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Single Channel Potentiostats
Apps-XM Series
This family of instruments is built on the technology of the ModuLab XM platform. Specific combinations of options, such as frequency response analyzers (FRA), current boosters, voltage boosters, are popular when the ModuLab XM is configured for given applications. We combine our design knowledge and industry experience to create a line of products with an application focus.
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Single Channel Potentiostats
PARSTAT Series
The PARSTAT-series of potentiostats is defined by offering superior performance as standard. The PARSTAT4000A and PARSTAT3000A complement each other.Both of these single channel potentiostats operate in VersaStudio software with all techniques available, including Electrochemical Impedance Spectroscopy up to high frequency.
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Single Frequency Lasers: 355 nm – 1064 nm up to 3 W
Cobolt 05-01 Series
High power, single frequency CW diode pumped lasers: 355 nm – 1064 nm up to 3 W. Perfect for holography, interferometry, Raman, optical tweezers, super resolution microscopy, laser doppler velocimetry
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Slip Speed Meter
VSS-01
VEER make Slip-Speed Meter VSS-01 is portable instrument which is very useful to find RPM, Corrected RPM, Slip and Frequency of electric Motor. It is very simple and easy to use Instrument so, any one can operate it easily.
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Slow Speed Switch
SS110
Features • Works with remote/external pulse frequency output sensor (NPN, PNP) • Setpoint ranges: 0.01-0.99 & 0.1-9.9 rpm • SPDT relay output • Monitors speeds down to 100 min. per rev • Dial-in calibration does not require power • Built-in start delay • DIN rail mounting simplifies installation • 115, 230 VAC (50-60 Hz) and 12, 24 VDC power options
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Smaart SPL
Smaart SPL offers the same complete SPL measurement toolset from Smaart v8 in a purpose-built standalone package, with an interface designed for simplicity and speed. Smaart SPL provides a powerful and full-featured solution for monitoring, metering, and logging SPL but with a format and price point more accessible to users who don’t require the real-time frequency and impulse response mode analysis capabilities of our flagship Smaart v8 software.
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Small Signal RF/Microwave Power Amplifier
R&K’s small signal amplifier series are to amplify various high frequency signals such as CW/Pulsed/AM/FM/N-DCMA/W-CDMA/OFDM , etc.
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Small Step Frequency Synthesizer
ZFR Series
ZFR series programmable frequency synthesizers combine multi-octave bandwidth, small step size, low phase noise, fast switching speed, and a compact package size to create a truly versatile synthesizer. The ZFR series can be tailored to the specific frequency range and control interface required, with programmable frequencies to 31 GHz.
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SMA-Male to N-Male Test Cable
C50SMNM
Our 2N-to-SMA test cable is made to ideally suit our larger line of vector network analyzers. The C50SMNM operates at a frequency of 18000 MHz and is compatible with select family lines of vector network analyzers including our Compacts, Full Size, and Cobalt analyzers.
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Snap-on RF Current Monitoring Probe
TBCP2-250
The TBCP2-250 is a snap-on RF current monitoring probe. The probe has a very flat response with a 3dB bandwidth of 250 MHz and is characterized over the frequency range from 30kHz to 300 MHz. Upon request, it can also be supplied with a test protocol covering the frequency range 1 kHz to 350 MHz. The aperture of the RF current monitoring probe is 32 mm. Its transfer impedance is > 12 dB Ohm in the range from 700 kHz to 300 MHz.
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Software
The Circuit Sleuth API Tool Kit routines offer an alternative solution for users who prefer writing or need to write their own control programs, or have specific application needs for frequency response analysis. The “C” callable routines and DLLs provide direct access to the analyzer, enabling the user to control instrument functions and data management.
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Software
Quasi-Static Measurements
Materials Development Corporation
The Quasi-static measurement ompares a high frequency capacitance-voltage plot to a C-V plot measured near zero Hertz (quasi-static). By analyzing the difference in the depletion region of the curves, the interface trap density (Dit) can be determined in the sample under test.
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Software
Interface Trap Density Analysis Option
Materials Development Corporation
MDC offers interface trap density analysis using both the Conductance-Frequency and Quasi-statictechniques. The Conductance-Frequency method is recommended for fine-tuning of processes where the highest resolution is needed. The Quasi-static technique is recommended where moderate to high levels of interface traps are monitored, such as in radiation damage studies. Requires quasi-static option or variable frequency option.
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Solid State Broadband High Power Amplifier
Model 2215
The 2215 is suitable for octave bandwidth high power CW, modulated, and pulse applications. This amplifier utilizes high power GaN devices that provide wide frequency response, high gain, high peak power capability, and low distortions. Exceptional performance, long-term reliability and high efficiency are achieved by employing advanced broadband RF matching networks and combining techniques, EMI/RFI filters, and all qualified components. The amplifier is constructed within a single 5RU drawerincluding the forced air-cooling. Available operating voltage configurations are single-phase 220 VAC up to 400 Hz and 28 VDC.
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Solid State Broadband High Power Amplifier 1900 - 6000 MHz / 200 Watts
2215
The 2215 is suitable for octave bandwidth high power CW, modulated and pulse applications. This amplifier utilizes high power GaN devices that provide wide frequency response, high gain, high peak power capability and low distortions. Exceptional performance, long-term reliability and high efficiency are achieved by employing advanced broadband RF matching networks and combining techniques, EMI/RFI filters, and all qualified components. for EMC, RF Product Test, Communications and Electronic Warfare applications.
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Solid State GaN (Gallium Nitride) Amplifiers
Fairview Microwave’s solid state GaN (Gallium Nitride) power amplifiers (also called SSPAs) feature broad frequency bands ranging from 30 MHz to 7.5 GHz and very high gain levels from 43 to 60 dB. These GaN SSPAs also show impressive harmonic response (-15 to -20 dBc) under worst case conditions. Saturated output power levels range from 10W to 100W with 20% to 35% Power Added Efficiency (PAE). All of our high power solid state GaN amplifiers from Fairview have internally regulated single voltage supplies. Our GaN SSPAs are designed to withstand environmental conditions such as humidity, altitude, shock and vibration with an operating temperature ranges from -40°C to +85°C. Some models are also equipped with integrated heat sinks and cooling fans. Most designs are EAR99.
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Solid-State High Power Amplifier 18 - 26.5 GHz
AMP4065LC-2
Exodus Advanced Communications
Designed for EMI/RFI, lab, and general communication applications. Exodus Broadband SSPA product feature GaN, GaAsFET discrete and Chip & Wire Hybrid technologies covering one octave through decades frequency ranges from Operating Frequency Range 18.0-26.5 GHz.
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Solid State NMR
Magnets for NMR experiments are required to have a high homogeneity, which can be maintained over a wide range of field. Experiments are performed at fixed frequency and the spectrum is obtained by sweeping the magnetic field. This requires the field to be stable in spatial homogeneity and change steadily and repeatedly over time.
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Sound Analysis-Synthesis
iNSTiTUT DE RECHERCHE ET COORDiNATiON ACOUSTiQUE/MUSiQUE
The analysis of sounds includes methods enabling the permanent extraction or automatic structuring of diverse sorts of information given off by the signal, such as the fundamental frequency or the spectral evolution determining the pitch and timbre of a perceived sound. Information outside what is strictly musical is also taken into consideration, notably concerning industrial acoustics, sound design and multimedia as well as the automatic indexing of recorded sounds. The methods used are based on signal processing, statistical analysis, information theory, machine learning and recognition techniques, but also on knowledge of auditory perception.
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Sound Level Calibrator
521
Accepted internationally 1 kHz represents the "0 dB" reference point of A, B, C Weighting and other filters utilized in acoustic measurement. The Pistonphone - a mechanical sound source - offers a slightly higher degree of accuracy at a substantial increase in cost. In addition, the 200 or 250 Hz operating frequency is mechanically limited and not suited for measurements of filtered inputs. The 0.2 dB accuracy is quickly lost in the 0.7 to 1.5 dB tolerances acceptable for weighting filters at frequencies around 250 Hz.
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Sound Level Calibrator
511E
Accepted internationally 1 kHz represents the "0 dB" reference point of A, B, C Weighting and other filters utilized in acoustic measurement. The Pistonphone - a mechanical sound source - offers a slightly higher degree of accuracy at a substantial increase in cost. In addition, the 200 or 250 Hz operating frequency is mechanically limited and not suited for measurements of filtered inputs. The 0.2 dB accuracy is quickly lost in the 0.7 to 1.5 dB tolerances acceptable for weighting filters at frequencies around 250 Hz.
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Sound Level Calibrators
PeakTech Prüf- und Messtechnik GmbH
For sound level measurements in extreme conditions, at high altitudes or high demands on the accuracy of the measurement results, sound level meters should be checked prior to the measurement with a sound level calibrator. Also for calibration and verification of microphones in audio technology, you need a sound level calibrator, which is designed to produce several sound pressure levels at a fixed frequency characteristic. This calibrator has two switchable calibration steps.
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Sound Level Meter
831
This versatile instrument, with high definition display, performs the functions of several instruments. It puts the combined features of a precision Class 1 sound level meter, environmental noise analyzer, personal noise dosimeter, and a real-time frequency analyzer in the palm of your hand.
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Sound Level Meters
Dalian Taijia Technology Co.,Ltd
Display: 10mm (0.4″) LCD (Liquid Crystal Display)● Function: LP , Leq ,LN.● Frequency range: 31.5Hz~8kHz● Measurement range: LP:30~130dB (A) 35~130dB (C) 35~130 dB (F) Leq :30-130dB LN .: 0-100%● Resolution: 0.1 dB● Accarcy:1dB● Memory: Maximum value (30groups)● Indicator: Low battery indicator● Alarm: electron● Connector:RS232C● Power supply: 4x1.5v AAA (UM-4 battery● Size: 236 x 63 x26 mm● Weight: 170g (including batteries)● Standed delivery:1.Main Unit................1pc2.Carrying Case............1pc.3.Operation Manual.........1pc.● Optional Accessories:1.ND9 sound level meter calibrator2.RS-232 and software3.External rela4.Bluetooth interface
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Sound Power Reference Source
Qref
Precision omni-directionallity in all directions, horizontal and vertical plane. This source has a frequency range of application between 100 and 8000 Hz (third octave bands) Despite only weighing 1.4 kg and having a diameter of 105 mm, it produces a maximum sound power level of Lw 104 dB.
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Source of Signals
CRS+
The CRS+ is a stable and calibrated source of signals which cover the 9KHz - 30MHz frequency range. The fundamental signal is a 15KHz comb and each harmonic is output as a narrowband peak of known amplitude. This signal is output on either the L and N lines, referenced to ground. A switch provides on/off and line selection.
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Speaker & Signal Analyzer
Specifications*frequency available for models:1-300/450/600MHz *frequency sweep mode:full sweep, narrow sweep,spot frequnecy
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Special Detectors
Single channel enhanced IR detectors with fast response, extended gain, and/or high modulation frequency range for applications in spectroscopy and analytical instruments.
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Specialist Test Probes
High Current Test Probes, Ultra-high Current Test Probes,Kelvin Test Probes, High Frequency Test Probes, Switching Test Probes
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Spectral Phase Measurement
Avoca SPIDER System
Spectral phase interferometry for direct electric-field reconstruction (SPIDER) is one technique that can recover the spectral phase of an input pulse, without needing any reference pulse. SPIDER interferes two pulses which areseparated in time and in frequency, and the resultantinterferogram is read by a spectrometer.