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LED Color Sensor
FINN®
The FINN® is a compact and durable LED sensor that is able to fit in just about any test setup. There are two different configurations to accommodate your set up needs - right angle and vertical styles. The FINN® is color specific, so pick your style and match to the color of the LED you want to test.
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Common Rail Test Bench
Nanyang NanTai Experimental Equipment Co.,ltd
It adopts advanced frequency conversion technology and digital technology with automatic and manualdouble control for the rotation speed, temperature and count.Equipped with displacement sensor, it can test different kinds of mechanical fuel
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Reference Thermapen®
Until now you would have spent hundreds more to get this level of accuracy in a NIST-Traceable standards thermometer. Our Reference Thermapen takes lab accuracy into the field. Each unit is factory calibrated at 5 test points and includes a UKAS accredited calibration certificate with test data. A true "system calibration" is performed matching its Platinum RTD sensor and the built-in electronics so all errors are included in the spec.
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PXI Analog Output
Our range of flexible PXI Analog Output modules features high accuracy & high resolution voltage and current sources that satisfy a wide variety of applications in Automated Test, including sensor and transducer simulation. Each product has a number of variants with differing channel counts to closely match a user’s specific requirements.
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LVDT I/O Cards
CPE4000
Computer Conversions Corporation
Computer Conversions’ CPe4000 Series are CompactPCI-Express (cPCIe) and PXI Express (PXIe) compliant: Synchro, Resolver, and LVDT/RVDT I/O Cards (predominantly output cards), with GEN1 and GEN 2 PCI Express interface, designed for accurate and reliable commercial, industrial and COTS-Mil. applications in test, simulation, motion control and shipboard data distribution. The CPe4000 Series drive up to 4 channels of Synchro, Resolver, 3-wire LVDT/RVDT outputs, or up to 8 channels of 2 wire LVDT/RVDT AC Sensor output sets.
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High Temperature ICP® Accelerometers
PCB® offers specially designed and tested ICP® accelerometers for conducting vibration and shock measurements under demanding environmental conditions of up to 356 °F (180 °C). These sensors combine proven quartz and ceramic shear sensing technology with specialized, built-in microelectronic signal conditioning circuitry to achieve dependable operation in extreme temperatures and through repetitive temperature cycling. Laser-welded, hermetically sealed, lightweight titanium or stainless steel housings offer further protection from the environment. Prior to shipment, each sensor undergoes a battery of tests to ensure survivability for its intended use. Such tests include temperature soak at elevated temperatures, temperature cycling, and exposure to highly accelerated screening procedures with hydraulically actuated shakers.
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General Purpose Pressure Transducer and Transmitter
P55
The robust P55 pressure transducer provides cost-effective reliability for severe test environments. With extreme resistance to shock and vibration, the P55 pressure transducer delivers the same high-level performance expected from more delicate differential pressure transducers and pressure transmitters. With variable reluctance sensing technology, the P55 pressure transducer delivers fast dynamic response, high resistance to vibration and superior signal stability through ambient temperature change for a wide variety of low-pressure to high-pressure measurements. The P55 pressure transducer will accept both liquids and gases directly at the sensing diaphragm and there are no internal isolation fluids to slow the sensor response or cause excessive temperature drift errors.
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Resilient Modulus and Asphalt Testing System
The Resilient Modulus software features built and test sequences, and the capability to specify user defined sequences. Contact stress is automatically adjusted according to the above procedures as selected. Available waveforms include haver sine, sine, square and triangular, along with a user defined waveform selection. Optional peak & valley compensation ensures proper and quick matching of the load parameters. Real time displays of the prescribed versus actual dynamic load or the dynamic deformation measurements by each sensor are always present. Deformation ratio of the two sensors, Rv (to ensure that the two deformation sensors are in agreement) and Mr are also calculated in real time. During export, curve fitting is done to fit the results to models that predict Mr as a function of σm, σd, and CP (cell pressure). Four different functions are calculated automatically
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ITSM Synchro
The Impulsive Test Synchronization Module (ITSM) is a device aimed at generating a digital synchronization signal, to use the PDBaseII system for impulsive voltage PD test. The digital synchronization signal generated by the ITSM, is synchronized with the voltage impulse of the impulsive source (voltage generator). The ITSM must be connected between the DIN channel of PDBaseII and the output of the synchronization sensor (e.g. capacitive coupler). The ITSM provides also a low voltage signal reproducing the impulsive voltage source.
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Portable Thermal Conductivity Analyzer
CI2100-RQD
Shanghai ChangAi Electronic Science & Technology Co.,Ltd
CI2100-RQD portable thermal conductivity analyzer adopts imported high performance intelligent thermal conductivity sensor as measuring unit, which is based on microprocessor. It can test H2 concentration correctly in N2 and H2 mixed gases in a short time. - See more at: http://en.ci-ele.com/dcb675d2-4e33-4eb9-33a0-60edf78c9348/efb4c1eb-f4f5-70af-3ddd-ba6c1066c3fa.shtml#sthash.lXHNyKR1.dpuf
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PXIe-4492, 204.8 kS/s, 113 dB, 2 Gains, 0.5 Hz AC/DC-Coupled, 8-Input PXI Sound and Vibration Module
781490-01
204.8 kS/s, 113 dB, 2 Gains, 0.5 Hz AC/DC-Coupled, 8-Input PXI Sound and Vibration Module - The PXIe‑4492 is designed for sound and vibration applications. With 24-bit analog inputs and IEPE constant current signal conditioning, the module is ideal for making precision measurements with microphones, accelerometers, and other transducers that have very large dynamic ranges. The PXIe‑4492 delivers simultaneous sample on all channels. In addition, it includes built-in antialiasing filters that automatically adjust to your sample rate, software-selectable input gains, and TEDS smart sensor support for error-free setup. Common applications include noise, vibration, and harshness (NVH) analysis; large microphone arrays; and dynamic structural test.
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LED Color Sensors
Mega FINN™
Take the guesswork out of LED test with our most accurate and fastest sensor to date - the Mega FINN™. Mega FINN™ measures most LEDs in less than 3 milliseconds, automatically triggering when it detects an LED turn on and adjusting its sampling to quickly deliver an accurate measurement.
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PXI-6229, 32 AI (16-Bit, 250 kS/s), 4 AO, 48 DIO, PXI Multifunction I/O Module
779115-01
32 AI (16-Bit, 250 kS/s), 4 AO, 48 DIO, PXI Multifunction I/O Module—The PXI‑6229 offers analog I/O, correlated digital I/O, two 32‑bit counter/timers, and digital triggering. The device delivers low-cost, reliable DAQ capabilities in a wide range of applications from simple applications in laboratory automation, research, design verification/test, and manufacturing test. You can add sensor and high-voltage measurement capability to your device with SCC or SCXI signal conditioning modules. The included NI‑DAQmx driver and configuration utility simplify configuration and measurements.
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PXI-6280, 16 AI (18-Bit, 625 kS/s), 24 DIO, PXI Hybrid, Multifunction I/O Module
779120-01
16 AI (18-Bit, 625 kS/s), 24 DIO, PXI Multifunction I/O Module—The PXI‑6280 offers analog input, correlated digital I/O, two 32‑bit counter/timers, and analog and digital triggering. The device delivers low-cost, reliable DAQ capabilities in a wide range of applications from simple applications in laboratory automation, research, design verification/test, and manufacturing test. You can add sensor and high-voltage measurement capability to your device with SCC or SCXI signal conditioning modules. The included NI‑DAQmx driver and configuration utility simplify configuration and measurements.
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Clamp-On Multimeter Series
An electrical test tool that combines a basic digital multimeter with a current sensor. Clamps measure current. Probes measure voltage.
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IR FPA sensors
IR FPA sensors are the most important modules of thermal imagers. Design of sensor electronics (camera core) is a crucial part of designing of new thermal imager. Knowledge of precise parameters of IR FPA sensor is needed by both professionals involved in both IR FPA technology/thermal imagers technology because parameters of IR FPA sensors determine performance limits of thermal imagers. Therefore test equipment that enable measurement of IR FPA sensors is a vital tool for development of both IR FPA technology/thermal imagers technology. It is commonly known that data sheets provided by manufacturers of IR FPA sensors (both cooled or non-cooled) provide too little details for electronics designers. Sometimes the provided data is not accurate enough and better sensor performance can be achieved using modified control signals. Therefore design teams loose sometimes years to develop electronic camera core optimized for a specific IR FPA sensor. When the type of the IR FPA sensor is changed the whole process is to be repeated. In this situation an universal, flexible camera core that would accept IR FPA sensors from different manufacturers and to carry out semi-automatic determination of optimal signal controls for a specific IR FPA sensor would be highly desirable.
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Hardy Shaker
HI-903
This is our top of the line Hardy Shaker. It provides the ability to set the amplitude and change the frequency range without the amplitude changing. This automation makes conducting vibration tests easier. Tests can be conducted on multiple vibration transducers, and then the saved data can be transferred via USB Flash Drive to be displayed in an automated and customizable report using an Excel template on your computer. In manual mode, the vibration test level and test frequency can be set from 7 Hz to 10,000 Hz. The high accuracy instrument can display the vibration level in terms of g’s peak, velocity peak (in/sec or mm/s) or displacement peak-to-peak (mils or µm). The unit can support payloads up to 800 grams (see frequency limits in the manual). A built-in display reads the output sensitivity, which can be stored in memory. Complete testing sequences and data can be stored in memory for each tested sensor, the unit logs the data on the spot or stores it for later use. For testing of heavy transducers or at high frequencies, the HI-903 automatically corrects the sensitivity calculation for the effects of transducer mass loading. A built-in self-test program checks for accuracy of all calculations. The HI-903 has a built-in battery charger that can operate on 120 or 240 VAC. The unit comes in a rugged Pelican case.
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Digital Ultrasonic Maintenance System
VPE-2000
The Superior AccuTrak VPE-2000 is the first digitally controlled ultrasonic detector. Like two instruments in one it uses two independent sensors supported by separate electronic circuits configured specifically to their own sensor. This assures optimum sound clarity and frequency response. When switching between the airborne and contact sensors all settings are retained in memory! Digital LED meters let you establish baselines, perform trending, and accurately repeat these tests better than older more expensive analog instruments.
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Probes And Cables
The iProbe is an intelligent temperature sensor that can be calibrated independently of SBIR’s blackbody systems or 104i precision thermometers. These ultra-stable, highly responsive iProbes are used to provide long term accuracy and repeatability of under 0.010°C. Each iProbe incorporates onboard flash memory that allows all calibration constants and calibration date information to be stored independently of the blackbody or thermometer system. This allows iProbes to be exchanged for use on a blackbody or thermometer without any loss in stability or accuracy. To re-calibrate a system you need only exchange the current iProbe with a recently calibrated one. No special equipment is required and there is no down time in the test area.
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Sensor Bodies
The armature - assembled sensor body - is the central component of an inline photometer. We have already designed more than 1000 different sensor bodies and more than 50 types are always on stock. All optek inline sensor bodies are made from high quality materials and are machined with extreme precision. The quality-tested manufacturing tolerances allow optical path lengths of up to 1000 mm, for which the accuracy of the incoming and outgoing light beam is ensured by testing a laser-based coaxiality tolerance test to the reference axis. To cover a wide spectrum of different process conditions, optek sensor bodies can be manufactured from various materials (also for aggressive chemicals or with NACE MR 0175) and adapted with regards to:
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Cogging Test System
CTS
Magtrol’s Cogging Test System is a stand-alone test system designed to control and measure Detent Torque, Cogging Torque and Friction Torque. The test System includes a precision geared motor, a TS Series Torque Sensor integrating a 5 000 pulses encoder. CTS 100 to CTS 102 have a built-in security clutches to avoid system overload by mishandling when not in use. The geared motor drives the MUT (Motor Under Test) at a low speed from 1 to 10 rpm (respectively 8 rpm for CTS 103 and CTS 104), while acquiring its cogging torque related to angle position.
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Magnetic Particle Liquid Checker
S-2A / S-2B
Magnetic particle liquid checker S-2 series is a test bar which can directly check the quality of magnetic particle liquid immediately. Magnetic particle liquid checker S-2A type has a sensor at the head of straight test bar.
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PCI-6255, 80 AI (16-Bit, 1.25 MS/s), 2 AO (2.86 MS/s), 24 DIO PCI Multifunction I/O Device
779546-01
80 AI (16-Bit, 1.25 MS/s), 2 AO (2.86 MS/s), 24 DIO PCI Multifunction I/O Device - The PCI‑6255 offers analog I/O, correlated digital I/O, two 32‑bit counters/timers, and analog and digital triggering. The device delivers low-cost, reliable DAQ capabilities in a wide range of applications from simple applications in laboratory automation, research, design verification/test, and manufacturing test. You can add sensor and high-voltage measurement capability to your device with SCC or SCXI signal conditioning modules. The included NI‑DAQmx driver and configuration utility simplify configuration and measurements.
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Pressure Transmitter For Industrial Applications, Ratiometric Output
Series 21 C
KELLER AG für Druckmesstechnik
The C-series transmitters are noted for their ability to deliver high accuracy over a wide temperature range. This is achieved by means of mathematical modelling of the sensor characteristics and digital compensation. In order to do this, each transmitter is gauged over pressure and temperature, programmed and checked after calibration in the same test set-up.
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GONIOPHOTOMETRY
Goniophotometers are required to measure angular resolved distributions of photometric or colorimetric quantities, either by rotating the lighting device under test or by moving the sensor around the device. Depending on the application, different geometries are used to obtain distributions in the appropriate CIE coordinate system.
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High Voltage Safe Measurement Systems
For measurement on high-voltage components with certified safety – in test drives, field tests, and on test benches: CSM’s high-voltage measurement systems are specifically designed for the safe and accurate acquisition of temperatures and analog sensor signals in HV environments, especially in electric and hybrid vehicles.
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Non Contact Flange Torque Transducer
FF425
Contactless Torque Transducers with flange couplings at either end with measuring ranges from 0-100Nm up to 30kNm as standard (bespoke sensors up to 16MNm) for a variety of in line static and rotary torque measurement applications.The Datum Electronics Series FF425 non contact flange torque sensor and FF410 torque sensors have been designed to fit easily inline with any drive train or test rig using standard DIN size couplings. With Flange couplings at either end of the torque transducer, it has many advantages over other torque measurement systems on the market.
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HBM Verification Tester
HBM-VT
High Power Pulse Instruments GmbH
- HBM pulse generator verification tester according ANSI/ESDA/JEDEC JS-001 up to ±10kV- To be used in HBM test and qualification labs for regular pulse generator specification compliance test in order to fulfill lab audit and certification requirements- Fully automatic compliance test and verification of HBM pulse generators regarding ANSI/ESDA/JEDEC JS-001 normative standard at 3 different load conditions: Short Circuit, 500 Ω, and a reference diode at VBR=15 V reverse breakdown voltage, including DC test- Parameter evaluation and verification of the transient HBM current waveforms: Peak Current, Rise Time, Decay Time, Maximum Ringing Current- Optionally available upgrade for all HPPI TLP-3010C, 4010C, 8010A, 8010C, HBM-TS10-A hardware systems in combination with HBM-S1-B (6kV) pulse generators (upgrade on request)- Fully automatic test report generation (PDF)- Electrically floating (no fixed system ground): The HBM loads, current sensor output, USB control interface and the enclosure are electrically floating. There is no limiting system ground which may introduce common-mode interference induced HBM current measurement errors.- Isolated industrial full-speed USB control interface- Isolated power supply derived from USB port- Compact size 126mm x 82.5mm x 44.5mm
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S2 Ultra High Sensitivity Sensors
ULP-S2 UHS
Universal LightProbe S2 Ultra-High Sensitivity Sensors are designed for the test of very dim LEDs, as low as 0.01 mcd minimum, and including very low light-level LED-illuminated action-indicator switches, controls and status indicators for night/dark viewing in automobile interiors. Recommend the use of wide-aperture stainless- steel encased Fiber- optic Probes with contacting tips.Operating temperature range: 0oC to 70oCPower consumption: Operates between +5 and 28 volts D.C., at 6mA max. Less than 4.75 volts is not recommendedVoltage protection: Withstands up to +40 volts, & reverse polarity to -18 voltsSignal Output Loads: 20 mA max. Non-inductive.Output Pins: 3 gold-plated standard wire-wrap pins (0.025 in. sq.)Sensor Size: 0.560 in. dia x 1.38 in. long.Typical response times: <190mSFiber-Optic Probes: Wide-Aperture Fiber-Optic Probe recommendedDesigned for the test of very dim LEDs, as low as 0.01 mcd minimum
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PXI Fault Insertion (Fault Injection) Modules
PXI Fault Insertion Units (FIU), also known as Fault Injection switch products, are designed specifically for safety-critical applications where the response of a control system is required to be evaluated when sensor connections behave in unexpected ways. These modules are scalable solutions that can be used to switch signals between simulations and real-life devices in a multitude of hardware-in-the-loop (HIL) simulation and test systems. The fault insertion unit can significantly simplify and accelerate the testing, diagnosis and integration work in HIL applications.