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Board Test Fixtures
jigs which hold, align and engage pcb with test interconnect.
See Also: Fixtures, Test Fixtures, Bare board Fixtures, PCB Test Fixtures, Genrad Fixtures
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High Node Count In-Circuit Test Fixtures
HNC Test Fixture
Circuit Check continues to be a leading edge provider of custom engineered test solutions with our new Keysight i3070 HNC test fixture. Working with Keysight Technologies during the development of their HNC adapter in 2011, we were the first test fixture provider to offer customers with a solution to test large node count boards. High node count test fixtures can handle greater than 10,000 probes.
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Inline test system for FCT, ICT, ISP and Boundary Scan for Automated Operation
LEON InLine
High production volume often requires inline solutions with fully automated product Handling – the LEONlnline is a complete Inline Board Test Solutions for printed circuit boards. It integrates a flexible and scalable test system that features an excellent signal integrity and a high-quality fixture interface. This is achieved by combining a cableless connection from ABex modules to Virginia panel interface connectors.
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Edge Press Technology Bed of Nails Testers
Prober Edge Press Family
Production volume test fixture with swappable test plates, front and rear panel inlays, and multi-testing compatibility with process carrier pallets. Swappable test plates provide the ability for one fixture base to support a variety of units under test. Interchangeable front and rear panel inserts provide further customization. Interoperability with process carrier pallets provide multiple board testing capabilities, panelized testing, and flex circuit testing. A selection of interfaces to general testing equipment provide for a wide selection of customized testing features.
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In-Line / Board Handler
Circuit Check’s in-line board handler fixturing exceed the high performance requirements associated with high-volume production. Circuit Check supports in-line fixturing for all the leading ICT handlers including Keysight 5i, Teradyne TSh Multi-Site, IPTE and Pematech. Circuit Check is the go-to partner for in-line functional test fixtures to speed production throughput.
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Low Noise Test Leads For N1413 With B2980 Series, 3m
N1425B
The N1425B is designed to operate specifically with the B2985B/87B. It can hold DUTs with large terminals being used with the N1426C. The N1426A with the N1425B is available for measurements of small DUTs such as PC boards or IC sockets. The N1426B with the N1425B enables the construction of simple custom-made test leads. The N1413A High Resistance Meter Fixture Adapter is also required to connect the N1425B to the B2985B/87B.
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High Voltage, Continuity & Hipot, Cable & Wire Harness Test Systems
CableEye HVX, HVX-21
Fast ● Simple ● Precise
Advanced wiring analyzer scans for continuity (opens, shorts), miswires, resistance, capacitance, components (resistors, diodes, LEDs, capacitors) dielectric breakdown, insulation resistance, intermittent connections
HVX (Item 829) 1500 Vdc, 1000 Vac
HVX-21 (Item 829A) 2100 Vdc, 1200 Vac
For diagnostic and Pass/Fail Testing — Permits expanded testing (compared to models in our low voltage product line) for insulation resistance (IRI) and dielectric breakdown (DWV).
All CableEye testers are suitable for production, fault diagnosis, QC (Quality Control), assembly, and prototyping of standard or custom cables. Each combines test, fault location, design, documentation, labeling, and database storage in one instrument. Tests can be performed on long cables (with or without connectors) or no cables (e.g. connectors, backplanes, PCBs, components).
Standard Features & Benefits:- USB certified, PC-based tester for a versatile, fast, robust system with long life-cycle.
- Multilingual, dynamic, graphic-rich display (netlist & wiring schematic) provides clarity and speeds diagnostics.
- 128 Test Points, expandable to 1024 providing flexibility as your product line changes.
- User-selectable voltage to each connection group in the cable simplifies an otherwise complex process, accelerating testing.
- Programmable Ramp Up, Ramp Down, Dwell Time (same as Test Time), Trip Current, and Trip Delay (same as Soak Time) adds versatility.
- Current leakage detected during HV test phase provides a measure of insulation resistance up to 1 GΩ (HVX) and 5 GΩ (HVX-21) - any leakage current exceeding a preset limit reveals the presence of moisture, flux, or other contamination on exposed contacts.
- Real-time screening for intermittent connections for pinpointing elusive faults and improving quality.
- Automation scripting in a simple, intuitive language allowing non-programmers to reduce operator error by automating repetitive steps.
- Pop-Up Work Instructions. choose the exact amount of detail, imagery, language and automation you need to ensure your work instructions and tests are carried out flawlessly.
- Flexible tolerancing: optionally define as percentages or absolute terms, as well as asymmetrically (e.g. +0%/-10%) for improved yields.
- Barcode-tracking & archival data-logging to achieve error-proof test process and improved traceability & productivity.
- Print PASS/FAIL labels, test reports (with or without color wiring schematics/netlists) and log reports to satisfy ISO9000 reporting requirements.
- Compatible with laptop and touchscreen PCs for fieldwork and rack/off-bench mounting.
Includes:
CB29 board set (Item 759) for bare wire connections; comprehensive PC software with Database of >200 standard cables; 2 yr Product Support Subscription comprising Warranty, free tech support, and free software upgrades.
Select Add-On Options:
Hardware: 128-point Expansion Modules (attach to base); 4-Wire Kelvin Resistance Measurement, 1 mΩ at 1 A; Advanced Measurements; External Measurement Instrument Port (e.g. 10 GΩ Isolation at 100 V); Remote Control Connector for Deadman Switch; Environmental Sensor
Software: PinMap™ fixture editor, Connector Designer™ connector editor, or Autobuild™ guided assembly modules
camiresearch.com |@CAMI_CableEye |+1.978.266.2655 -
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Automated Bare Board Tester with Built-In Camera
QTOUCH2404C
Qmax Test Technologies Pvt. Ltd.
Qtouch2404C – Automated Bare Board Tester with in-built camera is designed to make automatic image capturing and probing of bare PCBs. It is designed to move on X,Y,Z directions making it possible to probe every test point. Flying Probe Tester is designed for testing high density fine pitched Single Sided / Double Sided and Multilayer PCBs for continuity and isolation using moving probes fixture –less technology.
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Press Down Rods Bed of Nails Testers
Prober Press Rods Family
Production volume test fixture with swappable test plates, front and rear panel inlays, and multi-testing compatibility with process carrier pallets. Swappable test plates provide the ability for one fixture base to support a variety of units under test. Interchangeable front and rear panel inserts provide further customization. Interoperability with process carrier pallets provide multiple board testing capabilities, panelized testing, and flex circuit testing. A selection of interfaces to general testing equipment provide for a wide selection of customized testing features.
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PCB Test Fixtures
ATE, ICT, semiautomatic & manual electronic test fixtures, PCB test fixtures, cable test fixture, wiring harness test fixtures, dedicated test fixtures, functional test fixtures, electronic test fixture programming. PADS Schematic capture, circuit board layout, PCB design prototype, solder paste stencils, X-Y coordinate data, B.O.M. maintenance, and manufacturing documentation, Gerber data.
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Wiring Analyzers for Cables, Wire Harnesses, Backplanes
CableEye M2Z, M3Z, M4
Fast ● Simple ● Precise
Advanced wiring analyzer scans for continuity (opens, shorts), miswires, resistance, capacitance, components (resistors, diodes, LEDs, capacitors), insulation resistance, intermittent connections.
For diagnostic and Pass/Fail Testing
All CableEye® testers are suitable for production, fault diagnosis, QC (Quality Control), assembly, and prototyping of standard or custom cables. Each combines test, fault location, design, documentation, labeling, and database storage in one instrument. Tests can be performed on long cables (with or without connectors) or no cables (e.g. connectors, backplanes, PCBs, components).
Standard Features & Benefits:- USB certified, PC-based tester for a versatile, fast, robust system with long life-cycle.
- Multilingual, dynamic, graphic-rich display (netlist & wiring schematic) provides clarity and speeds diagnostics.
- 128 Test Points, expandable to 1024 providing flexibility as your product line changes.
- Real-time screening for intermittent connections for pinpointing elusive faults and improving quality.
- Automation scripting in a simple, intuitive language allowing non-programmers to reduce operator error by automating repetitive steps.
- Pop-Up Work Instructions. choose the exact amount of detail, imagery, language and automation you need to ensure your work instructions and tests are carried out flawlessly.
- Flexible tolerancing: optionally define as percentages or absolute terms, as well as asymmetrically (e.g. +0%/-10%) for improved yields.
- Barcode-tracking & archival data-logging to achieve error-proof test process and improved traceability & productivity.
- Print PASS/FAIL labels, test reports (with or without color wiring schematics/netlists) and log reports to satisfy ISO9000 reporting requirements.
- Compatible with laptop and touchscreen PCs for fieldwork and rack/off-bench mounting.
Includes:
CB15C board set (Item 745C) for common computer and peripheral device cables; comprehensive PC software with Database of >200 standard cables; 2 yr Product Support Subscription comprising Warranty, free tech support, and free software upgrades.
Select Add-On Options:
Hardware: 128-point Expansion Modules (attach to base); Environmental Sensor
Software: PinMap™ fixture editor, Connector Designer™ connector editor, or Autobuild™ guided assembly modules
camiresearch.com |@CAMI_CableEye |+1.978.266.2655 -
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In-Circuit Test
In-circuit test works by checking all components are fitted correctly to the PCB and are within the correct electrical tolerance. In-circuit testers do this by interfacing to the board via a "bed of nails test fixture" and programs can be generated via CAD data. They offer a quick and easy method of checking the manufacture of the board and also offer a reliable and simple fault report.
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6 Sided Bed of Nails Testers
BoxProber Family
6 sided Bed of Nails circuit board test fixture. Probes top bottom and all 4 sides. Central camming mechanism pull plates inward. Mechanically or electrically actuated options. Designed primarily for testing products in plastics. Side access electrically probes outside panel connectors. The unit will also optically read LEDs and key segments off LCD displays. Solenoids will press buttons and servos will turn selector switches. DC motors are used to adjust multiple turn potentiometers. Microphone will detect audio output tones. Top and bottom of circuit boards can also be probed if removable access panels are available. This unit will also probe all 6 sides of a circuit board. This is typically utilized in applications where connector testing is required.
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Flying Probe Test Systems
Flying probe testers work by In-circuit testing the board via a number of moving test probes. They have the advantage over traditional In-circuit testers of not requiring a dedicated "bed of nails" test fixture thus reducing the price for each different board being tested. However, modern Flying Prober testers offer so much more than just In-circuit testing. They enable the user to combine In-circuit, AOI, Functional, Device Programming and Boundary Scan testing, in one test system.
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Design for Test
Test Coach offers Design for Test (DFT) consulting to assist customers with design review of prototype boards prior to release for production. Design for Test analysis is extremely important in ensuring that an assembly will achieve the highest possible test coverage. For ICT, this DFT will review the board to confirm that the bed-of-nails test fixture can be fabricated to test an assembly without sacrificing test coverage. As with ICT, Flying Probe benefits from DFT analysis by reviewing test point access and mechanical challenges that may affect the potential test coverage. Completing a DFT enables Test Coach to make recommendations to our customers that may be implemented on boards during the design phase which will allow for the most comprehensive coverage at time of test.
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In‐Circuit Test Fixtures
Test Head Engineering designs and builds high‐quality In‐Circuit Test (ICT) Fixtures for HP / Agilent / KeySight Technologies 3070 board testers. We partner with In Circuit Test Engineering, Inc. to provide turn-key 3070 ICT solutions - both fixture and programming.
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Supported Test Systems
TTCI is a leading solutions provider of application development for test systems from Seica, Keysight, Teradyne, Digitaltest, and XJTAG. We offer a wide variety of testers and test solutions to meet your needs. Our Seica Pilot and Digitaltest Condor flying probe systems can handle all of your low- to mid-volume production, prototypes, and PC boards with accessibility issues. The Keysight 3070 and Teradyne TestStation can address your larger production runs and fixture requirements. In addition, we can also address your functional and boundary scan needs.
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Board Test Fixture Probes
Offering a wide range of standard spring contact probes to meet your testing requirements and has long been recognized as the world’s largest probe manufacturer. With over 60 different probe series ranging from 0.02" (0.51 mm) to 0.187" (4.75 mm) pitch with multiple length, travel, ICT, lead free and rotator options, we provide a full portfolio designed for general purpose test on bare boards, loaded printed circuit boards and surface mount assemblies.
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Boundary Scan Test
Boundary Scan is a very useful tool for quick, low-cost, re-usable powered-up test of an assembly for basic functionality. Because a fixture with test probes is not required, it is possible to have a working test available within hours or days, rather than weeks. Designers can receive rapid feedback on their prototype boards with tests that can be used again during production testing, as well as for device programming. Given power, ground and Tap port signals, tests can be written to assess the performance of the boundary scan enabled parts on an assembly and other parts on the boundary scan chain.
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Cryogenic Millimeter-Wave / Microwave Test Fixtures and Calibration Kits
upj10
KEYCOM''s cryogenic millimeter-wave / microwave test fixtures and calibration kits are specifically optimized for testing the performance of patterns between the edges of printed boards(edge type) and circuit testing on the printed boards(probe type). They are also designed to minimize heat capacity by miniaturizing their dimensions so they cool off efficiently, and materials with low coefficient of linear thermal expansion such as invar are used for major parts where high dimensional stability is required. Their operating frequency ranges from DC to 110GHz.
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Mechanical Fixtures Available w/ESD Plates & ESD Pressure Pins
H+W Test Products has developed a series of inexpensive mechanical test fixtures. These fixtures are designed for testing low volume runs of printed circuit boards or prototype applications requiring approximately 150 test points.
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Expanding In-Circuit Capabilities
Circuit Check supports reading linear bar codes and 2D symbols within each of its fixture product lines.When spring-loaded probes are not practical or access is limited, Circuit Check can help you with thru-connector tests to contact connectors on any surface or edge of a circuit board. These tests can be implemented spring probes, mating connectors, sacrificial SMT connectors, and stabber cards.
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In-Circuit Fixtures
In-Circuit test fixtures can be configured for dual stage, dual well and opens testing applications. Even the most complex boards can be accommodated using standard methods of actuation.
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System Level Test and Burn-in Solutions
System Level Test (SLT) is a paradigm shift from traditional structural and functional testing. The device is tested in a complete, integrated system to evaluate its compliance against specified requirements. The system approach allows for higher and more cost-effective test coverage especially for multi-function and non-deterministic devices. It also brings new integration and test challenges like: ..Designing test fixtures on Burn-in Boards with system components ...
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2m BNC Test Cable
16048D
The 16048D test leads extend the measurement port with a 4-terminal pair configuration. It provides a BNC female connector board to allow attachment of user-fabricated test fixtures.
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Custom Test Connectors and Sockets
Custom test sockets are traditionally expensive to build and maintain. To reduce these costs, consider: Using rapid prototyping techniques to build a housing. Using replaceable Z-Axis Connectors. Depending on board layouts and compressed height, these sockets or test fixtures can achieve high numbers of mate/de-mate cycles and operate at GHz frequencies.
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Test Fixtures
Test fixtures are a product for the test and the testing of printed circuit boards. The test adapters offered by uwe electronic are suitable for both manual testing and automated testing with vacuum operation. The test fixture can be either fully equipped and wired or delivered without installed components. Pneumatic, Mechanical and Vacuum Fixtures.
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Edge Press Technology Bed of Nails Testers
Protector Edge Press Family
Designed for testing heavy massive boards. Boards with heavy components like large transformers and inductors can destroy normal test fixtures. This design utilizes a 3 plate system where an internal lever actuated sub plate containing the test pins raises to probe the circuit board when the handle is pulled. Heavy boards can bend and break exposed test pins. Similarly large boards which need to be probed by very small delicate test pins can also benefit from this protected test fixture design. This fixture is recommended in situations where there is a high board mass to pin size ratio and pin protection is required. Front and rear panel modular inserts allow for easy updates and customizations to the user hardware interface.
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Clamshell Type Mechanical Fixtures
Known in the ATE Industry as “Clamshell” type Test Fixtures, Semco’s Mechanical Test Fixture line is a cost-effective solution to test Printed Circuit Boards and Assemblies. This Test Fixture line is also available with the most widely used interfaces in the test industry.
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Adjustable Press Plate Bed of Nails Testers
Protector Adjustable Family
Designed for testing heavy massive boards. Boards with heavy components like large transformers and inductors can destroy normal test fixtures. This design utilizes a 3 plate system where an internal lever actuated sub plate containing the test pins raises to probe the circuit board when the handle is pulled. Heavy boards can bend and break exposed test pins. Similarly large boards which need to be probed by very small delicate test pins can also benefit from this protected test fixture design. This fixture is recommended in situations where there is a high board mass to pin size ratio and pin protection is required. Front and rear panel modular inserts allow for easy updates and customizations to the user hardware interface.
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FEA and Strain Gauge Testing
Circuit Check began Strain Gauge Testing in 1999 when BGA/SMT technology started replacing PTH components, reducing strain levels was a reactive post fixture fabrication process. We quickly recognized that the “reactionary” process was neither efficient nor were we capable on knowing the lowest achievable strain levels. Our engineering team came up with visual tools utilized during design to easily identify areas of excessive probe force, though still not enough data was generated to identify the lowest possible strain. Finite Element Analysis software models the PCBA and test fixture and applies the pressures from test probes and board supports and indicates the micro strain level applied to the PCBA. Using the FEA software during our design process allows our engineers to modify fixture designs to attain the lowest possible micro strain before fabrication begins.