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Flying Probes
multiple probes move robotically to contact integrated circuits, printed circuit and SMT boards. AKA: Flying Probers
See Also: Probers, Probe Systems, Wafer Probers, Flying Probers, PCB Inspection
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Signal Patchcord, RCV, SIM VTAC, 72", DVI-D Male Single Link, 4 Position
7-142706735
Signal Patchcord, RCV, SIM VTAC, 72", DVI-D Male Single Link, 4 Position
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unlisted product
68 Pin RDIO VHDCI Male to QuadraPaddle Flying Lead Cable, 36", 191667-01
VFL140124-036
Your product description goes here.
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160 Pin Female DIN to QuadraPaddle Flying Lead Cable, 20", 024070
VFL103124-020
Vendor Flying Lead (VFL) Cable, 160 Pin Female DIN to QuadraPaddle Leads, 24AWG Twisted Pair, 80 T/P's(1:2) 160 connection points, M2.5 x .45 fastener, CONN: 024070 WIRE: VPC, for PXI-2737, PXIe-2738 families, VPC Contact 610138216 - QP RCV (22AWG-28AWG) (5 AMP/25 mΩ MAX), 20" length.
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160 Pin Female DIN to QuadraPaddle Flying Lead Cable, 60", 024070
VFL103124-060
Vendor Flying Lead (VFL) Cable, 160 Pin Female DIN to QuadraPaddle Leads, 24AWG Twisted Pair, 80 T/P's(1:2) 160 connection points, M2.5 x .45 fastener, CONN: 024070 WIRE: VPC, for PXI-2737, PXIe-2738 families, VPC Contact 610138216 - QP RCV (22AWG-28AWG) (5 AMP/25 mΩ MAX), 20" length.
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160 Pin Female DIN to QuadraPaddle Flying Lead Cable, 36", 024070
VFL103124-036
Vendor Flying Lead (VFL) Cable, 160 Pin Female DIN to QuadraPaddle Leads, 24AWG Twisted Pair, 80 T/P's(1:2) 160 connection points, M2.5 x .45 fastener, CONN: 024070 WIRE: VPC, for PXI-2737, PXIe-2738 families, VPC Contact 610138216 - QP RCV (22AWG-28AWG) (5 AMP/25 mΩ MAX), 20" length.
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160 Pin Female DIN to QuadraPaddle Flying Lead Cable, 48", 024070
VFL103124-048
Vendor Flying Lead (VFL) Cable, 160 Pin Female DIN to QuadraPaddle Leads, 24AWG Twisted Pair, 80 T/P's(1:2) 160 connection points, M2.5 x .45 fastener, CONN: 024070 WIRE: VPC, for PXI-2737, PXIe-2738 families, VPC Contact 610138216 - QP RCV (22AWG-28AWG) (5 AMP/25 mΩ MAX), 20" length.
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200 Pin Male LFH to TriPaddle Flying Lead Cable, 36", 441655000-1
VFL135106-036
Vendor Flying Lead (VFL) Cable, 200 pin Male LFH to TriPaddle Leads, 28AWG Twisted Pairs - MULTI LEG 100 T/P's (1:2) 200 connection points, 4-40 fastener, VPC: 441655000-1, for 40-148-101, 40-148-201, 40-148-001, 40-140A-221, 40-140A-121, 40-140A-021, 40-670C-022 families, VPC contact 610110167 - TRI RCV (26-28AWG) (7 AMP/4 mΩ MAX), 36" length.
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200 Pin Male LFH to TriPaddle Flying Lead Cable, 60", 441655000-1
VFL135106-060
Vendor Flying Lead (VFL) Cable, 200 pin Male LFH to TriPaddle Leads, 28AWG Twisted Pairs - MULTI LEG 100 T/P's (1:2) 200 connection points, 4-40 fastener, VPC: 441655000-1, for 40-148-101, 40-148-201, 40-148-001, 40-140A-221, 40-140A-121, 40-140A-021, 40-670C-022 families, VPC contact 610110167 - TRI RCV (26-28AWG) (7 AMP/4 mΩ MAX), 60" length.
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200 Pin Male LFH to TriPaddle Flying Lead Cable, 72", 441655000-1
VFL135106-072
Vendor Flying Lead (VFL) Cable, 200 pin Male LFH to TriPaddle Leads, 28AWG Twisted Pairs - MULTI LEG 100 T/P's (1:2) 200 connection points, 4-40 fastener, VPC: 441655000-1, for 40-148-101, 40-148-201, 40-148-001, 40-140A-221, 40-140A-121, 40-140A-021, 40-670C-022 families, VPC contact 610110167 - TRI RCV (26-28AWG) (7 AMP/4 mΩ MAX), 72" length.
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200 Pin Male LFH to TriPaddle Flying Lead Cable, 48", 441655000-1
VFL135106-048
Vendor Flying Lead (VFL) Cable, 200 pin Male LFH to TriPaddle Leads, 28AWG Twisted Pairs - MULTI LEG 100 T/P's (1:2) 200 connection points, 4-40 fastener, VPC: 441655000-1, for 40-148-101, 40-148-201, 40-148-001, 40-140A-221, 40-140A-121, 40-140A-021, 40-670C-022 families, VPC contact 610110167 - TRI RCV (26-28AWG) (7 AMP/4 mΩ MAX), 48" length.
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200 Pin Male LFH to TriPaddle Flying Lead Cable, 20", 441655000-1
VFL135106-020
Vendor Flying Lead (VFL) Cable, 200 pin Male LFH to TriPaddle Leads, 28AWG Twisted Pairs - MULTI LEG 100 T/P's (1:2) 200 connection points, 4-40 fastener, VPC: 441655000-1, for 40-148-101, 40-148-201, 40-148-001, 40-140A-221, 40-140A-121, 40-140A-021, 40-670C-022 families, VPC contact 610110167 - TRI RCV (26-28AWG) (7 AMP/4 mΩ MAX), 20" length.
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160 Pin Female LFH to QuadraPaddle Flying Lead Cable, 36", 780009-02
VFL159124-036
Vendor Flying Lead (VFL) Cable, 160 Pin Female LFH to QuadraPaddle Leads, 28AWG Twisted Pair, 160 T/P's, SHARED GROUNDS 80 T/Ps, 168 connection points, CONN: 780009-02, VPC Contact 610138216 - QP RCV (22AWG-28AWG) (5 AMP/25 mΩ MAX), 36" length.
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160 Pin Female LFH to QuadraPaddle Flying Lead Cable, 72", 780009-02
VFL159124-072
Vendor Flying Lead (VFL) Cable, 160 Pin Female LFH to QuadraPaddle Leads, 28AWG Twisted Pair, 160 T/P's, SHARED GROUNDS 80 T/Ps, 168 connection points, CONN: 780009-02, VPC Contact 610138216 - QP RCV (22AWG-28AWG) (5 AMP/25 mΩ MAX), 72" length.
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160 Pin Female LFH to QuadraPaddle Flying Lead Cable, 60", 780009-02
VFL159124-060
Vendor Flying Lead (VFL) Cable, 160 Pin Female LFH to QuadraPaddle Leads, 28AWG Twisted Pair, 160 T/P's, SHARED GROUNDS 80 T/Ps, 168 connection points, CONN: 780009-02, VPC Contact 610138216 - QP RCV (22AWG-28AWG) (5 AMP/25 mΩ MAX), 60" length.
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160 Pin Female LFH to QuadraPaddle Flying Lead Cable, 48", 780009-02
VFL159124-048
Vendor Flying Lead (VFL) Cable, 160 Pin Female LFH to QuadraPaddle Leads, 28AWG Twisted Pair, 160 T/P's, SHARED GROUNDS 80 T/Ps, 168 connection points, CONN: 780009-02, VPC Contact 610138216 - QP RCV (22AWG-28AWG) (5 AMP/25 mΩ MAX), 48" length.
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160 Pin Female DIN to QuadraPaddle Flying Lead Cable, 72", 024070
VFL103124-072
Vendor Flying Lead (VFL) Cable, 160 Pin Female DIN to QuadraPaddle Leads, 24AWG Twisted Pair, 80 T/P's(1:2) 160 connection points, M2.5 x .45 fastener, CONN: 024070 WIRE: VPC, for PXI-2737, PXIe-2738 families, VPC Contact 610138216 - QP RCV (22AWG-28AWG) (5 AMP/25 mΩ MAX), 20" length.
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Fixture Building Software
FixGenius
Tests show that FixGenius’ rule-based probe-mapping algorithms reduce pin deflection by up to 25% compared with traditional fixturing packages. FixGenius comes with a powerful Fixture Editor that allows the user to change the probe mapping. If a solution is mathematically possible, FixGenius’ algorithms will find it, and pick the one with least deflection. If the job simply cannot be done with one single fixture, FixGenius will fully automatically split the test into multiple fixtures or into fixture and flying probe test sets, with guaranteed test integrity.
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Flying Probe
GATS-81TDR
STep & Repeat, panels up to 20X24, single and differential measurement, DC-18GHz.
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Flying Probe
EnteFP-5060TDR
Two head TDR flying probe with rotation, max panel size: 20X24, accuracy +/25um, CCD camera alignment.
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Flying Probe Tester Substrate
Substrates with structures down to 10µm and several hundred thousand test points per panel require specific solutions forscanningcapacitance measurementhigh accuracy and temperature Management
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In-Circuit Test (ICT)
Analog components (resistance, capacitance, inductance, diodes, transistors, etc.) as well as complex digital components can be tested in the ICT. Compared to other test methods (e.g. flying probe), the in-circuit test enables very short test times (= high assembly throughput) combined with a very high test coverage.
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Adjustable Clamshell Bed of Nails Testers
AdjustaBON Family
Designed for quick test development. This fixture can be configured to probe almost any circuit board in just a few hours. Once the perfect test is developed, move this light weight fixture out to the production floor to evaluate your production line test strategy prior to buying permanently drilled test fixtures, or while waiting for your drilled fixtures to be delivered. The AdjustaBON competes with the Flying Prober. There are many advantages over the flying prober. Setup is simple and intuitive and can be much quicker than programming a flying prober. Small size provides versatile bench top operation right where you need it. Maintenance costs are insignificant in comparison. The total cost of this fixture is in many cases less than the yearly maintenance cost of a flying prober. It would be possible to buy one of these fixtures every year for the price paid just to maintain one flying prober and it is about 1/20th the purchase price
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Probing Adaptors
Accessories primarily enable the connection between an industry standard logic analyzer footprint (D-Max, Mictor, P6860, etc) and an instrument probe. For example, a connection between a D-Max footprint and the digital channels of an MSO (Mixes Signal Oscilloscope). They can also enable the interconnect of a probe to a different industry standard footprint. Adding flying leads to a probe designed for a mictor footprint and a probe tester are also some of the accessories that are available.
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Flying Probe Tester
Pilot 4D M4
The Pilot 4D M4 is a full-performance, double-sided, flying probe test system with an extremely high level of flexibility, making it the ideal solution for those with a wide variety of testing needs, from prototypes to small/medium production volume, through the repair of field returns and reverse engineering. The vertical, compact architecture and the excellent board clamping system ensure that there is no oscillation of the board under test, which in turn greatly facilitates the precise positioning of the probes on the test points.
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Fastest Flying Probe Test System for Semiconductor Substrate Interconnect Test
GATS-3200
* Test individual packages or * Test Multi-image panels with Step&Repeat Function * single flying probe top using very high speed voice coil motor (VCM) technology * 50 - 100 tests per second ... high throughput * Dual Flying Probe Top for testing bump-to-bump nets * flying probe head allows testing of all nets including each power and ground point * 4-wire test capability
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Flying Probe Programming & Test Development
Testing House offers full Flying Probe Programming and Test Development using its very own Seica Pilot LX Flying Probe Test Stations.
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Flying Probe Tester
Condor MTS 505
Primarily the Flying Probe Tester was developed to enable In-Circuit testing (ICT) of prototype PCBs. For testing a new design an existing fixture has to be changed or a new fixture has to be procured. The fixtureless design of the MTS 505 Condor is one of its most attractive properties, where the unnecessary and costly time delays incurred for fixture build or changes can be avoided. It is the ideal platform for testing prototypes.
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Precision Flying Probe Platforms For Automated Test Applications
Flying Probe technology is used to automate the testing of printed circuit boards (PCB) that would otherwise have to be tested manually. Adding a Huntron Access Prober to your test procedure will significantly decrease test times therefore increasing productivity.Access Probers can accurately place a probe on test points with high accuracy achieved using micro-stepping motors and linear laser encoders. Probing the smallest surface mounted devices is possible. Huntron Access Probers can automate your unique test process using the standard probe or by adding a custom probe of your design. Huntron offers three Flying Probe system configurations based on PCB size and test head requirements.
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Flying Probe Test System
A8a
The A8a test system provides the flexibility of flying probe testers while delivering high throughput testing for bare board printed circuit boards (PCBs). The target market for the A8a is the electrical test of tablet and PC motherboards and high density interconnect (HDI) products for smart phones. The A8a is designed for high productivity, reliability and test accuracy. To achieve high throughput the key feature of the A8a is a new dual shuttle system, which reduces the product exchange time to zero seconds in automation mode. In combination with the fast test speed of up to 140 measurements/second the A8a will give customers a competitive test solution for batches up to 5000 boards. A typical cycle time of a 4-up smart phone board is about 2 minutes.
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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.