ICP
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Sound Level Meter
831-LOWN
Easily make low noise measurements to 6.5 dB A-weighted using the Model 831-LOWN sound level meter paired with the 378A04 low noise microphone and preamplifier. Due to the innovative design of the 378A04 which uses a prepolarized microphone and ICP (constant current) interface, the combination produces a highly portable system that is battery powered and intuitive to use for measuring low noise levels.
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Voltage Meter
MDN8I
MDN8I is a mezzanine module designed for high-precision measurements in dynamic signal analysis systems, as well as for joint work with ICP sensors and vibration transducers with a charge output (force sensors, dynamic pressure, acoustic emission, vibration displacement, etc.). The MDN8I mezzanine module has electrical characteristics no worse than those of most foreign and domestic counterparts, and in some parameters exceeds them.
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Inductively Coupled Plasma Optical Emission Spectroscopy / ICP-OES Systems
Industry-leading performance, speed and ease of use – no compromises
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Digestion Systems
Tecator line
FOSS Tecator line Digestion systems are based on a digestion unit and a tube rack, allowing fully automated digestion for convenient, safe and flexible Kjeldahl analysis. Two way PC communication supports traceability and GLP. These versatile digestion systems are capable of handling eight, twenty or forty tubes in volumes of 100 ml, 250 ml or 400 ml dependent on chosen configuration. Parameters: Kjeldahl digestions, Chemical Oxygen Demand & other reflux chemistries, Trace metal analysis by AAS or ICP instruments. Sample types: Raw materials and finished products in Food, Feed, Agriculture and related matrices, Water & Wastewater and a wide range of industrial compounds.
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ICP Microphone System
HT378B02
This model includes a 1/2" microphone cartridge, a mated preamplifier with TEDS, and system calibration. Click the following for individual component information.
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High Temperature Charge Mode Accelerometers
Charge mode output accelerometers from PCB® use piezo-ceramic sensing elements that output an electrostatic charge signal proportional to the applied acceleration. These sensors can operate at extremely high temperatures because they do not contain the built-in signal conditioning electronics that limit the temperature range of ICP® accelerometers. Charge mode sensors are used in the testing of gas and steam turbines, jet engines, high power motors, exhaust systems and automobile engines where temperatures can range from 500° F (260° C) to 1200° F (649° C).
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High Sensitivity ICP® Accelerometers
High sensitivity ICP® accelerometers are specifically designed to enable the detection of ultra-low-level, low-frequency vibrations associated with very large structures, foundations, and earth tremors. These sensors typically possess exceptional measurement resolution as the result of its comparatively larger size, which furnishes a stronger output signal and a lower noise floor. All units are hermetically sealed in a titanium or stainless steel housing. Models that include a 2-pin, military style connector provide the added benefit of being electrically case isolated for superior RF and EMI protection.
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Transducers
Is a unit which comprises a preamplifier fed by a constant current ICP and a condenser microphone
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On-line ICP / ICP-MS Sample Preparation System
SDX ʜᴘʟᴅ
The SDXHPLD system combines the proven ASX‑560 autosampler with a novel vortex mixing dilution accessory. The system dilutes in the same way you do by hand: volume-to-volume dilution, using a highly accurate syringe pump. But it also goes an additional step to vortex mix the resulting dilution prior to sample introduction to ICP and ICP-MS.The SDX employs vortex mixing to promote homogenization of a sample to ensure accurate and precise analysis following dilution. The variety of sample matrices submitted for trace element analysis necessitates the need for mixing. This long overdue capability improves data quality by fully homogenizing a dilution mixture rather than performing in-line combination.The SDXHPLD is a straight-forward, fully-integrated solution for automated dilution of aqueous and acid base sample prep for ICP or ICP-MS.
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Ultrasonic Nebulizer
U5000AT+
Using an ultrasonic nebulizer in conjunction with an optical ICP system is a simple, cost-effective way to increase sensitivity and lower detection limits.
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Cryogenic ICP® Accelerometers
Cryogenic ICP® accelerometers are specifically designed to operate at temperatures below the typical -65 ºF (-54 ºC) temperature limit of most voltage mode sensors. The use of specialized, built-in, cryogenic circuitry and quartz shear sensing technology promote survivability in demanding environments such as liquid nitrogen. Each sensor is hermetically sealed and individually tested to determine the thermal coefficient of sensitivity at -320 ºF (-196 ºC) ensuring reliable operation and accurate measurements. These sensors have been successfully used in the presence of liquid helium during structural testing of rocket boosters.
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High Temperature
PCB® offers specially designed and tested ICP® and charge mode accelerometers for testing in extremely high temperatures.
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Digital USB Sensor Interface AC,DC, IEPE
ROGADAQ2
The RogaDAQ2 USB DAQ is developed for highly accurate measurements in the T&M and also for NVH measurements. This USB Front End is optimized for noise and vibration measurements with 2 channel IEPE (ICP®) sensor supply.
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Microphone Preamplifier
426A11
1/2-inch ICP preamplifier with gain and filter switches (for prepolarized microphones)ICP(R) low noise preamplifier with gain, filters, and TEDS
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ICP Blast Pressure Pencil Probe
Model: 137B21B
Quartz, free-field, ICP blast pressure pencil probe, 1000 psi, 1 mV/psi, BNC connector
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Endevco Cryogenic Charge Output Accelerometers
PCB's acquisition of Endevco's full line of testing sensors means all Endevco sensors are now backed by PCB's Total Customer Satisfaction (TCS) guarantee. Endevco® cryogenic piezoelectric accelerometers are built specifically for measuring vibration under cryogenic conditions down to -452° F (-269° C). Signal outputs of these units are very stable even at extremely low temperatures. Their rugged internal construction is designed to withstand multiple cycles of thermal shock with steep temperature gradient. The accelerometers are self-generating devices that require no external power source for operation and contain no electronics. This allows them to operate below the -320° F (-196° C) limit of ICP accelerometers, down to -452° F (-269° C).
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Vibration Transducers Calibration System
The system is used for calibration of vibration transducers as well as:*ICP and charge accelerometers;*piezoelectrical and capacitive vibration transducers;*vibration-measuring instruments.
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Off-line Automated Liquid Handling Station
SimPrep
- Wide range of syringes from 10 μL to 50 mL- A single system can serve multiple techniques such as ICP-MS, ICP, AA, Colorimeter, IC, FIA- An extra autosampler - easily switch between sample prep and sample analysis with a switching USB hub (see below).
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IEPE Triaxial Accelerometer – 1000 mV/g
HDP356B18
Triaxial accelerometer high sensitivity, ICP, 1V/g, weight 25g, range 5 g pk
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PCB High Sensitivity, 100mV/g, ICP® (IEPE) Accelerometer
780989-01
The PCB HSTC33 helps you acquire sound and movement data with supported PXI Sound and Vibration Modules, C Series Sound and Vibration Input Modules, and USB-based Sound and Vibration Devices. This sensor uses the Integrated Electronics Piezo-Electric (IEPE) current excitation. The PCB HSTC33 features a sensitivity range of 100 mV/g and requires a low-noise coaxial cable.
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General Purpose Coaxial Cables For Sensors
General purpose coaxial cables are used with single axis ICP® sensors. This table provides relevant specifications for four cable types. Type 002 is the most commonly used, but three other types are also available.
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IEPE Triaxial Accelerometer – 10 mV/g
HDP356A02
Triaxial accelerometer miniature for hand-arm measurement, ICP, 10mV/g, weight 4g, range 500 g pk
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ICP® Accelerometers With Excellent Thermal Stability
The single and triaxial ICP® accelerometers are designed with a low temperature coefficient, wide operating temperature range, and good broadband measurement resolution, making them ideal for any vibration measurement requiring tight control of amplitude sensitivity over a wide thermal gradient. To alleviate the effects of high frequency overloads caused by metal-to-metal inputs, a low pass filter has been incorporated in all models, ensuring accurate data in the frequency range of interest.
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Low Outgassing ICP® Accelerometers
Low Outgassing ICP® (IEPE) Accelerometer Types & Their Applications.
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Autosampler
ASX‑560
Users call CETAC Autosamplers the best on the market, and it’s easy to see why. Put the most reliable, efficient and solidly built autosampler to work in your lab for sample analyses. We have a model to meet your needs, regardless the size of your lab or your specific technique, whether AA, ICP, ICP-MS, TOC, US-VIS, flash/prep chromatography, protein purification, liquid handling or others.
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Silicon Phosphor and Boron Analyze system
HS-ICP-MS
The Silicon Phosphor and Boron Analyze system HS-ICP-MS is the best system to measure the element like P&B in silicon material, the HS-ICP-MS can detect and analyze over 75 elements.
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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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Inductively Coupled Plasma Mass Spectrometer
ICPMS-2030
With its newly developed collision cell and optimized internal structure, the ICPMS-2030 provides superior sensitivity. At the same time, thanks to the adoption of its proprietary mini-torch unit and provision of an Eco mode, the quantity of argon gas needed for analyses has been greatly reduced to the industry's lowest levels. As a result, low running costs are assured. The Development Assistant function of the software automatically sets the optimal analysis conditions for quantitative analysis. Then, after measurements are complete, the Diagnosis Assistant function automatically checks the validity of the necessary data. While reducing the burden on the user, the efficiency of analyses is enhanced and the reliability of the data can be increased. It complies with FDA 21 CFR Part 11.



























