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Supplier: KEMET Electronics Corporation
Description: piezoelectric ceramic materials with high electrostrictive factors. Compared to conventional piezoelectric actuators, they are smaller in size but can generate higher displacement and force at low voltages. The Resin Coated AE series actuators feature
- Maximum Displacement: 4.6 to 68 µm
- Blocked Force: 200 to 3,500 N
- Maximum Operating Voltage: 150 volts
- Stiffness: 4.8 to 190.2 N/µm
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Supplier: Piezosystem Jena, Inc.
Description: fuel injection active engine mounting as well as all kinds of positioning tasks which require high loads and/or extreme accelerations piezosystem jena offers high power actuators in addition to the long lasting approved low voltage piezo elements. This series provides a
- Maximum Displacement: 17 to 460 µm
- Stiffness: 30 to 500 N/µm
- Resonance Frequency: 4 to 35 kHz
- Capacitance: 360 to 6,499.999999999999 nF
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Supplier: PI (Physik Instrumente) L.P.
Description: High-power amplifier for piezo actuators High peak current, >5 A continuous current. High bandwidth for high dynamics. Suitable for PICMA® piezo actuators with special electrodes. Output voltage -30 to 130 V. Analog control. Evaluation of temperature
- Input Voltage: -2 to 12 volts
- Input Impedance: 100 kohms
- Voltage Range: -30 to 130 volts
- Capacitive Load: 1 to 2 microF
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Supplier: Newport MKS
Description: Closed-Loop Picomotor actuator. Teflon or Kapton Wires All of our vacuum compatible and ultra-high vacuum compatible Picomotor actuators come with short, Teflon-coated leads so you can make connections to your vacuum-chamber feedthrough. If, however, you are working with X-rays
- Blocked Force: 13 N
- Features: Other
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Supplier: Newport MKS
Description: All of our vacuum compatible and ultra-high vacuum compatible Picomotor actuators come with short, Teflon-coated leads so you can make connections to your vacuum-chamber feedthrough. If, however, you are working with X-rays or other high-radiation applications, we offer versions
- Blocked Force: 22 N
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Supplier: Newport MKS
Description: All of our vacuum compatible and ultra-high vacuum compatible Picomotor actuators come with short, Teflon-coated leads so you can make connections to your vacuum-chamber feedthrough. If, however, you are working with X-rays or other high-radiation applications, we offer versions
- Blocked Force: 22 N
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Supplier: Newport MKS
Description: All of our vacuum compatible and ultra-high vacuum compatible Picomotor actuators come with short, Teflon-coated leads so you can make connections to your vacuum-chamber feedthrough. If, however, you are working with X-rays or other high-radiation applications, we offer versions
- Blocked Force: 22 N
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Supplier: PI (Physik Instrumente) L.P.
Description: Encapsulated PICMA®Stack piezo actuators with high reliability Operating voltage -20 to 150 V. Ceramic insulation, polymer-free. Insensitive to humidity. Excellent temperature stability. UHV-compatible to 10-9 hPa, no outgassing, high bakeout temperature. Ideal for
- Blocked Force: 1,200 N
- Maximum Operating Voltage: -20 to 150 volts
- Stiffness: 9 to 20 N/µm
- Resonance Frequency: 0.017 to 0.035 kHz
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Supplier: PI (Physik Instrumente) L.P.
Description: mechanic's ID chip and are read out automatically when the electronics are switched on. Long-term stable positioning without permanent power supply Once displaced, actuators with PIRest technology hold their position stable without permanent control voltage. Nanometer precision,
- Maximum Operating Voltage: 120 volts
- Stiffness: 170 to 1,000 N/µm
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Supplier: PI (Physik Instrumente) L.P.
Description: These tubular multilayer stack actuators (ring actuators) run on lower voltage and provide higher forces than conventional piezo tubes. They extend axially when a voltage is applied. They are manufactured from cofired multilayer elements. d-33 Effect Tubular Stack (Axial
- Maximum Displacement: 5.5 µm
- Blocked Force: 800 to 850 N
- Stiffness: 34 to 145 N/µm
- Resonance Frequency: 40 to 160 kHz
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Supplier: Steiner & Martins, Inc.
Description: signal input from DC up to high frequencies. Compact size, accurate positioning in nm, high-speed response and large blocking force. High energy conversion efficiency, low power consumption and no electromagnetic noise. Easy to be controlled by voltage. Dimensions(LxWxH):
- Actuator Configuration: Stack
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Supplier: Steiner & Martins, Inc.
Description: signal input from DC up to high frequencies. Compact size, accurate positioning in nm, high-speed response and large blocking force. High energy conversion efficiency, low power consumption and no electromagnetic noise. Easy to be controlled by voltage. Dimensions(LxWxH):
- Actuator Configuration: Stack
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Supplier: Steiner & Martins, Inc.
Description: signal input from DC up to high frequencies. Compact size, accurate positioning in nm, high-speed response and large blocking force. High energy conversion efficiency, low power consumption and no electromagnetic noise. Easy to be controlled by voltage. Dimensions(LxWxH):
- Actuator Configuration: Stack
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Supplier: Steiner & Martins, Inc.
Description: signal input from DC up to high frequencies. Compact size, accurate positioning in nm, high-speed response and large blocking force. High energy conversion efficiency, low power consumption and no electromagnetic noise. Easy to be controlled by voltage. Dimensions(LxWxH):
- Actuator Configuration: Stack
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Supplier: Piezosystem Jena, Inc.
Description: high speed positioner The nanoX400/400SG/400CAP one axis, low voltage, linear stage is a development within our ultra-fast nanoX line. It provides a long positioning and scanning range of up to 480 microns. The centrally located free aperture allows laser optical applications through
- Maximum Operating Voltage: -20 to 130 volts
- Stiffness: 0.4 N/µm
- Capacitance: 10,200 nF
- Length: 52 mm
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Supplier: Piezosystem Jena, Inc.
Description: high speed positioner The nanoX 200 one-axis, low voltage, linear stage is a development within our ultra-fast nanoX line. It provides a positioning and scanning range of up to 240 microns. The centrally located free aperture allows laser optical applications through the stage. This is
- Maximum Operating Voltage: -20 to 130 volts
- Stiffness: 1.1 N/µm
- Length: 52 mm
- Diameter or Height: 22 mm
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Supplier: Piezosystem Jena, Inc.
Description: universal stage inserts for microscopy application XY-motion up to 700 µm bi-directional actuating nanoX® design for high dynamic range central aperture 100x100 mm2 Application microscopy / lithography nanopositioning and scanning materials research wafer handling and mask alignment
- Maximum Operating Voltage: -20 to 130 volts
- Stiffness: 1.5 to 1.6 N/µm
- Capacitance: 3,000 nF
- Length: 185 mm
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Supplier: Kistler Group
Description: The MiniAmp Type 5030A... is a single channel, industrial charge amplifier, which converts the charge signal from piezo electric sensors into a proportional voltage signal. Compact size 2 measuring ranges 10:1 External control (PLC) of "Measure" and " range" (measuring range) Signal output
- Input Voltage: 2.4 to 30 volts
- Frequency Range: 0 to 10 kHz
- Number of Channels: 1
- Electrical Connector: BNC
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device for laboratory applications and fast startup. 24 V operating voltage, piezo voltage and other supply voltages are generated internally. Fields of application. Inexpensive control of PICMA (R) Stack or PICMA (R) Chip piezo actuators in OEM applications. Follow Us: Watch PI Videos on YouTube. Follow PI on X. Our most popular blog posts. Post by blog category. About PI. PI is a leading manufacturer of air bearing stages, piezoelectric solutions, precision motion control equipment, and hexapod... (read more)
Browse Piezoelectric Drivers and Piezoelectric Amplifiers Datasheets for PI (Physik Instrumente) L.P. -
Piezo Transducer Behavior. Calculate displacement from applied voltage. Estimate required voltage to achieve a desired displacement. Determine blocking force and force-displacement relationships. Calculate generated voltage and blocking force. Calculate mass based on geometry. 2)Evaluate Electrical Characteristics. Compute capacitance based on actuator geometry and material properties. 3)Analyze Resonance and Dynamics. Estimate thickness and transversal resonance anti-resonance frequencies. 4... (read more)
Browse Piezoelectric Actuators Datasheets for PI (Physik Instrumente) L.P. -
and vertically and are optimized for optical phase-shifting. Their high-stiffness mechanical design supports sub-nanometer steps with millisecond response times, enabling rapid and repeatable fringe shifting in demanding photonics setups. Features and Benefits. Piezo Z-Stage for Horizontally or Vertically Mounted Optics. 5 Variants with Clear Apertures from 53mm (2 ") to 311mm (12 "). Low Profile, from 28mm. Tripod Piezo Design Provides Stiff Platform and Z and Z-Tip-Tilt Motion. Open-loop, Analog Voltage... (read more)
Browse Piezoelectric Actuators Datasheets for PI (Physik Instrumente) L.P. -
manufacturing, and interferometry. Stick-Slip Drive Technology Background. Stick-slip inertia motors operate on a principle similar to the classic tablecloth trick, using piezoelectric actuators driven by a modified sawtooth voltage signal from dedicated control electronics. During the slow expansion phase, the actuator gradually moves a runner forward. When the actuator contracts rapidly -- within microseconds -- the runner 's inertia prevents it from following, resulting in net forward motion... (read more)
Browse Linear Slides and Linear Stages Datasheets for PI (Physik Instrumente) L.P. -
Using the Joystick Interface for Analog Signal Control of the E-873 Piezo Stick-Slip Motor Controller. The E-873 piezo stick-slip motor controller supports analog input, but it does not provide direct analog position control comparable to that of a classical piezo-stack nanopositioning system. In a piezo-stack-based stage, the applied control voltage is amplified with a fixed gain and directly drives actuator expansion, so voltage corresponds directly to target position. In contrast, the E-873... (read more)
Browse Datasheets for PI (Physik Instrumente) L.P.
Conduct Research Top
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Piezo Motors: Principle of Operation for Engineers
Voltage and Power Sources. An example of applications in this area is the electric cigarette lighter, where pressing a button causes a spring- loaded hammer to hit a piezoelectric crystal, thereby producing a sufficiently high voltage that electric current flows across a small spark gap, heating
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Transportation Industry In A "Buzz" Over Haptics
. Piezoelectric Actuators utilize a reverse "Piezoelectric effect" to generate a mechanical vibration from an applied voltage. The primary disadvantage of this vibration-inducing technology is the need for high voltages to generate a vibration that is satisfactory to register an alert. LRA's, however
More Information Top
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An 80-V integrated boost converter for piezoelectric actuators in smartphones
It also includes the resistor-string digital-to-analog converter and high voltage piezoelectric actuator driver (PZ driver).
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Novel Piezoelectric-Based Power Supply for Driving Piezoelectric Actuators Designed for Active Vibration Damping Applications
The work represents a completely novel approach to the possibilities of piezoelectric transformers for powering high voltage piezoelectric actuators .
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Simple millimeter-scale robot using Pb(Zr, Ti) piezoelectric thin film actuator on titanium substrate
(2012) Driving high voltage piezo- electric actuators in microrobotic applications.
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Piezoelectric Tool Actuator for Precision Turning of Turbine Shafts on Conventional CNC Lathes
Motion from the high voltage piezoelectric actuator is transmitted to the tool free of friction and backlash through the use of solid flexures.
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Low input voltage switching amplifiers for piezoelectric actuators
In this paper, we describe the development of a low input voltage amplifier for a high voltage piezoelectric actuator .
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Multilayer laminated piezoelectric bending actuators: design and manufacturing for optimum power density and efficiency
…R 2008 MEMS and Microsystems: Design, Manufacture, and Nanoscale Engineering 2nd edn 576 (Hoboken, NJ: Wiley) ISBN: 978-0-470-08301-7 [3] Karpelson M, Wei G-Y and Wood R J 2012 Driving high voltage piezoelectric actuators in microrobotic applications Sensors…
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An Ultracompact Dual-Stage Converter for Driving Electrostatic Actuators in Mobile Microrobots
[2] M. Karpelson, G. Wei, and R. J. Wood, “Driving high voltage piezoelec- tric actuators in microrobotic applications,” Sensors Actuators A: Phys., vol.
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Design and feedback control of a biologically-inspired miniature quadruped
[24] M. Karpelson, G. Wei, and R. Wood, “Driving high voltage piezoelec- tric actuators in microrobotic applications,” Sensors and Actuators A: Physical, vol.
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Small-Scale Robotics. From Nano-to-Millimeter-Sized Robotic Systems and Applications
Karpelson, M., Wei, G.Y., Wood, R.J.: Driving high voltage piezoelectric actuators in microrobotic applications.
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37.2: A New Refreshable Tactile Graphic Display Technology for the Blind and Visually Impaired
Generally, a high voltage piezoelectric actuator is attached to each pin in the display.
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