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- Pickering Interfaces Inc.
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PXI/PXIe MEMS Optical MUX, Single 2-Channel, Single-Mode
40-855A-012
The 40/42-855A-012 is a PXI/PXIe 2-channel multiplexer with FC/APC 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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Photoelectric Detector
LG-930
The LG-900 series detectors are reflection type optical (LG-916) and photoelectric detectors developed for medium distance detection applications. The LG-916 adopts glass fiber at the tip end and can be protective enough against the external turbulent light because of pulse modulation system as the light projection source. The LG-930 also uses a pulse-lighting method, it is practically unaffected by disturbance light, furthermore, featuring a hybrid structure with the all light-projecting, light-receiving, amplifying, and waveform-shaping sections built into the unit to offer a compact design with easy-to-operate functions. By simply attaching the reflection mark to a rotating object, the detectors can detect the rotation of the object without actually touching the object.
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Optical Pickup
1037-DTS
TESCO introduces a new optical pickup (Catalog No. 1037-DTS) for one way meter communication through the calibration LED found on most solid state meters. The pickup senses infrared pulses from ANSI compliant meters for complete, automatic testing.
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GPS Synchronization
PGPS04i
The PGPS04i is a multiple-functional time synchronization device that integrates with GPS time synchronization, IRIG-B outputs (DC-TTL/DC-RS422/optical), IRIG-B pulse input (DC-TTL/DC-RS422/fiber), 1PPS/1PPM pulse output DC- TTL/DC-RS232/fiber), timing set of whole trigger points, real-time clock auto-generating and other relevant functions.
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8 Channel 14 bit 100 MS/s Digitizer
VX1724
The VX1724 comes in a VME64X form factor with 8 input channels. The communication to and from the board is provided through the VMEBus and Optical Link interfaces. The VX1724 is a digitizer able to record waveforms along with performing advanced algorithms for online digital pulse processing (DPP) of pulse height analysis and dynamic acquisition window.
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PXIe-4137, ±200 V, ±1 A DC, ±3 A Pulsed, Up to 40 W DC, 100 fA Precision System PXI Source Measure Unit
783761-01
PXIe, ±200 V, ±1 A DC, ±3 A Pulsed, Up to 40 W DC, 100 fA Precision System PXI Source Measure Unit - The PXIe-4137 is a high-precision, system source measure unit (SMU). It features 4-quadrant operation and sources up to 40 W of DC power and can pulse up to 500 W. Analog-to-digital converter technology helps you perform high-precision measurements with a current resolution of 100 fA or high-speed acquisitions up to 1.8 MS/s. The module also can maximize stability and measurement accuracy with SourceAdapt technology, which you can use to tune the transient response to match the characteristics of any load. The PXIe-4137 is ideal for a broad range of applications including manufacturing test, board-level test, and lab characterization with devices such as ICs, power management ICs (PMICs), and RFICs and discrete devices including LEDs and optical transceivers.
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Test Solution Offering BER Testing
Eye-BERT Micro LR
The Eye-BERT Micro LR is a low cost, easy to use test solution offering BER testing at any rate between 6.312 and 125Mbps on either optical or electrical interfaces. Features include: continuously variable bit rate, user programmable pulse generator, internal CDR with retimer mode, bit rate measurement, and recovered clock output. The Unit is supplied with anti-skid bumpers for bench use, and is small enough to be integrated into larger systems for dedicated link verification.
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PXIe-4135, ±200 V, ±1 A DC, ±3 A Pulsed, Up to 40 W DC, 10 fA Precision System PXI Source Measure Unit
783762-01
PXIe, ±200 V, ±1 A DC, ±3 A Pulsed, Up to 40 W DC, 10 fA Precision System PXI Source Measure Unit - The PXIe-4135 is a high-precision, system source measure unit (SMU). It features 4-quadrant operation and sources up to 40 W of DC power and can pulse up to 500 W. Analog-to-digital converter technology and native triaxial connectors help you perform high-precision measurements with a current resolution of 10 fA or high-speed acquisitions up to 1.8 MS/s. The module also can maximize stability and measurement accuracy with SourceAdapt technology, which you can use to tune the transient response to match the characteristics of any load. The PXIe-4135 is ideal for a broad range of applications including manufacturing test, board-level test, and lab characterization with devices such as ICs, power management ICs (PMICs), and RFICs and discrete devices including LEDs and optical transceivers.
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Ultrafast Transient Absorption Spectrometer
Harpia-TA
The transient absorption spectrometer HARPIA offers a sleek and compact design together with intuitive user experience and easy day-to-day maintenance meeting the needs of today's scientific world. Adhering to the standards raised by the OPRHEUS line of devices, the entire spectroscopic system is contained in a single monolithic aluminum casing that inherently ensures excellent optical stability and minimal optical path for the interacting beams. HARPIA can be easily integrated with both PHAROS / ORPHEUS and Ti:Sa / TOPAS laser systems. HARPIA features market leading characteristics such as 10-5 resolvable signals along with other unique properties such as the ability to work at high repetition rates (up to 1 MHz) when used with PHAROS / ORPHEUS system. High repetition rate allows measuring transient absorption dynamics while exciting the samples with extremely low pulse energies up to several nanojoules.
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AMIDA VCSEL Tester
AMIDA VCSEL tester can be divided into three parts: LIV measurement system, Near Field measurement system and Far Field measurement system. To achieve the above three measurements, in addition to the necessary optical components and optical instruments, the core technology is to provide fast and stable current pulses to drive the VCSEL laser diode to emit light, and then to test various optical and electrical properties
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OTDR Launch Cable Box, OTDR Dead Zone Eliminator, 1KM-2KM
Shanghai Fibretool Technology Co.,Ltd.
Designed to aid in the testing of fiber optic cable when using an OTDR. TheOTDR Launch Cable Box is used with Optical Time Domain Reflectometers (OTDRs) to help minimize the effects of the OTDRs launch pulse on measurement uncertainty. Available in many different configurations and fiber lengths.
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Test Equipment
Southern Photonics designed and manufactured all the test equipment currently being manufactured by Coherent Solutions, as well as equipment for non-telecoms applications. This includes FBG strain interrogators, optical pulse phase analysers, OSNR meters, optical power meters, optical spectrum analysers, optical gas sensors… you get the idea. All test equipment we build is robust and easy to use. The picture shows some of what we can do – anything from prototype benchtop test gear (as in the combination ASE source and laser combiner on top of the stack) to field test equipment (the portable fast OSA on the bottom).
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PAM4 Optical Reference Transmitters
ModBox-PAM4 series
The ModBox-PAM4 serie is a 4-level Pulse Amplitude Modulation (PAM4) Optical Reference Transmitters that generate excellent quality PAM4 optical data streams up to 28 Gbaud, 56 GBaud. The ModBox-PAM4 integrates also: ER4 / LR4: CWDM or LAN-WDM 4 lasers sources, SR4: 850nm laser source, PON: 1310 nm and 1490 nm laser sources.
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6-Channel VME Optical-to-Electrical Converter
V730
The V730 is a six-channel logic-level optical-to-electrical converter, packaged as a single-width, 6U VME module. When used with compatible Highland optical transmitter modules, the V730 provides fast, low-jitter, EMI-proof distribution of pulses, triggers, and precision timing signals.
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Fibolocator
Fibolocator is an innovative device for measuring and characterizing breaks and other backscattering-causing faults in optical fibers. Time-resolved correlation reflectometry is the principle on which the device is based. It analyzes the backscattered light like a pulse OTDR, but unlike such OTDRs, cw laser diodes are used. The requirements for the test signal and the complexity of the system are low, which leads to very low costs for OEM subsystems.
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Thermoelectric Cooler Controller
Analog Devices Thermoelectric Cooler Controllers work with cooler based photonics, offer the smallest size, the best efficiency and the most robust solutions. It has a linear power stage with the linear driver output and a pulse width modulation power stage with the SW output. Depending on the part number, it offers digital PID control or analog PID control or both. Our TEC controllers support a variety of MSA based optical modules such as SFP, SFP+,QSFP+, CFP/CFP-2/CFP-4 and QSFP28.
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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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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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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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Benchtop Femtosecond/Picosecond Lasers and Amplifiers
The systems feature a portable design with user-friendly front panel control knobs for adjustment of output parameters, such as power, pulse width and repetition rate. With wavelength options of 780 nm, 850 nm, 1310 nm, and 1550 nm, pulse widths as low as < 0.3 ps, and GHz low-jitter synchronization signals, these systems provide ideal optical sources for high speed transceiver conformance testing and photodiode characterization.
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Mini-spectrometer
TF series C13555MA
he mini- spectrometer TF series is a polychromator provided in a compact, thin case that houses optical elements, image sensor, and driver circuit. Spectrum data can be acquired by guiding measurement light into a mini-spectrometer through an optical fiber and transferring the measured results to a PC via the USB connection. The incorporation of a high-sensitivity CMOS image sensor maintains high sensitivity equivalent to that of a CCD and achieves low power consumption. Moreover, the trigger function that can be also used for short-term integration enables spectroscopic measurement of pulse emissions.
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Plastic Optical Fiber Analysis System
2500
While the 2500 Optical Fiber Analysis System is the industry-standard for testing standard, silica multimode optical fibers, it is also capable of performing comprehensive characterization of the new generation of graded-index plastic optical fibers (GIPOF). The 2500 provides high speed, repeatable measurement of several critical fiber properties including spectral attenuation, time- domain (pulse) bandwidth, single-mode launch differential mode delay, core diameter and numerical aperture - all in accordance with recently developed IEC measurement standards. The GIPOF-capable 2500 is compatible with fibers having core diameters up to 120 um (IEC Type A4g and A4h).
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Electrical Signal Test
High-density, multi-channel pulse pattern generators and bit error detectors for the design, characterization and production test of optical transceivers and opto-electrical components.
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RF & Microwave Broadband Amplifiers
SHF Communication Technologies AG
SHF has been active in the design and production of broadband RF-microwave amplifier. The outstanding performance makes our amplifiers suitable for a wide variety of applications in R&D. This includes not only optical communications, but also satellite communications, high-speed pulse experiments, data transmission, quantum communication, radar and antenna measurements.
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Optical Modulator
Is an Intensity Modulator that is manufactured with Annealed Proton Exchange(APE) process, it features a zero-chirp design and Polarization Maintaining(PM) fiber output. Features 20 GHz E/O bandwidth, a highly linear transfer function and excellent extinction ratio. Applications include digital transmission up to 20 Gb/s, analog RFoF transmission to 20 GHz, optical pulse generation, mode-locked fiber laser and microwave optical link.
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PXIe Precision Source/Measure Unit, 15 MSa/s, 100 FA, 60 V, 3.5 A DC/10.5 A Pulse
M9603A
The Keysight M9603A is a PXIe precision SMU featuring best-in-their-class narrow pulse width as narrow as 10 μs. It enables dynamic/pulsed measurements with up to 15 MSa/s for broad emerging applications such as VCSEL optical devices.
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Optical Time Domain Reflectometers
An optical time domain reflectometer (OTDR) is a precision instrument used to locate events or faults along a fiber link, typically within an optical communications network. The OTDR launches a series of high speed optical pulses into the fiber to be measured. Various events on the fiber generates a Rayleigh back scatter that returns to the OTDR and the strength of the return pulses are measured and integrated as a function of time, and plotted as a function of fiber length. The horizontal axis is the distance and the vertical axis is the loss.
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Clock Synchronization
Analog Devices Clock synchronizers are designed for wired networking applications, providing the clock redundancy functionality needed to maximize system uptime. Our technology supports clock synchronization with common standards, including 1 pulse per second (PPS) output signal from a GPS receiver. GPS signals are broadly available and utilize an extremely stable atomic clock as its time base, but they are often noisy. Systems rely on the IEEE1588 timing protocol to establish synchronous communications across the wired network, including synchronous Ethernet and synchronous digital hierarchy (SDH) to optical transport network (OTN) mapping/demapping. The IEEE1588 protocol has emerged as the preferred method for Clock synchronizing systems throughout both computer networks and local area networks (LAN).
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USHIO Red Laser Diodes (633nm - 690nm)
The Optoelectronics Company Ltd
Features: 5.6 mm CAN package, Optical output power: 80 mW (CW), 300 mW (pulsed – pulse width: 10 ns, duty: 10%), Lasing wavelength: 658 nm, Wall-plug efficiency*: 33%, Operating temperature: -10° – +60° C (CW); -10° – +75° C (pulsed), Single transverse mode, TE mode oscillation, MTTF >10,000 hours
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High Performance 335 M, 6 Channel Digital Receiver
DP-VME-5838
The DP- VME-5838 is a VME64x slave, high performance 335M, six channel Digital receiver card. It samples and down converts the analog IF signals into the digital base band data. The processed I/Q data are pulse compressed and decimated to the base band rate. In the Central Unit system, this pulse compressed I/Q data has to be sent to the signal processing unit through a 2.5G speed Optical SFPDP link.