected to the second signal receiving end 202 are electronic components 23, 18, 13, 8 and 3, so the above-mentioned electronic components are not the electronic components corresponding to the trace cutting area 502 (such as electronic component 25 and / or electronic component 20), and through the above-mentioned design, the electronic components 1-25 can all receive the power signal, which helps the uniformity of current transmission to the electronic components.

[0072] As Figure 6As shown, for example, the circuit layout of electronic components 2, 7 is illustrated. Electronic components 2, 7 may, for example, correspond to first traces 212 and second traces 214 in first transmission circuit 210, respectively, and electronic components 2, 7 may, for example, correspond to third traces 222 and fourth traces 224 in second transmission circuit 220, respectively. As shown, Figure 6 As shown, first traces 212 in first transmission circuit 210 may, for example, be electrically connected to second traces 214 through at least one first via 600. On the other hand, third traces 222 in second transmission circuit 220 may, for example, be electrically connected to fourth traces 224 through at least one second via 604. In some embodiments, first traces 212 and second traces 214 in first transmission circuit 210 may, for example, be disposed in different layers, and third traces 222 and fourth traces 224 in second transmission circuit 220 may, for example, be disposed in different layers. In some embodiments, electronic components (e.g., electronic components 2, 7) not corresponding to trace cut-off region 500 may, for example, overlap with corresponding first traces 212 and / or second traces 214, but are not limited thereto. In some embodiments, electronic components (e.g., electronic components 2, 7) not corresponding to trace cut-off region 502 may, for example, overlap with corresponding third traces 222 and / or fourth traces 224, but are not limited thereto. In some embodiments, first traces 212 and third traces 222 may, for example, be located on different sides of corresponding electronic components. In some embodiments, second traces 214 and fourth traces 224 may, for example, be located on different sides of corresponding electronic components.

[0073] Figure 7 For example, the circuit layout of electronic components 25, 20, and 15 is illustrated, where electronic components 25 and 20, for example, are electronic components corresponding to trace cut-off region 502. As shown, Figure 7 As shown, electronic components 25 and 20 corresponding to trace cut-off region 502 may, for example, not have a connection or corresponding fourth traces 224, so electronic components 25 and 20 may, for example, not receive a power signal from control unit 138 through fourth traces 224, but only through third traces 222, but are not limited thereto.

[0074] As shown, Figure 8 For example, the circuit layout of electronic components 23, 18, and 13 is illustrated, where electronic components 23 and 18, for example, are electronic components corresponding to trace cut-off region 500. As shown, Figure 8 As shown, electronic components 23 and 18 corresponding to trace cut-off region 500 may, for example, not have a connection or corresponding second traces 214, so electronic components 23 and 18 may, for example, not receive a power signal from control unit 138 through second traces 214, but only through first traces 212, but are not limited thereto.

[0075] Figure 9This is a schematic diagram of one of a group of electronic components of an electronic device according to another embodiment of the present disclosure. Figure 9 Taking electronic component group 118 as an example, among multiple electronic component groups, electronic component group 118 may include electronic components 1 to 25. In some embodiments, electronic component group 118 may receive a power signal from control unit 138 through a first signal receiving terminal 200 and / or a third signal receiving terminal 204 adjacent to the first side 230. Electronic component group 118 may receive another power signal from control unit 406 through a second signal receiving terminal 202 adjacent to the second side 240, the first side 230 being relative to the second side 240.

[0076] exist Figure 9 In the electronic component group 118, electronic component 23 is electrically connected to and adjacent to the first signal receiving terminal 200, electronic component 3 is electrically connected to and adjacent to the second signal receiving terminal 202, and electronic component 22 is electrically connected to and adjacent to the third signal receiving terminal 204, but is not limited thereto. The electronic components electrically connected to and adjacent to the first signal receiving terminal 200, the second signal receiving terminal 202, and / or the third signal receiving terminal 204 can be changed as needed. In some embodiments, the circuit board 102 may include a first transmission circuit 210 and a second transmission circuit 220, the first transmission circuit 210 being electrically connected to the first signal receiving terminal 200 and / or the third signal receiving terminal 204, and the second transmission circuit 220 being electrically connected to the second signal receiving terminal 202. In some embodiments, Figure 9 The first transmission circuit 210 may have a trace cut-off region 500, and the second transmission circuit 220 may have a trace cut-off region 502, but is not limited thereto. In some embodiments, the first transmission circuit 210 may have a plurality of trace cut-off regions 500, or the second transmission circuit 220 may have a plurality of trace cut-off regions 502. In some embodiments, these plurality of trace cut-off regions 500 may, for example, correspond to electronic components located in different regions, and these electronic components in different regions may be selectively separated from each other, but is not limited thereto. For example (e.g.) Figure 9 One trace cut-off region 500 may correspond, for example, to electronic components 25 and 20, and another trace cut-off region 500 may correspond, for example, to electronic components 21 and 16, but is not limited thereto. In some embodiments, these plurality of trace cut-off regions 502 may correspond, for example, to electronic components located in different regions. For example (e.g.) Figure 9), one of the trace cut-off regions 502 can correspond to the electronic components 5 and 10, and the other trace cut-off region 502 can correspond to the electronic components 1 and 6, but not limited thereto. In other embodiments (not shown), the number of the trace cut-off regions 500 and the trace cut-off regions 502 can be the same or different. In other embodiments (not shown), the number of the electronic components to which the plurality of trace cut-off regions 500 respectively correspond can be the same or different. In other embodiments (not shown), the number of the electronic components to which the plurality of trace cut-off regions 502 respectively correspond can be the same or different. In some embodiments, the electronic components electrically connected to and adjacent to the first signal receiving end 200 can be, for example, the electronic components in the same column, such as the electronic components 23, 18, 13, 8 and 3, which are arranged along the first direction Y. In other embodiments (not shown), the electronic components electrically connected to and adjacent to the first signal receiving end 200 can be, for example, the electronic components in different columns from the electronic components electrically connected to and adjacent to the second signal receiving end 202. In some embodiments, the electronic components electrically connected to and adjacent to the third signal receiving end 204 can be, for example, the electronic components in different columns from the electronic components electrically connected to and adjacent to the second signal receiving end 202.

[0077] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than limit them; although the present application has been described in detail with reference to the above embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the above embodiments, or make equivalent replacements for some or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. An electronic device, characterized in that, include: Multiple electronic component groups; as well as A control circuit electrically connects the multiple electronic component groups; A circuit board has an active region and an active region adjacent to the active region; One of the multiple electronic components receives two power signals from the control circuit through a first signal receiver, a second signal receiver, and a third signal receiver. The circuit board has a first transmission circuit and a second transmission circuit, which are electrically connected to one of the plurality of electronic component groups respectively. The first transmission circuit has multiple first traces and multiple second traces electrically connected to the multiple first traces; The second transmission circuit has multiple third traces and multiple fourth traces electrically connected to the multiple third traces; Among them, one of the multiple electronic component groups includes multiple electronic components, and some of the multiple electronic components do not correspond to the multiple second traces or the multiple fourth traces.

2. The electronic device as claimed in claim 1, characterized in that, The plurality of electronic component groups are disposed on the active area, and the first signal receiver, the second signal receiver, and the third signal receiver are disposed on the non-active area and adjacent to one side of one of the plurality of electronic component groups.

3. The electronic device as claimed in claim 2, characterized in that, The second signal receiving end is located between the first signal receiving end and the third signal receiving end. The first signal receiving end and the third signal receiving end receive a first power signal, and the second signal receiving end receives a second power signal.

4. The electronic device as claimed in claim 3, characterized in that, The first power signal is one of the operating voltage and the common connection voltage, and the second power signal is the other of the operating voltage and the common connection voltage.

5. The electronic device as claimed in claim 3, characterized in that, The first transmission circuit is electrically connected to the first signal receiving end and the third signal receiving end, and the second transmission circuit is electrically connected to the second signal receiving end.

6. The electronic device as claimed in claim 5, characterized in that, The plurality of first traces are electrically connected to the plurality of second traces through a first via, and the plurality of third traces are electrically connected to the plurality of fourth traces through a second via.

7. The electronic device as claimed in claim 1, characterized in that, The plurality of electronic component groups are disposed on the active region, the second signal receiving end is disposed on the non-active region and adjacent to a first side of one of the plurality of electronic component groups, the first signal receiving end and the third signal receiving end are disposed on the non-active region and adjacent to a second side of one of the plurality of electronic component groups, and the second side is relative to the first side.

8. The electronic device as claimed in claim 7, characterized in that, The first transmission circuit is electrically connected to the first signal receiving end and the third signal receiving end. The second transmission circuit is electrically connected to the second signal receiving end.

9. The electronic device as claimed in claim 1, characterized in that, in, The multiple electronic component groups are located on this active area. The group of multiple electronic components includes N signal receivers, which include the first signal receiver, the second signal receiver, and the third signal receiver, and N is an even number greater than 3. Some of the N signal receiving terminals are disposed on the non-active area and adjacent to a first side of one of the plurality of electronic component groups, while other N signal receiving terminals are disposed on the non-active area and adjacent to a second side of one of the plurality of electronic component groups, with the second side being relative to the first side.

10. The electronic device as claimed in claim 9, characterized in that, The first transmission circuit is electrically connected to the N signal receiving terminals of this section. The second transmission circuit is electrically connected to the N signal receiving terminals of the other part.

Citation Information

Patent Citations

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