CN212364544U - Ultrasonic scalpel part detection device - Google Patents

Ultrasonic scalpel part detection device Download PDF

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Publication number
CN212364544U
CN212364544U CN202020598124.5U CN202020598124U CN212364544U CN 212364544 U CN212364544 U CN 212364544U CN 202020598124 U CN202020598124 U CN 202020598124U CN 212364544 U CN212364544 U CN 212364544U
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diode
button switch
groove
emitting diode
electrode
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CN202020598124.5U
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Chinese (zh)
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徐亮
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Nanchang Yuanhe Zezhong Technology Co ltd
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Nanchang Yuanhe Zezhong Technology Co ltd
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Abstract

The utility model discloses an ultrasonic scalpel part detection device, detection circuitry module includes emitting diode DS1, emitting diode DS2, resistance R1 and resistance R2, the part circuit module that awaits measuring includes diode D1, diode D2, button switch S1, button switch S1, electrode A14 and electrode B15, emitting diode DS1 all connects the power drive module with emitting diode DS2 'S positive pole, the negative pole is the one end of connecting resistance R1 and resistance R2 respectively, microprocessor is connected to resistance R1 and resistance R2' S the other end, button switch S1 all passes through electrode A14 with button switch S1 'S one end and connects microprocessor, diode D1 negative pole is connected to button switch S1' S the other end, diode D1 positive pole is all connected through electrode B1 with diode D1 positive pole to diode D1 positive pole. The utility model discloses an supersound scalpel part detection device is operated very portably, and labour saving and time saving has greatly improved work efficiency and testing result's accuracy.

Description

Ultrasonic scalpel part detection device
Technical Field
The utility model belongs to the technical field of ultrasonic scalpel part detects, concretely relates to ultrasonic scalpel part detection device.
Background
The existing detection means of the ultrasonic scalpel part is that a multimeter pen contacts two electrodes of the part to measure the on-off performance of the part. This detection approach has the following disadvantages: 1. two poles of the part are hemispherical surfaces with the diameter of 2-3mm, and when the tip of the stylus is difficult to contact the surface of the part, the stylus often needs to be contacted for multiple times to detect whether a circuit is connected or not, so that the detection difficulty is high; 2. the method comprises the following steps that a red meter pen of the multimeter is in contact with a hemispherical electrode B, a black meter pen of the multimeter is in contact with a hemispherical electrode A, and a button switch S1 is pressed simultaneously, so that whether a circuit on one side of a button switch S1 is connected or not can be detected only after the three conditions are met, and similarly, whether the circuit on one side of the button switch S1 is connected or not is detected, the positions of the black meter pen and the red meter pen need to be changed, and the detection procedures need to be completed by two operators in a coordinated mode; 3. the operator is required to have some knowledge of the multimeter knowledge.
SUMMERY OF THE UTILITY MODEL
The utility model provides an ultrasonic scalpel part detection device to solve the problem of proposing among the above-mentioned background art. The technical scheme of the utility model is realized like this:
an ultrasonic scalpel part detection device comprises a power supply driving module, a microprocessor, a detection circuit module and a part circuit module to be detected, the detection circuit module comprises a light emitting diode DS1, a light emitting diode DS2, a resistor R1 and a resistor R2, the circuit module to be tested of the part comprises a diode D1, a diode D2, a button switch S1, a button switch S2, an electrode A14 and an electrode B15, the anodes of the light emitting diode DS1 and the light emitting diode DS2 are both connected with the power driving module, the cathodes are respectively connected with one end of the resistor R1 and one end of the resistor R2, the other ends of the resistor R1 and the resistor R2 are connected with the microprocessor, one ends of the button switch S1 and the button switch S2 are connected with the microprocessor through an electrode A14, the other end of the push-button switch S1 is connected with the cathode of a diode D1, the other end of the push-button switch S2 is connected with the anode of a diode D2, the anode of the diode D1 and the cathode of the diode D2 are both connected with the microprocessor through the electrode B15.
The utility model discloses an among the ultrasonic scalpel part detection device, still include detection box and microscope carrier, the microscope carrier passes through the bolt to be installed on the detection box cover, be equipped with the part on the microscope carrier and withhold the groove, the part withholds and installs interior copper ring and outer copper ring in the groove, and the part withholds in the part withholds the inslot, its electrode A14, electrode B15 respectively with interior copper ring, outer copper ring contact to through interior copper ring and outer copper ring connection microprocessor, microprocessor arranges in the detection box, button S1, button S2 connect in part one side through the copper sheet, and place on the microscope carrier terminal surface, emitting diode DS1 and emitting diode DS 2' S lamp holder portion position upwards salient outside the detection box lid, still install switch and power indicator on the detection box cover, the detection box side is equipped with the mouth that charges.
The utility model discloses an among the ultrasonic scalpel part detection device, the microscope carrier includes roof and projection, roof and projection all are oblong, the projection integral type is connected in the roof bottom, the part withholds the groove and offers downwards from the roof, and its central line is the same with the projection central line, still be equipped with first screw hole on the roof, two part withholds the groove both sides are located to first screw hole symmetry.
The utility model discloses an among the ultrasonic scalpel part detection device, be equipped with projection hole and second screw hole, two on the detection box lid projection hole both sides are located to second screw hole symmetry to correspond with first screw hole, the projection is pegged graft downtheholely at the projection, bolted connection is in first screw hole and second screw hole.
The utility model discloses an among the ultrasonic scalpel part detection device, the part withholds the indent and includes inside groove and water jacket, the water jacket is coaxial to be located outside the inside groove, interior copper ring is installed in the inside groove, outer copper ring is installed in the water jacket.
The utility model discloses an among the ultrasonic scalpel part detection device, the inside groove side is equipped with a first electrical connection hole that runs through the microscope carrier, first electrical connection hole intercommunication inside groove, the water jacket side is equipped with a second electrical connection hole that runs through the microscope carrier, second electrical connection hole intercommunication water jacket.
Implement the utility model discloses a this kind of supersound scalpel part detection device has following beneficial effect:
1. the ultrasonic scalpel part detection device of the utility model does not need two persons to operate simultaneously, only needs one person to operate, and saves labor cost;
2. the utility model discloses an supersound scalpel part detection device operates very portably, need not to train the relevant knowledge of universal meter to the workman, and has avoided leading to the testing result inaccurate because of operating personnel's misoperation, and labour saving and time saving has greatly improved work efficiency and testing result's accuracy.
Drawings
FIG. 1 is a schematic diagram of a multimeter for testing parts;
FIG. 2 is a schematic circuit diagram of the ultrasonic scalpel part detecting device of the present invention;
FIG. 3 is a schematic structural view of the ultrasonic scalpel part detecting device of the present invention during part detection;
FIG. 4 is a schematic structural view of the ultrasonic scalpel part detecting device of the present invention;
FIG. 5 is a cross-sectional view taken along plane A of FIG. 4;
fig. 6 is a top view of the carrier of the present invention;
FIG. 7 is a cross-sectional view taken along plane B of FIG. 6;
fig. 8 is a bottom view of the carrier of the present invention;
FIG. 9 is a top view of the lid of the detecting box of the present invention;
FIG. 10 is a schematic structural view of the inner copper ring of the present invention;
fig. 11 is a schematic structural view of the outer copper ring of the present invention.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
As shown in fig. 1 to 11, the ultrasonic scalpel part detection device comprises a power driving module, a microprocessor, a detection circuit module and a part circuit module to be detected, wherein the detection circuit module comprises a light emitting diode DS 11, a light emitting diode DS 22, a resistor R1 and a resistor R2, the part circuit module to be detected comprises a diode D1, diode D2, button switch S1, button switch S2, electrode A14 and electrode B15, the positive poles of light emitting diode DS 11 and light emitting diode DS 22 are all connected with the power driving module, the negative poles of the light emitting diode DS 22 are respectively connected with one ends of resistor R1 and resistor R2, the other ends of resistor R1 and resistor R2 are connected with the microprocessor, one ends of button switch S1 and button switch S2 are both connected with the microprocessor through electrode A14, the other end of button switch S1 is connected with the negative pole of diode D1, the other end of button switch S2 is connected with the positive pole of diode D2, and the positive pole of diode D1 and the negative pole of diode D2 are both connected with the microprocessor through electrode B15. Still include detection box 3 and microscope carrier 4, microscope carrier 4 passes through bolt 5 to be installed on the detection box 3 box cover, be equipped with part withhold groove 41 on the microscope carrier 4, install interior copper ring 6 and outer copper ring 7 in the part withhold groove 41, part 8 withholds in part withhold groove 41, its electrode A14, electrode B15 contacts with interior copper ring 6, outer copper ring 7 respectively, and be connected microprocessor through interior copper ring 6 and outer copper ring 7, microprocessor arranges in detection box 3, button switch S1, button switch S2 connects in part 8 one side through the copper sheet, and place on microscope carrier 4 terminal surface, emitting diode DS 11 and emitting diode DS 22' S lamp holder position upwards salient outside detection box 3 lid, still install switch 9 and power indicator lamp 10 on the detection box 3 box cover, detection box 3 side is equipped with charging port 11, can conveniently charge. This supersound scalpel part detection device operates very portably, need not to train the relevant knowledge of universal meter to the workman, withhold groove 41 through seting up the part, can settle and spacing to the part very conveniently effectively, a plurality of artificial fixed operation has been saved, and the use of 16 pens 17 of universal meter is not only replaced to interior copper ring 6 and outer copper ring 7 in the part withholds groove 41, but also greatly increased the contactable region between detection device conductor and the part electrode, ensure that the part electrode can effectively contact with the conductor, and effectively be connected between with microprocessor, avoided leading to the testing result inaccurate because of operating personnel's misoperation, time saving and labor saving, the accuracy of work efficiency and testing result has greatly been improved.
Microscope carrier 4 includes roof 42 and projection 43, roof 42 and projection 43 all are oblong, projection 43 integral type is connected in roof 42 bottom, part withhold groove 41 is seted up downwards from roof 42, its central line is the same with projection 43 central line, still be equipped with first screw hole 44 on the roof 42, part withhold groove 41 both sides are located to two first screw holes 44 symmetry, be equipped with projection hole 31 and second screw hole 32 on detecting 3 lids of box, projection hole 31 both sides are located to two second screw holes 32 symmetries, and correspond with first screw hole 44, projection 43 is pegged graft in projection hole 31, bolt 3 connects in first screw hole 44 and second screw hole 32. Adopt detachable connected mode between detection box 3 and the microscope carrier 4, not only make the loading and unloading convenient and fast more between detection box 3 and the microscope carrier 4, can also be convenient for detection circuitry module's connection installation, inspection maintenance.
The part buckling groove 41 comprises an inner groove 411 and an outer groove 412, the outer groove 412 is coaxially arranged outside the inner groove 411, the inner copper ring 6 is arranged in the inner groove 411, the outer copper ring 7 is arranged in the outer groove 412, a first electric connection hole 12 penetrating through the carrying platform 4 is formed in the side of the inner groove 411, the first electric connection hole 12 is communicated with the inner groove 411, a second electric connection hole 13 penetrating through the carrying platform 4 is formed in the side of the outer groove 412, and the second electric connection hole 13 is communicated with the outer groove 412. Conductors are respectively connected into the first electric connecting hole 12 and the second electric connecting hole 13 to electrically connect the inner copper ring 6 and the outer copper ring 7 with the microprocessor, and the electrode A14 and the electrode B15 are respectively electrically connected with the microprocessor through the inner copper ring 6 and the outer copper ring 7.
When the ultrasonic scalpel is in work, the power switch 9 is turned on, the power indicator lamp 10 is turned on, the part 8 is buckled and pressed in the part buckling groove 41, the button switch S1 is pressed, the light emitting diode DS1 is turned on, the button switch S2 is pressed, the light emitting diode DS2 is turned on, a circuit to be tested of the part is connected, the ultrasonic scalpel part is qualified, if the button switch S1 is pressed, the light emitting diode DS1 is not turned on, or the button switch S2 is pressed, the light emitting diode DS2 is not turned on, the circuit to be tested of the part is disconnected, and the ultrasonic scalpel part is unqualified.
The present invention is not limited to the embodiments, and any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (6)

1. The ultrasonic scalpel part detection device is characterized by comprising a power supply driving module, a microprocessor, a detection circuit module and a circuit module to be detected of parts, wherein the detection circuit module comprises a light emitting diode DS1(1), a light emitting diode DS2(2), a resistor R1 and a resistor R2, the circuit module to be detected of the parts comprises a diode D1, a diode D2, a button switch S1, a button switch S2, an electrode A14 and an electrode B15, the anodes of the light emitting diode DS1(1) and the light emitting diode DS2(2) are connected with the power supply driving module, the cathodes of the light emitting diode DS1 and the light emitting diode DS2 are respectively connected with one ends of a resistor R1 and a resistor R2, the other ends of the resistor R1 and the resistor R2 are connected with the microprocessor, one ends of the button switch S1 and the button switch S2 are connected with the microprocessor through the electrode A14, the other end of the button switch S1 is connected with the cathode of a diode D1, the, the anode of the diode D1 and the cathode of the diode D2 are both connected with the microprocessor through the electrode B15.
2. The ultrasonic scalpel part detection device according to claim 1, further comprising a detection box (3) and a carrier (4), wherein the carrier (4) is mounted on a box cover of the detection box (3) through a bolt (5), the carrier (4) is provided with a part buckling groove (41), an inner copper ring (6) and an outer copper ring (7) are mounted in the part buckling groove (41), a part (8) is buckled and pressed in the part buckling groove (41), an electrode A14 and an electrode B15 of the part are respectively in contact with the inner copper ring (6) and the outer copper ring (7) and are connected with a microprocessor through the inner copper ring (6) and the outer copper ring (7), the microprocessor is arranged in the detection box (3), the button switch S1 and the button switch S2 are connected to one side of the part (8) through a copper sheet and are arranged on an end face of the carrier (4), a lamp head part of the light emitting diode DS1(1) and the light emitting diode DS2(2) protrudes upwards from the detection box cover, the detection box (3) is also provided with a power switch (9) and a power indicator lamp (10) on the box cover, and the side surface of the detection box (3) is provided with a charging port (11).
3. The ultrasonic scalpel part detection device according to claim 2, wherein the carrier (4) comprises a top plate (42) and a convex pillar (43), the top plate (42) and the convex pillar (43) are both oblong, the convex pillar (43) is integrally connected to the bottom of the top plate (42), the part pressing groove (41) is formed downwards from the top plate (42), the center line of the part pressing groove is the same as the center line of the convex pillar (43), the top plate (42) is further provided with first threaded holes (44), and the two first threaded holes (44) are symmetrically formed in two sides of the part pressing groove (41).
4. The ultrasonic scalpel part detecting device according to claim 3, wherein a protruding column hole (31) and second threaded holes (32) are formed in a cover of the detecting box (3), the second threaded holes (32) are symmetrically formed in two sides of the protruding column hole (31) and correspond to the first threaded holes (44), the protruding column (43) is inserted into the protruding column hole (31), and the bolt (5) is connected into the first threaded hole (44) and the second threaded holes (32).
5. The ultrasonic scalpel part detecting device according to claim 2, wherein the part catching groove (41) comprises an inner groove (411) and an outer groove (412), the outer groove (412) is coaxially arranged outside the inner groove (411), the inner copper ring (6) is arranged in the inner groove (411), and the outer copper ring (7) is arranged in the outer groove (412).
6. The ultrasonic scalpel part detecting device of claim 5, wherein a first electrical connection hole (12) penetrating through the stage (4) is formed beside the inner slot (411), the first electrical connection hole (12) is communicated with the inner slot (411), a second electrical connection hole (13) penetrating through the stage (4) is formed beside the outer slot (412), and the second electrical connection hole (13) is communicated with the outer slot (412).
CN202020598124.5U 2020-04-21 2020-04-21 Ultrasonic scalpel part detection device Active CN212364544U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020598124.5U CN212364544U (en) 2020-04-21 2020-04-21 Ultrasonic scalpel part detection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020598124.5U CN212364544U (en) 2020-04-21 2020-04-21 Ultrasonic scalpel part detection device

Publications (1)

Publication Number Publication Date
CN212364544U true CN212364544U (en) 2021-01-15

Family

ID=74133161

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020598124.5U Active CN212364544U (en) 2020-04-21 2020-04-21 Ultrasonic scalpel part detection device

Country Status (1)

Country Link
CN (1) CN212364544U (en)

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