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- Pickering Interfaces Inc.
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PXI Single 8 Channel Optic Mux LC
40-852-418
The 40-852-418 8-channel multiplexer 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. Fiber optic multiplexers create a signal path by redirecting the optical signal into a selected output fiber. This is achieved using Micro-Mechanical Mirrors driven by a highly precise mechanism and activated via an electrical control signal.
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PXIe Optical Test Modules
Coherent Solutions’ expanding portfolio of PXIe optical test modules bring a wide range of new mixed-signal test capabilities to the PXI platform. The new modules offer seamless integration with PXI Platform and deliver reliable and repeatable results across a wide range of optical and mixed-signal test applications.
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Optical Mixed Signal Devices
Analog Devices optical mixed signal devices comprise a portfolio of highly integrated analog front ends and integrated optical modules. The discrete analog front ends offer flexibility in optimizing a given solution. The integrated optical modules are highly optimized for applications such as vital signs monitoring in smart watches and other wearables and offer very small form factors and reduce the required systems engineering to get to market.
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Optical Modules And Components
Luna offers a complete line of high performance active and passive fiber optic modules and components for a wide range of fiber optic systems, including interferometric systems for fiber optics sensing, fiber optic gyroscope (FOG) and optical coherence tomography (OCT).
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Pulse Laser
Is a variable, pulsed high power laser source, a building block ideal for MOPA, LIDAR, OTDR laser systems development and applications. This fully integrated compact module contains a Distributed Feedback (DFB) laser and built-in optical amplifier stage, and a variable nanosecond pulse generation circuits. It provides up to 200 mW optical peak power in 1064 nm wavelength region, with a programmable pulse width from 10 ns to 1000 ns, and a selectable pulse repetition rate from 100 Hz to 1 MHz The optical pulse generation can alternatively be controlled via an external electrical trigger. In a compact design, NPL-CWDM-M is applicable for OEM integration or as a stand alone pulsed laser source. Contact Optilab for more information.
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Optical Fiber Identifier
AFI-400
Shanghai Fibretool Technology Co.,Ltd.
AFI-400 Optical Fiber Identifier is an important tool for optical maintenance, which is used for nondestructive fiber identification work, can be detect in any location of both SM and MM fiber. Meanwhile it also has Visual Fault Locator module with fault location function. It is the ideal instrument for online test.
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LXI Optical Switch - MEMS Dual 5x5 Matrix
65-280-422-M62.5
The 65-280-422 is a dual 5x5 fiber optic matrix plugin module designed to be fitted into a 65-200-002 Scalable Chassis. It uses multi-mode (62.5/125 μm) fiber and the optical interface is via front panel mounted LC high density connectors.
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PXI/PXIe MEMS Optical MUX, Triple 2-Channel, Single-Mode, 9/125 Fiber, LC Connectors
40-855A-432
The 40/42-855A-432 is a PXI/PXIe triple 2-channel multiplexer with LC connectors 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. They are also available with an optional hardware interlock which, when activated, will return all optical switches to their default unpowered state.
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Multichannel Voltage Output D/A Converters
Analog Devices offers an industry-leading family of multichannel voltage output D/A converters (DACs), covering 8-bit to 16-bit resolutions, from 2-channel up to 40-channel density, and serial SPI or I2C interfaces. This family of precision D/A converters are in demand for applications that require high channel density and a small form factor, such as optical communications, analog output modules, or LED displays. ADI’s multichannel voltage output D/A converters provide features such as the availability of multiple independent output spans, system calibration functions that allow user-programmable offset and gain, or D/A converter increment/decrement functionality, which reduces the need to add external precision gain stages and facilitates the use of this family of D/A converters.
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Solar EL Defect Detector
Jiangsu Keyland Laser Technology Co., Ltd.
Features: - Reveals invisible defects- Improves line yield prior to lamination- Improves quality and reliability of final product- Exceptional optical resolution in its class- Flexible system configuration for framed or unframed modules testing
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Module Type ASE Light Source
Module type ASE light sources are small in size and easy to integrate into equipments. The dimensions are different between models, and five sizes are available from the smallest MSA to S, M, M2 and L. All of them are operated on 5 VDC and the optical properties are the same as the corresponding bench-top models.
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3.5” Embedded SBC With AMD® RYZEN™ Embedded V1807B/V1605B APU, DisplayPort, 2 HDMI, LVDS And 4 GbE LAN
CAPA13R
The CAPA13R is powered by the onboard AMD RYZEN™ Embedded V1807B/V1605B processor with Radeon™ Vega graphics. The 4K embedded board is well-suited for graphics-intensive applications such as medical imaging, video surveillance, 3D simulators, optical quality control, digital signage, kiosks/POI, thin clients, and more. The integrated AMD RadeonTM RX Vega graphics with support of DirectX 12 and OpenGL 4.5 marks the cutting edge of embedded graphics. The CAPA13R can deliver truly impressive user experiences and outstanding 3D graphics quality through two HDMI, one DisplayPort and one LVDS interfaces. Its onboard CPU is attached on the rear side of the board, which can aid with heat dissipation and offers flexibility for easy system integration and minimum maintenance. Moreover, the CAPA13R offers multiple expansion interfaces with one M.2 Key E slot for wireless modules and one M.2 key B slot for storage cards. One 260-pin SO-DIMM socket on the CAPA13R supports up to 16GB of DDR4-2400 (V1605B) and DDR4-3200 (V1807B) memory. The system has a +12V DC power input.
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(125×150×20mm) C-Band DWDM Booster EDFA Module
WBA4100-FM05
Hangzhou Huatai Optic Tech. Co., Ltd.
Huatai WBA4100-FM04 series used 125 x 150 x 20mm MSA standard , is a digital control circuit of DWDM power amplifier function module. Products using the most excellent optical properties, electronic control technology and complete software function is most advanced, wide wavelength range, low noise, excellent gain flatness characteristics and transient characteristics. Application for C-Band 44 wave or the 88 wave of DWDM system.
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Mini LED Backlight Module Automatic Optical Test System
7661-K003
Chroma 7661-K003 Mini LED Backlight Module Automatic Optical Test System contains a 71803-2 2D color analyzer to measure chromaticity and brightness
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Transmissive Optical Encoder Module
EM1
The EM1 is a transmissive optical encoder module designed to be an improved replacement for the Avago HEDS-9000 series encoder module. This module is designed to detect rotary or linear position when used together with a code wheel or linear strip. The EM1 consists of a lensed LED source and a monolithic detector IC enclosed in a small polymer package. The EM1 uses phased array detector technology to provide superior performance and greater tolerances over traditional aperture mask type encoders.
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40-CH 100G Athermal AWG
Athermal AWG(AAWG) have equivalent performance to standard Thermal AWG(TAWG) but require no electrical power for stabilization. They can be used as direct replacements for Thin Film Filters(Filter type DWDM module) for cases where no power is available, also suitable for outdoor applications over -30 to +70 degree in access networks. Flyin’s Athermal AWG(AAWG) provide excellent optical performance, high reliability, ease of fiber handling and power saving solution in a compact package. Different input and output fibers, such as SM fibers, MM fibers and PM fiber can be selected to meet different applications. We can also offer different product packages, inluding special metal box and 19” 1U rackmount.
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Semiconductor Optical Amplifier
SOA
Amonics SOA is a polarization maintaining optical amplifier with high fiber-to-fiber gain. It is designed for transmitter applications to increase optical launch power to compensate for the loss of other optical devices. The benchtop version incorporates a user-friendly front panel housing a LCD monitor display, key switch, power control knob and optical connectors. RS232 computer interface is also equipped on the rear panel. 1MHz with 10ns pulse width intensity modulation is available. The OEM module version is an ideal building block for OEM system integration, especially in optical communication network and CATV applications. It requires only a single +5V power supply.
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Fibre Channel Modules
AIM’s Fibre Channel test, simulation and analysis modules use our field proven Common Core hardware design giving you the best performance, best feature set and highest functional integration on the market. The use of SoC (System on Chip) based core designs with one dual core RISC processor per port, massive and scalable DDR3 memory and IRIG-B time encoder/decoder functions are standard. The new ultra high performance intelligent 4-lane PCIe 2.0 interface modules offer 2 ports with full function test, simulation, monitoring and analyzer functions for Fibre Channel networks. The dual core processor provides onboard processing and data transfer capabilities for the most demanding Fibre Channel applications including upper layer protocol support done on board level. Large and high data throughput DDR3 RAM is accessible for the onboard processor as is a high performance FPGA implementing the customized Fibre Channel interfaces enabling the board to analyze incoming and modify outgoing data in real time. Each module provides 2 Fibre Channel compliant full duplex ports, implementing the full link level services. SFP cages make it suitable for different media types as optical or electrical network technologies. Ports operate either in Traffic Simulator or Analyzer/Monitor mode with support for port related Frame Statistics. Sophisticated packet capturing mechanism and monitoring features are complimented with powerful triggering and filtering capabilities.
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PXI/PXIe MEMS Optical MUX, Single 2-Channel, Single-Mode
40-855A-112
The 40/42-855A-112 is a PXI/PXIe 2-channel multiplexer with FC/PC connectors 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. They are also available with an optional hardware interlock which, when activated, will return all optical switches to their default unpowered state.
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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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3U PXI Express Board
SMT709
Sundance Multiprocessor Technology Ltd.
The SMT700 is one of the first of a new range of Sundance cards that includes a direct connection to SLB (Sundance Local Bus) compatible mezzanine card, without the need for a Sundance TIM. This enables a variety of cards to be added to a system, for example extra Ethernet ports, video in/out, High speed ADC / DAC etc. Data from these extra cards (along with data from the SMT700’s own inputs – up to 1Gb/s Ethernet, 2.5Gb/s optical links, and RSL links) can be processed via the Virtex 5, or by another linked card or module.
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Compact OTDR
◇ 5.6-Inch outdoor-enhanced touchscreen, 7.4V/4.4Ah Lithium battery◇ Event Dead zone as lower as 1.5meter◇ Combined multi-dynamic range and wavelengths◇ Muti measurement mode, support Touching LCD and pressing keys◇ Warning function could prevent OTDR module from being damaged by optical signal in fiber.◇ Realtime measuring function, convenient to monitor the splicing process◇ Integrated 10mw Visual Fault Locator◇ Support English/ Chinese input, adopts friendly input interface, totally simulate the computer keyboard input ◇ Integrated with 8GB internal memory, more than 80,000 groups curve storage◇ PC remote access and control function is available, which support the printing work of the measurement report
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Load Switches
Analog Devices load switches provide a highly integrated solution for switching voltage rails on in a controlled manner via an internal, high-side switch. This portfolio features overcurrent and overtemperature protection and supports currents up to 3 A. They provide a very low pass element RDSON to reduce power losses. The combination of the functionality and integration levels of ADI load switches make them extremely well-suited to inrush control applications for pluggable optical modules, line side pluggable interfaces protection, power plane switching, and power rail sequencing applications.
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PXI Single 4 Channel Fibre Optic Mux SC/PC
40-850-214
The 40-850-214 4-channel multiplexer 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. Fiber optic multiplexers create a signal path by redirecting the optical signal into a selected output fiber. This is achieved using Micro-Mechanical Mirrors driven by a highly precise mechanism and activated via an electrical control signal.
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CATV Multi-ports Output High Power Full Function Optical Amplifier Module
HHOA-F5000
Hangzhou Huatai Optic Tech. Co., Ltd.
Huatai HHOA-F5000 series is a kind of multi-port output, high power, full-function optical amplifier module and is suitable for CATV with low noise. Its total output power is 27~40dBm (0.5W~10W) optional and its optical output port can reach to 64 pieces at most. The module has standard RS232 interface, adopts high reliable and low power consumption design as well as adopts APC, AGC control mode. The product has two series: The output power of Huatai HHOA-F5000 high power optical amplifier module can be chosen in the range of 27dBm~40dBm. According to different output power, Huatai HHOA-F5000 adopts two latest technical solutions. One is to use single mode high power 980nm pump laser with cooling and EDF, multi-pump synthesis technique. The other is to use multi-mode high power 980nm pump laser without cooling and double-clad Er-Yb doped fiber-optic technology. It provide a whole set of high reliability, low cost, low noise and low power consumption solutions for the application of high power, multi-port output amplifier. It can be widely used in CATV head-end or FTTx distribution network.
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QSFP+ Twinaxial Cable, 5m
785685-05
1-Pin, Male QSFP+ to 1-Pin, Male QSFP+ SFP Cable - The QSFP+ Cable connects to the quad small form-factor pluggable (QSFP) ports on some PXI Ethernet Interface Modules and other hardware devices. The model also has multimode optical fiber options that you can use in tandem with QSFP+ optical transceivers. The cable is rated for transmission speeds up to 40 Gbps and is offered in different lengths.
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PXI/PXIe MEMS Optical Switch, Single Insert/Bypass
40-860A-212-M
The 40/42-860A-212-M is a PXI/PXIe single insert/bypass switch with SC connectors 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. They are also available with an optional hardware interlock which, when activated, will return all optical switches to their default unpowered state.
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6-Channel VME Buffered Electrical-to-Optical Converter
V720
The V720 is a six-channel logic-level electrical-to-optical converter, packaged as a single-width, 6U VME module. It may be used with compatible Highland optical receiver modules for fast, low-jitter, EMI-proof distribution of pulses, triggers, and precision timing signals.
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65 GHz Single Channel Optical Module
N1030A
The N1030A is a plug-in module for the DCA-X mainframe that can be configured with one 65 GHz optical channel, or one 65 GHz optical and one 95 GHz electrical channel.
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LXI Optical Switching - 8:1 Multiplexer Plugin Module
65-281-323
The 65-281-323 8:1 multiplexer is part of the 65-280 and 65-281 ranges of optical plug-in modules offering matrix & insert/bypass or multiplexer & SPST topologies respectively with all models based on MEMS fiber optic switches and available in various populations per plugin. In addition, a choice of different connector styles to suit most applications is offered: FC/APC (for optimal performance), FC/PC, SC/PC and ST for general applications and LC for high density applications. They use MEMS (Micro-Electro-Mechanical-Systems) based optical switches to route signals between terminals by redirecting the optical signal. This is achieved using micromechanical mirrors driven by a highly precise mechanism activated via an electrical control signal.