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3-Port ROADM / TOADM
Optoplex's Reconfigurable Optical Add/Drop Multiplexer (ROADM) module, also known as Tunable Optical Add/Drop Multiplexer (TOADM), is based on a proprietary micro-optics and micro-actuator design, athermal packaging technology, and state-of-the-art thin-film coating. When receiving a stream of optical signals of a plurality of wavelengths from the Input-Port (IN), this 3-port ROADM device directs a selected channel to the Drop-Port (ADD/DROP) and the remaining channels to the Express-Port (EXP), as depicted in the figure below. This tunable feature can also be used for adding a channel, when the device is used in reverse. Cascading two ROADM modules, simultaneous add and drop functions can be achieved. Each single ROADM device is optimized to cover either C- or L-band wavelengths. The standard 100- or 200-GHz channel spacing ROADM products allow for single-channel drop. Customized banded-channel drop ROADMs are available upon request.
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Automated Optical Switch - PXI
Add optical switching capability to your test system with Quantifi Photonics’ automated optical switches. The fast and reliable optical switch will enable automated sequential testing, saving time and streamlining your test procedures.
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Broadband Optical Source - MATRIQ
Our SLED MATRIQ instrument is a compact super-luminescent LED light source with high output power, large bandwidth and low spectral ripple.The SLED comes in various wavelength models to address various key applications across telecom and datacom, and is ideal for building a customized optical testing platform that delivers reliable and repeatable results.
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PXIe-7847, Kintex-7 160T FPGA, 500 kS/s, DRAM PXI Multifunction Reconfigurable I/O Module
784144-01
Kintex-7 160T FPGA, 500 kS/s, DRAM PXI Multifunction Reconfigurable I/O Module—The PXIe‑7847 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXIe‑7847 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware. The PXIe‑7847 also includes peer-to-peer streaming for direct data transfer to other PXI Express modules.
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PXIe-7865, Kintex-7 160T FPGA, 24-Channel AO, 1 MS/s, PXI Multifunction Reconfigurable I/O Module
787355-01
PXIe, Kintex-7 160T FPGA, 24-Channel AO, 1 MS/s, PXI Multifunction Reconfigurable I/O Module - The PXIe-7865 features flexibility of timing and synchronization with a user-programmable FPGA for onboard processing and direct control over I/O signals. The PXIe-7865 provides 24 analog output, 2 analog input, and 32, 5V input-tolerant digital I/O channels connected to a Kintex-7 160T FPGA to help you design applications for hardware-in-the-loop testing, custom protocol communication, sensor simulation, and high-speed control. You can use the dedicated A/D converter (ADC) for independent timing, individual channel triggering, and multirate sampling. Additionally, the PXIe-7865 includes peer-to-peer streaming for direct data transfer to other PXI Express modules.
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PCIe-7842, Virtex-5 LX50 FPGA, 200 kS/s Multifunction Reconfigurable I/O Device
781101-01
Virtex-5 LX50 FPGA, 200 kS/s Multifunction Reconfigurable I/O Device - The PCIe‑7842 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals for complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PCIe‑7842 features a dedicated A/D converter per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical DAQ hardware.
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PXIe-7862, Kintex-7 325T FPGA, 16-Channel AI, 1 MS/s, PXI Multifunction Reconfigurable I/O Module
786672-01
PXIe, Kintex-7 325T FPGA, 16-Channel AI, 1 MS/s, PXI Multifunction Reconfigurable I/O Module - The PXIe-7862 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals for complete flexibility of timing and synchronization. With 16 analog input channels connected directly to a Kintex-7 325T FPGA, you have ample space to design applications that require precise timing such as hardware-in-the-loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXIe-7862 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware. The PXIe-7862 also includes peer-to-peer streaming for direct data transfer to other PXI Express modules.
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PCIe-7851, Virtex-5 LX30 FPGA, 750 kS/s Multifunction Reconfigurable I/O Device
781102-01
Virtex-5 LX30 FPGA, 750 kS/s Multifunction Reconfigurable I/O Device - The PCIe‑7851 features a user-programmable FPGA for high performance onboard processing and direct control over I/O signals for complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PCIe‑7851 features a dedicated A/D converter per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical DAQ hardware.
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PXI-7853, Virtex-5 LX85 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module
780341-01
Virtex-5 LX85 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module—The PXI‑7853 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXI‑7853 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware.
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PXI-7851, Virtex-5 LX30 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module
780339-01
Virtex-5 LX30 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module—The PXI‑7851 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXI‑7851 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware.
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PCIe-7858, Kintex-7 325T FPGA, 1 MS/s, DRAM Multifunction Reconfigurable I/O Device
786457-01
PCIe, Kintex-7 325T FPGA, 1 MS/s, DRAM Multifunction Reconfigurable I/O Device - The PCIe‑7858 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PCIe‑7858 features a dedicated analog-to-digital converter per channel for independent timing and triggering. This device offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware.
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PXI-7854, Virtex-5 LX110 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module
780342-01
Virtex-5 LX110 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module—The PXI‑7854 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXI‑7854 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware.
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PXIe-7868, Kintex-7 325T FPGA, 18-AO Channels, 1 MS/s, PXI Multifunction Reconfigurable I/O Module
785571-01
Kintex-7 325T FPGA, 18-AO Channels, 1 MS/s, PXI Multifunction Reconfigurable I/O Module—The PXIe-7868 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals for complete flexibility of timing and synchronization. With 18 analog output channels connected directly to a Kintex-7 325T FPGA, you have ample space to design applications that require precise timing such as hardware-in-the-loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXIe-7868 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware. The PXIe-7867 also includes peer-to-peer streaming for direct data transfer to other PXI Express modules.
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PCIe-7856, Kintex-7 160T FPGA, 1 MS/s, Multifunction Reconfigurable I/O Device
786455-01
PCIe, Kintex-7 160T FPGA, 1 MS/s, Multifunction Reconfigurable I/O Device - The PCIe‑7856 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PCIe‑7856 features a dedicated analog-to-digital converter per channel for independent timing and triggering. This device offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware.
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Broadband Optical Source - PXI
SLED 1000 Series
The SLED 1000 Series is a super-luminescent LED light source with high output power, large bandwidth and low spectral ripple. It comes in various wavelength models to address applications in the telecom and datacom markets.The SLED is a single-slot PXIe module and is ideal for building a customized optical testing platform that delivers reliable and repeatable results in manufacturing or R&D environments.
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Optical to Electrical Converters
High bandwidth, broadband optical to electrical converters available in a range of configurations. Choose from 1 or 2 channels, AC or DC coupling and various conversion gain and operating wavelength ranges.
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PXI High Density Multiplexer, 4-Bank, 32-Channel, 1-Pole
40-610A-002
The 40-610A-002 is a 4-bank, 32-channel, 1-pole MUX and is part of our range of PXI high density reed-relay based multiplexer modules. The range includes a wide choice of switching configurations which are especially useful where a large number of small multiplexers are required. Typical applications include signal routing in ATE and data acquisition systems.
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PXI/PXIe Wide Current Range Multiplexer Module, Single 24-Channel, 1-Pole
40-514-108
The 40-514-107 (PXI) and 42-514-107 (PXIe) are low density multiplexers in dual 12-channel, 1-pole configuration. They are capable of switching a wide range of current, from 10 μA to 2.5 A at 220 VDC/250 VAC. The current capability of the module permits the use of a single module type for both low and medium current test applications.
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LXI Microwave Multiplexer, SP4T, 14-Bank, 18GHz, 50Ω, SMA
60-803-114
Our 60-803-114 is a 14 bank terminated SP4T multiplexer and is part of a range of LXI based microwave multiplexers suitable for switching 50 ohm signals up to 18GHz. The 60-803 range is capable of supporting up to 14 banks of terminated 4 channel multiplexers it is ideal for constructing complex microwave switching systems for many applications. Connection is by high performance front panel mounted SMA, SMA-2.9, SMA-2.4 or SMA-1.85 connectors.
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LXI Single 32 Channel Fiber Multiplexer SC, Multi-Mode With Loop-Thru
60-851-224
The 60-850 and 60-851 are LXI conformant fiber optic multiplexers that use MEMS switching technology to ensure fast and reliable switching of single-mode (60-850) or multi-mode (60-851) optical signals being carried on fiber connections. The 60-850/851 is available with a variety of connector options and in a variety of multiplexer arrangements. Loop-thru versions are also available for easy multiplexer expansion.
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PXIe Microwave Multiplexer, Dual SP8T, 26.5 GHz, 50 Ω, SMA, Remote Mount, Failsafe
42-788-042-E
The 40-788-042-E (PXI) and 42-788-042-E (PXIe) are dual failsafe SP8T 26.5 GHz unterminated microwave multiplexers with remotely mounted relays. The 40/42-788 range of multiplexers are also available as single or dual, SP8T, SP10T or SP12T panel mounted multiplexers with relays mounted on the front panel.
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LXI Single 32 Channel Fiber Multiplexer LC, Single-Mode With Loop-Thru
60-850-424
The 60-850 and 60-851 are LXI conformant fiber optic multiplexers that use MEMS switching technology to ensure fast and reliable switching of single-mode (60-850) or multi-mode (60-851) optical signals being carried on fiber connections. The 60-850/851 is available with a variety of connector options and in a variety of multiplexer arrangements. Loop-thru versions are also available for easy multiplexer expansion.
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PXI Triple SP4T Multiplexer 40GHz 50 SMA-2.9
40-784A-143
Pickering Interfaces’ range of 40-784A PXI Microwave Multiplexer Modules have a characteristic impedance of 50Ω and are capable of switching signals up to 40GHz. Available in single, dual or triple, SP6T or SP4T formats, they are suitable for constructing complex microwave switching networks and provide a range of switching configurations to suit most applications. Connection is by high performance front panel mounted SMA or SMA-2.9 connectors
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PCI Very High Density Multiplexer, 198-Channel, 1-Pole
50-670C-022-198/1
The 50-670C-022-198/1 is a 198-channel, 1-pole MUX and is part of a series of very high density multiplexer cards feature a wide range of switching configurations. Typical applications include signal routing in ATE and data acquisition systems.The 50-670C shares exactly the same architecture as the established 40-670 range of PXI modules.
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PXI Multiplexer, Single 48-Channel, 1-Pole
40-632A-021-48/1
The 40-632A-021-48/1 is a single 48-channel, 1-pole PXI multiplexer and is part of our series of general purpose multiplexer modules featuring a wide range of switching configurations. Typical applications include signal routing in ATE and data acquisition systems.
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PXI/PXIe Microwave Multiplexer, Single SP4T, 6GHz, 50Ω, SMA, Remote Mount
40-784B-101-E
The 40-784B-101-E (PXI) and 42-784B-101-E (PXIe) are single SP4T 6GHz unterminated microwave multiplexers with remotely mounted relays. The 40/42-784B range is available with single, dual or triple, SP6T or SP4T multiplexers with front panel mounted or remotely mounted relays.
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PXI/PXIe Microwave Multiplexer, Single SP12T, 18 GHz, 50 Ω, SMA, Remote Mount, Failsafe
42-788-221-E
The 40-788-221-E (PXI) and 42-788-221-E (PXIe) are single failsafe SP12T 18 GHz unterminated microwave multiplexers with remotely mounted relays. The 40/42-788 range of multiplexers are also available as single or dual, SP8T, SP10T or SP12T panel mounted multiplexers with relays mounted on the front panel.
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PXI/PXIe MEMS Optical MUX, 8-Channel, Multi-Mode, 62.5/125 Fiber
40-852A-018-M62.5-HI
The 40/42-852A-018-M62.5-HI is a PXI/PXIe 8-channel multiplexer with FC/APC connectors, includes hardware interlock and is part of Pickering's range of PXI Fiber Optic MEMS Switching modules. They are available in many high density formats with a choice of different connector styles to suit most applications: FC/APC (for optimal performance), FC/PC and SC/PC for general applications and LC and MU for high density applications.
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PXI High Density Multiplexer, 1-Bank, 160-Channel, 1-Pole
40-615A-011
The 40-615A-011 is a 1-bank, 160-channel, 1-pole MUX and is part of our range of PXI high density reed-relay based multiplexer modules. These feature a wide range of switching configurations and are especially useful where a large number of small multiplexers are required. Typical applications include signal routing in ATE and data acquisition systems. Connections are made via a front panel 200-pin connector.
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PXI/PXIe Very High Density Multiplexer, 198-Channel, 1-Pole
40-675B-002-198/1
The 40-675B-002-198/1 (PXI) and the 42-675B-002-198/1 (PXIe) are 198-channel, 1-pole multiplexers and are part of our range of very high density low cost multiplexer modules. These modules are suitable for signal routing in high channel count ATE and data acquisition systems.