Test device

By designing a test device that includes a contact module and a display module, the complexity and cumbersomeness of the test operation of the device under test are solved, achieving the effect of simplifying operation and improving efficiency.

CN223926596UActive Publication Date: 2026-02-17HONGFUJIN PRECISION ELECTRONICS ZHENGZHOU
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Patent Information

Application Number
CN202423184166.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2026-02-17
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

The testing of the device under test is complex and tedious, especially when it is necessary to check the status of multiple test points one by one.

Method used

Design a testing device comprising a first contact module and a first mounting plate, wherein the first contact device contacts the test point of the component under test, and a display module displays the on/off status, thereby simplifying the testing operation.

Benefits of technology

It reduces the complexity and tedium of testing operations, improves testing efficiency, and can quickly and accurately determine the continuity status of the tested point.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides test equipment. The test equipment comprises a first contact module and a first mounting plate. Wherein the first contact module is arranged on the first mounting plate, and the first contact module comprises an accommodating part, a first contact device and a first display module. The accommodating part is provided with a first accommodating groove, the first contact device is accommodated in the first accommodating groove, and the first display module is arranged on the accommodating part. The first contact device comprises a first contact and a second contact, and the first contact and the second contact are respectively used for being in contact with a first tested point and a second tested point on the first tested assembly when the first tested assembly slides in the first accommodating groove along the first direction so as to test the connection and disconnection between the first tested point and the second tested point; the first display module is used for displaying the on-off state between the first measured point and the second measured point. According to the test equipment provided by the invention, the complexity and complexity of test operation can be reduced, and the test efficiency of the tested equipment is improved.
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Description

Technical Field

[0001] This application relates to the field of testing equipment technology, and more particularly to a testing device. Background Technology

[0002] With the continuous advancement of technology, the precision of processing equipment in various industries is constantly improving. At the same time, the maintenance, testing, and upkeep of equipment have also become crucial in this wave of technological development. In practical applications, the equipment under test varies in form, and each device contains multiple test points. This requires us to check the status of each test point one by one during the testing process, which undoubtedly increases the complexity and tediousness of the testing operation. Utility Model Content

[0003] In view of the above, this application provides a testing device to solve the problem of high complexity and cumbersomeness in the testing operation of the device under test.

[0004] A first aspect of this application provides a testing device, comprising: a first contact module and a first mounting plate, wherein the first contact module is disposed on the first mounting plate; wherein the first contact module includes a receiving portion, a first contact device, and a first display module. The receiving portion is provided with a first receiving groove, the first contact device is received within the first receiving groove, and the first display module is disposed on the receiving portion. The first contact device includes a first contact and a second contact, the first contact and the second contact being respectively used to contact a first test point and a second test point on the first test component when the first test component slides along a first direction within the first receiving groove, to test the continuity between the first test point and the second test point, and the first display module being used to display the continuity state between the first test point and the second test point.

[0005] Using the testing equipment of this application, a first contact module is disposed on a first mounting plate, and a first contact device is disposed in a first receiving groove. When the first component under test slides in the first receiving groove along a first direction, the first contact point and the second contact point on the first contact device can respectively contact the first test point and the second test point on the first component under test to test the continuity between the first test point and the second test point. The continuity status between the first test point and the second test point is then displayed through a first display module, reducing the complexity and tedium of the testing operation and improving the testing efficiency.

[0006] As an optional implementation, the test equipment further includes: a second contact module and a second display module; wherein, the second contact module includes a test piece, a driver, and a connector. The second display module is partially connected to one side of the connector, the driver is disposed on the side of the connector opposite to the second display module, the bottom surface of the connector is connected to a first mounting plate, and the test piece is connected to the output end of the driver. The test piece includes a third contact and a fourth contact, which are respectively used to contact a third and a fourth test point on the second component under test when the driver pushes the test piece along a second direction, to test the continuity between the third and fourth test points. The second display module is used to display the continuity status between the third and fourth test points.

[0007] As an optional implementation, the test piece also includes a fifth contact and a sixth contact. The fifth contact and the sixth contact are used to contact the fifth and sixth test points on the second test component when the drive component pushes the test piece along the second direction, so as to test the continuity between the third test point, the fourth test point, the fifth test point and the sixth test point. The second display module is also used to display the continuity status between the third test point, the fourth test point, the fifth test point and the sixth test point.

[0008] As an optional implementation, the second display module includes a circuit board, a power module, a first indicator light, a second indicator light, a third indicator light, a fourth indicator light, a fifth indicator light, and a sixth indicator light. The circuit board is connected to one side of the second contact module. The power module is located on the end of the circuit board near the connector, while the first, second, third, fourth, fifth, and sixth indicator lights are located on the end of the circuit board away from the connector. The first indicator light displays the continuity status between the third and fourth measured points; the second indicator light displays the continuity status between the fifth and sixth measured points; the third indicator light displays the continuity status between the third and fifth measured points; the fourth indicator light displays the continuity status between the third and sixth measured points; the fifth indicator light displays the continuity status between the fourth and fifth measured points; and the sixth indicator light displays the continuity status between the fourth and sixth measured points.

[0009] As an optional implementation, the power module includes a battery and a battery mounting bracket. The battery is housed within the battery mounting bracket, which is mounted on the mounting surface of the second mounting plate.

[0010] As an optional implementation, the second display module also includes a first switch and a second switch. The first switch and the second switch are arranged side by side between the power module and the indicator lights.

[0011] As an optional implementation, the receiving part includes a base plate, an end plate, a first side plate, and a second side plate. The first side plate and the second side plate are arranged parallel to each other on both sides of the base plate. The base plate, the end plate, the first side plate, and the second side plate together form a first receiving groove. One end of the first side plate and one end of the second side plate are both connected to the end plate. The bottom edge of the end plate is connected to one end of the base plate. The base plate is connected to a first mounting plate.

[0012] As an optional implementation, the first contact device includes a base. Along a first direction, the base has a first receiving space, a first contact is disposed at the bottom of the first receiving space, and a second contact is disposed on the surface of the base away from the end plate.

[0013] As an optional implementation, the first contact device also includes an elastic element. One end of the elastic element abuts against the bottom of the first receiving space, and the other end of the elastic element is sleeved on the first contact.

[0014] As an optional implementation, the first display module includes a seventh indicator light and an eighth indicator light. A first mounting hole and a second mounting hole are provided on the side wall of the end plate away from the first receiving groove. The seventh indicator light is disposed in the first mounting hole, and the eighth indicator light is disposed in the second mounting hole. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of a testing device provided in an embodiment of this application.

[0016] Figure 2 This is a disassembly diagram of a testing device provided in an embodiment of this application.

[0017] Figure 3 This is another disassembly diagram of a testing device provided in an embodiment of this application.

[0018] Figure 4 This is a disassembly diagram of the first contact module provided in the embodiments of this application.

[0019] Figure 5 This is another disassembly diagram of the first contact module provided in the embodiments of this application.

[0020] Figure 6 This is a schematic diagram of the structure of the first contact device provided in the embodiments of this application.

[0021] Figure 7 This is a disassembly diagram of the second contact module provided in the embodiments of this application.

[0022] Figure 8 This is another disassembly diagram of the second contact module provided in the embodiments of this application.

[0023] Figure 9This is a schematic diagram of the structure of the second tested component provided in an embodiment of this application.

[0024] Figure 10 This is a schematic diagram of the structure of the second display module provided in the embodiment of this application.

[0025] Figure 11 This is a schematic diagram of the structure of the first mounting plate provided in the embodiment of this application.

[0026] Figure 12 This is a circuit diagram of a test device provided in another embodiment of this application.

[0027] Explanation of key component symbols:

[0028] First contact module 10

[0029] Second contact module 20

[0030] First display module 15

[0031] Second display module 30

[0032] First mounting plate 40

[0033] First tested component 100

[0034] Second tested component 200

[0035] First contact device 16

[0036] Containment Department 18

[0037] Base plate 13

[0038] End plate 14

[0039] First side panel 11

[0040] Second side panel 12

[0041] First containment tank 143

[0042] First Containment Space 167

[0043] Base 161

[0044] Contacts 166, 162, 163, 164, 165, 231, 232, 233, 234

[0045] Elastic element 17

[0046] First mounting hole 141

[0047] Second mounting hole 142

[0048] Test piece 23

[0049] Drive component 22

[0050] Connector 21

[0051] Bottom film groove 43

[0052] Through holes 41, 42, 223, 224, 225, 226, 212, 213, 213, 215, 235, 236

[0053] Screw holes 216, 217

[0054] Putters 221, 222

[0055] Measurement points 201, 202, 203, 204

[0056] Power module 32

[0057] First switch SB1

[0058] Second switch SB2

[0059] First indicator light D1

[0060] Second indicator light D2

[0061] Third indicator light D3

[0062] Fourth indicator light D4

[0063] Fifth indicator light D5

[0064] Sixth indicator light D6

[0065] Seventh indicator light D7

[0066] Eighth indicator light D8

[0067] First resistor R1

[0068] Second resistor R2

[0069] Third resistor R3

[0070] Fourth resistor R4

[0071] Fifth resistor R5

[0072] Sixth resistor R6

[0073] Seventh resistor R7

[0074] Eighth resistor R8

[0075] First connector X1

[0076] Second connector X2

[0077] Third connector X3

[0078] Fourth connector X4

[0079] Fifth connector X5

[0080] Sixth connector X6

[0081] Seventh Connector X7

[0082] Eighth connector X8

[0083] The following detailed description, in conjunction with the accompanying drawings, will further illustrate this application. Detailed Implementation

[0084] The technical solution of this application will be further described in detail below with reference to the accompanying drawings and embodiments.

[0085] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application.

[0086] Please see Figure 1 This is a schematic diagram of the structure of a testing device provided in one embodiment of this application.

[0087] The test equipment in this application embodiment can be used to test the continuity between contacts on the first component under test 100, and can also be used to test the continuity between contacts on the second component under test.

[0088] In this embodiment, the testing equipment may include a first contact module 10, a second contact module 20, a second display module 30, and a first mounting plate 40. The first contact module 10 is disposed on the first mounting plate 40, one end of the second contact module 20 is connected to the first mounting plate 40, and the second display module 30 is disposed on one side of the second contact module 20. It can be understood that in this embodiment, the continuity between contacts on the first tested component 100 can be tested using the first contact module 10, and the continuity between test points on the second tested component 200 can be tested using the second contact module 20. The continuity status between test points on the second tested component 200 can then be displayed using the second display module 30.

[0089] Please refer to the following: Figures 2 to 6 The first contact module 10 may include a first contact device 16, a receiving portion 18, and a first display module 15. The receiving portion 18 includes a base plate 13, an end plate 14, and a first side plate 11 and a second side plate 12 arranged parallel to both sides of the base plate 13. One end of the first side plate 11 and one end of the second side plate 12 are both connected to the end plate 14. The bottom edge of the end plate 14 is connected to one end of the base plate 13. The base plate 13 is connected to the first mounting plate 40.

[0090] It is understood that the base plate 13, end plate 14, first side plate 11 and second side plate 12 together form a first receiving groove 143, the first contact device 16 is received in the first receiving groove 143 near the end plate 14, and the first display module 15 is disposed on the outer side wall of the end plate 14 away from the first contact device 16.

[0091] The first test component 100 can be a combination of a tripod and a ball bearing carrier. Specifically, the tripod is mounted on the ball bearing carrier, and the tripod contact is located between two adjacent balls on the ball bearing carrier. In practical applications, the first test component 100, consisting of the tripod and the ball bearing carrier, can be brought into contact with the first contact device 16 along the first receiving groove 143 to test the continuity between the tripod central axis and the tripod contact, and to test the continuity between the tripod contact and the balls on the ball bearing carrier. Specifically, the tripod contact can be used as the first test point of this application, the tripod central axis can be used as the second test point of this application, and in an optional embodiment, the balls on the ball bearing carrier can be used as the seventh test point of this application.

[0092] Please refer to it again. Figure 6 The first contact device 16 may include a base 161. Along a first direction, the base 161 has a first receiving space 167, and a cylindrical contact 166 is provided at the bottom of the first receiving space 167. The contact 166 can serve as a second contact in this application for connecting the tripod's central axis. The first direction can be as follows: Figure 1 The X direction is shown.

[0093] The base 161 has multiple contacts on its surface away from the end plate 14. In some optional locations, the multiple contacts may be contacts 162 and 163. Contacts 162 and 163 may serve as the first contacts of this application for connecting the tripod contacts.

[0094] In an optional embodiment, contacts 164 and 165 are further provided on the surface of the base 161 away from the end plate 14. Contacts 164 and 165 can serve as the third contacts of this application for connecting the balls on the ball cage.

[0095] It is understood that in some embodiments, the first contact device 16 further includes an elastic element 17. One end of the elastic element 17 abuts against the bottom of the first receiving space 167, and the other end of the elastic element 17 is sleeved on the contact point 166. In practical applications, the elastic element 17 abuts against the bottom of the first receiving space 167 and the first test component 100 composed of the tripod and the ball bearing. The user places the first test component 100 composed of the tripod and the ball bearing in the first receiving groove 143 and pushes the first test component 100 in the first direction to compress the elastic element 17, causing the elastic element 17 to undergo elastic deformation, thereby enabling each test point on the first test component 100 to fit tightly with each contact point on the first contact device 16.

[0096] The first display module 15 includes a seventh indicator light D7 and an eighth indicator light D8. A first mounting hole 141 and a second mounting hole 142 are provided on the side wall of the end plate 14 away from the first receiving groove 143. The seventh indicator light D7 is disposed in the first mounting hole 141 and indicates the continuity between the tripod contact and the balls on the ball bearing. When the tripod contact is connected to the balls on the ball bearing, the seventh indicator light D7 is lit; otherwise, it is off. The eighth indicator light D8 is disposed in the second mounting hole 142 and indicates the continuity between the tripod contact and the tripod central axis. When the tripod contact is insulated from the tripod central axis, the eighth indicator light D8 is lit; otherwise, it is off. Optionally, the seventh indicator light D7 can be a green LED, and the eighth indicator light D8 can be a red LED.

[0097] Please refer to the following: Figure 7 and Figure 8 The second contact module 20 may include a test piece 23, a drive piece 22, and a connector 21.

[0098] Please see Figure 11 In this embodiment, a bottom film groove 43 is provided on the surface of the first mounting plate 40 near the test piece 23. The driving member 22 in the second contact module 20 is used to push the test piece 23 along a second direction so that the test piece 23 abuts against the second test component 200 in the bottom film groove 43. The second direction can be as follows: Figure 8 The opposite of the Y direction shown.

[0099] The bottom surface of the connector 21 is connected to the first mounting plate 40. For example, the surface of the first mounting plate 40 near the connector 21 is provided with through holes 41 and 42, and the surface of the connector 21 near the first mounting plate 40 is provided with screw holes 216 and 217. In practical applications, screws can be fixed in screw holes 216 through through holes 41 and 217 through through holes 42, so as to fix the first mounting plate 40 to the bottom surface of the connector 21.

[0100] The driving component 22 is disposed on the side of the connector 21 opposite to the second display module 30. The driving component 22 has through holes 223, 224, 225, and 226 on its surface, while the connector 21 has through holes 212, 213, 213, and 215 on its surface. In practical applications, a fixing member can be used to fix the driving component 22 within the through holes 212, 213, 213, and 215 on the connector 21 via the through holes 223, 224, 225, and 226. In an optional implementation, the second display module 30 can also be fixed to the connector 21 by a fixing member.

[0101] The test piece 23 is connected to the output end of the drive piece 22. The surface of the test piece 23 away from the drive piece 22 is provided with contacts 231 and 232. Contact 231 can be used as the third contact of this application, and contact 232 can be used as the fourth contact of this application.

[0102] In an optional embodiment, the test piece 23 has contacts 233 and 234 on its surface away from the drive member 22. Contact 233 can be used as the fifth contact of this application, and contact 234 can be used as the sixth contact of this application.

[0103] For example, the test piece 23 is provided with through holes 235 and 236. One end of the push rod 221 on the drive member 22 is sleeved in the through hole 235, and the other end of the push rod 221 is provided in the push groove of the drive member 22. One end of the push rod 222 on the drive member 22 is sleeved in the through hole 236, and the other end of the push rod 92 is provided in the push groove of the drive member 22. In practical applications, the drive member 22 can push the push rods 221 and 222 to move along the push groove so that the contacts 231, 232, 233 and 234 of the test piece 23 abut against the test point on the second test component 200 in the bottom membrane slide groove 43.

[0104] like Figure 9 As shown, the second component under test 200 can be a coupling test board, which is provided with test points 201, 202, 203 and 204. Test point 201 can be used as the third test point of this application, test point 202 can be used as the fourth test point of this application, test point 203 can be used as the fifth test point of this application, and test point 204 can be used as the sixth test point of this application.

[0105] In practical applications, when the drive component 22 pushes the push rod along the push groove, the contacts 231, 232, 233 and 234 of the test component 23 abut against the test points 201, 202, 203 and 204 on the coupling test plate in the bottom membrane slide groove 43, respectively, to test the continuity between the test points on the coupling test plate.

[0106] Please see Figure 10 This is a schematic diagram of the structure of a second display module 30 provided in one embodiment of this application.

[0107] like Figure 10 As shown, the second display module 30 includes a circuit board 31 partially connected to the connector 21, and a power module 32, a first switch SB1, a second switch SB2, a first indicator light D1, a second indicator light D2, a third indicator light D3, a fourth indicator light D4, a fifth indicator light D5, and a sixth indicator light D6 disposed on the surface of the circuit board 31 near the connector 21. The power module 32 is disposed on one end of the circuit board 31 near the connector 21. The first indicator light D1, the second indicator light D2, the third indicator light D3, the fourth indicator light D4, the fifth indicator light D5, and the sixth indicator light D6 are arranged side-by-side on the end of the circuit board 31 away from the connector 21. The first switch SB1 and the second switch SB2 are arranged side-by-side between the power module 32 and each of the indicator lights.

[0108] It is understood that, in some optional embodiments, the second display module 30 further includes a first resistor R1, a second resistor R2, a third resistor R3, a fourth resistor R4, a fifth resistor R5, and a sixth resistor R6 disposed on the surface of the circuit board 31 near the connector 21. The first resistor R1, the second resistor R2, the third resistor R3, the fourth resistor R4, the fifth resistor R5, and the sixth resistor R6 are arranged side-by-side between the indicator lights and the switches.

[0109] In an optional embodiment, the power module 32 includes a battery and a battery mounting bracket. The battery is disposed within the battery mounting bracket, which is mounted on the mounting surface of the second mounting plate 2. The positive terminal of the battery is connected via a cable to the first end of the first contact device 163 and the first end of the second contact device 4, and the negative terminal of the battery is connected via a cable to the second end of the first display module 31 and the second end of the second display module 41. In this embodiment, the battery can be a 3.6V battery, and when the battery is depleted, the user can directly remove the battery from the battery mounting bracket and install a new battery to power the various components in the testing equipment. By using a battery to power the components in the testing equipment, the movement of the testing equipment is not restricted by the power supply equipment, thus improving the flexibility of the testing equipment.

[0110] Please see Figure 12The diagram below is a circuit diagram of a test device provided in one embodiment of this application.

[0111] like Figure 12 As shown, in this embodiment, the test equipment may include a power module 32, a first switch SB1, a second switch SB2, a seventh indicator light D7, an eighth indicator light D8, a first indicator light D1, a second indicator light D2, a third indicator light D3, a fourth indicator light D4, a fifth indicator light D5, a sixth indicator light D6, a seventh resistor R7, an eighth resistor R8, a first resistor R1, a second resistor R2, a third resistor R3, a fourth resistor R4, a fifth resistor R5, a sixth resistor R6, a seventh connector X7, an eighth connector X8, a first connector X1, a second connector X2, a third connector X3, a fourth connector X4, a fifth connector X5, and a sixth connector X6.

[0112] In this embodiment, the first terminal of the first switch SB1 is electrically connected to the positive terminal of the power module 32. The seventh resistor R7 is electrically connected between the second terminal of the first switch SB1 and the first terminal of the seventh connector X7. The second terminal of the seventh connector X7 is electrically connected to the positive terminal of the seventh indicator light D7. The eighth resistor R8 is electrically connected between the second terminal of the first switch SB1 and the first terminal of the eighth connector X8. The second terminal of the eighth connector X8 is electrically connected to the positive terminal of the eighth indicator light D8. The negative terminals of both the seventh indicator light D7 and the eighth indicator light D8 are electrically connected to the negative terminal of the power module 32. The first terminal of the second switch SB2 is electrically connected to the positive terminal of the power module 32. The first resistor R1 is electrically connected between the second terminal of the second switch SB2 and the first terminal of the first connector X1. The second terminal of the first connector X1 is electrically connected to the positive terminal of the first indicator light D1. The second resistor R2 is electrically connected between the second terminal of the first switch SB1 and the first terminal of the second connector X2. The second terminal of the second connector X2 is electrically connected to the positive terminal of the second indicator light D2. The following electrical connections are made: a third resistor R3 is electrically connected between the second terminal of the second switch SB2 and the first terminal of the third connector X3, and the second terminal of the third connector X3 is electrically connected to the positive terminal of the third indicator light D3; a fourth resistor R4 is electrically connected between the second terminal of the first switch SB1 and the first terminal of the fourth connector X4, and the second terminal of the fourth connector X4 is electrically connected to the positive terminal of the fourth indicator light D4; a fifth resistor R5 is electrically connected between the second terminal of the second switch SB2 and the first terminal of the fifth connector X5, and the second terminal of the fifth connector X5 is electrically connected to the positive terminal of the fifth indicator light D5; a sixth resistor R6 is electrically connected between the second terminal of the first switch SB1 and the first terminal of the sixth connector X6, and the second terminal of the sixth connector X6 is electrically connected to the positive terminal of the sixth indicator light D6; and the negative terminals of the first indicator light D1, the second indicator light D2, the third indicator light D3, the fourth indicator light D4, the fifth indicator light D5, and the sixth indicator light D6 are all electrically connected to the negative terminal of the power module 32.

[0113] Based on this design, the user places the first test component 100, consisting of a tripod and a ball bearing carrier, into the first receiving slot 143 and pushes the first test component 100 along the first direction so that each test contact on the first test component 100 can be tightly fitted with each contact on the first contact device 16. After the user controls the first switch SB1 to turn on, the seventh connector X7 connects the tripod contacts and the balls on the ball bearing carrier, and the eighth connector X8 connects the tripod contacts and the tripod central shaft. If the seventh indicator light D7 is lit and the eighth indicator light D8 is not lit at this time, it indicates that the continuity between the tripod contacts and the balls on the ball bearing carrier is normal, and the tripod contacts and the tripod central shaft are insulated. The first test component 100 consisting of the tripod and the ball bearing carrier is a qualified product; otherwise, it is a defective product.

[0114] When the user places the coupling test board into the bottom membrane groove 43 and controls the second switch SB2 to turn on, the driving component 22 pushes the contact of the test piece 23 to abut against the test point on the coupling test board in the bottom membrane groove 43. The first connector X1 connects the test points 201 and 202 on the coupling test board, the second connector X2 connects the test points 203 and 204 on the coupling test board, the third connector X3 connects the test points 201 and 203 on the coupling test board, the fourth connector X4 connects the test points 201 and 204 on the coupling test board, the fifth connector X5 connects the test points 202 and 203 on the coupling test board, and the sixth connector X6 connects the test points 202 and 204 on the coupling test board. If the first indicator light D1 and the second indicator light D2 are lit, while the third indicator light D3, the fourth indicator light D4, the fifth indicator light D5, and the sixth indicator light D6 are not lit, it indicates that the continuity between the test points on the coupling test board is normal, and the coupling test board is a qualified product. Conversely, if any one of the first indicator light D1 and the second indicator light D2 is not lit, or any one of the third indicator light D3, the fourth indicator light D4, the fifth indicator light D5, and the sixth indicator light D6 is lit, it indicates that the continuity between the test points on the coupling test board is abnormal, and the coupling test board is a defective product.

[0115] Specifically, when the first indicator light D1 is off, there is a short circuit between test points 201 and 202; when the second indicator light D2 is off, there is a short circuit between test points 203 and 204; when the third indicator light D3 is off, there is continuity between test points 201 and 203; when the fourth indicator light D4 is off, there is continuity between test points 201 and 204; when the fifth indicator light D5 is off, there is continuity between test points 202 and 203; and when the sixth indicator light D6 is off, there is continuity between test points 202 and 204. Optionally, the first indicator light D1 and the second indicator light D2 can be green LEDs, and the third indicator light D3, the fourth indicator light D4, the fifth indicator light D5, and the sixth indicator light D6 can also be red LEDs.

[0116] It is understood that the test equipment of this application can limit the current flowing into the seventh connector X7, the eighth connector X8, the first connector X1, the second connector X2, the third connector X3, the fourth connector X4, the fifth connector X5, and the sixth connector X6 respectively through the seventh resistor R7, the eighth resistor R8, the first connector X1, the second connector X2, the third connector X3, the fourth connector X4, the fifth connector X5, and the sixth connector X6, so as to avoid the power module 32 outputting excessive current and damaging the connectors.

[0117] It will be apparent to those skilled in the art that this application is not limited to the details of the exemplary embodiments described above, and that this application can be implemented in other specific forms without departing from the spirit or essential characteristics of this application. Therefore, any appropriate changes and variations made to the above embodiments within the essential spirit and scope of this application should fall within the scope of protection claimed by this application.

Claims

1. A testing device, characterized in that, include: A first contact module and a first mounting plate, wherein the first contact module is disposed on the first mounting plate; wherein the first contact module includes a receiving portion, a first contact device, and a first display module; The receiving part is provided with a first receiving groove, the first contact device is received in the first receiving groove, and the first display module is disposed on the receiving part; The first contact device includes a first contact and a second contact. The first contact and the second contact are respectively used to contact the first test point and the second test point on the first test component when the first test component slides in the first receiving groove along the first direction, so as to test the continuity between the first test point and the second test point. The first display module is used to display the continuity status between the first test point and the second test point.

2. The testing equipment according to claim 1, characterized in that, The testing equipment further includes: a second contact module and a second display module; wherein the second contact module includes a test component, a driving component, and a connecting component; The second display module is connected to one side of the connector, the driving component is disposed on the side of the connector away from the second display module, the bottom surface of the connector is connected to the first mounting plate, and the test piece is connected to the output end of the driving component; The test piece includes a third contact and a fourth contact. The third contact and the fourth contact are respectively used to contact the third test point and the fourth test point on the second test component when the driving member pushes the test piece along the second direction, so as to test the continuity between the third test point and the fourth test point. The second display module is used to display the continuity status between the third test point and the fourth test point.

3. The testing equipment according to claim 2, characterized in that, The test piece further includes a fifth contact and a sixth contact. The fifth contact and the sixth contact are respectively used to contact the fifth and sixth test points on the second test component when the driving component pushes the test piece along the second direction, so as to test the continuity between the third test point, the fourth test point, the fifth test point and the sixth test point. The second display module is also used to display the continuity status between the third test point, the fourth test point, the fifth test point and the sixth test point.

4. The testing equipment according to claim 3, characterized in that, The second display module includes a circuit board, a power module, a first indicator light, a second indicator light, a third indicator light, a fourth indicator light, a fifth indicator light, and a sixth indicator light; The circuit board is connected to one side of the second contact module, the power module is disposed on the end of the circuit board near the connector, and the first indicator light, the second indicator light, the third indicator light, the fourth indicator light, the fifth indicator light and the sixth indicator light are disposed on the end of the circuit board away from the connector; The first indicator light is used to display the continuity status between the third and fourth measured points; the second indicator light is used to display the continuity status between the fifth and sixth measured points; the third indicator light is used to display the continuity status between the third and fifth measured points; the fourth indicator light is used to display the continuity status between the third and sixth measured points; the fifth indicator light is used to display the continuity status between the fourth and fifth measured points; and the sixth indicator light is used to display the continuity status between the fourth and sixth measured points.

5. The testing equipment according to claim 4, characterized in that, The power module includes a battery and a battery mounting bracket; The battery is disposed within a battery mounting bracket, which is disposed on the mounting surface of the second mounting plate.

6. The testing equipment according to claim 5, characterized in that, The second display module also includes a first switch and a second switch; The first switch and the second switch are arranged side by side between the power module and each indicator light.

7. The testing equipment according to claim 1, characterized in that, The receiving part includes a bottom plate, an end plate, a first side plate, and a second side plate; The first side plate and the second side plate are arranged parallel to each other on both sides of the base plate. The base plate, the end plate, the first side plate and the second side plate together form a first receiving groove. One end of the first side plate and one end of the second side plate are both connected to the end plate. The bottom edge of the end plate is connected to one end of the base plate. The base plate is connected to the first mounting plate.

8. The testing equipment according to claim 7, characterized in that, The first contact device includes a base; Along the first direction, the base is provided with a first receiving space, the first contact is disposed at the bottom of the first receiving space, and the second contact is disposed on the surface of the base away from the end plate.

9. The testing equipment according to claim 8, characterized in that, The first contact device further includes an elastic element; One end of the elastic element abuts against the bottom of the first receiving space, and the other end of the elastic element is sleeved on the first contact point.

10. The testing equipment according to claim 8, characterized in that, The first display module includes: a seventh indicator light and an eighth indicator light; The end plate has a first mounting hole and a second mounting hole on its side wall away from the first receiving groove. The seventh indicator light is located in the first mounting hole, and the eighth indicator light is located in the second mounting hole.