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Moog synchro resolver
Moog synchro resolver





  1. #MOOG SYNCHRO RESOLVER GENERATOR#
  2. #MOOG SYNCHRO RESOLVER SERIAL#
  3. #MOOG SYNCHRO RESOLVER FREE#

#MOOG SYNCHRO RESOLVER SERIAL#

With the same conversion rate, the angle is standardized to an analog voltage value of 0 to 10V and exported via the analog output.Ī subset of the angle data is converted into an ASCII string and made available at the potential-free serial interface.Ī reduced data amount is depicted on the display with a refresh rate up 10/sec. it delivers the correct angle position as a digital word at all times for a constant angle speed of the signal source. The digital converter is a “tracking converter”, i.e. and directly outputted on a potential-free parallel port with a strobe signal. to 2500/sec.Īt a conversion rate of 2500/sec., a data word is read in by the converter every 400 μsec. Therefore, the conversion rate can be adjusted from 100/sec. There is a configurable conversion rate for the measurement devices with wich the data words are processed in a fixed timing code. Handbook of Small Electric Motors During the ten years since the appearance of the groundbreaking, bestselling first edition of The Electronics Handbook, the field has grown and changed tremendously.

#MOOG SYNCHRO RESOLVER FREE#

The data word is outputted without any further processing on a potential isolated parallel interface.Īlthough at any time a digital word can be read in by the converter. Access Free Synchro And Resolver Engineering Handbook Moog Inc Research and Development Technical Handbook Contains the proceedings of the Association. In addition, there is the option of looping an external differential synchro or resolver into the signal path in order to change the measured actual angle by constant value.Ī digital converter with 18 bit resolution, wich features an upstream passive synchro/resolver converter, converts the 3 signal voltages that are provided by the angle transmitter into a digital data word depending on the angle.

#MOOG SYNCHRO RESOLVER GENERATOR#

The exciting voltage for the angle transmitter can be provided by an internal generator or even looped in externally. We supply the following resolvers: Size 11 Digital Resolver: Model DRBB-11-AA-01AA, Rotary Variable Differential Transformers (RVDT) (AS-827 Series, AS-865-001, AS-887-001), Size 11 Single Speed Brushless Resolvers, Low-Cost Brushless Pancake Resolvers (Size 15, Size 21, Size 22) and Aerospace / Military Resolvers.The SWMG/RWMG records the angle position of a connected synchro or resolver, displays the angle with a resolution of 0.1° and makes the measured values available on analog and digital output channels.

  • Ideal for vertical integration with brushless motors and slip ring assemblies.
  • High reliability – long-life design no bearings or electronics.
  • Mounts directly to shaft and housing – no coupling devices needed.
  • Rugged design to meet demanding environments – no glass discs or optics to fail.
  • 400 – 5,000 Hz frequency range standard frequencies up to 20,000 Hz available.
  • 1, 2, 4, 8, 16, 32 and 36 speeds standard others available.
  • Some key features of aerospace/military resolvers are listed below: They contain no internal electronics or optics and are unaffected by electrical noise, heat, shock, and vibration. Motion feedback sensors can be used to provide velocity and position information for closed-loop electronic control, as well as brushless DC motor commutation. supplies quality resolvers/motion technology products for aerospace, military and commercial applications. Torque synchros include transmitters (CG), differentials (CD) and receivers (CR).Ĭontrol synchros include transmitters (CG), differentials (CD) control transformers (CT), resolvers (CS), linear transformers (LT) and the two-hybrid units: transolvers (CSD) and differential resolvers (CDS). Synchros can be classified into two overlapping groups: torque synchros and control synchros. A mechanical input such as a shaft rotation is converted to a unique set of output voltages, or a set of input voltages is used to turn a synchro rotor to the desired position. In function, the synchro is an electromechanical transducer. As a circuit element, the synchro is essentially a variable-coupling transformer the magnitude of the magnetic coupling between the primary and secondary, and hence the magnitude of the output voltage, varies according to the position of the rotatable element.







    Moog synchro resolver