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Product details
Ceramic Actuators move Faster with Powerful Piezo Amplifier Sep 29, 2008
Piezo actuator & motor system specialist PI's new E617 high-power piezo amplifier was designed for high-dynamics switching & scanning applications on non-magnetic ceramic actuators.
Datasheets & More Information on Piezo Amplifier Modules:
E-617 Piezo Power Supply Features and Advantages
* Peak Output Power 280 W
* High Source & Sink Current: 2 Amps
* Very Low Power Consumption: Energy Recovery
* Output voltage -30 to +135 Volts
* Amplifier bandwidth to 3.5 kHz
* Short-circuit-proof
Applications
* Valve Actuation & Testing
* Switching
* Scanning
* Vibration Cancellation
High Performance with High Capacitive Loads
The E-617 four quadrant amplifiers were designed to provide precision control of high performance / high capacitance multilayer piezo actuators.
Categories
- Biomolecules: structure and physical properties
- Subcellular structure and processes
- Cellular structure and processes
- Properties of higher organisms
- Ionizing radiations (ultraviolet, X-rays,gamma-rays, ions, electrons, positrons, neutrons, and mesons, etc.)
- Radiation monitoring, control, and safety
- Photon dosimetry: theory and algorithms
- Electron and positron dosimetry: theory and algorithms
- Ancillary equipment
- Image quality: contrast, resolution, noise, etc.
- Computer-aided diagnosis
- Single photon emission computed tomography (SPECT)
- Positron emission tomography (PET)
- Bone densitometry
- Pulse sequences for imaging
- Instrumentation
- Angiography and macroscopic flow estimation
- Clinical imaging studies
- Non-ionizing radiation equipment and techniques
- Ultrasonography
- Computer simulation
- Electron, neutron and X-ray diffraction and scattering
- Scattering of visible, uv, and infrared radiation
- EPR and NMR spectroscopy
- Infrared and Raman spectroscopy
- Electron and photoelectron spectroscopy
- Optical absorption, magnetic circular dichroism, and fluorescence spectroscopy
- Mossbauer spectroscopy
- Light microscopy: bright-field, dark-field, phase contrast, DIC
- Confocal microscopy
- Multiphoton microscopy
- Near-field scanning optical microscopy
- Aerospace bio and medical physics
- Optical trapping
- Micromanipulators
- Patch clamping
- Micromachining
- Morphometry and stereology
- Tissue and cellular engineering and biotechnology
- Biological signal processing and instrumentation
- Dynamical, regulatory, and integrative biology
- Neural engineering
- Biomedical engineering; instrumentation
- General equipment (e.g. Sensors)
- Biomedical applications of nanotechnology
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