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Temperature Data Acquisition
THERMES-USB
Physitemp’s Thermes high accuracy data acquisition system has been redesigned to create a more versatile USB model. The new system requires no internal connections to your computer and simply connects via an external USB port on your laptop or desktop computer. Two versions of the data acquisition system are available. The standard version, THERMES USB, is connected to your computer USB port. The wireless version - THERMES USB WFI, can be either directly connected to a USB port or, with the included wireless receiver, positioned up to 100 feet from the host computer. Each unit will accommodate up to 7 type T thermocouple sensors and multiple Thermes units may be connected to the same computer for more thermocouple inputs. A high accuracy electronic cold junction compensation circuit maintains typical system accuracy of ±0.2°C over an ambient temperature range of 15 to 35°C. Individual offsets may be added to each input in software to facilitate individual calibration of each channel. (see THERMES-USB WFI)
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Ancillary Infrastructure
TideStation – Permanent
All data can be recorded locally and broadcast to a central command and control point as required. Within the TideStation enclosure is all the ancillary infrastructure required to maintain power to the Tide and Met equipment interfaced and the chosen communications systems. There are two standard TideStation variants: Option 1 – Single Port ipBuffer, TideStation Junction Box, optional Satel UHF radio. Configuration Example: TideMaster, VRS-20 and Pressure Sensor. Option 2 – 4 port ipBuffer, TideStation Junction Box, optional Satel UHF radio. Configuration Example: TideMaster, VRS-20, Pressure Sensor, miniCT, METPak II, plus other instruments.
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Underground Fault Location
Schweitzer Engineering Laboratories, Inc.
Underground faulted circuit indicators identify the faulted cable section without a time-consuming re-fuse and sectionalize process. Applications include subsurface or pad-mounted transformers, switchgear, sectionalizing cabinets, junction boxes, and splices.
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Waveguide Detectors 26.5 to 110 GHz
Our waveguide detectors cover a broad frequency range of 26.5 GHz to 110 GHz and are available with waveguide sizes ranging from WR-28 to WR-10. The video output ports utilize SMA female connectors. These high performance zero-biased waveguide detectors exhibit excellent performance in Ka, Q, U, V, E and W frequency bands. These types of waveguide detectors are commonly used in various aerospace, defense and commercial wireless applications used in instrumentation, power detection, power monitoring, direct detection receivers, high frequency communications, radar, SATCOM, point-to-point radio, telecom, data links and R&D. The detector circuits use high performance GaAs Schottky Barrier Beam lead diodes with extremely low junction capacitance. These waveguide detector designs perform with minimal sensitivity variation resulting in a flat frequency response across the entire waveguide band. All of the waveguide detectors are in-stock and ready to ship.
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*Laser Thermal Power Sensors
Thermal sensors have a series of bimetallic junctions called a thermopile. Radial or axial heat flow through the sensor creates a voltage proportional to the power absorbed as it flows through the thermopile. The reading is not dependent on the ambient temperature since only the temperature difference is measured and not the absolute temperature. The thermopile elements are so arranged that the reading is almost independent of beam size and position. Generally, Ophir specifies ±2% or better uniformity of reading over the surface.
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Thermopile Power Sensors
Thermopile optical power sensors are based on thermocouples. A thermocouple consists of two dissimilar metals connected in series. To detect radiation, one metal junction is typically blackened to absorb the radiation. The temperature rise of this junction with respect to another non-irradiated junction generates a voltage. Our thermopile power sensors offer broadband, spectrally flat response, and calibrated plug and play operation with our optical power meters.
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Solar Simulator
Unisim
TS-Space Systems is the first company to pioneer the use of metal halide sources in solar simulators for photovoltaic testing. The high temporal stability and close spectral match combined with the ability to control the output spectrum via multiple separate wavebands means the Unisim solar simulator is the only solar research tool designed for the accurate measurement of multiple junction devices, including the new generation of four junction devices. As with all our Unisim solar simulators, they exceed the ASTM, IEC and JIS international standards for spectral match and temporal instability. Using the latest HMI and halogen luminaire technology, the Unisim solar simulator provides a highly stable area of illumination. The simulators also use cutting edge filter technology in order to provide the best spectral match available for AM0 and AM1.5. Further to this, the spectrum can be achieved via two, three or four separate spectral wavebands which allows a high degree of spectral control for research and development. Product support is very important to us. Training is provided at our premises where customers can take advantage of one-on-one tuition with the instrument designers and learn how to operate and maintain their tools. Extensive support via phone and email for the full lifetime of the instrument is included with every TS-Space Systems product.
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ReferenceWafer
RW10
Materials Development Corporation
MDC presents the RW10 Reference Wafer. A range of capacitors, resistors and semiconductor devices can bemeasured to verify the repeatability and accuracy of measurement systems. The MDC Model RW10 Reference Wafer is not actually a "wafer". It has the shape of a wafer and it includes capacitors, resistors, MOS devices, and a junction device in a wafer configuration to allow rapid verification of proper operation for capacitance-voltage and current-voltage instrumentation.
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Connectors
Ever since our company foundation in 1978, connectivity has held a special place at the core of the increasingly system-oriented MacArtney organisation. Even today, connectors, cables, terminations, junction boxes and everything beyond and in between, are involved in pretty much everything that we do, and in many ways, it is connectivity and integration that have paved - and still pave - the way for most other innovative MacArtney products and systems.
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Non-Linear Junction Detector
ORION™ 900 HX
The ORION 900 HX Non-Linear Junction Detector (NLJD) detects electronic semi-conductor components through dense materials such as bricks, concrete, and soil. The ORION 900 HX NLJD is made to detect and locate hidden cameras, microphones, and other electronic devices regardless of whether the surveillance device is radiating, hard wired, or turned off.
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PIN Diodes
The SemiGen SGP7000 series of PIN Diodes are processed with a high-resistivity epi that have intrinsic layers that range in thickness from 4 micron to 200 micron depending on performance specifications. These devices are typically manufactured with either a robust thermal-oxide passivation or ceramic glass for durable high-power applications. These diodes are made with a grown junction P++ layer that yields abrupt junction structures that provide low punch through voltages and minimize autodoping. They are available as chips or in your choice of packages.
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CGS500-IR NDIR Gas Sensor
The CGS500-IR sensor is a NDIR (non-dispersive infrared) sensor designed to replace thermocatalytic gas sensors for monitoring hydrocarbon gases in the range 0-100% LEL. The CGS500-IR is available as a sensor only or fitted in an EEx e certified junction box.
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PXI Isolated Millivolt Thermocouple Simulator - 8 Channel
41-761-004
The use of two wire outputs and isolation from ground ensures that the 41-761 can be used to accurately simulate low voltages even in the presence of common mode voltages in the system. Each Vcold connection is independent permitting the 41-761 to be connected to multiple cold junctions.
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Contact Temperature Sensors
A thermoelectric device for measuring temperature, consisting of two wires of different metals connected at two points, a voltage being developed between the two junctions in proportion to the temperature difference.
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Fixed Gas Detectors
OLCT 10 - OLC 10
Teledyne Gas & Flame Detection
The OLC 10 and OLCT 10 are designed to detect combustible or toxic gases for tertiary applications (boiler plants, battery charging rooms, car parks, hospitals). Two OLC 10's can be connected to one detection channel to monitor the same area, without an additional junction box or extra wiring. Similarly, up to five OLCT 10's can be connected to one channel for the detection of CO, NO or NO₂ in a car park application. Easy to install and operate, these detectors combined with the MX 16 control unit meet demanding user requirements.
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High Temperature Operating Life
7000 Series
With ever decreasing geometries, the way we perform HTOL requires careful consideration. In lower geometry device leakage currents are not only higher but vary greatly. Temperature control at DUT level – required to achieve correct junction temperature at every DUT. For higher geometries, HTOL can be performed in a more traditional way but with devices consuming more power, the ambient temperatures required varies greatly. Multiple temperature zones are required – multi zones system or multiple smaller HTOL systems.
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Laser Diode
Is an electrically pumped semiconductor laser in which the active laser medium is formed by a p-n junction of a semiconductor diode similar to that found in a light-emitting diode.
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Stainless Steel Junction Box
JB104SS
The JB104SS junction box model is designed to connect and trim up to four load cells per board. It may also be used in combination with additional juction boxes through the use dof an expansion port on the main board to connect multiple junction boxes thus allowing the summing of more than four load cells.
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20 Channel Solid-state Multiplexer Module for DAQ970A and DAQ973A
DAQM900A
20 Channel Solid-state Multiplexer Module. Scanning speed up to 450 channels per second and built-in thermocouple reference junction.
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USHIO Blue Violet Laser Diodes (375nm - 405nm)
The Optoelectronics Company Ltd
The USHIO HL40071MG is a single transverse mode 405nm laser diode which offers 300mW optical output power in a 5.6mm package with typical optical and electrical characteristics, (Tc=25 degrees C, cw), of 50mA threshold current, operating current of 280mA, operating voltage 6.0V, 6 degrees beam divergence parallel to the junction, 15 degrees beam divergence perpendicular to the junction, laser diode reverse voltage of 2V and operating temperature of 0 to +70 degrees C.
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pH/ORP Electrodes
2734-2736
The Signet 2734-2736 pH and ORP Electrodes features a patented reference electrode design and uses the unique foul-proof patented DryLoc connector. The large area PTFE reference junction, salt bridge and reference electrode are constructed to increase the total reference effectiveness, resist chemical attack, and ensure long service life.
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pH/ORP Electrodes
2724-2726
The Signet 2724-2726 pH and ORP Electrodes features a patented reference electrode design and uses the unique foul-proof patented DryLoc connector. The large area PE reference junction and pathway is constructed to increase the total reference effectiveness and ensures long service life.
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Thermocouple Kit
34307A
The Keysight 34307A is compatible with the Keysight 34970A Data Acquistion/Switch Unit. The 34307A can also be used with the Keysight 34401A, 34460A or 34461A, however, an external program is required to convert the voltage measurements to temperature and an ice bath or electronic reference junction must be used.
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Temperature Data Acquistion
THERMES-USB RF
Physitemp’s original Thermes high accuracy ISA based data acquisition system has been redesigned to create a more versatile USB model. The new system requires no internal connections to your computer and simply connects via an external USB port on your laptop or desktop computer. Two versions of the data acquisition system are available. The standard version, THERMES USB, is connected to your computer USB port. The wireless version - THERMES USB WFI, can be either directly connected to a USB port or, with the included wireless receiver, positioned up to 100 feet from the host computer. Each unit will accommodate up to 7 type T thermocouple sensors and multiple Thermes units may be connected to the same computer for more thermocouple inputs. A high accuracy electronic cold junction compensation circuit maintains typical system accuracy of ±0.2°C over an ambient temperature range of 15 to 35°C. Individual offsets may be added to each input in software to facilitate individual calibration of each channel. For information on our wide selection of Type T Thermocouple temperature probes.
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BNC-2120, 68-Pin Female SCSI to Female BNC and Screw Terminal, DIN Rail, Desktop Mount, Shielded Terminal Block
777960-01
68-Pin Female SCSI to Female BNC and Screw Terminal, DIN Rail, Desktop Mount, Shielded Terminal Block - The BNC-2120 can be used with various NI multifunction I/O and analog output devices. The BNC-2120 simplifies the connection of analog signals, some digital signals, and two user-defined connections to the data acquisition device while maintaining the integrity of your measurements with a shielded enclosure. It also features a function generator, quadrature encoder, and cold junction compensation for thermocouple measurements. The BNC-2120 includes a DIN Rail and a desktop mount option.
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C/I Tracers
Circuit Seeker Kit
*Advanced patented non-directional sensing technology*Superior sensitivity and functionality providing for accurate tracing & locating*Ergonomic receiver with information-rich full-color graphical LCD*Graphics and audible signal provide quick and easy way to understand tracing feedback*Traces concealed wiring, locates junction boxes, and finds breakers for live or open circuits
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Schottky Mixer and Detector Diodes
Macom Technology Solutions Holdings Inc.
Schottky diodes are majority carrier diodes formed by plating a layer of metal on a layer of doped semiconductor, which forms a rectifying junction. The type of metal and the type of dopant in the semiconductor determines the diode’s barrier height, which is a measure of the amount of energy required to force the diode into forward conduction. MACOM produces Si Schottky diodes as well as GaAs Schottky diodes for use as signal detectors or in frequency mixers.
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Junction Boxes
Junction boxes are used for complex power and signal distribution. The junction boxes have redundant mechanical barriers. The mechanical integrity of the junction box is verified during helium leak testing and hydrostatic testing of the jumper assembly. Thermal and pressure compensation is provided by the radially compliant hose or by purpose built bladder compensators, hose lengths must be sized according to the junction box internal dead volume.
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Measurement System For Testing & Binning Of Back-End LEDs
TP121-TH
The photometric specifications of LEDs must meet very high tolerance requirements regardless of whether they are to be used in general, automotive or other specialist lighting applications. This is often a problem since the manufacturing tolerances of LEDs can be higher than those permitted in the end-use applications. Also, LED binning by LED manufacturers in order to classify LEDs based on their tolerances is performed with flash mode testing using pulsed current flow. However, end-use applications of the LEDs often operate in constant current mode and with significant thermal effects. The sophisticated LED processing industry therefore requires measurement devices that can be used for both manufacturer-compliant pulsed mode, as well as constant current operation mode. When the LEDs are run in constant current mode, the junction temperature has significant influence on the performance and lifetime of the LED. Therefore, test systems should be able to test the LEDs at specific junction temperatures.
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16 Thermocouples/RTD Ch
APCI-3200-16
18-bit resolution, 16-bit accuracyEach channel can be configured either for thermocouples/RTD or as an analog voltage input channel16 analog input channels for thermocouple typesJ, K, T, E, R, S, B, N - or 8 diff. analog input channels for the acquisition of resistance temperature detectors (Pt100)- or 16 SE/8 differential analog voltage input channels, ± 2.5 V8 independent current sources for resistance temperature detectors (RTD) and one current source for cold junction compensationCold junction compensation (on separate screw terminal board PX 3200)Gain and offset calibrationLinearisation through table and calculation for the thermocouple types J, K, T, E, R, S, B, N and RTDsProgrammable gain16-bit accuracy with sample rates of 20, 40, 80 or 160 Hz (other rates on request)4 digital input channels, 24 V and 3 digital output channels, open collector, isolated





























