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Supplier: PCB Piezotronics, Inc.
Description: CHARGE AMPLIFIER
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Supplier: Baumer Ltd.
Description: Charge amplifiers convert electrical charges (pC) emitted by piezo electric sensors into a proportional output voltage. Baumer charge amplifiers ars developed for industrial applications and are equipped with a digital reset and digital range switch. •
- Form Factor: Panel / Chassis Mount
- Operating Temperature: 23 to 140 F
- Outputs: Voltage Output?
- User Interface: None
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Supplier: Baumer Ltd.
Description: Charge amplifiers convert electrical charges (pC) emitted by piezo electric sensors into a proportional output voltage. Baumer charge amplifiers ars developed for industrial applications and are equipped with a digital reset and digital range switch. •
- Form Factor: Panel / Chassis Mount
- Operating Temperature: 23 to 140 F
- Outputs: Voltage Output?
- User Interface: None
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Supplier: PCB Piezotronics, Inc.
Description: CHARGE AMPLIFIER
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Supplier: PCB Piezotronics, Inc.
Description: Electronics, PE charge amplifier for airborne applications, biased and unbiased outputs, upper cutoff freq.: 20kHz
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Supplier: PCB Piezotronics, Inc.
Description: PE charge amplifier for airborne applications, biased and unbiased outputs, gain range: 10.0 to 100 mV/pC
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Supplier: Columbia Research Labs, Inc.
Description: Columbia Model 5840 Differential Charge Amplifier has been specifically designed to operate with differential output piezoelectric vibration sensors typically used in aircraft engine condition monitoring systems. It features small package size and extremely low power consumption. The
- Accuracy: 1 % FS
- Analog Input Channels: 1 #
- Differential Channels: Yes
- Form Factor: Panel / Chassis Mount
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Supplier: Columbia Research Labs, Inc.
Description: The Columbia Model 4601 Charge Amplifier is a Low Cost, High Performance instrument for general purpose use with piezoelectric transducers for the measurement of acceleration, force and dynamic pressure. The Model 4601 features wide bandwidth, low noise, low output offset and a gain
- Accuracy: 2 % FS
- Analog Input Channels: 1 #
- Form Factor: Stand Alone
- Maximum Output: 20 +/-volts
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Supplier: Columbia Research Labs, Inc.
Description: Columbia Model 5624 Charge Amplifier has been designed for use with virtually all piezoelectric transducers to form various airborne vibration and shock data acquisition systems. It features small package size and extremely low power consumption. The Model 5624 Charge
- Accuracy: 1 % FS
- Analog Input Channels: 1 #
- Form Factor: Panel / Chassis Mount
- Maximum Output: 5.4 +/-volts
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Supplier: Columbia Research Labs, Inc.
Description: The Columbia Series 5820 Charge Amplifiers are designed for use with virtually all piezoelectric transducers to form various airborne vibration and shock data acquisition systems. These devices feature a very small package size and extremely low power consumption. The Series 5820
- Analog Input Channels: 1 #
- Form Factor: Panel / Chassis Mount
- Maximum Output: 2.5 +/-volts
- Operating Temperature: -67 to 185 F
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Supplier: Kistler Group
Description: Universal analog charge amplifier, optional Piezotron input; RS-232C & USB interface; extremely wide charge and frequency range; outstanding noise performance
- Analog Input Channels: 1 #
- Form Factor: Stand Alone
- Maximum Output: 20 +/-volts
- Operating Temperature: 32 to 122 F
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Supplier: Kistler Group
Description: The miniature charge amplifier Type 5039A converts the electrical charge signals yielded by piezoelectric sensors into proportional voltages. The instrument is integrated into a rugged metal housing according to degree of protection IP-65 and conceived for industrial use. The
- Analog Input Channels: 1 #
- Form Factor: Panel / Chassis Mount
- Operating Temperature: 32 to 140 F
- Outputs: Voltage Output?, Current Output?
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Supplier: Kistler Group
Description: Charge Amplifier Type 5080A... is the successor to charge amplifier Types 5017B... and Types 5019B... . Thanks to the modular design up to eight amplifier modules can be inserted. Charge modules Type 5067A0 with BNC connector are standard, as an option it is
- Analog Input Channels: 1 #
- Form Factor: Modular Bay / Slot System
- Maximum Output: 30 +/-volts
- Operating Temperature: 32 to 122 F
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Supplier: Kistler Group
Description: Charge Amplifier Type 5080A... is the successor to charge amplifier Types 5017B... and Types 5019B... . Thanks to the modular design up to eight amplifier modules can be inserted. Charge modules Type 5067A0 with BNC connector are standard, as an option it is
- Analog Input Channels: 8 #
- Form Factor: Stand Alone
- Maximum Output: 30 +/-volts
- Operating Temperature: 32 to 122 F
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Supplier: MTI Instruments Inc.
Description: Each 55CA Charge Amplifier provides one (1) channel of charge amplification, and provides a buffered acceleration output signal as well as an integrated (velocity) signal output. Both single ended and differential outputs are provided. The 55CA Charge Amplifier
- Analog Input Channels: 1 #
- User Interface: None
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Supplier: MTI Instruments Inc.
Description: The 41CA Two Channel Charge Amplifier is used to convert accelerometer charge signals into voltage signals. Converted signals are then easily used by the PBS-4100 family of vibration analyzers. Two channels of amplification are provided. Each channel has separate gain and
- Analog Input Channels: 2 #
- Filter Architecture: Digital (FIR, IIR)
- Filter Function: Low Pass, High Pass
- Integral Filter: Yes
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Supplier: RESON
Description: The CCA 1000 is a compact low-noise conditioning charge amplifier designed for use with piezoelectric hydrophones and other piezoelectric detectors. The CCA 1000 enables the uses of long cables between hydrophone and amplifier without affecting the hydrophone sensitivity. The
- Analog Input Channels: 1 #
- Form Factor: Stand Alone
- Maximum Output: 2 +/-volts
- Outputs: Voltage Output?
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Supplier: Encore Electronics, Inc.
Description: The Model 149 is an economical two-channel-per-modu le charge amplifier that plugs into Encore's 19" GPSC instrumentation rack, which accommodates up to eight modules (16 channels). An AC power supply is built into the rack, and provides the required unregulated DC voltages to operate
- Form Factor: Rack Mount
- Outputs: Voltage Output?
- User Interface: Front Panel and Display
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Supplier: MTI Instruments Inc.
Description: This CA1800 provides up to eight(8) channels of precision charge amplification for accelerometers and other charge mode devices. Features Up to eight (8) channels of amplification Self contained compact 19 inch rack mountable chassis Independent gain
- Analog Input Channels: 8 #
- Filter Architecture: Digital (FIR, IIR)
- Filter Function: High Pass
- Form Factor: Rack Mount
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Supplier: Encore Electronics, Inc.
Description: Compact - 16 channels per GPSC rack Acceleration/displac ement outputs Controls in engineering units Internal calibration Description The Model 149 is an economical two-channel-per module charge amplifier that plugs into Encore
- Form Factor: Rack Mount
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Supplier: Vibra-Metrics
Description: Model CA-10/CA-04 Features: Transforms High Impedance Charge to Low Impedance Voltage Signal Low Noise Amplifier Compact Noise Amplifier Powered by Our Standard Constant Current Power Supplies Applications:
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Supplier: Electro Optical Components, Inc.
Description: Features High Gain of 10 V/pC Wide Operating Range from 250 Hz to 15 MHz Low Input Noise of 40 x 10-21 C/vHz and 700 pV/vHz Optimized for Sinusoidal Signals from AC Coupled Charge Sources Applications Pyro- and
- Input Impedance: 1000 Mohms
- Maximum Output: 10 +/-volts
- Operating Temperature: -40 to 212 F
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Supplier: Wilcoxon Sensing Technologies
Description: Intrinsically Safe charge mode accelerometer, high temperature 260C, and charge amplifier system
- Acceleration: 50 g
- Features: Corrosion Resistant, Intrinsically Safe
- Frequency Range: 1 to 15000 Hz
- Operating Temperature: -58 to 500 F
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Supplier: Advanced Energy Industries, Inc.
Description: options. Typical applications for the Bipolar C series include cap charging, pulsed power, ultrasound, amplifiers, and pulse generators. Benefits Increase system throughput with quick capacitor charging Minimize stress on storage capacitors, enhance system reliability
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I/O Modules and Instruments - Charge Amplifier Module for Piezoelectrical Sensors -- Q.brixx XL A141Supplier: Gantner Instruments, Inc.
Description: 4 channels charge amplifier: For piezoelectric sensors Measuring ranges: 1000...1000000 pC Fast high accuracy digitalization: 24 bit ADC 100 kHz sample rate per channel Signal conditioning: linearization, digital filter, average, scaling, min/max storage, arithmetic, alarm
- Analog Input Channels: 4 #
- Form Factor: DIN Rail
- Isolation: Channel-to-Channel Isolation, Other
- Operating Temperature: -4 to 140 F
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Supplier: Win Source Electronics
Description: Manufacturer: Analog Devices Inc. Category: Instrumentation Amplifiers Number of Channels: 2 Channel Number of Channels: 1.9 V/us Mounting Style: SMD/SMT Packaging: Reel Gain: 128 V/V Topology: Charge Pump Input Bias Current: 450 pA Input Offset Voltage: 3 uV
- Device Type: Instrumentation Amplifiers
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Supplier: Renesas Electronics Corporation
Description: for DC-accurate coupling of video onto a 75? double-terminated line. The buffers have an integrated 6dB, eliminating the need for external gain-setting resistors. An external reference voltage can be applied to the REF pin to shift the analog video level down by the desired amount. The charge
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characteristics include low signal distortion levels, simple design, constant conduction due to amplifying element bias, no charge storage problems, stability, and linearity, though they also have low efficiency and high heat output during operation. Class B power amplifiers have similar stability (read more)
Browse RF Amplifiers Datasheets for ASAP Semiconductor LLC -
. Hot-pluggable BNC input channels for fast setup Independent voltage and charge amplifiers per channel (read more)
Browse Shaker Controllers Datasheets for ECON Technologies Co.,Ltd -
Independent voltage and charge amplifiers on each channel improve flexibility for different test setups BNC interfaces provide convenient plug-and-play connectivity (read more)
Browse Shock and Vibration Testing Shakers Datasheets for ECON Technologies Co.,Ltd -
-voltage power domains to charge and drive. Each of these systems shares the need for power monitoring and control, and this is where current sensors are used. Safety systems and powertrain electrification OEMs are implementing electrified steering and braking systems to increase vehicle safety (read more)
Browse Magnetic Sensor Chips Datasheets for Allegro MicroSystems Inc. -
. Remember that wiring capacitance adds to the output capacitance at the receiving end. Multiplexers allow one channel to interfere with another channel due to charging these capacitive effects. A signal conditioning amplifier presents a low resistance and small, uniform capacitance to the system multiplexer. Click here to continue reading (read more)
Browse Sensor Transmitters Datasheets for Dataforth Corporation -
. Remember that wiring capacitance adds to the output capacitance at the receiving end. Multiplexers allow one channel to interfere with another channel due to charging these capacitive effects. A signal conditioning amplifier presents a low resistance and small, uniform capacitance to the system (read more)
Browse Data Acquisition Datasheets for Dataforth Corporation -
. Remember that wiring capacitance adds to the output capacitance at the receiving end. Multiplexers allow one channel to interfere with another channel due to charging these capacitive effects. A signal conditioning amplifier presents a low resistance and small, uniform capacitance to the system (read more)
Browse RTD Temperature Transmitters Datasheets for Dataforth Corporation -
protect against abrasion and cuts, a replaceable emitter point, integrated ground connection and electromagnetic shielding. The Ion Air Cannon incorporates EXAIR’s patented Super Air Amplifier that minimizes compressed air use by inducing surrounding airflow at a ratio of 22:1. The (read more)
Browse Ionizers and Static Eliminators Datasheets for EXAIR -
(th)) Max: 1.5V @ 1mA Gate Charge (Qg) @ Vgs: 2.4nC @ 10V Input Capacitance (Ciss) @ Vds: 27pF @ 25V Max Power: 360mW Operating Temperature Range: -55°C ~ 150°C (read more)
Browse Metal-Oxide Semiconductor FET (MOSFET) Datasheets for Win Source Electronics -
-out performance with NPNs, they usually need a base voltage higher than the output voltage. NMOS devices also require a gate voltage above the input supply. In some cases, this may need a second bias supply or an internal charge pump. It samples a small part of the output voltage using a resistor (read more)
Browse General Purpose Diodes Datasheets for ODG (Origin Data Global)
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Selection of Amplifiers & Hardline Cables for High-Temp. Piezoelectric Sensors
environments up to 1,400 degrees F requires the combined use of a high-temperature charge mode piezoelectric sensor, a remotely located charge amplifier, and rugged interconnecting cables. This technical article covers the key characteristics that should be taken into consideration in the selection
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Introduction to Charge Mode Accelerometers
Dytran charge mode accelerometers are designed to measure shock and vibration phenomena over a broad temperature range. These accelerometers, unlike the Low Impedance Voltage Mode (LIVM) types, contain no built-in amplifiers. Dytran's charge mode accelerometers utilize high sensitivity piezoceramic
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Biasing Internally Amplified Accelerometers
Accelerometers with integrated amplifiers are a popular alternative to those requiring external. charge amplifiers. SigLab's top hatch access to the input signal conditioning circuitry makes. building an internal accelerometer interface easy. This note describes a method of. constructing
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Pixel Binning
. This is accomplished in two steps. First, an entire row is transferred in the vertical direction to the horizontal register. Second, charge is transferred horizontally in this register to the output amplifier.
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Paralleling the TC1121 to Reduce Output Resistance for Driving Higher Load Currents (TC1121)
Microchip Technology's TC1121 is a charge pump voltage converter specified to have a 100mA output current capability. The TC1121 has the benefits of selecting different internal charge pump switching frequencies (10KHz or 200KHz), driving the charge pump from an external clock, and a low power
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EETimes.com | Electronics Industry News for EEs & Engineering Managers
of trying to solicit the murder of a federal judge, but found him guilty of two lesser charges. Mohsen's legal team plans to appeal the guilty verdicts. Power amplifier claims lowest current consumption Avago Technologies has rolled out an enhancement-mode pseudomorphic high-electron-mobility
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EETimes.com | Electronics Industry News for EEs & Engineering Managers
Semiconductor Alert! for April 24-28 Avant! claims court dismisses criminal charges in case brought by Cadence Virata reaps 400% increase in chip revenues in Q4 Wafer material suppliers cut losses as prospect for shortages grows Winbond, Toshiba to collaborate on 0.13-micron DRAM development ITC
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EETimes.com | Electronics Industry News for EEs & Engineering Managers
Semtech offers 8-microamp charge pump IC with Capless technology Motorola orders Applied's CMP/cleaning tools for copper processes SpeedFam-IPEC to ship new CMP tool to U.S. beta site Kawasaki taps Cadence synthesis tools for ASIC support NEW ORDERS & DESIGN WINS National plans cell phone chips
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Piezoelectric Accelerometers with Integral Electronics
3.1 Charge Amplifier . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
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Design and control of a self-sensing piezoelectric reticle assist device
Hybrid Charge Amplifier . . . . . . . . . . . . . . . . . . . . .
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Piezoceramic Sensors
Charge Amplifiers ....................................................
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Piezoelectric Transducers for Vibration Control and Damping
125 6.5 Charge Amplifiers . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
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Engine Combustion: Pressure Measurement and Analysis
Transducer cooling Charge amplifier .
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Design, Modeling and Control of Nanopositioning Systems
This is followed by an introduction to charge amplifiers in Chap.
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Semiconductor Radiation Detectors
Nucl. Sci. 36 (1989) 203-209 Rehak, P., Rescia, S. (1990) et al.: “Feedback charge amplifier integrated on detector wafer” Nucl.
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Sensors and Signal Conditioning 2nd Edition
Charge Amplifiers , 397 .
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