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Supplier: Advanced Energy Industries, Inc.
Description: Z’Scan II The Navigator® ll is equipped with microprocessor-contr olled, stepper-motor drives, and advanced tuning algorithms — enabling optimized RF power. An optional internal Z’Scan® II RF sensor provides real-time analysis of
- Cooling: Forced Air
- Frequency Range: 13.56 to 60 MHz
- Modes of Operation: Automatic
- Rated Power Range: 1000 to 30000 watts
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Supplier: ValueTronics International, Inc.
Description: . Additional Features: Frequency Range: DC to 40 GHz Max. SWR: DC to 2 GHz: 1.1 Zero Error: ±60 nW Meter Noise: 22 nW Linearity Uncertainty: 0.02 dB Calibration Uncertainty: 0.05 dB Connector: Type K Impedance: 50 ohm The Rohde NRVZ55 is a RF Sensor.
- Frequency Range: 40000 MHz
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Supplier: ValueTronics International, Inc.
Description: The 51072 is a used 40 GHz 0.1 Watts RF Sensor from Boonton. Electronic test equipment sensors measure the power of waveforms, such as multi-tone and modulated radiofrequency (RF) waveforms. Sensors gather highly accurate modulation measurements using diode
- Frequency Range: 40000 MHz
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Supplier: ValueTronics International, Inc.
Description: The 8483A is a used 2 GHz 0.3 Watt RF Sensor from Agilent. Electronic test equipment sensors measure the power of waveforms, such as multi-tone and modulated radiofrequency (RF) waveforms. Sensors gather highly accurate modulation measurements using diode
- Frequency Range: 2000 MHz
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Supplier: ValueTronics International, Inc.
Description: The 16936 is a 18.5 GHz rf sensor from Gigatronics. Electronic test equipment sensors measure the power of waveforms, such as multi-tone and modulated radiofrequency (RF) waveforms. Sensors gather highly accurate modulation measurements using diode detectors.
- Frequency Range: 18500 MHz
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Supplier: OMEGA Engineering, Inc.
Description: LV800 Series RF capacitance sensors offer cost-effective point level monitoring with reliability you can count on. Omega provides you with the most affordable solution for your application. Omega's RF switch probes are designed to provide a high level of sensitivity, stability
- Device Classification: Sensor-Only
- Level Measurement Type: Point Level / Multi-Point Levels
- Maximum Operating Pressure: 150 psi
- Media Type: Liquid, Dry Material (Bulk Solids and Powders)
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Supplier: Electronic Sensors, Inc.
Description: The LS7000 is an excellent general purpose level control device. It can sense all liquids and the "difficult to measure" dry materials. Operation: The probe uses a radio frequency balanced impedance bridge to detect the presence or absence of a product. Upon contact with the product, the
- Device Classification: Sensor-Only
- Meter Technology: Radio Frequency
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Supplier: ASTM International
Description: 1.1 Purpose and Application-This test method describes the procedure, equipment, and interpretation methods for estimating in-place soil dry density and water content using a Complex-Impedance Measuring Instrument (CIMI). 1.1.1 The purpose and application of this test method is for
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Supplier: ASTM International
Description: 1.1 Purpose and Application-This test method describes the procedure, equipment, and interpretation methods for estimating in-place soil dry density and water content using a Complex-Impedance Measuring Instrument (CIMI). 1.1.1 The purpose and application of this test method is for
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Supervisory Circuits and Battery Monitor Chips - RF Energy Harvesting Management Circuit -- AEM30330Supplier: e-peas SA
Description: Highly Versatile, Regulated Single-Output, Buck-Boost Ambient Energy Manager for RF Sources with Optional Primary Battery E-peas’ low-frequency AC sources energy harvesting IC solution – The AEM30330 is an integrated energy management circuit that extracts DC power from an
- Package Type: QFN
- Pin Count: 40
- Supply Voltage (Vi): 1.2 to 3.3 volts
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Description: -of-the-art area of fully-integrated wireless sensor modules on organic substrates and show the first ever 2D sensor integration with an RFID tag module on paper, as well as the possibility of 3D multilayer paper-based RF/microwave structures. Table of Contents: Radio Frequency
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Supplier: Win Source Electronics
Description: Manufacturer: Honeywell Microelectronics & Precision Sensors Win Source Part Number: 276057-HRFAT4511 Tolerance: ±3% Impedance: 50 Ohm Frequency Range: 0 to 4GHz Attenuation Value: 15dB Categories: RF/IF and RFID Status: Active Dimension: 16-VQFN Popularity: Medium Fake Threat
- Attenuator Type: Variable
- Frequency Range: 0.0 to 4 GHz
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Supplier: Win Source Electronics
Description: Manufacturer: Honeywell Microelectronics & Precision Sensors Win Source Part Number: 276059-HRFAT4521 Tolerance: ±2.5% Impedance: 50 Ohm Frequency Range: 0 to 2.5GHz Categories: RF/IF and RFID Status: Active Dimension: 16-VQFN Exposed Pad Popularity: Medium Fake Threat In the
- Attenuator Type: Variable
- Frequency Range: 0.0 to 2.5 GHz
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Supplier: Win Source Electronics
Description: Manufacturer: Honeywell Microelectronics & Precision Sensors Win Source Part Number: 040519-HRF-AT4610-TR Impedance: 50 Ohm Frequency Range: 0 to 4GHz Attenuation Value: 31.5dB Categories: RF/IF and RFID Status: Active Dimension: 24-VQFN Exposed Pad Popularity: Medium Fake
- Attenuator Type: Variable
- Frequency Range: 0.0 to 4 GHz
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Supplier: Win Source Electronics
Description: Manufacturer: Honeywell Microelectronics & Precision Sensors Win Source Part Number: 040518-HRF-AT4511-TR Tolerance: ±3% Impedance: 50 Ohm Frequency Range: 0 to 4GHz Attenuation Value: 15dB Categories: RF/IF and RFID Status: Active Dimension: 16-VQFN Popularity: Medium Fake
- Attenuator Type: Variable
- Frequency Range: 0.0 to 4 GHz
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Supplier: A.H. Systems Inc.
Description: current probe is clamped around the center conductor. The fixture's output terminal is terminated in a 50 ohm receiver, spectrum analyzer or RF voltmeter. A measurement of the voltage developed by this RF voltmeter permits the calculation of current flowing in the center conductor. The
- Current Type: AC Current
- Frequency Range: 20 to 5.00E8 Hz
- Mounting / Configuration: Clamp or Bolt On
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can be measured without making direct contact with the source conductor or metallic surface by means of clamp-on current probes. The BCP-615 Current Probe is designed to permit field intensity meters, spectrum analyzers, and other 50 ohm impedance instruments to measure quantitative magnitudes of (read more)
Browse Current Sensors Datasheets for A.H. Systems Inc. -
male/female, bulkhead, panel mount, straight, right-angle, standard, and reverse polarity configurations. The impedance options of 50 Ω and 75 Ω assure compatibility with a wide range of RF systems and frequencies. Eteily's RF connector series (read more)
Browse RF and Microwave Connectors Datasheets for Eteily Technologies India Pvt. Ltd. -
modules. Impedance: 50 Ω for optimal RF transmission. Low-VSWR and low-profile PCB mounting design Applications: LoRa/LPWAN communication systems (read more)
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Characteristics of Thermocouple Power Monitors Introduction Thermocouple RF power monitors are widely used for accurate measurement of RF power in demanding applications. Unlike other sensor technologies that require correction factors or (read more)
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LoRa/LPWAN IoT gateways and sensors. Smart City and Metering Systems Industrial and environmental monitoring Remote data collecting and telemetry. (read more)
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Whether you work with optical communication systems or sensors, you need reliable devices to convert and amplify signals. That's where a transimpedance amplifier comes in! It's a current-to-voltage converter and helps with signal (read more)
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for today’s higher density modules begin with knowing the signal content, data speed, impedance, potential crosstalk, noise or EMI sensitivity the system will be exposed to. One can benefit by checking data or signal speeds coming from the sensor system as well as the transmission rate output (read more)
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Advances in Neural Networks - ISNN 2006
For fault detection, in-situ sensors such as optical emis- sion spectroscopy [1], radio frequency ( RF ) impedance sensor [2], or RF matching monitor [3] has been utilized to monitor plasma states.
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To Analyze the Plasma Chambers Characteristics by 1/k Value Deduced From RF Parameters Collected by Impedance Meter
An RF impedance sensor , made by StraatumTM .
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Fundamentals of Semiconductor Manufacturing and Process Control
The addition of an RF plasma impedance sensor between the matching network and plasma electrode, however, allows new electrical variables to be monitored and con- trolled.
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Process control of chrome dry etching by complete characterization of the RF power delivery
Z-Scan impedance sensors measure RF voltage V, current I and the phase angle θ (direct sensor signals) for the fundamental frequency (13.56 MHz) and for higher harmonics (up to the 5th harmonic corresponding to five times the fundamental frequency).
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Semiconductor Manufacturing Handbook > PLASMA PROCESS CONTROL
A feature-rich signal processing architecture of an analysis module for an RF impedance /power sensor is described.
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Process monitoring of chrome dry-etching with RF sensor for reticle production beyond 90-nm node
Table 2 shows the etching condition to investigate the correlation between etching performance and plasma impedance measured with RF sensor .
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Ultra High Field Magnetic Resonance Imaging
Transmitter interface, Number of transmitter channels, Detuning driver voltage, Detuning driver current, Detuning driver switching time, Detuning driver fault detection mechanism, Connector type, Connector withstanding voltage, Connector power limit vs. load impedance , RF power sensor type, RF power monitor integration time, RF …
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Automatic antenna‐tuning unit for software‐defined and cognitive radio
These include the design, fabrication, and measurement of the electrically tunable antenna, impedance synthesizer, RF power sensor , and analog and mixed-signal control circuitry.
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Dynamical investigation of macromolecular hybridization bioassays
We point out, that SAW’s on piezoelectric substrates can be used to probe RF impedance changes of the sensor electrodes as depicted in Fig. 2, as well as to probe the RF impedance of the gold covered surface itself .
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Sensor Driven Intelligent Control System For Plasma Processing
An rf sensor used for measuring impedance and net power coupling was located between the coii and the matching network.
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