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Rapid Scanning Auto-Correlator / Cross-Correlator
FR-103XL
The FR-103XL is a dispersion-free Autocorrelator/CrossCorrelator for monitoring the temporal width of ultrashort optical pulses. Offering unsurpassed sensitivity and resolution, it is compact and easy to operate. The FR-103XL is ideally suited for the measurement weak signals in optical telecommunications, as well as pulses from other mode-locked lasers such as Ti-Sapphire.
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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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Optical SpO2 Pulse Oximeter Simulator
OX-1 OxSim®
Test the complete SpO2 system, including the sensor, extension cable with the OxSim® Optical SpO2 Pulse Oximeter Simulator. Slips into your shirt pocket and operates easily with just two buttons on a single AA battery. The auto-detection of the Sensor type eliminates the need to select the manufacturer oximeter under test. The optional serial communications port enables users to expand simulation settings for Saturation, Pulse Rate, and Perfusion Index, ideal for applications where a wide range of simulations is needed.
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High Speed Fiber-Optic Detectors
High speed fiber-optic detectors use special photodiodes with high speed electronic circuits to convert fast pulses in optical fibers to electrical signals for measurement. Unlike our optical receivers, these photodetectors do not include a transimpedance amplifier.
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NRZ Bit Error Rate Tester
Shenzhen Golight Technology Co.,Ltd
BERT integrates pulse pattern generator(PPG) and high sensitivity error detector(ED) to achieve the error rate measurement of data transmission in high speed communication. BERT can support multi-channel output and input and output polarity upset. It provides a best solution for the automated production test of the high speed optical transceiver.
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Ultrafast Fiber Optic Photodetectors
DXM Series
The DXM series of Ultrafast Detectors are fiber-coupled photodetectors with wide wavelength ranges, as shown in the plot to the right, that are designed to be used for a variety applications. Each provides a high-fidelity electrical output pulse in response to an optical input pulse, and their clean impulse responses have full width half maxima (FWHM) down to 15 ps.
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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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Non-contact Conductivity Type (P/N) Checker For Quick Check
PN-50α
*Principle: Photovoltaic effect by light pulse irradiation*No damage and no stain by Non-contact method*Possible to check even oxidized film on wafer surface*Instantly discrimination by optical pulse illuminate
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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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Laser
BDS-MM Series
*Pulse Width Down to 60 ps*Repetition Rate 20 MHz / 50 MHz*Free Beam or Fiber Output*Optical Power Up to 40 mW*All Electronics Integrated*No External Driver Unit*Simple +12 V Supply*40 mm x 70 mm x 120 mm
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Terahertz Spectroscopy / Imaging Analysis Platform
TAS7400TS
The system uses two channels of ultra short pulse lasers (1.55 ?m) with either biased output (for THz generation) or signal input (for THz detection). Advantest's unique optical sampling method, utilizing phase-modulated dual-laser-synchronized control technology without a mechanical optical delay line, enables extremely high speed terahertz spectroscopy.
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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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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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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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Gated Integrator | Boxcar Averager
GIA100
Artifex Engineering GmbH & Co. KG
The GIA100 gated integrator employs dual monolithic switched integrators. When paired with a photodiode, the boxcar amplifier measures the energy of single optical pulses. The GIA100 design results in very low leakage error, charge injection error and pickup. The precision input stage may be configured for current or voltage inputs.
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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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Femtosecond Fluorescence Up-Conversion Spectrometer
FOG100
Femtosecond optical gating (FOG) methods give best temporal resolution in light induced fluorescence lifetime measurements. Since 1997 we manufacture model FOG100-DX for operation with femtosecond oscillators and we offer now FOG100-DA for operation with femtosecond amplified pulses.
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FiberPulse OTDR
XO1
FiberPulse OTDRs send pulses down fiber optic networks from one end of the fiber, displaying a trace and reporting all detected events such as splices, connectors, macrobends and fiber ends and breaks. The total fiber length is reported along with name, location, loss and reflectance of detected events. The intuitive keypad design features integrated shortcut keys designed for quickly positioning and analysing events. Another feature of this unit is the Live Optical Signal Detect Function, which tests if the fiber is live before sending the pulse, this can effectively prevent accidental damage to the OTDR and attached communication equipment.
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Network OTDR
NFO series
The NFO OTDR unit injects the laser pulse into the fiber under test and picks up scattered and reflected optical signals by an avalanche photodiode (APD). The unit accepts remote commands from Internet to control all related timing and data acquisition processes. Maximal three wavelengths are available at the NFO with options on 1310, 1490, 1550, and 1625 nm. NFO also has options on dynamic ranges so users can select the most cost effective units for their demands. Radiantech provides an easy use API (Application Program Interface) for NFO so users can design and build their own AP for NFO. Standard NFO API package is for Windows XP or higher. Please contact Radiantech’s sales person to inquire API for another OS.
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Turn Key Laser and LED Sources with Picosecond Pulse and Repetition Rate up to 100 MHz
DeltaDiode
DeltaDiodes utilize laser diode and LED technology to generate short optical pulses over a very wide range of repetition rates and wavelengths. Optical pulses as short as 50ps can be generated at repetition rates up to 100MHz.
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Optical Delay Generator
The FR-203 provides periodic linear optical delay (~200ps) for ultrashort laser pulses. It is useful for applications such as time resolved spectroscopy and time domain terahertz spectroscopy. A well defined optical delay is generated with interferometric precision.
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Optical Components for Custom Spectroscopy
HORIBA offers a wide variety of optical accessories. We have optical choppers which pulse continuous light sources. Explore our order sorting filter wheels for spectrographs and monochromators. Choose from our optical fibers and light guides, with flexible light delivery, single fibers, fiber bundles, and liquid light guides. And select from our lens and mirror-based sample compartments.All of these accessories are compatible with our various optical components. Our optical accessories allow us to complete a custom solution for your unique configuration requirements and a variety of spectroscopy applications. HORIBA offers more choices to ensure you can select the best optics for your needs.
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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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PXIe Source/Measure Unit, 15 MSa/s, 1 PA, 60 V, 3.5 A DC/10.5 A Pulse
M9602A
The Keysight M9602A is a PXIe 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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Femtosecond Pump - Probe Transient Absorption System
Hatteras
The Hatteras is first professional system on the market for ultra fast transient absorption pump - probe spectroscopy. Two linear image sensors (multichannel detection) or two photodiodes (singlechannel detection) are placed behind an imaging spectrometer to measure probe and reference pulses, originating from a femtosecond white light (continuum) generator or from an optical parametric amplifier.
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Ultra-Broadband Light Soure
Cannon
Cannon provides a turnkey portable source of broadband laser pulses without reqiring any user-adjustments to the fiber coupling. Optical Spectrum - 1000 - 1900 nm.
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*Pulse Characterization Sensors
Pulse Characterization Sensors provide the ability to see and measure the temporal characteristics of pulsed and CW laser beams. Ophir Fast Photodiode Detectors are designed to convert optical signals into electrical signals which are then measured with third-party instrumentation such as oscilloscopes and spectrum analyzers. Accessories are available to connect to IS6 integrating spheres or fiber optic cables. Attenuating filter accessories are also available to increase their dynamic range. Different models offer silicon, UV enhanced silicon and InGaAs PIN photodiodes, covering a combined spectral range of 193 nm to 1700 nm. Rise times range from 25 picoseconds to 3 nanoseconds. The fast rise times are achieved by an internal reverse bias voltage circuit. Power is supplied by internal batteries and/or an external power supply depending on the model. Detectors should be connected to a 50Ω impedance in order to maintain their nominal rise times. They can be connected to higher impedance loads, but this will result in a significant increase in the rise time. If higher output voltage is required, it is recommended to connect the detector to a trans-impedance amplifier with an Input impedance of 50Ω
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Crank Angle Measurement System
CP-5110B Detector/CA-6000B Amplifier
CP / CA series are systems that detect the rotation angle of the engine crankshaft composed of CP-5110B Fiber Optic Crank Angle Detector, CA-6000B Crank Angle Amplifier and CP-5120 / 5130 Slit disk.CP-5110B Fiber Optic Crank Angle Detector makes it possible to detect the crank angle required for various engine performance tests such as combustion analysis with high accuracy and high response. As it has a light projecting and receiving method with an optical fiber, it provides outstanding vibration and noise resistance without a built-in electric circuit in the detector.CA-6000B Crank Angle Amplifier inputs a signal of crank angle detector and outputs a TTL level angle signal and a 1P / R pulse signal.
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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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Frequency-Resolved Optical Gating Pulse Analyzer
IQFROG
The IQFROG measures pulse intensity and phase in both spectral and temporal domains, yielding a complete pulse characterization. With its long delay arm and high resolution spectrometer, it measures chirped pulses up to 50 ps wide, or up to 10 ps wide if the pulse is transform limited. The IQFROG is available in 1.0 and 1.5 micron wavelengths.