CN214473695U - Test module - Google Patents

Test module Download PDF

Info

Publication number
CN214473695U
CN214473695U CN202022828702.2U CN202022828702U CN214473695U CN 214473695 U CN214473695 U CN 214473695U CN 202022828702 U CN202022828702 U CN 202022828702U CN 214473695 U CN214473695 U CN 214473695U
Authority
CN
China
Prior art keywords
signal transceiver
axis
product
test module
sliding
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202022828702.2U
Other languages
Chinese (zh)
Inventor
源俊华
黄仁仪
张资华
覃庆权
尹阳
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhuhai Bojay Electronics Co Ltd
Original Assignee
Zhuhai Bojay Electronics Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Zhuhai Bojay Electronics Co Ltd filed Critical Zhuhai Bojay Electronics Co Ltd
Priority to CN202022828702.2U priority Critical patent/CN214473695U/en
Application granted granted Critical
Publication of CN214473695U publication Critical patent/CN214473695U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Abstract

The utility model aims at providing a compact structure, with low costs and the high test module of instrument utilization rate. The utility model discloses set up signal transceiver and a plurality of reflection assembly in the shielded cell, signal transceiver aims at, and is a plurality of with one of them signal transceiver end of the product that awaits measuring reflection assembly cooperates with all the other signal transceiver ends one-to-one of the product that awaits measuring, reflection assembly is with the signal reflection of signal transceiver end extremely signal transceiver. The utility model discloses be applied to the technical field of communication test.

Description

Test module
Technical Field
The utility model discloses be applied to the technical field of communication test, in particular to test module.
Background
Portable electronic products are provided with a communication antenna for performing communication, and a plurality of communication antennas are generally provided in order to improve communication quality. The electronic product is required to be tested in the production process, and the testing equipment is required to be arranged in the shielding box for reducing the external interference. There are two types of testing methods currently used in the industry: 1. one test antenna corresponds to one antenna to be tested in a multipoint-to-multipoint mode; 2. and turning over the product in a product rotation mode to enable the test antennas to be aligned to the antennas to be tested in turn. For the first test scheme, multiple test antennas are needed, the cost is high, far-field tests are used for millimeter wave tests, and the distance between the antennas must be larger than a certain specific value, so that the size of the shielding box body of the scheme is large, the production line is not friendly, and particularly under the condition that the number of antennas to be tested is large, such as the field of 5G communication tests. For the second test scheme, although the cost problem of the first scheme can be solved, the switching process is time-consuming, the utilization rate of the instrument is low, waste is easily caused, and meanwhile, the clamp structure is complex, a large number of metal devices can be used, and radio frequency test is not facilitated.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that overcome prior art not enough, provide a compact structure, with low costs and the high test module of instrument utilization rate.
The utility model adopts the technical proposal that: the utility model discloses a signal transceiver and a plurality of reflection assembly of setting in the shielded cell, signal transceiver aims at, and is a plurality of with one of them signal transceiver end of the product that awaits measuring reflection assembly cooperates with all the other signal transceiver ends one-to-one of the product that awaits measuring, reflection assembly is with the signal reflection of signal transceiver end extremely signal transceiver.
According to the scheme, the signal transceiver is directly aligned with one signal receiving and transmitting end for testing, and the signals of the other signal receiving and transmitting ends of the product to be tested are reflected by the signal transceiver through the plurality of reflecting assemblies to realize signal testing. The communication distance is prolonged by adopting a signal reflection mode, the requirement of far-field test is met, the requirement on the volume of the shielding wire is reduced, and the production line is convenient to set. And a single signal transceiver is adopted to complete signal testing, so that the testing cost is reduced. Meanwhile, the test of all signal receiving and transmitting ends can be finished without moving a product to be tested or a signal transceiver, and the signal transceiver has the advantages of short idle time and high utilization rate.
Preferably, a product supporting plate is arranged in the shielding box, the signal transceiver is located above the product supporting plate, and the plurality of reflecting assemblies and the product supporting plate are located at the same horizontal height.
According to the scheme, the product supporting plate is used for supporting and limiting the product to be detected. The reflecting assemblies are arranged at the same horizontal height with the product supporting plate, so that signal reflection is carried out on the signal receiving and transmitting end arranged on the side face of the product to be detected.
Preferably, the reflection assembly comprises a reflector and a three-axis adjustment structure, wherein the reflector is connected to the movable end of the three-axis adjustment structure.
As can be seen from the above, the mirror is used to reflect the signal wave. The position of the reflector is adjusted by arranging the three-axis adjusting structure.
A further preferred scheme is that the three-axis adjusting structure comprises a mounting plate, an X-axis sliding support and a Y-axis sliding block, the mounting plate is fixed on the side wall of the shielding box, a linear sliding groove matched with the X-axis sliding support is formed in the mounting plate, a Z-axis lifting guide pillar is arranged at one end, away from the mounting plate, of the X-axis sliding support, the Y-axis sliding block is in sliding fit with the Z-axis lifting guide pillar, a linear sliding rail is arranged on the Y-axis sliding block, and the reflector is in sliding fit with the linear sliding rail.
According to the scheme, the X-axis sliding support is matched with the mounting plate, and the reflector is matched with the linear sliding rail, so that the position of the reflector on the horizontal plane is adjusted. Through the matching of the Y-axis sliding block and the Z-axis lifting guide column, the position of the reflector in the vertical direction is adjusted. The X-axis sliding support is provided with a first fastening screw matched with the linear sliding groove, the reflector is provided with a second fastening screw matched with the linear guide rail, and the Y-axis sliding block is provided with a third fastening screw matched with the Z-axis lifting guide pillar.
A further preferred scheme is that the reflector is connected with the three-axis adjusting structure through an angle adjusting structure, the angle adjusting structure comprises a connecting block and a spherical joint, and two ends of the spherical joint are respectively connected with the reflector and the connecting block.
According to the scheme, the angle adjusting structure is arranged, so that the angle of the reflector can be adjusted according to requirements, and signals can be accurately reflected to the signal transceiver. The adjustable range of the reflector is greatly increased by adopting the spherical joint as an angle adjusting mechanism so as to meet the adjustment requirement.
Further preferred scheme is, the spherical joint includes ball axle and ball seat sliding sleeve of cooperation connection, be equipped with the adjusting lever on the connecting block, ball seat sliding sleeve sliding fit is in on the adjusting lever, be equipped with on the ball seat sliding sleeve with adjusting lever complex fastening screw.
According to the scheme, the adjusting rod is matched with the ball seat sliding sleeve, so that the distance between the reflector and a product to be detected is adjusted, and the adjustable range of the reflector is enlarged. After adjustment, the adjusting rod and the ball seat sliding sleeve are fixed through the fastening screw.
Drawings
FIG. 1 is a schematic structural view of the present invention after removing part of the wall of the tank;
FIG. 2 is a schematic perspective view of the reflection assembly from a first viewing angle;
fig. 3 is a schematic perspective view of the reflection assembly from a second viewing angle.
Detailed Description
As shown in fig. 1 to fig. 3, in this embodiment, the utility model discloses a signal transceiver 2 and a plurality of reflection module 3 of setting in shielded cell 1, signal transceiver 2 aligns with one of them signal transceiver end of the product that awaits measuring, and is a plurality of reflection module 3 cooperates with the all the other signal transceiver ends one-to-one of the product that awaits measuring, reflection module 3 with the signal reflection of signal transceiver end extremely signal transceiver 2.
In this embodiment, a product supporting plate 4 is disposed in the shielding box 1, the signal transceiver 2 is located above the product supporting plate 4, and the plurality of reflecting assemblies 3 and the product supporting plate 4 are located at the same horizontal height. The signal transceiver 2 is located in the emission quiet zone of each signal transceiving end of the product to be tested.
In this embodiment, be equipped with the shield door and support the slide rail on the shield box 1, still be equipped with on the shield box 1 with the exit of 4 looks adaptations of product layer board, the shield door sets up exit department, support slide rail fixed connection be in the shield box 1, 4 sliding fit of product layer board are in support on the slide rail. Through setting up it is right to support the slide rail product layer board 4 supports, and the operator of being convenient for simultaneously sends into the product that awaits measuring in the shielded cell 1.
The reflection assembly 3 may be a fixed integrated structure or a structure capable of adjusting the position and height according to the requirement, and in this embodiment, the reflection assembly 3 is provided with a three-axis adjustment structure.
In this embodiment, the reflection assembly 3 includes a reflection mirror 5 and a three-axis adjustment structure, and the reflection mirror 5 is connected to a movable end of the three-axis adjustment structure. The mirror surface of the reflector 5 is provided with a smooth gold plating layer.
In this embodiment, the three-axis adjusting structure includes a mounting plate 6, an X-axis sliding support 7 and a Y-axis sliding block 8, the mounting plate 6 is fixed on the side wall of the shielding box 1, a linear sliding groove 9 adapted to the X-axis sliding support 7 is provided on the mounting plate 6, a Z-axis lifting guide pillar 10 is provided at one end of the X-axis sliding support 7 away from the mounting plate 6, the Y-axis sliding block 8 is in sliding fit with the Z-axis lifting guide pillar 10, a linear sliding rail 11 is provided on the Y-axis sliding block 8, and the reflector 5 is in sliding fit with the linear sliding rail 11. The X-axis sliding support is provided with a first fastening screw matched with the linear sliding groove, the reflector 5 is provided with a second fastening screw matched with the linear guide rail, and the Y-axis sliding block is provided with a third fastening screw matched with the Z-axis lifting guide pillar.
The reflector 5 may be a fixed structure that cannot be adjusted in angle, or may be a structure that can be adjusted in angle according to needs, and in this embodiment, an angle adjustment structure is provided.
In this embodiment, the reflecting mirror 5 is connected to the three-axis adjusting structure through an angle adjusting structure, the angle adjusting structure includes a connecting block 12 and a spherical joint, and two ends of the spherical joint are respectively connected to the reflecting mirror 5 and the connecting block 12. The spherical joint comprises a spherical shaft 13 and a ball seat sliding sleeve 14 which are connected in a matched mode, an adjusting rod is arranged on the connecting block 12, the ball seat sliding sleeve 14 is in sliding fit with the adjusting rod, and a fastening screw matched with the adjusting rod is arranged on the ball seat sliding sleeve 14.
In this embodiment, the product to be tested has three signal transceiving ends, and the test module has two sets of the reflective modules. The signal transceiver 2 is aligned with one signal transceiving end of the product to be tested, and the two groups of reflecting assemblies 3 are correspondingly matched with the other two signal transceiving ends of the product to be tested one by one.
The utility model discloses a work and debugging flow:
firstly, adjusting the angle and the position of the signal transceiver 2 to enable the signal transceiver 2 to be positioned in a transmitting quiet zone of each signal transceiving end of a product to be tested, and adjusting the signal transceiver 2 to be aligned with one signal transceiving end of the product to be tested; then loading and fixing the simulation product provided with the laser emitter, emitting laser by the laser emitter on the simulation product, and enabling the calibrated reflection component 3 to reflect the laser emitted by the laser emitter to a receiving point of the signal transceiver 2 by adjusting the angle and the position of the corresponding reflection component 3; comparing the spatial attenuation of each signal path to make the range difference less than 15dB and the interference of each group of the reflection assemblies 2 to other signal paths less than 20 dB; taking out the simulated product after the adjustment is finished;
and placing the product to be tested, switching the signal ports through the test system, and testing each signal receiving and transmitting end of the product to be tested one by one.
The signal transceiver is arranged in the emission quiet zone of each signal transceiving end of the product to be tested, so that the interference of other signals is reduced. The positions of the signal transceiver and the plurality of reflecting assemblies are adjusted, so that signals sent by the signal transceiver ends are finally converged at the same point, the effect of communicating with the signal transceiver is achieved, and the communication quality and the test effect are improved. The angle of the instrument is adjusted by adopting the simulation product provided with the laser emitter, so that the test quality is ensured. The signal ports are switched through software, and then different signal transceiving ends are tested one by one.

Claims (6)

1. A test module is characterized in that: it is including setting up signal transceiver (2) and a plurality of reflection assembly (3) in shielded cell (1), signal transceiver (2) aim at with one of them signal transceiver end of awaiting measuring product, and is a plurality of reflection assembly (3) cooperate with the all the other signal transceiver ends one-to-one of awaiting measuring product, reflection assembly (3) with the signal reflection of signal transceiver end extremely signal transceiver (2).
2. A test module according to claim 1, wherein: the shielding box (1) is internally provided with a product supporting plate (4), the signal transceiver (2) is positioned above the product supporting plate (4), and the plurality of reflecting assemblies (3) and the product supporting plate (4) are positioned at the same horizontal height.
3. A test module according to claim 1, wherein: reflection component (3) are including speculum (5) and triaxial adjustment structure, speculum (5) are connected on the activity end of triaxial adjustment structure.
4. A test module according to claim 3, wherein: the three-axis adjusting structure comprises a mounting plate (6), an X-axis sliding support (7) and a Y-axis sliding block (8), wherein the mounting plate (6) is fixed on the side wall of the shielding box (1), a linear sliding groove (9) matched with the X-axis sliding support (7) is formed in the mounting plate (6), the X-axis sliding support (7) is far away from one end of the mounting plate (6) and is provided with a Z-axis lifting guide pillar (10), the Y-axis sliding block (8) is in sliding fit with the Z-axis lifting guide pillar (10), a linear sliding rail (11) is formed in the Y-axis sliding block (8), and the reflector (5) is in sliding fit with the linear sliding rail (11).
5. A test module according to claim 3, wherein: the reflecting mirror (5) is connected with the three-axis adjusting structure through an angle adjusting structure, the angle adjusting structure comprises a connecting block (12) and a spherical joint, and two ends of the spherical joint are respectively connected with the reflecting mirror (5) and the connecting block (12).
6. A test module according to claim 5, wherein: the spherical joint comprises a ball shaft (13) and a ball seat sliding sleeve (14) which are connected in a matched mode, an adjusting rod is arranged on the connecting block (12), the ball seat sliding sleeve (14) is in sliding fit with the adjusting rod, and a fastening screw matched with the adjusting rod is arranged on the ball seat sliding sleeve (14).
CN202022828702.2U 2020-12-01 2020-12-01 Test module Active CN214473695U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022828702.2U CN214473695U (en) 2020-12-01 2020-12-01 Test module

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022828702.2U CN214473695U (en) 2020-12-01 2020-12-01 Test module

Publications (1)

Publication Number Publication Date
CN214473695U true CN214473695U (en) 2021-10-22

Family

ID=78185486

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022828702.2U Active CN214473695U (en) 2020-12-01 2020-12-01 Test module

Country Status (1)

Country Link
CN (1) CN214473695U (en)

Similar Documents

Publication Publication Date Title
CN110336621B (en) Measurement system and method for testing a device under test
US9991591B1 (en) Test arrangement and test method for a beamsteered wireless device under test
WO2019226418A1 (en) Over-the-air testing of millimeter wave integrated circuits with integrated antennas
CN211374898U (en) Antenna test system
CN112034266B (en) Millimeter wave multi-feed compact range testing system
CN209264836U (en) A kind of Compact Range Antenna testing system based on array antenna
CN209821290U (en) Compact range antenna testing device based on 3D probe array
JP6829501B2 (en) Test equipment
CN107394419B (en) Active phased array antenna with columnar layered surrounding framework
CN105021902B (en) Far-field pattern field testing system and method for testing applied to high frequency antenna
CN214473695U (en) Test module
CN111624415A (en) System and method for testing antenna on robot arm piece
CN115097220A (en) Active antenna module micro darkroom test system and test method
CN112835125A (en) Multi-probe testing device of multi-degree-of-freedom millimeter wave MU-MIMO system
CN112649697A (en) Test module and signal test method
CN214953808U (en) Antenna far field test system
CN107462779B (en) Testing method of device for measuring phase error of cable between microwave imaging satellite boards
CN212540550U (en) Antenna test system on robot arm piece
CN110514908B (en) Radio frequency coupling test system suitable for wireless product
CN107479226A (en) Portable defect detector
CN216350958U (en) Millimeter wave antenna test rotary table and system
CN115079112A (en) Near-ground dynamic RCS test system and method for aircraft engine
CN113325202B (en) Debugging method for alignment of electric axes of receiving and transmitting antennas
CN211826278U (en) Simulation communication signal near field noise immunity test fixture
CN211856750U (en) Antenna housing test system

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant