A semiconductor optoelectronic device measurement apparatus

By designing a semiconductor optoelectronic device measurement device and utilizing the cooperation of an active motor and a developing mechanism, a highly efficient colorimetric detection of surface cracks in crystalline silicon solar cells was achieved, solving the problem of inaccurate detection in traditional methods and improving the detection effect.

CN120594540BActive Publication Date: 2026-02-06SICHUAN YUANJI HAONENG TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510852689.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-24
Publication Date
2026-02-06
Estimated Expiration
2045-06-24

AI Technical Summary

Technical Problem

Existing technologies are insufficient for effectively detecting cracks on the surface of crystalline silicon solar cell glass, and traditional methods may interfere with the coating or frame components, leading to inaccurate test results.

Method used

A semiconductor optoelectronic device measurement device was designed. Through the cooperation of an active motor, a reciprocating lead screw, a flip plate and a developing mechanism, the device realizes the process of fixing, applying dye, flipping and developing crystalline silicon solar cells. The color contrast of the dye is used to improve the visualization effect of crack detection.

Benefits of technology

It improves the color contrast of cracks on the surface of crystalline silicon solar cells, enhances the visualization of cracks, and ensures the accuracy and reliability of detection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of semiconductor photoelectric device measuring device, the bottom plate left and right sides are fixedly connected with L type support plate, two the side corresponding with L type support plate is commonly fixedly connected with top plate, the driven motor is in the top plate rear side, the driven motor power output shaft penetrates the inner chamber of top plate, and reciprocating screw rod is fixedly connected, the reciprocating screw rod front end is inserted in the inside wall of top plate, the cooperation between component driven motor, top plate, side rod, connecting plate, reciprocating screw rod, fixed plate, dryer, turnover plate, L type fixed plate, guide plate, vertical board, limit plate, crank, rack, driven gear, driving gear and other components can be realized when the crack on the surface of crystalline silicon solar cell needs to be detected, first crystalline silicon solar cell is fixed, and surface is smeared with dye, crack capillary action inhales dye, crack is dark trace, improve color contrast.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of semiconductor optoelectronic device measurement, in particular to a semiconductor optoelectronic device measurement device. BACKGROUND

[0002] Semiconductor optoelectronic devices are a large class of electronic devices that use the photoelectric effect of semiconductor materials (such as photovoltaic effect, photoconductive effect, electroluminescence effect, etc.) to convert electrical energy into optical energy, or convert optical energy into electrical energy, or detect, modulate, and convert optical signals. They are extremely widely used in modern information society.

[0003] Crystalline silicon solar cells use the photovoltaic effect, and a semiconductor PN junction (or other heterojunction structure) generates an electromotive force under light to provide direct current power to an external circuit, so solar cells belong to a type of semiconductor optoelectronic device. Crystalline silicon solar cells need to be measured at almost all key stages in their entire life cycle, from raw material preparation to final system operation and even recycling.

[0004] When crystalline silicon solar cells are recycled, the degree of fragmentation of the glass surface needs to be measured, but in general, it is difficult to detect cracks on the glass surface, and it is highly subjective and requires experience. The glass surface of a solar cell may have a textured surface or a coating, and ordinary methods may be disturbed. For example, the oil immersion method may be compromised on coated glass, and the knocking method may not be suitable for components with fixed frames. SUMMARY

[0005] To achieve the above object, the present application provides the following technical scheme:

[0006] The utility model provides a semiconductor photoelectric device measuring device, including bottom plate and crystalline silicon solar cell, both sides of bottom plate are fixedly connected with L type support plate, the side of two L type support plates corresponds is fixedly connected with roof together, the back side of roof has driving motor, driving motor power output shaft penetrates the inner chamber of roof and is fixedly connected with reciprocating screw rod, reciprocating screw rod front end inserts in the inboard wall of roof, the inner chamber of roof is provided with two side position rods, two side position rods are left and right symmetry settings, reciprocating screw rod outside screw thread is connected with moving block, two side position rods all penetrate the inner chamber of moving block, moving block bottom is provided with moving mechanism, the front side of moving mechanism is provided with spraying mechanism, the front side of bottom plate is provided with developing mechanism, moving mechanism includes two L type fixed plate, two L type fixed plate is front and back symmetry setting, two L type fixed plate top all are fixedly connected in moving block, moving block bottom is close to left side fixedly connected with vertical board, the first rotation axis is arranged between two L type fixed plate, the left end of first rotation axis is fixedly connected with driven gear, the inner chamber of vertical board is close to the bottom and is provided with the second rotation axis, the left end of second rotation axis is fixedly connected with driving gear, the left end of second rotation axis is fixedly connected with crank, moving block rear side is fixedly connected with connecting plate, the front side of connecting plate is close to the bottom and is fixedly connected with guide plate, the cross section of guide plate is L type setting, the guide plate is provided with guide opening, the left side of crank is close to the front side and inserts with the block wheel, the block wheel is pasted with guide opening, the bottom of driven gear and driving gear is jointly engaged with rack, the bottom of rack is slidably connected with limit plate, the right side of limit plate is fixedly connected on vertical board, the outside of first rotation axis is fixedly sleeved with turnover plate, the spraying mechanism includes mounting plate, the mounting plate is located in the top of turnover plate, the rear side center of mounting plate is fixedly connected with median plate, the rear side of median plate is fixedly connected between two vertical boards, the front side of mounting plate has smearing motor, the inner chamber of smearing motor power output shaft penetrates mounting plate and is fixedly connected with reciprocating lever, reciprocating lever right end inserts in the inboard wall of mounting plate, the bottom of reciprocating lever has two slide rods, two slide rods are front and back symmetry settings, two slide rods left and right ends all insert inboard wall of mounting plate, two slide rods outside jointly sleeve with block piece, the top of block piece is engaged with reciprocating lever, the bottom of block piece is fixedly connected with smearing mechanism, smearing mechanism bottom is pasted with crystalline silicon solar cell top, the top of turnover plate is provided with sliding groove, the sliding groove is close to the rear side and is slidably connected with reciprocating block, the front side of reciprocating block is fixedly connected with fixed air cylinder, the bottom of fixed air cylinder is fixedly connected on turnover plate, the top of reciprocating block is hinged with two swing plates, two swing plates are left and right symmetry settings, two swing plates corresponding side are all hinged with opposite plate, two opposite plates are away from one side and are all fixedly connected with clamping plate, two clamping plates corresponding side are all pasted with crystalline silicon solar cell outside.The top plate front side center is fixedly connected with a fixed plate, and the other side of the fixed plate is fixedly connected with a dryer.

[0007] Preferably, the developing mechanism comprises a collecting frame, a material sticking frame is arranged on the front side of the collecting frame, the material sticking frame is provided with material sticking plates on the top, two movable plates are fixedly connected to the top of the material sticking plates, a rectangular opening is formed in the movable plates, sliding blocks are slidably connected to the movable plates near the top, welding plates are hingedly connected to the sides of the sliding blocks away from each other, and third transmission plates are hingedly connected to the movable plates near the bottom.

[0008] Preferably, the left sides of the welding plates near the bottom are fixedly connected with fixing members, the top of the fixing members is fixedly connected with clamping plates, third rotating shafts are penetratingly arranged in the inner cavities of the clamping plates near the top, a synchronous rod is fixedly connected between the third rotating shafts, the other side of the third transmission plate is sleeved on the third rotating shaft, a second transmission plate is sleeved on the other end of the third rotating shaft, a first transmission plate is hingedly connected to the second transmission plate near the front side, a placing plate is arranged on the front side of the collecting frame near the right side, an intermittent plate is hingedly connected to the placing plate near the top on the right side, a plurality of U-shaped grooves are formed in the outer side of the intermittent plate, the U-shaped grooves are arranged in a ring array with the center of the intermittent plate as the center, a plurality of arc-shaped grooves are formed in the outer side of the intermittent plate, and the arc-shaped grooves and the U-shaped grooves are arranged in a cross arrangement.

[0009] Preferably, the first transmission plate is hingedly connected with a linkage plate near the back side, an intermittent motor is mounted on the right side of the placing plate near the bottom, an arc-shaped plate is fixedly sleeved on the outer side of the power output shaft of the intermittent motor, a driving plate is fixedly connected to the right side of the arc-shaped plate, a driving rod is mounted on the left side of the driving plate near the top, the driving rod and the U-shaped grooves are arranged in a matching manner, the other side of the linkage plate is fixedly connected with the arc-shaped plate, and the linkage plate and the driving plate are arranged in a ninety-degree arrangement.

[0010] Compared with the prior art, the present application has the following advantages:

[0011] 1、The present application can realize the fixation of the crystalline silicon solar cell and the smearing of the dye on the surface when the crack on the surface of the crystalline silicon solar cell needs to be detected, the dye is absorbed by the capillary action of the crack, the crack has a dark trace, and the color development contrast is improved through the cooperation of the component main drive motor, the top plate, the side rod, the connecting plate, the reciprocating screw rod, the fixed plate, the dryer, the turnover plate, the L-shaped fixed plate, the guide plate, the vertical plate, the limiting plate, the crank, the rack, the driven gear and the driving gear.

[0012] 2, The application improves the mutual cooperation between the components such as synchronous lever, placing plate, intermittent motor, first transmission plate, second transmission plate, clamping plate, third transmission plate, movable plate, welding plate, sliding block, fixing piece, driving plate, arc-shaped plate, linkage plate and intermittent plate, when the crystalline silicon solar cell is turned over by 90 degrees, the excess dye on the surface can flow into the inside of the collecting frame, at the same time, the heat air scanner scans the crystalline silicon solar cell, the dye in the crack is improved in concentration and color due to solvent volatilization, the white gypsum powder in the inside of the dye sticking frame is applied on the surface of the crystalline silicon solar cell by the dye sticking plate, the dye contrast at the crack is more obvious, and the color development contrast is further improved. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is a structural schematic view of the application;

[0014] Figure 2 It is a right view of the structural view of the application;

[0015] Figure 3 It is a bottom view of the structural view of the application;

[0016] Figure 4 It is a structural schematic view of the component moving mechanism of the application;

[0017] Figure 5 It is a bottom view of the component moving mechanism structure of the application;

[0018] Figure 6 It is a plan view of the component moving mechanism structure of the application;

[0019] Figure 7 It is a structural schematic view of the component mounting plate of the application;

[0020] Figure 8 It is a bottom view of the component mounting plate structure of the application;

[0021] Figure 9 It is a structural schematic view of the component spraying mechanism of the application;

[0022] Figure 10 It is a right view of the developing mechanism structure of the application;

[0023] Figure 11 It is a structural schematic view of the developing mechanism of the application;

[0024] Figure 12 It is Figure 10 The enlarged view at A in the middle.

[0025] The figure label: 1, the bottom plate; 2, L type support plate; 3, smearing motor; 4, guide plate; 5, driving motor; 6, top plate; 7, moving block; 8, connecting plate; 9, side rod; 10, mounting plate; 11, reciprocating screw rod; 12, fixed plate; 13, dryer; 14, collection frame; 15, material sticking frame; 16, material sticking plate; 17, crystalline silicon solar cell; 18, turnover plate; 19, L type fixed plate; 20, vertical plate; 21, limit plate; 22, crank; 23, rack; 24, driven gear; 25, driving gear; 26, mid plate; 27, smearing mechanism; 28, slide rod; 29, reciprocating rod; 30, fitting block; 31, opposite plate; 32, clamp plate; 33, swing plate; 34, reciprocating block; 35, fixed cylinder; 36, synchronous rod; 37, placing plate; 38, intermittent motor; 39, first transmission plate; 40, second transmission plate; 41, clamping plate; 42, third transmission plate; 43, movable plate; 44, welding plate; 45, sliding block; 46, fixing piece; 47, driving plate; 48, arc plate; 49, linkage plate; 50, intermittent plate. DETAILED DESCRIPTION

[0026] Please refer to Figures 1-12 The application provides a technical solution:

[0027] A semiconductor optoelectronic device measuring device, comprising a bottom plate 1 and a crystalline silicon solar cell 17, both sides of the bottom plate 1 are fixedly connected with L type support plates 2, and the two L type support plates 2 are fixedly connected with a top plate 6 on the side corresponding to each other, the rear side of the top plate 6 is provided with a driving motor 5, the power output shaft of the driving motor 5 penetrates the inner cavity of the top plate 6 and is fixedly connected with a reciprocating screw rod 11, the front end of the reciprocating screw rod 11 is inserted into the inner side wall of the top plate 6, the inner cavity of the top plate 6 is provided with two side rods 9, the two side rods 9 are symmetrically arranged, the outer side of the reciprocating screw rod 11 is threadedly connected with a moving block 7, the inner cavity of the moving block 7 is penetrated by the two side rods 9, and the bottom of the moving block 7 is provided with a moving mechanism; the front side of the moving mechanism is provided with a spraying mechanism, and the front side of the bottom plate 1 is provided with a developing mechanism.

[0028] The moving mechanism comprises two L-shaped fixed plates 19 which are symmetrically arranged front and back, the top of each of the two L-shaped fixed plates 19 is fixedly connected to the moving block 7, the bottom of the moving block 7 is fixedly connected to a vertical plate 20 near the left side, a first rotating shaft is penetratingly arranged between the two L-shaped fixed plates 19, the left end of the first rotating shaft is fixedly connected to a driven gear 24, a second rotating shaft is penetratingly arranged in the inner cavity of the vertical plate 20 near the bottom end, the left end of the second rotating shaft is fixedly connected to a driving gear 25, the left end of the second rotating shaft is fixedly connected to a crank 22, the rear side of the moving block 7 is fixedly connected to a connecting plate 8, the front side of the connecting plate 8 is fixedly connected to a guide plate 4 near the bottom, the guide plate 4 is arranged in an L-shaped cross section, the guide plate 4 is provided with a guide opening, the crank 22 is inserted with a matching wheel near the left side of the front side, the matching wheel is matched with the guide opening, the bottom of the driven gear 24 and the driving gear 25 is jointly meshed with a rack 23, the bottom of the rack 23 is slidingly connected to a limiting plate 21, the right side of the limiting plate 21 is fixedly connected to the vertical plate 20, the outer side of the first rotating shaft is fixedly sleeved with a turnover plate 18;

[0029] When the driving motor 5 is started, the reciprocating screw rod 11 can be driven to rotate through the power output shaft, the moving block 7 can be driven to move to the front side when the reciprocating screw rod 11 rotates, the vertical plate 20 and the L-shaped fixed plate 19 can be driven to move to the front side when the moving block 7 moves to the front side, the crystalline silicon solar cell 17 can be driven to move to the front side when the L-shaped fixed plate 19 moves to the front side, the crank 22 can be driven to move to the front side when the vertical plate 20 moves to the front side, the matching wheel can be driven to move along the guide opening when the crank 22 moves to the front side, the driving gear 25 can be driven to rotate when the matching wheel contacts the inclined portion of the guide opening, the limiting plate 21 can be driven to move to the front side when the driving gear 25 rotates, the driven gear 24 can be driven to rotate when the limiting plate 21 moves to the front side, the second rotating shaft can be driven to rotate when the driven gear 24 rotates, the turnover plate 18 can be driven to rotate when the second rotating shaft rotates, and the crystalline silicon solar cell 17 can be driven to rotate by 90 degrees when the turnover plate 18 rotates.

[0030] The spraying mechanism comprises a mounting plate 10 located at the top of the turnover plate 18, a center plate 26 fixedly connected at the center of the rear side of the mounting plate 10, the rear side of the center plate 26 fixedly connected between the two vertical plates 20, a smearing motor 3 at the front side of the mounting plate 10, a power output shaft of the smearing motor 3 penetrating the inner cavity of the mounting plate 10 and fixedly connected with a reciprocating rod 29, the reciprocating rod 29 inserted into the inner side wall of the mounting plate 10 at the right end, two slide rods 28 at the bottom of the reciprocating rod 29, the two slide rods 28 symmetrically arranged front and back, the two slide rods 28 inserted into the inner side wall of the mounting plate 10 at the left and right ends, a matching block 30 commonly sleeved outside the two slide rods 28, the matching block 30 engaged with the reciprocating rod 29 at the top, a smearing mechanism 27 fixedly connected with the matching block 30 at the bottom, the smearing mechanism 27 abutting the top of the crystalline silicon solar cell 17, a sliding groove formed at the top of the turnover plate 18, a reciprocating block 34 slidably connected at the rear side of the sliding groove, a fixed air cylinder 35 fixedly connected with the reciprocating block 34 at the front side, the fixed air cylinder 35 fixedly connected on the turnover plate 18 at the bottom, two swing plates 33 hingedly connected at the top of the reciprocating block 34, the two swing plates 33 symmetrically arranged left and right, an opposite plate 31 hingedly connected on the side corresponding to each of the two swing plates 33, a clamping plate 32 fixedly connected with the opposite plate 31 on the side away from each other, the side corresponding to each of the two clamping plates 32 abutting the outer side of the crystalline silicon solar cell 17, a fixed plate 12 fixedly connected with the top plate 6 at the center of the front side, the fixed plate 12 fixedly connected with a dryer 13 on the other side;

[0031] By starting the fixed air cylinder 35 to drive the reciprocating block 34 to move, when the reciprocating block 34 moves to the rear side, the two swing plates 33 are driven to swing, when the two swing plates 33 swing, the two opposite plates 31 are driven to move in opposite directions, when the opposite plates 31 move, the two clamping plates 32 are driven to move in opposite directions, the clamping plates 32 move in opposite directions to fix the crystalline silicon solar cell 17, when the crystalline silicon solar cell 17 is fixed, when the smearing motor 3 is started, the power output shaft drives the reciprocating rod 29 to rotate, the reciprocating rod 29 rotates to drive the smearing mechanism 27 to reciprocate left and right by engaging with the matching block 30, so as to smear the top of the crystalline silicon solar cell 17 with dye.

[0032] The developing mechanism comprises a collecting frame 14, a material sticking frame 15 on the front side of the collecting frame 14, two material sticking plates 16 on the top of the material sticking frame 15, two movable plates 43 fixedly connected to the top of the two material sticking plates 16, a rectangular opening formed in the movable plate 43, a sliding block 45 slidably connected to the rectangular opening close to the top, a welding plate 44 hinged to the side of the sliding block 45 away from the other, a third transmission plate 42 hinged to the movable plate 43 close to the bottom, a fixing piece 46 fixedly connected to the left side of the welding plate 44 close to the bottom, a clamping plate 41 fixedly connected to the top of the fixing piece 46, a third rotating shaft penetrating through the inner cavity of the clamping plate 41 close to the top, a synchronous rod 36 fixedly connected to the two third rotating shafts, the other side of the third transmission plate 42 sleeved on the third rotating shaft, a second transmission plate 40 sleeved on the other end of the third rotating shaft, a first transmission plate 39 hinged to the second transmission plate 40 close to the front side, a placing plate 37 arranged on the front side of the collecting frame 14 close to the right side, an intermittent plate 50 hinged to the right side of the placing plate 37 close to the top, a plurality of U-shaped grooves formed in the outer side of the intermittent plate 50 and arranged in a circular array with the center of the intermittent plate 50 as the center, a plurality of arc-shaped grooves formed in the outer side of the intermittent plate 50 and arranged in a cross manner with the U-shaped grooves, a linkage plate 49 hinged to the first transmission plate 39 close to the rear side, an intermittent motor 38 installed on the right side of the placing plate 37 close to the bottom, an arc-shaped plate 48 fixedly sleeved on the outer side of the power output shaft of the intermittent motor 38, a driving plate 47 fixedly connected to the right side of the arc-shaped plate 48, a driving rod installed on the left side of the driving plate 47 close to the top and matched with the U-shaped grooves, and the other side of the linkage plate 49 fixedly connected to the arc-shaped plate 48 and arranged in a ninety-degree manner with the driving plate 47.

[0033] When the crystal silicon solar cell 17 is turned over, the excess dye on the surface of the crystal silicon solar cell 17 can fall into the inner cavity of the collecting frame 14 due to the change of the angle of the crystal silicon solar cell 17, and the dye on the surface of the crystal silicon solar cell 17 can be scanned by hot air when the dryer 13 is started. When the intermittent motor 38 is started, the arc-shaped plate 48, the driving plate 47 and the linkage plate 49 can be synchronously rotated, the intermittent plate 50 can be rotated when the driving plate 47 rotates and the driving rod is matched with the U-shaped groove on the intermittent plate 50, the first transmission plate 39 can be swung when the linkage plate 49 moves, the second transmission plate 40 and the third transmission plate 42 can be swung with the third rotating shaft as the center, the movable plate 43 can be swung by ninety degrees when the third transmission plate 42 swings, and the movable plate 43 can be translated when it is transversely matched with the sliding block 45, so as to be in contact with the surface of the crystal silicon solar cell 17 and smear white gypsum powder.

[0034] Working principle: first, by starting the fixed cylinder 35 drive reciprocating block 34 to move, when the reciprocating block 34 to the rear side can drive two swing plate 33 swing, when two swing plate 33 swing can drive two plate 31 move, when the plate 31 move can drive two clamp plate 32 move, clamp plate 32 move can fix the crystalline silicon solar cell 17, when the crystalline silicon solar cell 17 fixed when;

[0035] When the smearing motor 3 starts, through the power output shaft can drive reciprocating rod 29 rotation, when the reciprocating rod 29 rotation through with the block 30 meshing, can drive smearing mechanism 27 left and right reciprocating movement, so as to the top of the crystalline silicon solar cell 17 smearing dye.

[0036] The main motor 5 starts, through the power output shaft can drive reciprocating screw rod 11 rotation, when the reciprocating screw rod 11 rotation can drive the moving block 7 to the front side, when the moving block 7 to the front side can drive the vertical plate 20 and L type fixed plate 19 to the front side, when the L type fixed plate 19 to the front side can drive the crystalline silicon solar cell 17 to the front side, when the vertical plate 20 to the front side can drive the crank 22 to the front side, the crank 22 can drive the wheel along the guide port to move, when the wheel and guide port inclined contact, can drive the driving gear 25 rotation, when the driving gear 25 rotation can drive the limit plate 21 to the front side, when the limit plate 21 to the front side can drive the driven gear 24 rotation, when the driven gear 24 rotation can drive the second shaft rotation, the second shaft can drive the turnover plate 18 rotation, the turnover plate 18 can drive the crystalline silicon solar cell 17 to ninety degrees turnover;

[0037] When the crystalline silicon solar cell 17 turnover, because of the change of angle of the crystalline silicon solar cell 17, the surface of the crystalline silicon solar cell 17 excess dye can drop into the inner cavity of the collection frame 14, at the same time, the dryer 13 start can the surface of the crystalline silicon solar cell 17 dye hot air scanning, when the intermittent motor 38 starts, can drive the arc plate 48, drive plate 47 and linkage plate 49 synchronous rotation, when the drive plate 47 rotation can through the drive rod and intermittent plate 50 on the U type groove fit, can drive the intermittent plate 50 rotation, when the linkage plate 49 activity can drive the first transmission plate 39 swing, and the first transmission plate 39 can drive the second transmission plate 40 and the third transmission plate 42 with the third shaft as the center swing, when the third transmission plate 42 swing can drive the movable plate 43 to ninety degrees swing, when the movable plate 43 to horizontal, through with the slider 45 fit, can translation, so as to contact with the surface of the crystalline silicon solar cell 17, smearing white gypsum powder.

Claims

1. A semiconductor optoelectronic device measuring apparatus comprising a base plate (1) and a crystalline silicon solar cell (17), characterized in that: The bottom plate (1) is fixedly connected with L-shaped support plates (2) on the left and right sides, one side of two L-shaped support plates (2) is fixedly connected with a top plate (6), the rear side of the top plate (6) is provided with a driving motor (5), the power output shaft of the driving motor (5) penetrates the inner cavity of the top plate (6) and is fixedly connected with a reciprocating screw rod (11), the front end of the reciprocating screw rod (11) is inserted into the inner side wall of the top plate (6), two side position rods (9) are arranged in the inner cavity of the top plate (6), the two side position rods (9) are symmetrically arranged, the outer side of the reciprocating screw rod (11) is threadedly connected with a moving block (7), the inner cavities of the two side position rods (9) penetrate the moving block (7), a moving mechanism is arranged on the bottom of the moving block (7), a spraying mechanism is arranged on the front side of the moving mechanism, a developing mechanism is arranged on the front side of the bottom plate (1), the moving mechanism comprises two L-shaped fixed plates (19), the two L-shaped fixed plates (19) are symmetrically arranged front and back, the top of the two L-shaped fixed plates (19) is fixedly connected with the moving block (7), a vertical plate (20) is fixedly connected with the moving block (7) near the left side, a first rotating shaft is arranged between the two L-shaped fixed plates (19), a driven gear (24) is fixedly connected with the left end of the first rotating shaft, a second rotating shaft is arranged in the inner cavity of the vertical plate (20) near the bottom end, a driving gear (25) is fixedly connected with the left end of the second rotating shaft, a crank (22) is fixedly connected with the left end of the second rotating shaft, a connecting plate (8) is fixedly connected with the rear side of the moving block (7), a guide plate (4) is fixedly connected with the front side of the connecting plate (8) near the bottom, the guide plate (4) is L-shaped in cross section, a guide opening is formed in the guide plate (4), a matching wheel is inserted into the guide plate (4) near the front side of the left side of the crank (22), the matching wheel is matched with the guide opening, a rack (23) is arranged on the bottom of the driven gear (24) and the driving gear (25), a limiting plate (21) is slidably connected with the bottom of the rack (23), the limiting plate (21) is fixedly connected with the vertical plate (20) on the right side, a turnover plate (18) is fixedly sleeved with the first rotating shaft, the spraying mechanism comprises a mounting plate (10), the mounting plate (10) is arranged on the top of the turnover plate (18), a middle plate (26) is fixedly connected with the rear side of the mounting plate (10), the middle plate (26) is fixedly connected between the two vertical plates (20), a smearing motor (3) is arranged on the front side of the mounting plate (10), the power output shaft of the smearing motor (3) penetrates the inner cavity of the mounting plate (10) and is fixedly connected with a reciprocating rod (29), the reciprocating rod (29) is inserted into the inner side wall of the mounting plate (10) on the right end, two slide rods (28) are arranged on the bottom of the reciprocating rod (29), the two slide rods (28) are symmetrically arranged front and back, the two slide rods (28) are inserted into the inner side wall of the mounting plate (10) on the left and right ends, a matching block (30) is sleeved with the outer sides of the two slide rods (28),The top of the fitting block (30) engages with the reciprocating rod (29), the bottom of the fitting block (30) is fixedly connected with the smearing mechanism (27), the bottom of the smearing mechanism (27) engages with the top of the crystalline silicon solar cell (17), the top of the turnover plate (18) is provided with a chute, the chute is slidably connected with the reciprocating block (34) near the rear side, the front side of the reciprocating block (34) is fixedly connected with the fixed air cylinder (35), the bottom of the fixed air cylinder (35) is fixedly connected on the turnover plate (18), the top of the reciprocating block (34) is hingedly connected with two swing plates (33), the two swing plates (33) are symmetrically arranged, the side corresponding to the two swing plates (33) is hingedly connected with the opposite plate (31), the side away from the two opposite plates (31) is fixedly connected with the clamping plate (32), the side corresponding to the two clamping plates (32) engages with the outside of the crystalline silicon solar cell (17), the front side of the top plate (6) is fixedly connected with the fixed plate (12), the other side of the fixed plate (12) is fixedly connected with the dryer (13).

2. A device for measuring a semiconductor optoelectronic device according to claim 1, characterized in that: The developing mechanism includes a collecting frame (14), the collecting frame (14) front side material frame (15), the material frame (15) top has material board (16), two material board (16) top fixedly connected with two movable plates (43), the movable plate (43) is equipped with rectangular mouth, the rectangular mouth is close to the top and is connected with the sliding block (45), the two sliding blocks (45) are away from one side and are hinged with the welding plate (44), two movable plates (43) are close to the bottom and are hinged with third transmission plate (42).

3. A semiconductor optoelectronic device measurement apparatus according to claim 2, wherein: Two welding plates (44) left side close to the bottom are fixedly connected with fixed part (46), the fixed part (46) top is fixedly connected with the clamping plate (41), the clamping plate (41) inner chamber close to the top is equipped with third rotating shaft, the third rotating shaft is fixedly connected with the synchronous bar (36) between two, the third transmission plate (42) other side is sleeved on the third rotating shaft, the third rotating shaft other end is sleeved with second transmission plate (40), the second transmission plate (40) is close to the front side and is hinged with first transmission plate (39), the collecting frame (14) front side close to the right side is provided with the placement plate (37), the placement plate (37) right side close to the top is hinged with intermittent plate (50), the intermittent plate (50) outside is equipped with a plurality of U-shaped grooves, a plurality of U-shaped grooves are arranged in the form of annular array with the center of the intermittent plate (50) as the center, a plurality of arc grooves are formed in the outer side of the intermittent plate (50), and the arc grooves and the U-shaped grooves are arranged in an intersecting manner.

4. A semiconductor optoelectronic device measurement apparatus according to claim 3, wherein: The first transmission plate (39) is hinged with the linkage plate (49) close to the back, the intermittent motor (38) is installed on the right side of the placement plate (37) close to the bottom, the arc-shaped plate (48) is fixedly sleeved on the power output shaft outside the intermittent motor (38), the driving plate (47) is fixedly connected on the right side of the arc-shaped plate (48), the driving rod is installed on the left side of the driving plate (47) close to the top, the driving rod and the U-shaped groove are arranged in a matching manner, the other side of the linkage plate (49) is fixedly connected with the arc-shaped plate (48), and the linkage plate (49) and the driving plate (47) are arranged in a ninety-degree arrangement.

Citation Information

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