Pickering Interfaces Inc.
Pickering Interfaces designs and manufactures modular signal switching and simulation for use in electronic test and verification. We offer the largest range of switching and simulation products in the industry for PXI, LXI, PCI & USB applications. Our products are specified in test systems installed throughout the world and have a reputation for providing excellent reliability and value.
- +44 (0)1255 687900
- sales@pickeringtest.com
- Stephenson Road
Clacton on Sea
Essex, CO15 4NL
United Kingdom
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product
PXI/PXIe RF Matrix, 8x2, 1GHz, 50Ω, SMA
42-750-521
The 40-750A-521 (PXI) and 42-750A-521 (PXIe) are 50 Ω 8x2 RF matrix modules with SMA connectors suitable for switching frequencies up to 1000 MHz. They are part of a range of 8x2 matrix modules with 50 Ω or 75 Ω characteristic impedance with front panel mounted SMA, SMB or MS-M multiway coaxial connectors.
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PXI 8-slot BRIC Multiplexer, 4-Channel, 40-Pole (3 Sub-cards)
40-570A-211
The 40-570A-211 is a 4-channel, 40-pole High-Density Multiplexer and is part of our BRIC family. The 40-570A range is designed to simplify the connection of a common set of test equipment to one of a number of different devices for testing.
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15-Pin D-Type Connectors & Cable Accessories
Our 15-Pin D-Type connector is used on PXI switching products to provide a medium density user connector solution.
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PXI/PXIe RF Multiplexer, Dual 4-Channel, Terminated, 3GHz, 50Ω, SMB
40-873A-002
The 40-873A-002 (PXI) and 42-873A-002 (PXIe) are 4 to 1 RF multiplexers with 2 banks in a single slot. Additionally, extra switching allows unused channels to be terminated into 50 Ohm, maintaining signal integrity. It has been designed to exhibit low insertion loss and VSWR through the use of modern RF relay technology at an affordable cost. Each MUX has been carefully designed to ensure excellent and repeatable RF characteristics to frequencies of 3GHz.
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product
PXI/PXIe High Density Precision Resistor Module, 9-Channel
40-297A-026
The 40-297A-026 (PXI) and the 42-297A-026 (PXIe) are 9-channel programmable resistors with a range of 1.5 Ω to 26.7 kΩ. They are part of the 40/42-297A series of high density precision resistor modules and provide a simple solution for applications requiring accurate simulation of resistive sensors.
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75 Ohm 1.6/5.6 to 1.6/5.6 Cable Assemblies - 3GHz
Pickering Interfaces offer a range of RF cable assemblies to complement our extensive range of PXI, LXI, PCI, VXI and GPIB switching products. All cable assemblies are made from high quality materials and use best practice assembly methods to ensure the cabling matches the performance of the switching modules they support.
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product
Cable Assy 9-Pin D-Type, F/F, 1m, HV
40-970-009-1m-FF-HV
A 9-Pin D-Type Cable Assemby for general use constructed from PTFE Type C insulated wire. The connector assembly can be secured to the product by screwlocks.
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LXI High Density 320x8 Matrix with BIRST
60-550-025
High-density single pole matrix module capable of switching up to 300VDC/250VAC, or 2A (60W max). The use of high-quality electro-mechanical relays offer high switching confidence and make it suitable for signal routing in large ATE systems.
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PXI Dual 2 Channel (M Mode) ST 62.5 Cons
40-855-522-M62.5
Fiber Optic MEMS Switching cards available in many high density formats with a choice of five different connector styles to suit most applications
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Cable Assy 37-Pin D-Type M/M 0.5m HV
40-970-037-0.5m-MM-HV
The 37-Pin D-Type High Voltage cable assembly is constructed from PTFE insulated 7/0.2 (24AWG) Tinned Copper Wire. Screwlocks are provided to secure the cable to its associated products. The 37-Pin Female connector option of this cable assembly is suited for direct connection to Pickering Interfaces products.
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product
PXI 8 Slot BRIC 66x8 2-pole (3 sub-cards)
40-562A-122-66X8
This version of our BRIC is part of a range of high-density PXI matrix modules. These modules are available in 2, 4 or 8-slot PXI sizes to suit all high performance matrix requirements and are constructed using instrumentation quality reed relays. With this high level of switching density, these PXI matrix modules allow a complete Functional ATE system to be housed in a single 3U PXI chassis. These BRIC matrix modules allow the use of lower cost 8 or 14-slot PXI chassis.
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product
PXI 8 Slot BRIC 176x4 2-Pole (4 sub-cards)
40-562A-122-176X4
This version of our BRIC is part of a range of high-density PXI matrix modules. These modules are available in 2, 4 or 8-slot PXI sizes to suit all high performance matrix requirements and are constructed using instrumentation quality reed relays. With this high level of switching density, these PXI matrix modules allow a complete Functional ATE system to be housed in a single 3U PXI chassis. These BRIC matrix modules allow the use of lower cost 8 or 14-slot PXI chassis.
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product
PXI/PXIe Battery Simulator Module, 2-Channel, Simplified Current Sink, 750 V Isolation
41-752A-903
Targeting EV, automotive, aerospace, energy storage and electric aircraft applications, the new battery simulator modules occupy a single PXI slot. These 2-channel battery simulators are capable of supplying up to 7 V and 300 mA per channel. The channels are fully isolated from ground and from each other, allowing series connection to simulate batteries in a stacked architecture.
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PXI 8 Slot BRIC 121x16 1-Pole (11 sub-cards)
40-562A-121-121X16
This version of our BRIC is part of a range of high-density PXI matrix modules. These modules are available in 2, 4 or 8-slot PXI sizes to suit all high performance matrix requirements and are constructed using instrumentation quality reed relays. With this high level of switching density, these PXI matrix modules allow a complete Functional ATE system to be housed in a single 3U PXI chassis. These BRIC matrix modules allow the use of lower cost 8 or 14-slot PXI chassis.
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Serial AC Power Sequencer
90-200-001
Each power outlet can be programmed to switched on in sequence with a specific timing delay. The delay can be staggered to ensure that order dependent systems - like PXI - can be switched on and off in an orderly way with just one operation. A staggered start up also limits the inrush current associated with the powering up of equipment, including earth current inrush, placing less stress on cabling and leakage breakers. Power on or off instructions can be initiated from either the front panel switch or via the serial interface.