Showing results: 61 - 74 of 74 items found.
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Data Device Corporation
Versatile, rugged, and time saving Synchro/Resolver conversion and simulation PMC boards featuring multiple high accuracy, independent channels and easy programmability, to provide a highly accurate and convenient method to test and simulate positioning systems in lab and embedded environments. The SB-3642 conversion and SB-3644 simulation boards’ versatility and ruggedness enable them to be used first in the lab, and then be readily designed into embedded applications, just by the switch of a carrier card.
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TEGAM Inc.
Ratio Standards by Tegam including ratio transformers, synchro-resolver bridge, synchro-resolver standard
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VX Instruments GmbH
With so-called synchro/resolver cards, rotation angle sensors that work according to the synchro/resolver principle can be measured. Depending on the angle of rotation, these generate a sine and cosine signal, in order to determine the position and direction of rotation.
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VX3701 -
VX Instruments GmbH
With so-called synchro/resolver cards, rotation angle sensors that work according to the synchro/resolver principle can be measured. Depending on the angle of rotation, these generate a sine and cosine signal, in order to determine the position and direction of rotation.
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75DS2 -
North Atlantic Industries
NAI’s 75DS2 is a Synchro/Resolver Simulation Board with four independent, isolated channels. These channels can incorporate up to four Digital-to-Synchro/Resolver Simulation Converters with 1.5, 2.2, or 3 VA drive capability, or either two or four Digital-to-LVDT/RVDT Simulation Converters. One of the outputs on each channel can be grounded without affecting performance.
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73DS2 -
North Atlantic Industries
NAI’s 73DS2 is a PC104-compatible Synchro/Resolver Simulation Board with three isolated channels. These channels can incorporate up to three Digital-to-Synchro/Resolver Converters with 1.2 VA drive capability in a stack-through module. With galvanic isolation, one of the outputs can be grounded without affecting performance.
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North Atlantic Industries
NAI offers a variety of multi-channel Synchro/Resolver Boosters that accept Synchro/Resolver inputs, and they deliver isolated outputs capable of driving passive and active loads such as Control Transformers or Torque Receivers. These amplifiers can be used stand-alone or in conjunction with Digital-to-Synchro/Resolver Converters.
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73SD4 -
North Atlantic Industries
NAI’s 73SD4 is a DSP-based, PC104-compliant Synchro/Resolver Measurement Board with six separate, isolated channels. These channels can incorporate up to six Synchro/Resolver-to-Digital Tracking Converters in a stack-through module. Each channel also produces differential incremental encoder (A & B) outputs (with programmable resolution) and a zero-degree marker pulse. Commutation outputs are available for 4-, 6-, or 8-pole brushless DC motors that eliminate the need for Hall Effect sensors, thereby reducing both processor time and bus traffic.
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North Atlantic Industries
NAI designs and manufactures a wide variety of self-contained, remotely mountable, Signal Converter Modules:*Synchro/Resolver Booster AmplifiersS*ynchro/Resolver Converters*ARINC 429-to-Synchro Converters*Second Harmonic Fuel Flow ConvertersTheir field-proven designs and carefully selected components assure highly reliable performance. These military grade modules are specifically designed for rugged defense and industrial applications.
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DSK -
North Atlantic Industries
Synchros are transformer-type voltage/current transducers that convert a shaft or other rotating device's angular position and/or velocity to a multi-wire AC electrical signal. Both deliver signals proportional to the Sine and/or Cosine of the shaft angle. A Digital-to-Synchro simulator is used to convert digital angle/velocity commands to corresponding Synchro/Resolver AC signals.
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65CS4 -
North Atlantic Industries
NAI’s 65CS4 is a Synchro/Resolver Simulation & Measurement Instrument on a single-slot VXI board. The board incorporates up to four Synchro/Resolver measurement channels and up to four instrument-grade Synchro/Resolver simulation channels, or up to eight embedded grade Synchro/Resolver simulation channels that can be used independently and/or simultaneously.
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North Atlantic Industries
Since the development of the first Phase Angle Voltmeter (PAV) over 50 years ago, North Atlantic Industries has been the industry leader in AC Measurement Instrumentation. Our name has become synonymous with innovation and quality. Our products, specifically designed for defense, industrial, and commercial applications, deliver industry-leading accuracy, repeatability, and reliability.NAI’s units of today are actually multifunction Digital Analyzing Voltmeters that combine a complete Voltmeter, a Phase Angle Voltmeter, and a Waveform Signal Analyzer in a single microprocessor-based instrument. With these versatile and flexible instruments, a wide range of tests can be performed, either manually using the front panel controls or automatically using the IEEE-488 bus. Designed for the Synchro/Resolver and LVDT/RVDT marketplace, NAI’s Voltmeters are used in a variety of applications.
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5300 -
North Atlantic Industries
NAI’s 5300 Synchro/Resolver Standard & Simulator is a laboratory-grade, programmable instrument. This model can be used as a true Synchro/Resolver standard for calibrating and testing Automatic Test Equipment (ATE) for Calibration/Metrology Labs, and for Engineering Design and Production Test environments. It can also be used to measure Angle Position Indicators (API) and Synchro-to-Digital converters for static or dynamic characteristics. This model also may use an external reference waveform.
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DSx -
North Atlantic Industries
Synchros are transformer-type voltage/current transducers that convert a shaft or other rotating device's angular position and/or velocity to a multi-wire AC electrical signal. Both deliver signals proportional to the Sine and/or Cosine of the shaft angle. A Digital-to-Synchro simulator is used to convert digital angle/velocity commands to corresponding Synchro/Resolver AC signals.