Electric device resistance measuring device for electromechanical equipment manufacturing
Multi-axis adjustment is achieved through structures such as frame supports and worm gear transmission systems. Combined with digital display ammeters and voltmeters and processors, the adaptability and power-on stability of the resistance measurement device are solved, enabling rapid resistance measurement of electrical components of different shapes.
Patent Information
- Application Number
- CN202511433079.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-09
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2045-10-09
AI Technical Summary
Existing resistance measurement devices lack adaptability, cannot accommodate electrical devices of different shapes, and do not maintain good power-on performance after adjustment.
It adopts a frame support, connector, T-shaped swivel, worm gear transmission system and elastic contact block to achieve multi-axis adjustment and stable power supply, and combines digital display ammeter, voltmeter and processor to calculate resistance.
It enables flexible and adaptable testing of electrical devices of different shapes, ensuring stable power connections and enabling rapid measurement of current, voltage, and resistance.
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Figure CN120908532A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of resistance measurement, in particular to a kind of electrical device resistance measuring device for electromechanical equipment manufacturing. BACKGROUND
[0002] When making production electronic device, resistance needs to be measured, to verify whether the various values of workpiece are qualified, to further screen qualified or unqualified products, generally by ammeter or ohmmeter etc. instrument to execute detection, and the resistance of electrical device can be displayed by digital display.
[0003] The detection method of the measuring device currently used is fixed detection, but the order is generally for different types of electronic products Production project, fixed detection cannot adapt to various different shapes of electrical device, fixed detection to alignment electrode, lack of high adaptability multi-axis adjustment function, and maintain energized effect after adjustment. SUMMARY
[0004] Therefore, the present application provides a kind of electrical device resistance measuring device for electromechanical equipment manufacturing in view of the deficiencies in the prior art.
[0005] The present application provides a kind of electrical device resistance measuring device for electromechanical equipment manufacturing, specifically comprising: frame support, the inside upper rear of the frame support is matched with guide rail and is horizontally slidably provided with two groups of connectors;The front side top of the connector is rotatably provided with T-shaped rotating seat matched with tapered roller bearing;The outside lower portion of T-shaped rotating seat is fixedly provided with ring worm gear;The bottom of the connector is rotatably provided with hollow worm, and the hollow worm is drivingly connected with the ring worm gear;The inside of the frame support is rotatably provided with hexagonal shaft, and the hexagonal shaft is slidingly connected with the hollow worm in the middle;The top of T-shaped rotating seat is fixedly provided with connecting assembly frame, and the inside of connecting assembly frame is fixedly provided with two groups of spring guide rods;The outside of the two groups of spring guide rods is slidably provided with two groups of connecting copper sheets, and the outside of the spring guide rod is provided with spring at both ends to adhere the two groups of connecting copper sheets;The adhering surface of the two groups of connecting copper sheets is arc surface structure;The rear lower portion of the frame support is contracted upwards, and the lower portion of the contraction is fixedly provided with two groups of terminal blocks;The position of the middle of the two groups of terminal blocks is fixedly provided with terminal connector, and the middle of the terminal connector is provided with circular through slot;The rear side of the frame support is fixedly provided with outer frame, and the top of the outer frame is fixedly provided with processor bin in the middle.
[0006] Optionally, the front side of the processor bin is fixedly provided with digital ohmmeter, digital ammeter and digital voltmeter.
[0007] Optionally, the middle rotation of the frame support is provided with a control shaft; the inside of the frame support is provided with two groups of distance adjusting lead screws at the upper rear side; the two groups of distance adjusting lead screws are provided with bevel gear transmission connection with the control shaft; the top rear side of the connector is fixedly provided with a nut block; the nut block is threadedly connected with the different distance adjusting lead screws; the front side of the frame support is further fixedly provided with a passage indicator lamp.
[0008] Optionally, the bottom front end of the connector is fixedly provided with a limiting block; the outside of the T-shaped rotating seat is fixedly provided with a limiting ring, and the limiting ring is externally provided with a recessed band in a right angle staggered manner; both ends of the recessed band are extended, and the extension length is half of the width of the limiting block, so that the limiting block limits the rotation of the limiting ring by 90 degrees.
[0009] Optionally, the top turning part of the connecting copper sheet extends outward; the bottom of one of the two groups of adjacent connecting copper sheets is extended and turned, and the bottom of the turning part is provided with a circuit connected to the terminal.
[0010] Optionally, the terminal is a double-channel structure, and the middle bottom of each channel of the terminal is provided with an elastic copper sheet through a threaded core rod, and a spring is sleeved on the threaded core rod after penetrating through the elastic copper sheet; the threaded core rod is fixedly connected to the middle of the terminal through a threaded connection; both ends of the elastic copper sheet are upwardly protruding curved structures; both sides of the bottom of the terminal are provided with screw rods; the bottom circuit of the connecting copper sheet is provided with a branch line and installed at the front end of the two groups of channels of the terminal.
[0011] Optionally, the terminal body is made of insulating material; six groups of equally spaced terminal copper seats are embedded in the inside of the terminal; the rear end of the terminal copper seat penetrates out of the terminal; the rear end of the terminal copper seat is provided with a screw hole, and the screw hole is provided with a threaded rod; the threaded rod is provided with a terminal nose.
[0012] Optionally, the rear end of the switching shaft is fixedly provided with a switching round pile, four groups of elastic contact blocks are slidingly arranged on the outer surface of the switching round pile, the elastic contact blocks can be fitted into the switching round pile, the outer surface of the elastic contact blocks is aligned with the switching round pile, the switching round pile is rotatably arranged in the circular through slot of the terminal, one end of the elastic contact block in the switching round pile is fixedly provided with a spring rod, the elastic contact block can be automatically popped out through the spring rod, the elastic contact blocks are unevenly distributed, the staggered angle between adjacent two groups of elastic contact blocks is 60 degrees, and the lines are connected between adjacent two groups of elastic contact blocks.
[0013] Optionally, the left channel of the left terminal is connected to the negative electrode of the passage indicator lamp, and the positive electrode of the passage indicator lamp is connected to the positive electrode of the power supply; the right channel of the left terminal is connected to the terminal copper seat in the middle of the left side of the terminal; the left channel of the right terminal is connected to the terminal copper seat in the middle of the right side of the terminal.
[0014] Optionally, the processor compartment contains a processor, which is connected to a digital ammeter and a digital voltmeter. The positive terminal of the digital ammeter is connected to the lower right copper terminal of the connector, and the negative terminal of the digital ammeter is connected to the negative terminal of the power supply. The positive terminal of the digital voltmeter is connected to the lower left copper terminal of the connector, and the negative terminal of the digital voltmeter is connected to the upper right copper terminal of the connector.
[0015] The beneficial effects are as follows: This invention has flexible adaptability and can be adapted and adjusted according to different workpieces. By rotating the control shaft, the bevel gear drives two sets of adjusting screws to rotate, which can adjust the position of the connectors on both sides. By rotating the hexagonal shaft, the hollow worm gear is driven to rotate, which in turn drives the ring worm wheel to rotate, causing the T-shaped swivel to rotate 90 degrees, adjusting the horizontal and vertical directions of the connecting copper plates on both sides. This allows for the inspection of different types of workpieces, and the adjustment process does not affect the power connection.
[0016] This invention uses elastic contact blocks to conduct electricity, providing a stable and convenient switching and adjustment function. Rotating the switching shaft drives the adapter round post to rotate, and the elastic contact blocks contact different wiring copper sockets to select the power supply. When the adapter round post rotates to the state shown in the figure, the circuit indicator light, the workpiece, and the digital display ammeter are connected in series to detect the workpiece current.
[0017] This invention uses a digital voltmeter and a digital ammeter to detect electrical components. When detecting voltage, the voltage information is fed back to the processor. Based on the principle of R=U / I, the resistance of the circuit indicator light is excluded, and the resistance is calculated by the program. This calculation affects and feeds back to the digital resistance meter for display, thus realizing rapid measurement of current, voltage and resistance. Attached Figure Description
[0018] Figure 1 A three-dimensional structural schematic diagram of an embodiment of the present invention is shown; Figure 2 A schematic diagram of the tilting structure of an embodiment of the present invention is shown; Figure 3 A three-dimensional structural schematic diagram of the frame support in an embodiment of the present invention is shown; Figure 4 A three-dimensional cross-sectional view of the connector in an embodiment of the present invention is shown; Figure 5 An embodiment of the present invention is shown. Figure 4 A schematic diagram of the tilting structure; Figure 6 A three-dimensional cross-sectional view of the connector in an embodiment of the present invention is shown; Figure 7 A three-dimensional cross-sectional view of the connector in an embodiment of the present invention is shown; Figure 8 Fig. 1 shows a schematic diagram of a current detection mode structure of an embodiment of the present application; Figure 9 Fig. 2 shows a schematic diagram of a connection structure of an embodiment of the present application; Figure 8 Figure 10 Fig. 3 shows a schematic diagram of a voltage detection structure of an embodiment of the present application.
[0019] Figure 11 Fig. 4 shows a schematic diagram of a connection structure of an embodiment of the present application; Figure 10
[0020] List of reference signs: 1, frame support; 101, control shaft; 102, distance adjusting screw; 103, passage indicator light; 2, connector; 201, hollow worm; 202, limit block; 3, T-shaped rotating seat; 301, ring worm; 302, limit ring; 303, connecting assembly frame; 304, spring guide rod; 305, connecting copper sheet; 4, hexagonal shaft; 5, terminal; 501, elastic copper sheet; 502, threaded core rod; 6, terminal; 601, terminal copper seat; 7, switching shaft; 701, switching round pile; 702, elastic contact block; 8, outer frame; 9, processor bin; 10, digital resistance meter; 11, digital ammeter; 12, digital voltmeter. DETAILED DESCRIPTION
[0021] In order to make the purpose, scheme and advantages of the technical scheme of the present application more clear, the technical scheme of the embodiments of the present application will be described clearly and completely in the following with reference to the drawings of the specific embodiments of the present application.
[0022] Embodiment 1: please refer to the drawings shown in the specification, Figures 1 to 11 The application provides an electric device resistance measuring device for electromechanical equipment manufacturing, which comprises a frame support 1, two groups of connectors 2 are horizontally and slidably arranged at the upper rear part of the inside of the frame support 1, T-shaped rotating seats 3 are rotatably arranged at the top of the front side of the connectors 2, ring-type worm gears 301 are fixedly arranged at the outside of the lower part of the T-shaped rotating seats 3, hollow worm shafts 201 are rotatably arranged at the bottom of the connectors 2 and are in transmission connection with the ring-type worm gears 301, the two groups of hollow worm shafts 201 are symmetrically arranged, a hexagonal shaft 4 is rotatably arranged at the inside of the frame support 1 and is in sliding connection with the middle of the hollow worm shaft 201, a connecting assembly frame 303 is fixedly arranged at the top of the T-shaped rotating seat 3, two groups of spring guide rods 304 are fixedly arranged at the inside of the connecting assembly frame 303, two groups of connecting copper sheets 305 are slidably arranged at the outside of the two groups of spring guide rods 304, springs are arranged at the two ends of the outside of the spring guide rods 304 and are used for sticking the two groups of connecting copper sheets 305, the upper corners of the sticking surfaces of the two groups of connecting copper sheets 305 are arc structures, the lower part of the rear of the frame support 1 is upwardly contracted, two groups of wiring terminals 5 are fixedly arranged below the contraction part, a wiring device 6 is fixedly arranged at the position between the two groups of wiring terminals 5 and a circular through groove is formed in the middle of the wiring device 6, an outer frame 8 is fixedly arranged at the rear side of the frame support 1, a processor bin 9 is fixedly arranged at the middle of the top of the outer frame 8.
[0023] The front side of the processor bin 9 is fixedly provided with a digital resistance meter 10, a digital ammeter 11 and a digital voltmeter 12.
[0024] The middle of the frame support 1 is rotatably provided with a control shaft 101, two groups of distance adjusting lead screws 102 are rotatably arranged at the upper rear part of the two sides of the inside of the frame support 1 and are in bevel gear transmission connection with the control shaft 101, a screw nut block is fixedly arranged at the top rear side of each connector 2 and is in threaded connection with different distance adjusting lead screws 102, a passage indicating lamp 103 is further fixedly arranged at the front side of the frame support 1.
[0025] The bottom front end of the connector 2 is fixedly provided with a limiting block 202, the outside of the T-shaped rotating seat 3 is fixedly provided with a limiting ring 302, a recessed belt in a right angle is formed on the outside of the limiting ring 302, the two ends of the recessed belt are extended, the extension length is half of the width of the limiting block 202, and the limiting block 202 limits the rotation of the limiting ring 302 by 90 degrees.
[0026] The top turning part of the connecting copper sheet 305 extends outward, the bottom of one of the two groups of connecting copper sheets 305 is extended and turned in the two groups of connecting copper sheets 305, and a circuit is connected to the wiring terminal 5 at the bottom of the turning part.
[0027] Wherein, the terminal 5 is a double-channel structure, and the middle bottom of each channel of the terminal 5 is provided with an elastic copper sheet 501 through a threaded core rod 502, and a spring is sleeved on the threaded core rod 502 after penetrating through the elastic copper sheet 501; the threaded core rod 502 is fixed in the middle of the terminal 5 through threaded connection; the two ends of the elastic copper sheet 501 are upwardly protruding curved structures; the bottom of the terminal 5 is provided with a screw rod on both sides; the bottom lines of the connecting copper sheet 305 are provided with branch lines and are installed at the front ends of the two groups of channels of the terminal 5.
[0028] Wherein, the main body of the connector 6 is made of insulating material; six groups of equally spaced connecting copper bases 601 are embedded in the inside of the connector 6, the rear ends of the connecting copper bases 601 penetrate out of the connector 6, screw holes are formed in the rear ends of the connecting copper bases 601, threaded rods are arranged in the screw holes, and connector noses are arranged outside the threaded rods.
[0029] Wherein, the rear end of the switching shaft 7 is fixedly provided with a switching round pile 701, four groups of elastic contact blocks 702 are slidingly arranged outside the switching round pile 701, the elastic contact blocks 702 can be fitted into the switching round pile 701 to align the outer surfaces of the elastic contact blocks 702 with the switching round pile 701; the switching round pile 701 is rotatably arranged in a circular through slot of the connector 6; one end of each of the elastic contact blocks 702 located in the switching round pile 701 is fixedly provided with a spring rod, and the elastic contact blocks 702 can be automatically popped out through the spring rods; the elastic contact blocks 702 are unevenly distributed, the staggered angle between adjacent two groups of elastic contact blocks 702 is 60 degrees, and lines are arranged to communicate between adjacent two groups of elastic contact blocks 702; a scale is arranged on the front side of the frame support 1 with the switching shaft 7 as the center to facilitate control of the switching shaft 7.
[0030] Wherein, the rear end of the left channel of the left terminal 5 is provided with a line connected to the negative electrode of the passage indicator lamp 103, and the positive electrode of the passage indicator lamp 103 is connected to the positive electrode of the power supply; the rear end of the right channel of the left terminal 5 is provided with a line connected to the connecting copper base 601 in the middle of the left side of the connector 6; the rear end of the left channel of the right terminal 5 is provided with a line connected to the connecting copper base 601 in the middle of the right side of the connector 6.
[0031] Wherein, the inside of the processor bin 9 is provided with a processor, the processor is connected with a digital current meter 11 and a digital voltage meter 12; the positive electrode of the digital current meter 11 is connected at the lower right connecting copper base 601 of the connector 6, and the negative electrode of the digital current meter 11 is connected to the negative electrode of the power supply; the positive electrode of the digital voltage meter 12 is connected at the lower left connecting copper base 601 of the connector 6, and the negative electrode of the digital voltage meter 12 is connected at the upper right connecting copper base 601 of the connector 6.
[0032] Adaptive adjustment method: First, find the control shaft 101 located on the side of the device, as the core adjustment component, when the control shaft 101 is rotated, the built-in bevel gear set will rotate, and the power will be accurately transmitted to the two groups of distance adjusting lead screws 102; with the rotation of the distance adjusting lead screw 102, the connectors 2 on both sides are stably and uniformly closed to the middle, until the distance is completely adapted to the size of the plug, providing convenience for subsequent detection; The plug is inserted between the two adjacent groups of connecting copper sheets 305 at an angle perpendicular to the connecting copper sheet 305. At this time, the spring guide rod 304 outside the connecting copper sheet 305 plays a key role. The high-strength spring outside the spring guide rod 304 generates a strong elastic force by its elastic deformation after the plug is inserted, which pushes the connecting copper sheet 305 to tightly fit the plug, not only achieving close physical contact, but also establishing a stable and reliable electrical connection, providing a solid foundation for current detection; If the workpiece needs to be detected at both ends of the electrical device, the detection direction of the device needs to be adjusted. Find the hexagonal shaft 4 on the side of the device. When the hexagonal shaft 4 is rotated, the internal transmission mechanism works, driving the hollow worm 201 to rotate. The hollow worm 201 and the ring worm gear 301 form an efficient worm and gear transmission system. With the rotation of the hollow worm 201, the ring worm gear 301 also rotates, thereby driving the T-shaped rotating seat 3 to rotate accurately by 90 degrees. During the rotation of the T-shaped rotating seat 3, the limiting block 202 cooperates with the limiting ring 302 to provide a limiting effect, facilitating switching and adjustment.
[0033] Example 2: Based on example 1, when detecting current, rotate the switching shaft 7 to drive the adapter round pile 701 to rotate, and use the elastic contact block 702 to contact different wiring copper seats 601 to realize selection of power supply. When the adapter round pile 701 is rotated to Figure 8 the state, the pass indicator light 103, the workpiece and the digital current meter 11 are connected in series, and the current of the workpiece is detected; At the same time, the current information is fed back to the processor.
[0034] Example 3: Based on example 2, when detecting voltage, rotate the switching shaft 7 to rotate the adapter round pile 701 to Figure 10 the state. Compared with Figure 8 the state, a digital voltage meter 12 is added in parallel outside the workpiece, and the digital voltage meter 12 is used to directly detect the voltage of the workpiece; At the same time, the voltage information is fed back to the processor. According to the principle of R=U / I, the resistance of the pass indicator light 103 is excluded, and the resistance is calculated through program operation and fed back to the digital resistance meter 10 for display. In this process, if the current changes, the value of the digital current meter 11 changes, and the resistance is calculated according to the previously measured current value.
[0035] The specific usage and function of this embodiment: In this invention, before use, adjustments are made according to the shape of the electrical device under test; For example, when testing plug pins, such as Figure 1 In this state, you can directly choose to bring the two sets of T-shaped rotating seats 3 together. Simply rotate the adjustment shaft 101, which, in conjunction with the bevel gear, drives the two sets of adjusting screws 102 to rotate, bringing the connectors 2 on both sides together. Insert the plug into the two adjacent sets of connecting copper plates 305. The connecting copper plates 305 are brought together by the spring outside the spring guide rod 304 to achieve connection. If adjustments are needed, when inspecting workpieces with electrodes located at both ends of an electrical component, select to rotate the hexagonal shaft 4. The hexagonal shaft 4 drives the hollow worm gear 201 to rotate, which in turn drives the ring worm wheel 301 to rotate, causing the T-shaped rotary seat 3 to rotate 90 degrees. This adjusts the horizontal and vertical directions of the copper plates 305 connected on both sides. During the rotation of the T-shaped rotary seat 3, the limiting block 202, in conjunction with the limiting ring 302, provides a limiting effect, facilitating switching and adjustment. After the workpiece is installed, rotating the switching shaft 7 drives the adapter round post 701 to rotate. The elastic contact block 702 contacts different wiring copper seats 601 to select which part is energized. When the adapter round post 701 rotates to... Figure 8 In this state, the path indicator light 103, the workpiece, and the digital display ammeter 11 are connected in series to detect the workpiece current; at the same time, the current information is fed back to the processor. Rotate the switching shaft 7 to rotate the adapter round pin 701 to Figure 10 In the state of being, compared to Figure 8 In this state, a digital voltmeter 12 is added in parallel outside the workpiece to directly detect the voltage of the workpiece; at the same time, the voltage information is fed back to the processor. Based on the principle of R=U / I, the resistance of the circuit indicator 103 is excluded, and the resistance is calculated by the program, which affects and feeds back to the digital resistance meter 10 for display. By repeating the above steps, a quick resistance measurement can be achieved.
Claims
1. An electrical device resistance measuring device for electromechanical device manufacturing, characterized by, Include: Frame support (1), the inside upper rear of the frame support (1) is matched with two groups of connectors (2) that are horizontally slidably arranged; the top of the front side of the connector (2) is rotatably provided with a T-shaped rotating seat (3) matched with a tapered roller bearing; the outside lower part of the T-shaped rotating seat (3) is fixedly provided with a ring worm gear (301); the bottom of the connector (2) is rotatably provided with a hollow worm (201), and the hollow worm (201) is in transmission connection with the ring worm gear (301); the inside of the frame support (1) is rotatably provided with a hexagonal shaft (4), and the hexagonal shaft (4) is in sliding connection with the hollow worm (201) in the middle; the top of the T-shaped rotating seat (3) is fixedly provided with a connecting assembly frame (303), and the inside of the connecting assembly frame (303) is fixedly provided with two groups of spring guide rods (304); the outside of the two groups of spring guide rods (304) is slidably provided with two groups of connecting copper sheets (305), and the two ends of the outside of the spring guide rod (304) are provided with springs to adhere the two groups of connecting copper sheets (305); the upper corners of the adhering surfaces of the two groups of connecting copper sheets (305) are arc structures; the rear lower part of the frame support (1) is contracted upwards, and two groups of terminal blocks (5) are fixedly arranged below the contraction part; a wire connector (6) is fixedly arranged at the position in the middle of the two groups of terminal blocks (5), and a circular through slot is formed in the middle of the wire connector (6); the rear side of the frame support (1) is fixedly provided with an outer frame (8), and a processor bin (9) is fixedly arranged at the top middle of the outer frame (8).
2. The apparatus for measuring resistance of an electrical device for manufacturing a mechatronic apparatus according to claim 1, wherein The front side of the processor bin (9) is fixedly provided with a digital resistance meter (10), a digital ammeter (11) and a digital voltmeter (12).
3. The apparatus for measuring resistance of an electrical device for manufacturing a mechatronic apparatus according to claim 1, wherein The middle of the frame support (1) is rotatably provided with a control shaft (101); the rear upper part of the inside of the frame support (1) is rotatably provided with two groups of pitch adjusting lead screws (102), and the two groups of pitch adjusting lead screws (102) are in bevel gear transmission connection with the control shaft (101); the top rear side of the connector (2) is fixedly provided with a nut block, and the nut block is in threaded connection with different pitch adjusting lead screws (102) respectively; the front side of the frame support (1) is also fixedly provided with a passage indicating lamp (103).
4. The apparatus for measuring resistance of an electrical device for manufacturing a mechatronic apparatus according to claim 1, wherein The bottom front end of the connector (2) is fixedly provided with a limiting block (202); the outside of the T-shaped rotating seat (3) is fixedly provided with a limiting ring (302), and a recessed belt that is at right angles and staggered is formed outside the limiting ring (302); the two ends of the recessed belt are extended and formed, and the extension length is half of the width of the limiting block (202), so that the limiting block (202) can limit the rotation of the limiting ring (302) by 90 degrees.
5. The apparatus for measuring resistance of an electrical device for manufacturing a mechatronic apparatus according to claim 1, wherein The top turning part of the connecting copper sheet (305) extends outward; in the two adjacent groups of connecting copper sheets (305), the bottom of one group of connecting copper sheets (305) is extended and turned, and a circuit is connected to the terminal block (5) at the bottom of the turning part.
6. The apparatus for measuring resistance of an electrical device for manufacturing a mechatronic apparatus according to claim 5, wherein The wiring terminal (5) is of a double-channel structure, and an elastic copper sheet (501) is arranged in the middle bottom of each channel of the wiring terminal (5) through a threaded core rod (502), and a spring is arranged on the threaded core rod (502) after penetrating through the elastic copper sheet (501); the threaded core rod (502) is fixed in the middle of the wiring terminal (5) through threaded connection; the two ends of the elastic copper sheet (501) are both of a curved structure protruding upward; the bottom of the wiring terminal (5) is provided with screw rods on both sides; the bottom lines of the connecting copper sheets (305) are arranged to be branched and installed at the front ends of the two groups of channels of the wiring terminal (5).
7. The apparatus for measuring resistance of an electrical device for manufacturing a mechatronic apparatus according to claim 3, wherein The main body of the wiring connector (6) is made of insulating material; six groups of equidistantly distributed wiring copper bases (601) are embedded in the inside of the wiring connector (6), the rear ends of the wiring copper bases (601) all penetrate out of the wiring connector (6), screw holes are arranged at the rear ends of the wiring copper bases (601), threaded rods are arranged in the screw holes, and wiring noses are arranged outside the threaded rods.
8. The apparatus for measuring resistance of an electrical device for manufacturing a mechatronic apparatus according to claim 7, wherein The rear end of the switching shaft (7) is fixedly provided with an adapter round pile (701), four groups of elastic contact blocks (702) are slidingly arranged outside the adapter round pile (701), the elastic contact blocks (702) can be fitted and contracted into the adapter round pile (701), so that the outer surfaces of the elastic contact blocks (702) are aligned with the adapter round pile (701); The adapter round pile (701) is rotationally arranged in a circular through slot of the wiring connector (6); one end of the elastic contact block (702) in the adapter round pile (701) is fixedly provided with a spring rod, the elastic contact block (702) can be automatically popped out through the spring rod; the elastic contact blocks (702) are unevenly distributed, the staggered angle between the two adjacent groups of elastic contact blocks (702) is 60 degrees, and lines are arranged to be communicated between the two adjacent groups of elastic contact blocks (702).
9. The apparatus for measuring resistance of an electrical device for manufacturing a mechatronic apparatus according to claim 7, wherein The rear end of the left channel of the left wiring terminal (5) is arranged to be connected to the negative electrode of the passage indicator lamp (103), and the positive electrode of the passage indicator lamp (103) is connected to the positive electrode of the power supply; the rear end of the right channel of the left wiring terminal (5) is arranged to be connected to the wiring copper base (601) in the middle of the left side of the wiring connector (6); the rear end of the left channel of the right wiring terminal (5) is arranged to be connected to the wiring copper base (601) in the middle of the right side of the wiring connector (6).
10. The apparatus for measuring resistance of an electrical device for manufacturing a mechatronic apparatus according to claim 9, wherein The inside of the processor bin (9) is provided with a processor, the processor is connected with a digital display ammeter (11) and a digital display voltmeter (12); the positive electrode of the digital display ammeter (11) is connected at the wiring copper base (601) at the lower right of the wiring connector (6), and the negative electrode of the digital display ammeter (11) is connected to the negative electrode of the power supply; the positive electrode of the digital display voltmeter (12) is connected at the wiring copper base (601) at the lower left of the wiring connector (6), and the negative electrode of the digital display voltmeter (12) is connected at the wiring copper base (601) at the upper right of the wiring connector (6).
Citation Information
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