CN205898933U - Automatic test system is kept apart in feeder assembly loss of awaiting measuring based on GPIB bus - Google Patents
Automatic test system is kept apart in feeder assembly loss of awaiting measuring based on GPIB bus Download PDFInfo
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- CN205898933U CN205898933U CN201620895788.1U CN201620895788U CN205898933U CN 205898933 U CN205898933 U CN 205898933U CN 201620895788 U CN201620895788 U CN 201620895788U CN 205898933 U CN205898933 U CN 205898933U
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- feeder assembly
- feeder line
- line assembly
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Abstract
The utility model provides an automatic test system is kept apart in feeder assembly loss of awaiting measuring based on GPIB bus, include that debugging computer, power, merit divide on -off control module, merit to divide the switch, feeder assembly, vector network analyzer await measuring, power, vector network analyzer adopt GPIB_USB bus connection with the debugging computer respectively, the merit is divided on -off control module and debugging and is adopted between the computer USB to be connected, the merit divide switch, vector network analyzer respectively with await measuring the feeder assembly through steady looks cable junction, the power and the 9 core J30J bolt connection of adoption between the feeder assembly that await measuring. Compared with the prior art, simplification, commonality. The utility model discloses a based on GPIB's virtual instrument testing system structure, await measuring the break -make of feeder assembly test through the GPIB bus control and switch and channel switching. Utilize current program control instrument and this automatic test system to have the commonality to the feeder assembly loss test of awaiting measuring of other types, only need to change the break -make mode that corresponds and just can realize the automatic testing.
Description
Technical field
The virtual instrument that this utility model is related to based on gpib is tested, microwave system field tests, specifically a kind of
Feeder line assembly loss isolation Auto-Test System to be measured based on gpib bus.
Background technology
With the continuous development of hyundai electronicses science and technology, the development work of new system radar achieves significant progress,
Radar equipment is increasingly highly integrated, and number of active lanes is continuously increased, and volume constantly reduces.Feeder line assembly wherein to be measured is the important of radar
Ingredient, with the development of Aeronautics and Astronautics, technical requirements then improve constantly.Wherein environmental test needs very strict wanting
Ask, if desired for powered high/low temperature circulation work in 48 hours, data during the corresponding environmental change of each two hour record simultaneously.To be measured
Feeder line assembly is to adopt integrated technology, will be whole for the circuit such as RF passive passage (as waveguide), pin switch, low-noise amplifier
Merge integrated design, its loss under different working condition, isolation etc. are as an important indicator of radar normal work.
Existing test can only realize manual test, and switch on and off, amplification work etc. can only manually complete, and need manpower 24 hours
Operation record result, result in testing cost and rises, increased the workload of engineering staff.This utility model enables to treat
Survey the automatic cycle testing under feeder line assembly different working condition.
Utility model content
The purpose of this utility model is to solve in prior art, feeder line assembly to be measured is adopted with the defect of manual test,
Offer is a kind of to be solved the above problems based on the feeder line assembly loss isolation Auto-Test System to be measured of gpib bus.
This utility model is to be achieved through the following technical solutions above-mentioned technical purpose:
A kind of feeder line assembly loss isolation Auto-Test System to be measured based on gpib, including debugging computer (1), power supply
(2), work(switch-dividing control module (3), work(switch-dividing (4), feeder line assembly to be measured (5), vector network analyzer (6);Described electricity
Source, vector network analyzer are connected using gpib_usb bus with debugging computer respectively;Work(switch-dividing control module and debugging
Usb is adopted to connect between computer;Work(switch-dividing, vector network analyzer are respectively with feeder line assembly to be measured by phase-compensated cable even
Connect;9 core j30j latches are adopted to connect between power supply and feeder line assembly to be measured.
Further, described power supply (2) is DC source.
Further, described power supply (2) and described work(switch-dividing control module (3) are electrically connected with.
Further, described work(switch-dividing control module (3) controls described work(switch-dividing (4) break-make.
This utility model compared with prior art, has the advantages that
1) simplification, versatility.This utility model adopts the Virtual Instruments Test System structure based on gpib, by gpib
The break-make switching of bus marco feeder line to be measured assembly test and passage switching.Whole device, only by work(switch-dividing control device, is counted
Calculation machine, power supply, work(switch-dividing and vector network analyzer composition.Using existing program labview control instrument and this is automatic
Test system has versatility to other kinds of feeder line assembly loss test to be measured, and only need to change corresponding break-make pattern can
To realize automatically testing.
2) intuitive, efficiency high.Test result is shown with form and two kinds of forms of graphical interfaces, becomes apparent from understanding.One
Keyed operation has liberated the both hands of operator it is achieved that real automatic test.Test speed also greatly improves.
3) certainty of measurement is high.This Auto-Test System adds automatic calibration function, and test equipment is simple, and precision is good, surveys
Examination scope is big.
4) this test system, using computer as the operating platform of tester, is operated using menu and dialog box,
User interface is short and sweet, easy to operate, and user can easily grasp the use of software.
Brief description
Fig. 1 is existing feeder line assembly structure block diagram to be measured;
Fig. 2 is a kind of structural frames of the feeder line assembly loss isolation Auto-Test System to be measured based on gpib of this utility model
Figure;
Fig. 3 is a kind of workflow of the feeder line assembly loss isolation Auto-Test System to be measured based on gpib of this utility model
Journey block diagram.
Specific embodiment
Effect for making to architectural feature of the present utility model and reached has a better understanding and awareness, in order to relatively
Good embodiment and accompanying drawing cooperation detailed description, are described as follows:
Existing feeder line assembly structure as shown in figure 1, its feeder line assembly by four-terminal circulator, bonder, flexible waveguide, load,
Low noise sound field is put and is switched composition with pin.Its work has transmitting and receives two kinds of working conditions: during transmitting working condition, radio frequency is believed
Number aerial radiation is passed to through four-terminal circulator by transmitter, under this working condition, pin switch is off state, prevents high-power
Signal passes to low noise sound field to be put and burns field and put or receiver;When receiving working condition, radiofrequency signal is received by antenna, through four ends
Circulator passes to pin switch and low noise sound field is put.Under this working condition, pin switch is in the conduction state, puts through low noise sound field
Receiver is delivered to after big.
It is existing that we need to test, in the state of high/low temperature circulation, the gain being put passage by antenna receiving port to low noise sound field
And isolation.For the existing deficiency of existing feeder line assembly test, this utility model provides a kind of to be measured based on gpib
Feeder line assembly loss isolation Auto-Test System, as shown in Fig. 2 include debugging computer 1, work(switch-dividing control module 3, power supply
2, vector network analyzer 6, work(switch-dividing 4, gpib capture card.Between power supply 2, vector network analyzer 6 and debugging computer 1
Connected using gpib_usb bus;It is connected using usb between work(switch-dividing control module 3 and debugging computer 1;Work(switch-dividing 4,
Connected by phase-compensated cable between vector network analyzer 6 and feeder line assembly 5 to be measured;Adopt between power supply 2 and feeder line assembly 5 to be measured
Connected with 9 core j30j latches.The power supply 2 that this utility model provides is DC source 2.
Wherein, the pin switch of feeder line assembly 5 to be measured and the break-make of low-noise amplifier and work are to be controlled by computer 1
Power supply 2 processed is realizing.The passage switching of feeder line assembly 5 test to be measured is by work(switch-dividing control module 3 and work(switch-dividing 4
Come to control.The break-make switching of feeder line assembly 5 to be measured connects power supply 2 by gpib bus and controls.Feeder line assembly 5 to be measured
The cyclic switching test record of test is to be realized using labview programme-control vector network analyzer 6 by computer 1
's.Wherein, labview program is existing program, and market is directly purchased.
During use, multiple measured pieces are located at 5 in Fig. 2, cable connection is complete, and main working process is as shown in Figure 3.
In hot operation state, computer 1 controls work(switch-dividing control module 3 that work(switch-dividing 4 is placed in through state to measured piece first
State, controls vector network analyzer 6 to be calibrated.Then connecting power supply 2 by gpib-usb controls feeder line assembly 5 to be measured to work
The switching of state, control module controls the switching of work(switch-dividing 4.The gain of measured piece and isolation index are divided by vector network
After analyzer 6 tests out, computer 1 is passed to by gpib.Debugging computer 1 build-in test software is counted to gain and isolation
Calculate record and analyze.Low-temperature working state is entered, computer 1 program completes above-mentioned test function again after 2 hours.So circulation 10
Secondary, complete 40 hours Wen Xunhou, computer 1 program is analyzed to the data preserving, form rippled interface and testing journal sheet.
Of the present utility model ultimate principle, principal character and of the present utility model advantage have been shown and described above.One's own profession
The technical staff of industry it should be appreciated that this utility model is not restricted to the described embodiments, described in above-described embodiment and description
Simply principle of the present utility model, on the premise of without departing from this utility model spirit and scope, this utility model also has respectively
Plant changes and improvements, these changes and improvements both fall within the range of claimed this utility model.This utility model requires
Protection domain defined by appending claims and its equivalent.
Claims (4)
1. a kind of feeder line assembly to be measured loss isolation Auto-Test System based on gpib bus it is characterised in that: include debugging
Computer (1), power supply (2), work(switch-dividing control module (3), work(switch-dividing (4), feeder line assembly to be measured (5), vector network divide
Analyzer (6);Described power supply, vector network analyzer are connected using gpib_usb bus with debugging computer respectively;Work(switch-dividing
It is connected using usb between control module and debugging computer;Work(switch-dividing, vector network analyzer respectively with feeder line assembly to be measured
Connected by phase-compensated cable;9 core j30j latches are adopted to connect between power supply and feeder line assembly to be measured.
2. a kind of feeder line assembly loss isolation Auto-Test System to be measured based on gpib bus according to claim 1,
It is characterized in that: described power supply (2) is DC source.
3. a kind of feeder line assembly loss isolation Auto-Test System to be measured based on gpib bus according to claim 1,
It is characterized in that: described power supply (2) is electrically connected with described work(switch-dividing control module (3).
4. a kind of feeder line assembly loss isolation Auto-Test System to be measured based on gpib bus according to claim 1,
It is characterized in that: described work(switch-dividing control module (3) controls described work(switch-dividing (4) break-make.
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CN201620895788.1U CN205898933U (en) | 2016-08-17 | 2016-08-17 | Automatic test system is kept apart in feeder assembly loss of awaiting measuring based on GPIB bus |
Applications Claiming Priority (1)
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CN201620895788.1U CN205898933U (en) | 2016-08-17 | 2016-08-17 | Automatic test system is kept apart in feeder assembly loss of awaiting measuring based on GPIB bus |
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CN205898933U true CN205898933U (en) | 2017-01-18 |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109212450A (en) * | 2018-09-21 | 2019-01-15 | 北京小米移动软件有限公司 | The detection method and device of power loss in test macro |
CN113109629A (en) * | 2021-04-23 | 2021-07-13 | 芜湖麦可威电磁科技有限公司 | High-power pulse microwave transmission feeder loss parameter accurate verification circuit and verification method |
-
2016
- 2016-08-17 CN CN201620895788.1U patent/CN205898933U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109212450A (en) * | 2018-09-21 | 2019-01-15 | 北京小米移动软件有限公司 | The detection method and device of power loss in test macro |
CN113109629A (en) * | 2021-04-23 | 2021-07-13 | 芜湖麦可威电磁科技有限公司 | High-power pulse microwave transmission feeder loss parameter accurate verification circuit and verification method |
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