Material acceptance system based on intelligent all-in-one machine
Through the intelligent all-in-one system, the problem of manpower waste and fraud in building material management is solved, automated and accurate material acceptance and management is achieved, and efficiency and data accuracy are improved.
Patent Information
- Application Number
- CN202422803882.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-11-18
AI Technical Summary
The management of building materials in and out of the site involves waste of manpower, low efficiency, easy record loss and fraud, resulting in high operating costs and imprecise management.
It adopts an intelligent all-in-one machine system, integrating floor scales, gates, license plate recognition cameras, infrared equipment, code scanners, etc., to realize automatic material acceptance, judge vehicle position through ground sensing coils and infrared equipment, obtain material information, and combines LED display screens and monitoring cameras for management and monitoring.
It realizes automated management of materials entering and exiting the construction site, reduces labor costs, avoids fraud, improves work efficiency and ensures data accuracy.
Smart Images

Figure CN223295512U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of floor scale weighing, and in particular to a material acceptance system based on an intelligent all-in-one machine. Background Art
[0002] The construction industry is a pillar industry in my country and occupies a relatively important position. However, while the construction industry is booming, some management issues remain, especially in the management of construction materials entering and leaving the site. There are serious problems, such as the high requirements for material personnel, cumbersome entry and exit procedures, unclear material traceability, and some personnel exploiting management loopholes for personal gain and fraud.
[0003] Most of the existing weighing devices use manual recording of weighed vehicles, which not only wastes a lot of manpower, but also has low work efficiency, easy loss of weighing records, high operating costs, and is prone to fraud during manual weighing, resulting in many vehicles being operated in violation of regulations. Utility Model Content
[0004] The purpose of this utility model is to provide a material acceptance system based on an intelligent all-in-one machine, which can automatically and intelligently manage the entry and exit statistics of materials on the construction site, reduce labor costs and avoid the occurrence of fraud, targeting construction site scenarios.
[0005] One aspect of the present invention provides a material acceptance system based on an intelligent all-in-one machine, the system comprising:
[0006] A floor scale connected to the material acceptance terminal, a first barrier gate, a second barrier gate, a first license plate recognition camera, a second license plate recognition camera, a first infrared device, a second infrared device, a first barcode scanner, a second barcode scanner, a first ground sensor coil connected to the first barrier gate, and a second ground sensor coil connected to the second barrier gate;
[0007] A first ground sensing coil, a first gate, a first license plate recognition camera, a first infrared device, and a first code scanner are sequentially arranged in a direction from near to far from the first end of the floor scale;
[0008] A second ground sensing coil, a second barrier, a second license plate recognition camera, a second infrared device, and a second code scanner are arranged in sequence from near to far from the second end of the floor scale.
[0009] Optionally, the system further comprises: an LED display screen, an audio system and a surveillance camera connected to the material acceptance terminal;
[0010] The LED display screen, audio system and surveillance camera are arranged in the middle of the floor scale and between the first barcode scanner and the second barcode scanner.
[0011] Optionally, the system further comprises: support columns arranged in the middle and outer sides of the scale;
[0012] Wherein, the LED display screen, audio system and surveillance camera are installed on the supporting column.
[0013] Optionally, the system further comprises: a first anti-smashing radar and a second anti-smashing radar;
[0014] Among them, the first anti-smashing radar is installed in the first gate, and the second anti-smashing radar is installed in the second gate.
[0015] Optionally, the system further includes: an expansion component connected to the material acceptance terminal;
[0016] The expansion components include at least one of the following: a card reader, a scale, a microphone, a printer, a high-definition scanner, a display, a keyboard and a mouse for controlling the material acceptance terminal, a scale result display, and a mouse for controlling the scale result display.
[0017] Optionally, the first ground sensing coil is connected to the 5.08 terminal interface of the first gate through a 2-pin wire, and the second ground sensing coil is connected to the 5.08 terminal interface of the second gate through a 2-pin wire.
[0018] Optionally, the audio system is connected to a Phoenix terminal interface of the material acceptance terminal;
[0019] The first gate, the second gate, the first license plate recognition camera, the second license plate recognition camera, the first infrared device, the second infrared device, the first code scanner, the second code scanner and the monitoring camera are respectively connected to the RJ45 interfaces of the material acceptance terminal.
[0020] Optionally, the weighbridge result display is connected to an HDMI interface of the material acceptance terminal to transmit data signals;
[0021] The weighbridge result display is connected to the power supply interface of the material acceptance terminal to provide power.
[0022] Optionally, the card reader and the scale are respectively connected to two DB9 interfaces of the material acceptance terminal.
[0023] Optionally, the printer, the high-speed scanner, the mouse for controlling the weighing scale result display, the mouse for controlling the material acceptance terminal, and the keyboard for controlling the material acceptance terminal are respectively connected to the USB interfaces of the material acceptance terminal.
[0024] This intelligent all-in-one material acceptance system can monitor and manage vehicles passing through both sides of the scale, enabling comprehensive monitoring of vehicles on the construction site. Infrared devices located on both sides of the scale automatically determine whether a vehicle is centered on the scale, enhancing the weighing process. Furthermore, a barcode scanner captures material information entered by vehicle drivers, facilitating information statistics and management at the material acceptance terminal. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Various other advantages and benefits will become apparent to those skilled in the art upon reading the detailed description of the preferred embodiment below. The accompanying drawings are for illustration purposes only and are not to be considered as limiting the present invention. The same reference symbols are used throughout the accompanying drawings to represent the same components. In the accompanying drawings:
[0026] Figure 1 A structural diagram of a material acceptance system based on an intelligent all-in-one machine provided in the first embodiment of the present utility model;
[0027] Figure 2 Another structural diagram of the material acceptance system based on the intelligent all-in-one machine provided in the first embodiment of the present utility model;
[0028] Figure 3 This is another structural diagram of the material acceptance system based on the intelligent all-in-one machine provided in the first embodiment of the present utility model;
[0029] Figure 4 A schematic diagram showing the connection relationship between various devices and a material acceptance terminal provided in the first embodiment of the present invention;
[0030] Figure 5 This is a flow chart of the material acceptance system based on the intelligent all-in-one machine provided in the first embodiment of the present invention. DETAILED DESCRIPTION
[0031] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0032] It should be noted that, in this document, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, article, or device comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a..." does not exclude the presence of other identical elements in the process, article, or device comprising the element.
[0033] Example 1
[0034] This utility model provides a material acceptance system based on an intelligent all-in-one machine, such as Figure 1 As shown, the material acceptance system specifically includes the following components: a weighing scale 02 connected to the material acceptance terminal 01, a first gate 03, a second gate 04, a first license plate recognition camera 05, a second license plate recognition camera 06, a first infrared device 07, a second infrared device 08, a first barcode scanner 09, a second barcode scanner 10, a first ground sensing coil 11 connected to the first gate 03, and a second ground sensing coil 12 connected to the second gate 04;
[0035] In the direction from the first end of the weighing scale 02 to the farthest direction, a first ground sensing coil 11, a first gate 03, a first license plate recognition camera 05, a first infrared device 07, and a first code scanner 09 are sequentially arranged;
[0036] In the direction from near to far from the second end of the floor scale 02, a second ground sensing coil 12, a second gate 04, a second license plate recognition camera 06, a second infrared device 08, and a second code scanner 10 are arranged in sequence.
[0037] When a vehicle enters from the first end of the weighbridge 02, the first gate 03 is controlled to open by the first ground sensor coil 11, the vehicle's license plate information is obtained by the first license plate recognition camera 05, the first infrared device 07 and the second infrared device 08 are used to determine whether the vehicle is located in the center of the weighbridge 02, the material information entered by the vehicle driver is obtained by the first barcode scanner 09, and the second gate 04 is controlled to open by the material acceptance terminal 01 to allow the vehicle to exit from the second end of the weighbridge 02;
[0038] When the vehicle enters from the second end of the weighing scale 02, the second gate 04 is controlled to open by the second ground sensing coil 12, the vehicle's license plate information is obtained by the second license plate recognition camera 06, the first infrared device 07 and the second infrared device 08 are used to determine whether the vehicle is located in the center of the weighing scale 02, the material information entered by the vehicle driver is obtained by the second barcode scanner 10, and the first gate 03 is controlled to open by the material acceptance terminal 01 to allow the vehicle to exit from the first end of the weighing scale 02.
[0039] In this embodiment, the material acceptance terminal 01 is an intelligent all-in-one machine. When a vehicle enters from the first end of the weighing scale 02, the first ground sensor coil 11 is used to send an opening instruction to the first gate 03 when it detects that a vehicle has passed; the first gate 03 is used to send a corresponding signal to the material acceptance terminal 01 after opening or closing; the first license plate recognition camera 05 is used to obtain the vehicle's license plate information when it receives a work instruction sent by the material acceptance terminal 01, and send the license plate information to the material acceptance terminal 01; the first infrared device 07 is used to send a trigger signal to the material acceptance terminal 01 when it detects that a vehicle has passed; the first barcode scanner 09 is used to obtain The material information entered by the vehicle driver is obtained and sent to the material acceptance terminal 01; the material acceptance terminal 01 is used to send a start instruction to the weighing scale 02 when it detects the trigger signal sent by the first infrared device 07 and does not detect the trigger signal sent by the second infrared device 08; the weighing scale 02 is used to weigh when it receives the start instruction sent by the material acceptance terminal 01, and send the weighing result to the material acceptance terminal 01; the material acceptance terminal 01 is also used to send a closing instruction to the second gate 04 after the weighing is completed; the second gate 04 is used to send a corresponding signal to the material acceptance terminal 01 after opening or closing.
[0040] In addition, when a vehicle enters from the second end of the weighing scale 02, the second ground sensing coil 12 is used to send an opening instruction to the second gate 04 when it detects that a vehicle has passed; the second gate 04 is used to send a corresponding signal to the material acceptance terminal 01 after opening or closing; the second license plate recognition camera 06 is used to obtain the vehicle's license plate information when it receives a work instruction sent by the material acceptance terminal 01, and send the license plate information to the material acceptance terminal 01; the second infrared device 08 is used to send a trigger signal to the material acceptance terminal 01 when it detects that a vehicle has passed; the second barcode scanner 10 is used to obtain the material information entered by the vehicle driver. The material information is received by the material acceptance terminal 01, and the material information is sent to the material acceptance terminal 01; the material acceptance terminal 01 is used to send a start instruction to the weighing scale 02 when the trigger signal sent by the first infrared device 07 is not detected and the trigger signal sent by the second infrared device 08 is detected; the weighing scale 02 is used to weigh when the start instruction sent by the material acceptance terminal 01 is received, and the weighing result is sent to the material acceptance terminal 01; the material acceptance terminal 01 is also used to send a closing instruction to the first gate 03 after the weighing is completed; the first gate 03 is used to send a corresponding signal to the material acceptance terminal 01 after opening or closing.
[0041] Specifically, the first ground sensing coil 11 and the second ground sensing coil 12 are arranged on the upper surface of the scale 02; the first gate 03, the first license plate recognition camera 05, the second code scanner 10, the second license plate recognition camera 06 and the second gate 04 are arranged on the right side of the scale 02 in the direction of the vehicle entering from the first end of the scale 02; the first code scanner 09 is arranged on the left side of the scale 02 in the direction of the vehicle entering from the first end of the scale 02; the first infrared device 07 and the second infrared device 08 are respectively arranged on both sides of the scale 02.
[0042] Further, such as Figure 2 As shown, the system further includes: an LED display screen 13, an audio system 14 and a monitoring camera 15 connected to the material acceptance terminal 01;
[0043] Among them, the LED display screen 13, the audio system 14 and the surveillance camera 15 are arranged in the middle of the floor scale 02 and between the first barcode scanner 09 and the second barcode scanner 10.
[0044] In this embodiment, the LED display screen 13 is used to receive and display the weighing results sent by the material acceptance terminal 01; the audio 14 is used to receive voice commands sent by the material acceptance terminal 01; and the monitoring camera 15 is used to record the vehicle and send the recording results to the material acceptance terminal 01.
[0045] Preferably, the system further comprises: a support column provided in the middle and outer sides of the weighbridge 02;
[0046] The LED display screen 13, the speakers 14 and the surveillance camera 15 are installed on the support column.
[0047] Furthermore, the system further comprises: a first anti-smashing radar and a second anti-smashing radar;
[0048] Among them, the first anti-smashing radar is installed in the first gate 03, and the second anti-smashing radar is installed in the second gate 04.
[0049] In this embodiment, when a vehicle enters from the first end of the weighbridge 02, the first anti-smashing radar is used to send a closing instruction to the first gate 03 when it detects that the vehicle passes through the first gate 03;
[0050] In addition, when a vehicle enters from the second end of the weighing scale 02, the second anti-smashing radar is used to send a closing instruction to the second gate 04 when it detects that the vehicle passes through the second gate 04.
[0051] Further, such as Figure 3As shown, the system also includes: an expansion component connected to the material acceptance terminal 01; the expansion component includes at least one of the following: a card reader 16, a scale 17, a microphone 18, a printer 19, a high-definition camera 20, a display 21, a keyboard 22 and a mouse 23 for controlling the material acceptance terminal 01, a weighing scale result display 24, and a mouse 25 for controlling the weighing scale result display 24.
[0052] In this embodiment, the material acceptance terminal 01 and the expansion components are located indoors, while the other devices are located outdoors. Users can use the material acceptance terminal 01 and the expansion components to manage and make decisions regarding the incoming and outgoing materials on the construction site, as well as perform data statistics, data storage, and data transmission. The outdoor devices can collect, analyze, and control data on the construction site environment, manufacturers, vehicles, materials, personnel, and weighing activities.
[0053] In this embodiment, the material acceptance terminal adopts a hardware-software integration and hardware integration approach, which has the characteristics of small size and easy installation and transportation. Combined with external intelligent expansion components, an intelligent material acceptance system based on an intelligent all-in-one machine is formed.
[0054] Further, such as Figure 4 As shown in the figure, the connection relationship between the various components is as follows:
[0055] 1.1. Connect the first ground sensor coil 11 to the first barrier gate 03. Connect the first ground sensor coil 11 to the 5.08-inch terminal on the first barrier gate 03 via a two-pin wire, with the positive terminal connected to the positive terminal and the negative terminal connected to the negative terminal. When a vehicle passes by the first ground sensor coil 11, it generates a current, which is detected by the first barrier gate 03.
[0056] 1.2. Connect the second ground sensor coil 12 to the second barrier gate 04. Connect the second ground sensor coil 12 to the 5.08-inch terminal on the second barrier gate 04 via a two-pin wire, with the positive terminal connected to the positive terminal and the negative terminal connected to the negative terminal. When a vehicle passes by the second ground sensor coil 12, it generates a current, which is detected by the second barrier gate 04.
[0057] 2.1. The HDMI interface of the material acceptance terminal 01 is connected to the weighbridge result display 24 via a standard video cable, and the material acceptance terminal 01 provides a data signal to the weighbridge result display 24.
[0058] 2.2. Connect the scale result display 24 to the power supply interface of the material acceptance terminal 01 through a connecting cable with 5.08mm female power terminals at both ends, and the material acceptance terminal 01 provides 12V3A power to the scale result display 24.
[0059] 3.1. Connect the network cables using RJ45 connectors on both ends.
[0060] 4.1. Connect the material acceptance terminal 01 to the external speaker 14 through a 5.08mm Phoenix terminal custom line sequence audio cable; the line sequence is positive and negative.
[0061] 5.1. Connect the material acceptance terminal 01 to the external LED display screen 13 through a 2-core 5.08mm Phoenix terminal custom wire sequence data cable, and control the display content of the LED display screen 13; where the wire sequence is D+, D-.
[0062] 6.1. Use the RJ45 network cable customization function to transmit data. The line sequence is output signal 1+, output signal 1-, output signal 2+, output signal 3+, output signal 2-, output signal 3-, input signal 5+, input signal 5-, so that the material acceptance terminal 01 is connected to the first gate 03.
[0063] 6.2. Use the RJ45 network cable customization function to transmit data. The line sequence is output signal 1+, output signal 1-, output signal 2+, output signal 3+, output signal 2-, output signal 3-, input signal 5+, input signal 5-, so that the material acceptance terminal 01 is connected to the second gate 04.
[0064] 7.1. Use an RJ45 network cable for data transmission to connect the material acceptance terminal 01 to the first license plate recognition camera 05.
[0065] 7.2. Use an RJ45 network cable for data transmission to connect the material acceptance terminal 01 to the surveillance camera 15.
[0066] 7.3. Use an RJ45 network cable for data transmission to connect the material acceptance terminal 01 to the second license plate recognition camera 06.
[0067] 8.1. Use the RJ45 network cable customization function for data transmission. The line sequence is input signal 1+, input signal 1-, input signal 2+, input signal 2-, 12V+, 12V+, GND, GND. Each of these two interfaces is defined as 2-way IO input signal and 2-way 12V power output. Connect the material acceptance terminal 01 to the first infrared device 07.
[0068] 8.2. Use the RJ45 crystal head network cable custom function for data transmission. The line sequence is input signal 1+, input signal 1-, input signal 2+, input signal 2-, 12V+, 12V+, GND, GND. Each of these two interfaces is defined as 2-way IO input signal and 2-way 12V power supply output. Connect the material acceptance terminal 01 with the second infrared device 08.
[0069] 9.1. Use the RJ45 network cable customization function for data transmission. The line sequence is defined as 485A, 485B, 485A, 485B, 12V+, GND, 12V+, GND. Each of these two interfaces is defined as two RS485 signal outputs and two 12V power supply outputs. Connect the material acceptance terminal 01 to the first barcode scanner 09.
[0070] 9.2. Use the RJ45 network cable customization function for data transmission. The line sequence is defined as 485A, 485B, 485A, 485B, 12V+, GND, 12V+, GND. Each of these two interfaces is defined as two RS485 signal outputs and two 12V power supply outputs. Connect the material acceptance terminal 01 to the second barcode scanner 10.
[0071] 10.1. Use the DB9 custom interface for data transmission. The line sequence is defined as 5V+, 5V+, RXD, RTS, TXD, CTS, GND, GND, and floating. This interface provides 5V power supply and uses RS232 for communication. Connect the material acceptance terminal 01 to the card reader 16.
[0072] 10.2. Use the DB9 custom interface for data transmission. The line sequence defines RXD, RTS, TXD, CTS, GND, and other pins are left floating. This interface is connected to the standard RS232 physical layer and uses the RS232 protocol for communication. Connect the material acceptance terminal 01 to the scale 17.
[0073] 11.1. Use an RJ45 network cable for data transmission to connect the material acceptance terminal 01 to the Internet.
[0074] 12.1. Connect the material acceptance terminal 01 to the display 21 used to control the material acceptance terminal 01 via a VGA standard video cable, and the material acceptance terminal 01 provides a data signal to the display 21.
[0075] 12.2. Use a standard 220V power cord to connect the AC 220V power strip to the display 21 to power the display 21.
[0076] 13.1. The material acceptance terminal 01 is connected to a mouse 25 for controlling a weighbridge result display 24 via a USB interface.
[0077] 13.2. Use a grounding wire to connect the material acceptance terminal 01 to the cabinet casing for grounding.
[0078] 13.3. Use the SMA female antenna connector to connect the material acceptance terminal 01 to the antenna.
[0079] 13.4. The material acceptance terminal 01 is connected to the high-speed scanner 20 via a USB interface.
[0080] 13.5. The material acceptance terminal 01 is connected to the printer 19 via a USB interface.
[0081] 13.6. The material acceptance terminal 01 is connected to a mouse 23 for controlling the material acceptance terminal 01 via a USB interface.
[0082] 13.7. The material acceptance terminal 01 is connected to a keyboard 22 for controlling the material acceptance terminal 01 via a USB interface.
[0083] 13.8. Material acceptance terminal 01 is connected to microphone 18 via the external microphone interface.
[0084] 14.1. Use a standard 220V power cord to connect the AC 220V terminal block to the material acceptance terminal 01 to power the material acceptance terminal 01.
[0085] 14.2. Connect the AC220V terminal block to the mains.
[0086] The process of using the material acceptance system based on the intelligent all-in-one machine provided by this embodiment is as follows: Figure 5 As shown, when a vehicle enters, the ground sensor coil generates a current. This current is detected by the barrier gate, which opens to allow the vehicle in. Meanwhile, the anti-smash radar continuously monitors whether the vehicle has passed through the barrier area. Once the vehicle has passed, the barrier gate closes. Simultaneously, the infrared device continuously monitors whether the vehicle has passed through the infrared device. Once the vehicle has completely passed, the license plate recognition camera identifies the vehicle's license plate, and the surveillance camera captures the vehicle's surrounding information. The driver then uses their mobile phone to scan the barcode on the scanner, and weighing is performed. Once weighing is complete, a voice announcement is made, and the LED display shows the vehicle, cargo, and weight information. At this point, the barrier gate opens, and the anti-smash radar continuously monitors whether the vehicle has passed through the barrier area. Once the vehicle has passed, the barrier gate closes, and the vehicle leaves the scale.
[0087] Through the material acceptance system based on the intelligent all-in-one machine provided in this embodiment, the vehicle passing through the road section from the left or right can be weighed through the first gate 03 and the second gate 04; the license plate number of the vehicle can be identified by the first license plate recognition camera 05 or the second license plate recognition camera 06; the first infrared device 07 and the second infrared device 08 can be used to determine whether the vehicle is completely on the scale; and the vehicle can be monitored by video through the monitoring camera 15.
[0088] For vehicles that have not been properly weighed, the user can use the microphone 18 connected to the material acceptance terminal 01 to remind the driver of the vehicle. The user can also use the speaker 14 to make an announcement through the microphone 18. For vehicles that have been properly weighed, the LED display 13 can display vehicle information and weighing information, and allow the driver to scan the code using the first scanner 09 or the second scanner 10, so that the material acceptance terminal 01 can obtain complete information about the goods, driver, and vehicle.
[0089] The above are only preferred embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.
Claims
1. A material acceptance system based on an intelligent all-in-one machine, characterized in that: The system comprises: A floor scale connected to the material acceptance terminal, a first barrier gate, a second barrier gate, a first license plate recognition camera, a second license plate recognition camera, a first infrared device, a second infrared device, a first barcode scanner, a second barcode scanner, a first ground sensor coil connected to the first barrier gate, and a second ground sensor coil connected to the second barrier gate; A first ground sensing coil, a first gate, a first license plate recognition camera, a first infrared device, and a first code scanner are sequentially arranged in a direction from near to far from the first end of the floor scale; A second ground sensing coil, a second barrier, a second license plate recognition camera, a second infrared device, and a second code scanner are arranged in sequence from near to far from the second end of the floor scale.
2. The material acceptance system based on the intelligent all-in-one machine according to claim 1 is characterized in that: The system also includes: an LED display screen, a sound system and a surveillance camera connected to the material acceptance terminal; The LED display screen, audio system and surveillance camera are arranged in the middle of the floor scale and between the first barcode scanner and the second barcode scanner.
3. The material acceptance system based on the intelligent all-in-one machine according to claim 2 is characterized in that: The system further comprises: support columns arranged at the middle and outer sides of the scale; Wherein, the LED display screen, audio system and surveillance camera are installed on the supporting column.
4. The material acceptance system based on the intelligent all-in-one machine according to claim 1 is characterized in that: The system further comprises: a first anti-smashing radar and a second anti-smashing radar; Among them, the first anti-smashing radar is installed in the first gate, and the second anti-smashing radar is installed in the second gate.
5. The material acceptance system based on the intelligent all-in-one machine according to claim 2 is characterized in that: The system further comprises: an expansion component connected to the material acceptance terminal; The expansion components include at least one of the following: a card reader, a scale, a microphone, a printer, a high-definition scanner, a display, a keyboard and a mouse for controlling the material acceptance terminal, a scale result display, and a mouse for controlling the scale result display.
6. The material acceptance system based on the intelligent all-in-one machine according to claim 1 is characterized in that: The first ground sensing coil is connected to the 5.08 terminal interface of the first gate through a 2-pin wire, and the second ground sensing coil is connected to the 5.08 terminal interface of the second gate through a 2-pin wire.
7. The material acceptance system based on the intelligent all-in-one machine according to claim 2 is characterized in that: The audio system is connected to the Phoenix terminal interface of the material acceptance terminal; The first gate, the second gate, the first license plate recognition camera, the second license plate recognition camera, the first infrared device, the second infrared device, the first code scanner, the second code scanner and the monitoring camera are respectively connected to the RJ45 interfaces of the material acceptance terminal.
8. The material acceptance system based on the intelligent all-in-one machine according to claim 5 is characterized in that: The weighbridge result display is connected to the HDMI interface of the material acceptance terminal to transmit data signals; The weighbridge result display is connected to the power supply interface of the material acceptance terminal to provide power.
9. The material acceptance system based on the intelligent all-in-one machine according to claim 5 is characterized in that: The card reader and the scale are respectively connected to the two DB9 interfaces of the material acceptance terminal.
10. The material acceptance system based on the intelligent all-in-one machine according to claim 5 is characterized in that: The printer, the high-speed scanner, the mouse for controlling the weighing scale result display, the mouse for controlling the material acceptance terminal, and the keyboard for controlling the material acceptance terminal are respectively connected to the various USB interfaces of the material acceptance terminal.