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- Pickering Interfaces Inc.
product
PXI 32 Chan I/O Parallel I/P Prog Threshold
40-412-101
A 32-channel Digital I/O module with high output voltage and current capability and a dual variable threshold input. Each of the 32 channel outputs can be used to drive the output high or low using a high current capacity drive capable of sourcing 0.4A from the high side or 0.5A sink on the low side for each channel. The module is available in two versions with either serial or parallel capture of the input levels.
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Dynamically Controlled High Speed Digital I/O PXI Card
GX5050
The GX5050 is a high speed Dynamic Digital I/O card that provides a full set of features that is comparable to high speed I/O products found in large functional test systems. The card shares an identical architecture with the GC5050, but the GX5050 is a PXI card (6U) and the GC5050 is a PCI card. Both have the ability to operate independently of the host computer when in RUN mode.
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Dynamically Controlled High Speed Digital I/O PXI Card
GX5150 Series
The GX5150 Series are high speed, 6U PXI, sequenced digital I/O instruments. The GX5150 master controller has 32 bits of I/O channels that supports test rates of up to 50 MHz and a vector depth of up to 128 Mb per pin. The GX5151 slave offers the same timing characteristics and multiple I/O level configurations when used in conjunction with the GX5150. The GX5150 can control up to 15 GX5151 boards using the same timing and sequencer.
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Dynamically Controlled High Speed Digital I/O PXI Card
GX5280 Series
The GX5280 Series are high performance, cost-effective 3U PXI dynamic digital I/O boards with 32 TTL input or output channels and 32 LVDS input or output channels. The GX5280 Series offers an industry leading 512 MB of on-board memory and supports test rates up to 200 MHz. The single board design supports both master and slave functionality without the use of add-on modules.
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Dynamically Controlled High Speed Digital I/O PXI Card
GX5290 Series
The GX5290 Series are a high performance, cost-effective 3U PXI dynamic digital I/O boards offering 32 digital input or output channels with dynamic direction control. The GX5290 Series also supports deep pattern memory by offering 256 MB of on-board vector memory with dynamic per pin direction control and with test rates up to 200 MHz. The single board design supports both master and slave functionality without the use of add-on modules.
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Dynamically Controlled, High Speed Digital I/O PXI Express Card
GX5292e
The GX5292e is a high performance, cost-effective 3U PXI Express dynamic digital I/O boards offering 32 TTL or LVDS input or output channels with dynamic direction control. The GX5292e also supports deep pattern memory by offering 256 MB of on-board vector memory with dynamic per pin direction control and with test rates up to 100 MHz. The single board design supports both master and slave functionality without the use of add-on modules.
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High Speed PXIe Digital IO Card - 32 Channels, Extendable up to 256 Channels in One Chassis
Model 33010
Chroma 33010 is a high-density 100MHz PXIe digital IO card designed for characterizing, validating, and testing a variety of digital and mixed-signal ICs. Each IO Card consists of a Sequencer Pattern Generator (SQPG) and 32 Channels of fill ATE-like features. The 33010 IO card is expandable up to 356 channels. Some unique features of the 33010 include an on-board SQPG, per pin timing/levels/PMU/TFMU, multiple time domains, and multithreaded testing for complex IC testing. Each channel is also equipped with 64M vector memory, 16 timing sets with on-the-fly timing change, and per pin timing and frequency measurements up to 400 MHz.
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SHC68-C68-RDIO2, 68-Pin VHDCI Male to 68-Pin VHDCI Male, 80 MHz, Shielded Digital Cable, 1m
156166-01
SHC68-C68-RDIO2 Shielded R Series High Speed Digital Male VHDCI Cable, 1m
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SHC68-C68-RDIO2, 68-Pin VHDCI Male to 68-Pin VHDCI Male, 80 MHz, Shielded Digital Cable, 2m
156166-02
SHC68-C68-RDIO2 Shielded R Series High Speed Digital Male VHDCI Cable, 2m
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SHC68-68-RDIO, 68-Pin Male VHDCI to 68-Pin Female D-SUB, Shielded Digital Cable, 1m
191667-01
68-Pin Male VHDCI to 68-Pin Female D-SUB, Shielded Digital Cable 1m
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32-CH 80 MB/s High-Speed Digital I/O Card
PCIe-7300A
ADLINK PCIe-7300A is an ultra-high-speed digital I/O card. It consists of 32 digital input/output channels. High performance designs and state-of-the-art technology make this card ideal for a wide range of applications, such as high-speed data transfer, digital pattern generation and digital pattern capture applications, and logic analyzer applications. Trigger signals are available to start the data acquisition of pattern generation.
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Bi-Directional Differential-TTL I/O PXI Card
GX5641 Series
The GX5641 is a 3U PXI instrument card that can be used for general data acquisition, process control, Automatic Test Equipment (ATE), functional test, and factory automation applications. The GX5641 consists of 64 bi-directional TTL-differential I/O channels. Each channel has two ports (TTL and differential) which can be individually set to operate in either conversion or static I/O modes.
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128 Channel Digital I/O Modular PXI Card
GX5733 Series
The GX5733 is a 3U modular digital I/O card that offers up to 128 I/O channels. Designed for ATE, data acquisition, or process control systems where a large number of discrete I/O channels are required, the GX5733 offers the highest channel density and flexibility in the industry for a single-slot, 3U PXI plug-in board. 96 channels support TTL levels and an additional 32 I/O channels can be customized by installing one of Marvin Test Solutions' GX57xx series I/O modules. Alternatively, the remaining port can be configured to support 32 TTL channels.
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224 TTL Channels, Digital I/O With 4 Counters PXI Card
GX5732
The GX5732 is a 6U PXI static digital I/O card with 224 TTL I/O channels. Designed for ATE, data acquisition, or process control systems where a large number of discrete I/O channels are required, the GX5732 offers the highest digital channel density in the industry for a single PXI plug-in board.
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High Performance 50 MHz Dynamic Digital I/O PXI Subsystem
GX5960 Series
The GX5960 digital subsystem represents the highest level of performance available for PXI-based digital instrumentation and features high performance pin electronics and a timing generator / sequencer in a compact, 6U PXI form factor. The GX5960 series consists of the GX5961 clock generator board with 16 driver / sensor channels and the GX5964 driver / sensor board which supports 32 bi-directional I/O channels. Up to 528 digital I/O channels can be supported by the GX5960 digital subsystem. Each digital channel features a wide drive / sense voltage range of -14 V to +26 V (maximum swing of 24 volts) which can be individually programmed for a drive hi, drive lo, sense hi, sense lo, and a load value (with commutation voltage level) – offering the user complete flexibility when creating test programs and fixtures for multiple UUTs. In addition, each channel offers a parametric measurement unit (PMU) for DC measurements.
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Dynamically Controlled, High Voltage Digital I/O PXI Card With Pin Electronics
GX5055
The GX5055 represents a new level of performance and capabilities for PXI-based digital instrumentation. Based on the proven architecture of the GX5050, the GX5055 offers high performance pin electronics and an enhanced timing generator in a compact, 6U PXI form factor.
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6U PXI Multi-Channel Analog I/O PXI Card
GX3348 Series
The GX3348 is a multi-channel analog I/O 6U PXI card which provides (3) programmable sources, a ground source connection, a pulse / square wave generator (A version only) and a 4 x 48 or 4 x 64 matrix - allowing the user to route the 3 sources, or ground to any of the 48 or 64 I/O channels. In addition, each I/O channel can be connected to a 16-bit A to D converter, providing DC voltage measurement capability for each channel. The module also offers (8) static digital I/O for controlling / monitoring a UUT's digital signals.
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PXI I/O Board
MZ-TrigIO
The MZ Trigger I/O Board (MZTIO) is a break-out board for the Pixie-16 PXI chassis backplane providing real-time access to Pixie-16 logic signals.
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EMX-75XX
The EMX-75XX Series adds to AMETEK VTI Instruments' growing PXI Express (PXIe) Core Automated Test Equipment (ATE)TM family as a high-current, high-density digital input/output line of modules. Unlike many static I/O PXIe modules on the market today, the EMX-75XX Series can sink or source up to 300 mA on each channel. Delivering beyond just 2 V and 5 V, engineers can program the cards to support a wide range of voltages and more—on every channel, for both input and output.
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FPGA PXI High-Performance Digital I/O Card
GX3700
The GX3700 is a user configurable, FPGA-based, 3U PXI card which offers 160 digital I/O signals which can be configured for single-ended or differential interfaces. The card employs the Altera Stratix III FPGA, which can support SerDes data rates up to 1.2 Gb/s, digital I/O clock rates of 700 MHz, and features 47,500 logic elements and 2.1 kb of memory. The GX3700 is supplied with an integral expansion board providing access to the FPGA’s 160 I/Os. Alternatively, users can design their own custom expansion cards for specific applications - eliminating the need for additional external boards which are cumbersome and physically difficult to integrate into a test system. The design of the FPGA is done by using Altera’s free Quartus II Web Edition tool set. Once the user has compiled the FPGA design, the configuration file can be loaded into the FPGA directly or via an on-board EEPROM.
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PXIe Digital I/O: 28 LVDS Channels, 8 Trigger Channels
M5302A
M5302A is a single-slot Digital IO PXIe module with 28 programmable LVDS channels and 8 single-ended channels. The LVDS channels can be used to communicate to the device under test or can be used to control other devices by emulating protocols such as Camera Link. The single-ended channels are suitable for event triggers or other general-purpose IO applications.
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PXIe-6569, PXI FlexRIO Digital I/O Module
787283-01
1.25 Gbit/s, Kintex Ultrascale FPGA, 64 LVDS Channel FlexRIO Digital I/O Module - The PXIe-6569 provides a digital I/O interface along with a user-programmable FPGA for flexibility to fit a variety of interfacing and application needs. This module can interface with up to 64 … single-direction low-voltage differential signal (LVDS) channels and eight bidirectional single-ended channels. You can use the PXIe-6569 for real-time interfacing of standard protocols or implementing customized protocols.
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PXIe-6569, PXI FlexRIO Digital I/O Module
787285-01
1.25 Gbit/s, Kintex Ultrascale FPGA, 64 LVDS Channel FlexRIO Digital I/O Module - The PXIe-6569 provides a digital I/O interface along with a user-programmable FPGA for flexibility to fit a variety of interfacing and application needs. This module can interface with up to 64 … single-direction low-voltage differential signal (LVDS) channels and eight bidirectional single-ended channels. You can use the PXIe-6569 for real-time interfacing of standard protocols or implementing customized protocols.
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PXIe-6569, PXI FlexRIO Digital I/O Module
787281-01
1.25 Gbit/s, Kintex Ultrascale FPGA, 64 LVDS Channel FlexRIO Digital I/O Module - The PXIe-6569 provides a digital I/O interface along with a user-programmable FPGA for flexibility to fit a variety of interfacing and application needs. This module can interface with up to 64 … single-direction low-voltage differential signal (LVDS) channels and eight bidirectional single-ended channels. You can use the PXIe-6569 for real-time interfacing of standard protocols or implementing customized protocols.
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PXIe-6569, PXI FlexRIO Digital I/O Module
787282-01
1.25 Gbit/s, Kintex Ultrascale FPGA, 64 LVDS Channel FlexRIO Digital I/O Module - The PXIe-6569 provides a digital I/O interface along with a user-programmable FPGA for flexibility to fit a variety of interfacing and application needs. This module can interface with up to 64 … single-direction low-voltage differential signal (LVDS) channels and eight bidirectional single-ended channels. You can use the PXIe-6569 for real-time interfacing of standard protocols or implementing customized protocols.
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PXIe-6569, PXI FlexRIO Digital I/O Module
787284-01
1.25 Gbit/s, Kintex Ultrascale FPGA, 64 LVDS Channel FlexRIO Digital I/O Module - The PXIe-6569 provides a digital I/O interface along with a user-programmable FPGA for flexibility to fit a variety of interfacing and application needs. This module can interface with up to 64 … single-direction low-voltage differential signal (LVDS) channels and eight bidirectional single-ended channels. You can use the PXIe-6569 for real-time interfacing of standard protocols or implementing customized protocols.
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PXIe-6569, PXI FlexRIO Digital I/O Module
787280-01
1.25 Gbit/s, Kintex Ultrascale FPGA, 64 LVDS Channel FlexRIO Digital I/O Module - The PXIe-6569 provides a digital I/O interface along with a user-programmable FPGA for flexibility to fit a variety of interfacing and application needs. This module can interface with up to 64 … single-direction low-voltage differential signal (LVDS) channels and eight bidirectional single-ended channels. You can use the PXIe-6569 for real-time interfacing of standard protocols or implementing customized protocols.
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PCI-7813, 3M Gate Virtex-II FPGA, Digital Reconfigurable I/O Device
779370-01
The PCI‑7813 is a reconfigurable I/O (RIO) device that features a user-programmable FPGA for onboard processing and flexible I/O operation. With LabVIEW FPGA, you can individually configure the digital lines as inputs, outputs, counter/timers, PWM, encoder inputs, or specialized communication protocols. You can also program custom onboard decision making that executes with hardware-timed speed and reliability. The PCI‑7813 is well-suited for a wide variety of applications, such as high-speed waveform generation, sensor simulation, hardware-in‑the‑loop (HIL) test, custom communications protocols, bit error rate test, and other applications that require precise timing and control.
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PCIe-7820, Kintex 7 160T FPGA Digital Reconfigurable I/O Device
785361-01
The PCIe‑7820 is a reconfigurable I/O (RIO) device that features a user-programmable FPGA for onboard processing and flexible I/O operation. With LabVIEW FPGA, you can individually configure the digital lines as inputs, outputs, counter/timers, PWM, encoder inputs, or specialized communication protocols. You can also program custom onboard decision making that executes with hardware-timed speed and reliability. Each line offers software-selectable logic levels. The PCIe‑7820 is well-suited for a wide variety of applications, such as high-speed waveform generation, sensor simulation, hardware-in-the-loop (HIL) test, bit error rate test, and other applications that require precise timing and control.
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PCI-6512, 64-Channel, ±30 VDC, Source Outputs, Bank-Isolated Digital I/O Device
778968-01
The PCI-6512 is an industrial digital output interface, with eight banks of isolated channels. With programmable power-up states, you can configure the initial output states in software, to ensure safe operation when connected to industrial actuators. If a computer or application fault occurs, the PCI-6512 can use digital I/O watchdogs to switch to a configurable safe output state to ensure detection and safe recovery from fault conditions. Programmable input filters eliminate glitches/spikes and provide debouncing for digital switches/relays through a software-selectable digital filter.
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PCI-6518, 32-Channel, ±30 V, 16 Sink/Source Inputs, 16 Source Outputs, Bank-Isolated Digital I/O Device
779084-01
The PCI-6518 is an industrial digital I/O interface, with two banks optically isolated channels. The device is ideal for industrial control and manufacturing test applications. The PCI-6518 module is an industrial digital I/O interface, with eight banks of isolated channels. You can wire each input bank in a source or sink configuration. With programmable power-up states, you can configure the initial output states in software, to ensure safe operation when connected to industrial actuators. If a computer or application fault occurs, the PCI-6518 can use digital I/O watchdogs to switch to a configurable safe output state to ensure detection and safe recovery from fault conditions.