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Supplier: Richardson RFPD
Description: Richardson RFPD, an Arrow Company, is a specialized electronic component distributor providing design engineers with deep technical expertise and localized global design support for the latest new products from the world's leading suppliers of RF, Wireless, Energy and Power Technologies.
- Amplifier Type: Power Amplifier
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Supplier: Richardson RFPD
Description: The ICP1240 is a three stage MMIC power amplifier in bare die form, fabricated using GaN-on-SiC technology. ICP1240 operates from 6-18GHz with 41dBm output power, >16% PAE and 23dB typical small signal gain. ICP1240 is well suited for a variety of commercial, aerospace
- Amplifier Type: Power Amplifier
- Frequency Range: 6000 to 18000 MHz
- Maximum Gain: 23 dB
- Maximum Operating Voltage: 20 volts
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Supplier: Richardson RFPD
Description: Microchip ICP1040P is a 2 stage MMIC power amplifier in 6mm package, fabricated using GaN on SiC technology. ICP1040P operates from 7.9-11GHz with 41dBm output power, 40% typical PAE and 22dB small signal gain. ICP1040P is well suited to commercial and defense
- Amplifier Type: Power Amplifier
- Frequency Range: 7900 to 11000 MHz
- Maximum Gain: 22 dB
- Maximum Operating Voltage: 28 volts
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Supplier: Richardson RFPD
Description: The ICP1044 is a three stage MMIC power amplifier in bare die form, fabricated using GaN-on-SiC technology. ICP1044 operates from 7.9 to 11GHz with 44 dBm output power, 35% typical PAE and 22 dB small signal gain. ICP1044 is well suited for both commercial and defense
- Amplifier Type: Power Amplifier
- Frequency Range: 7900 to 11000 MHz
- Maximum Gain: 22 dB
- Maximum Operating Voltage: 28 volts
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Supplier: PCB Piezotronics, Inc.
Description: ICP® Water Resistant Array Microphone and preamplifier
- Actual Diameter / Size: 0.5200 inch
- Dynamic Range: 143 dB re 20µPa
- Features: Integral Pre-amplifier, Array Type
- Frequency Response: 20 to 16000 Hz
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Supplier: PCB Piezotronics, Inc.
Description: ICP® microphone with integral preamplifier, 10-32 jack connector
- Actual Diameter / Size: 0.2800 inch
- Dynamic Range: 122 dB re 20µPa
- Features: Integral Pre-amplifier, Array Type
- Frequency Response: 20 to 10000 Hz
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Supplier: PCB Piezotronics, Inc.
Description: ICP® ARRAY MICROPHONE WITH INTEGRAL PREAMPLIFIER, 10-32 CONNECTOR, TEDS
- Actual Diameter / Size: 0.2800 inch
- Dynamic Range: 122 dB re 20µPa
- Features: Integral Pre-amplifier, Array Type
- Frequency Response: 20 to 10000 Hz
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Supplier: PCB Piezotronics, Inc.
Description: ICP® ARRAY MICROPHONE WITH INTEGRAL PREAMPLIFIER, SMB JACK CONNECTOR, TEDS
- Actual Diameter / Size: 0.2800 inch
- Dynamic Range: 122 dB re 20µPa
- Features: Integral Pre-amplifier, Array Type
- Frequency Response: 20 to 10000 Hz
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Supplier: DigiKey
Description: 17-21 GHZ 5W GAN PA MMIC
- Amplifier Type: Low Noise Amplifier, Power Amplifier
- Frequency Range: 17700 to 21200 MHz
- MMIC Technology Required: Yes
- Maximum Gain: 28 dB
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Supplier: DigiKey
Description: 6-18 GHZ 10W GAN PA MMIC
- Amplifier Type: Low Noise Amplifier, Power Amplifier
- Frequency Range: 6000 to 18000 MHz
- MMIC Technology Required: Yes
- Maximum Gain: 23 dB
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Supplier: DigiKey
Description: 2-18 GHZ 5W GAN PA MMIC
- Amplifier Type: Low Noise Amplifier, Power Amplifier
- Frequency Range: 2000 to 18000 MHz
- MMIC Technology Required: Yes
- Maximum Gain: 18 dB
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Supplier: DigiKey
Description: 27.5 -31 GHZ 9W GAN PA MMIC
- Amplifier Type: Low Noise Amplifier, Power Amplifier
- Frequency Range: 27500 to 31000 MHz
- MMIC Technology Required: Yes
- Maximum Gain: 22 dB
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Supplier: Acme Chip Technology Co., Limited
Description: 27.5 -31 GHZ 9W GAN PA MMIC
- Frequency Range: 27500 to 31000 MHz
- Maximum Gain: 22 dB
- Minimum Gain: Up to 22 dB
- Package Type: Other
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Supplier: Acme Chip Technology Co., Limited
Description: 12-18 GHZ 20W GAN PA MMIC
- Frequency Range: 12000 to 18000 MHz
- Maximum Gain: 22 dB
- Minimum Gain: Up to 22 dB
- Package Type: Other
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Supplier: Hamamatsu Photonics
Description: -High sensitivity in UV region -One-stage TE-cooled type -Low dark current -Anti-blooming function included -Selectable readout port to match your application tap A: low noise amplifier (1 MHz max.) tap B: high-speed amplifier (30 MHz max.) -Number of effective pixels: 2048 × 2048
- Horizontal Pixels: 2048
- Pixel Size: 12 µm
- Spectral Response: 165 to 1100 nm
- Vertical Pixels: 2048
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Supplier: Hamamatsu Photonics
Description: -High sensitivity in UV region -One-stage TE-cooled type -Low dark current -Anti-blooming function included -Selectable readout port to match your application tap A: low noise amplifier (1 MHz max.) tap B: high-speed amplifier (10 MHz max.) -Number of effective pixels: 1024 × 1024
- Horizontal Pixels: 1024
- Pixel Size: 24 µm
- Spectral Response: 165 to 1100 nm
- Vertical Pixels: 1024
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Supplier: Infineon Technologies AG
Description: The BLDC Driver IC provides main functions such as a 3.3 V low-dropout voltage regulator, three half-bridges for BDLC motor control, one current sense amplifier and one 32 bit SPI interface. The device includes diagnostic and supervision features and is intended to operate with 3.3 V
- Motor(s) Controlled: DC Brushless Motor
- Operating Temperature: -40 to 150 C
- Supply Voltage (DC): 3.3 to 28 volts
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Supplier: Infineon Technologies AG
Description: The BLDC Driver IC provides main functions such as a 5 V low-dropout voltage regulator, three half-bridges for BDLC motor control, one current sense amplifier and one 32 bit SPI interface. The device includes diagnostic and supervision features and is intended to operate with 5.0 V
- Motor(s) Controlled: DC Brushless Motor
- Operating Temperature: -40 to 150 C
- Supply Voltage (DC): 5.5 to 28 volts
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Supplier: Comdel, Inc.
Description: Solid, Reliable Engineering that Improves Process Results Performance: With millions of hours in the field, Comdel’s CPS series generators have proven their ability to withstand erratic loads. Patented S-Technology provides optimized amplifier performance
- AC Input Voltage: 208 volts
- Adjustable Frequency: Yes
- Form Factor: Rack Mount
- Input Frequency: 50 to 60 Hz
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Supplier: Comdel, Inc.
Description: series is designed to meet the performance demand in RF-driven plasma systems for semiconductor processing. Applications include etch, RIE, parallel plate, ICP, RF sputtering, CVD and PVD, as well as induction and dielectric heating processes in industrial systems. Features
- AC Input Voltage: 208 to 230 volts
- Adjustable Frequency: Yes
- Form Factor: Rack Mount
- Input Frequency: 50 to 60 Hz
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Supplier: Comdel, Inc.
Description: , RIE, parallel plate, ICP, RF sputtering, CVD and PVD, as well as induction and dielectric heating processes in industrial systems. Features: Reliable amplifier design with millions of trouble-free hours driving plasma systems worldwide Local control via
- AC Input Voltage: 187 to 229 volts
- Adjustable Frequency: Yes
- Form Factor: Rack Mount
- Input Frequency: 50 to 60 Hz
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Supplier: Comdel, Inc.
Description: provides low cost of ownership with high reliability. Applications: The CX series is designed to meet the performance demand in RF-driven plasma systems for semiconductor processing. Applications include etch, RIE, parallel plate, ICP, RF sputtering, CVD and PVD, as well as induction
- AC Input Voltage: 115 to 480 volts
- Form Factor: Rack Mount
- Input Frequency: 50 to 60 Hz
- Number of Outputs: 1 #
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Supplier: Dataforth Corporation
Description: The SCM5B48 provides excitation to piezoelectric sensors with built-in microelectronic amplifiers, commonly known as ICP®* or IEPE* or LIVM* sensors. The module provides a constant current excitation to the sensor, then isolates, filters, and amplifies the sensor output, yielding a
- Features: Filters, Integrated Electronics Piezo Electric (IEPE)
- Frequency Range: 0.2000 to 20000 Hz
- Minimum Accuracy: 0.2000 +/-% FS
- Operating Temperature: -40 to 185 F
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Supplier: Infineon Technologies AG
Description: in the automotive sector. Three integrated current sense amplifiers for shunt signal conditioning are integrated. Thanks to the powerful driver stage with typ. 2 A output current per channel, the 3-phase gate driver is ideally suited for safety related applications. This device is developed
- Driver Type: Three-phase
- IC Package Type: Other
- Operating Temperature: -40 to 150 C
- Packing Method: Tape Reel
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Feasibility of energy harvesting from thin piezo patches via axial strain (d 31 ) actuation mode
The accelerometer and the Dytran force sensor were attached to an oscilloscope (Tektronix, TDS 2004B) through ICP amplifier (PCB 482C05) for data acquisition.
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Management, Manufacturing and Materials Engineering
Data acquisition was performed with an 8- channel ICP amplifier manufactured by LMS.
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Damage Zone Characterization In the Near Field In the Swedish ZEDEX Tunnel Using In Situ And Laboratory Measurements
The accelerometer has a built in ICP amplifier and is powered by a control unit outside the borehole.
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Adaptive vibration suppression system: An iterative control law for a
piezoelectric actuator shunted by a negative capacitor
Signals from the accelerometers are amplified by ICP amplifier .
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Independent modal space control fidelity for semiglobal changes in dynamic properties
conditioning for these ICP transducers were provided by PCB ICP amplifiers (Model 584).
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Avoiding leakage flow-induced vibration by a tube-in-tube slip joint
PCB 464A, ICP Amplifier .
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Avoiding leakage flow-induced vibration by a tube-in-tube slip joint
PCB 464A, ICP Amplifier Sensitivity .
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Adaptive vibration suppression system: an iterative control law for a piezoelectric actuator shunted by a negative capacitor
These ac- celerometers have a resonant frequency at 40 kHz, which ensures a flat and phase-correct transmission function in the frequency range of our experiments. signals from the accelerometers are amplified by an IcP amplifier (Pcb Piezotronics Inc.).
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http://sem.org/PDF/Electrical_noise_in_piezoelectric_sensors.pdf
– Thermal noise (Resistor) – FET noise – Internal amplifiers ( ICP ® .
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Experimental and numerical investigations of impacting cantilever beams part 1: first mode response
The force transducer is connected to a Dac- tron Focus analyzer with RT-Pro 5.5 as the front end, and the acceleration channels are connected to both the Agilent and Focus analyzers through an ICP con- ditioning amplifier (PCB 482B11).
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