Showing results: 946 - 960 of 1690 items found.
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40-592A-004 -
Pickering Interfaces Ltd.
The 40-592A FIBO (Fault Insertion Break-Out) Matrix Module is a large-scale high density switching matrix based on the Pickering BRIC format. The fault insertion BRICs are designed for applications requiring the simulation of a variety of faults in complex, high pin count, applications involving sensors and control units. Typical faults that can be simulated are open-circuits, short circuits to ground or battery, or short-circuits between input/output lines.
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40-592A-003 -
Pickering Interfaces Ltd.
The 40-592A FIBO (Fault Insertion Break-Out) Matrix Module is a large-scale high density switching matrix based on the Pickering BRIC format. The fault insertion BRICs are designed for applications requiring the simulation of a variety of faults in complex, high pin count, applications involving sensors and control units. Typical faults that can be simulated are open-circuits, short circuits to ground or battery, or short-circuits between input/output lines.
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40-592A-012 -
Pickering Interfaces Ltd.
The 40-592A FIBO (Fault Insertion Break-Out) Matrix Module is a large-scale high density switching matrix based on the Pickering BRIC format. The fault insertion BRICs are designed for applications requiring the simulation of a variety of faults in complex, high pin count, applications involving sensors and control units. Typical faults that can be simulated are open-circuits, short circuits to ground or battery, or short-circuits between input/output lines.
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40-592A-002 -
Pickering Interfaces Ltd.
The 40-592A FIBO (Fault Insertion Break-Out) Matrix Module is a large-scale high density switching matrix based on the Pickering BRIC format. The fault insertion BRICs are designed for applications requiring the simulation of a variety of faults in complex, high pin count, applications involving sensors and control units. Typical faults that can be simulated are open-circuits, short circuits to ground or battery, or short-circuits between input/output lines.
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40-592A-011 -
Pickering Interfaces Ltd.
The 40-592A FIBO (Fault Insertion Break-Out) Matrix Module is a large-scale high density switching matrix based on the Pickering BRIC format. The fault insertion BRICs are designed for applications requiring the simulation of a variety of faults in complex, high pin count, applications involving sensors and control units. Typical faults that can be simulated are open-circuits, short circuits to ground or battery, or short-circuits between input/output lines.
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40-592A-001 -
Pickering Interfaces Ltd.
The 40-592A FIBO (Fault Insertion Break-Out) Matrix Module is a large-scale high density switching matrix based on the Pickering BRIC format. The fault insertion BRICs are designed for applications requiring the simulation of a variety of faults in complex, high pin count, applications involving sensors and control units. Typical faults that can be simulated are open-circuits, short circuits to ground or battery, or short-circuits between input/output lines.
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40-592-121-186X8-2P -
Pickering Interfaces Ltd.
The 40-592 FIBO (Fault Insertion Break-Out) Matrix Module is a large-scale high density switching matrix based on the Pickering BRICâ„¢ format. The fault insertion BRICs are designed for applications requiring the simulation of a variety of faults in complex, high pin count, applications involving sensors and control units. Typical faults that can be simulated are open-circuits, short-circuits to ground or battery, or short-circuits between input/output lines.
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40-592A-115 -
Pickering Interfaces Ltd.
The 40-592A FIBO (Fault Insertion Break-Out) Matrix Module is a large-scale high density switching matrix based on the Pickering BRIC format. The fault insertion BRICs are designed for applications requiring the simulation of a variety of faults in complex, high pin count, applications involving sensors and control units. Typical faults that can be simulated are open-circuits, short circuits to ground or battery, or short-circuits between input/output lines.
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40-566A-003 -
Pickering Interfaces Ltd.
These modules are 2 Amp high-density large PXI matrix modules with the ability to switch up to 2 Amps at 150VDC/100VAC. They are available in 4 or 8-slot PXI sizes and are constructed using quality electro-mechanical relays for high switching confidence.
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40-566A-107 -
Pickering Interfaces Ltd.
These modules are 2 Amp high-density large PXI matrix modules with the ability to switch up to 2 Amps at 150VDC/100VAC. They are available in 4 or 8-slot PXI sizes and are constructed using quality electro-mechanical relays for high switching confidence.
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40-566A-106 -
Pickering Interfaces Ltd.
These modules are 2 Amp high-density large PXI matrix modules with the ability to switch up to 2 Amps at 150VDC/100VAC. They are available in 4 or 8-slot PXI sizes and are constructed using quality electro-mechanical relays for high switching confidence.
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40-566A-104 -
Pickering Interfaces Ltd.
These modules are 2 Amp high-density large PXI matrix modules with the ability to switch up to 2 Amps at 150VDC/100VAC. They are available in 4 or 8-slot PXI sizes and are constructed using quality electro-mechanical relays for high switching confidence.
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40-566A-101 -
Pickering Interfaces Ltd.
These modules are 2 Amp high-density large PXI matrix modules with the ability to switch up to 2 Amps at 150VDC/100VAC. They are available in 4 or 8-slot PXI sizes and are constructed using quality electro-mechanical relays for high switching confidence.
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40-566A-105 -
Pickering Interfaces Ltd.
These modules are 2 Amp high-density large PXI matrix modules with the ability to switch up to 2 Amps at 150VDC/100VAC. They are available in 4 or 8-slot PXI sizes and are constructed using quality electro-mechanical relays for high switching confidence.
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40-566A-001 -
Pickering Interfaces Ltd.
These modules are 2 Amp high-density large PXI matrix modules with the ability to switch up to 2 Amps at 150VDC/100VAC. They are available in 4 or 8-slot PXI sizes and are constructed using quality electro-mechanical relays for high switching confidence.