home | brochure | contacts    

   
 
Partners
Acroamatics
Heim Data Systems
SCI-Sanmina
Teletronics


 

 
 

 
 
 

 Acroamatics
   
 
  Acroamatics telemetry systems provide the power and flexibility to handle all types of data and signal processing tasks, including real time decommutation of packetized or CCSDS PCM data. The company specializes in creating solutions to standard telemetry applications as well as working with the customer to meet special requirements.

The unique architecture of Acroamatics' TDP family of products readily accommodates dynamic format changes (both content and structural), and variable. The following decommutation hardware is supported by the ILIAD software application.

Model 1601P 20Mhz PCM Bit Synchronizer

The card contains four selectable inputs, and programmable filtering for optimum data recovery. Sophisticated phase-lock-loop (PLL) circuitry synchronizes a clock to the incoming signal to extract digital data from the PCM input. This circuitry produces NRZ-L Data and Clock outputs for use by your PCM format decommutator or similar equipment. The programmability of both the PLL and the input filters allows the optimization of the bit synchronizer performance in high-noise environments. The BSYN is tunable from 8bps to 20Mbps (NRZ codes) and provides encoded PCM output for analog tape recording. The on-card processor provides status of input amplitude, offset, and synchronization to the host interface. The 1601P can host an Acroamatics 472P Mezzanine Bit Synchronizer, providing two bit synchronizers in a single PCI slot.

 

Model 1602P Single-Board PCM Data System
Stored program PCM frame synchronizer and data decommutator, capable of real-time decommutation of the most complex computer generated high rate PCM formats at rates to 32 MHz. Provides six sub-frame decommutators and two memories of 1 MB each, for instructions and data. Allows for the addition of two mezzanine cards, the 472 PCM Bit Synchronizer module and the 470 Time Code Generator/Translator including a PAM/PCM Format Simulator.

 

Model 1605 Data Distribution and Programmable Data Stream Processor

A PCI-bus companion board used with the 1602P PCM Frame Synchronizer. Allows merging of PCM streams from up to 8 1602P Frame Syncs plus IRIG time, HOTLink input, and external messages. It distributes ID-tagged data, provides real-time in-line processing of stream data using the on-board SHARC™ DSP and allows archived data to be reconstructed into the original data stream. 

 

Model 470P Time Code plus Format Simulator Mezzanine

Generates and translates IRIG A, B, and G time codes. Generates all IRIG standard and randomized PCM codes. Generates complex formats with dynamic data and sub-frames.


 

 

Model 472P Bit Sync Mezzanine
Features tunable data rates from 8 Hz to 20MHz for NRZ codes and 8Hz to 10MHz for all others. The 472 processes all IRIG standard and randomized codes and has a bit error performance within 1dB of theoretical.


 

 

Model 482P-8 Digital to Analog Converter Mezzanine
Mezzanine card for the PCI-bus 1605P. Provides a total of 8 channels of 12-bit D-to-A output. A 1605P card when equipped with a 482P-8 mezzanine requires only one standard PCI bus slot and chassis I/O opening.


 

 

Model 482P-32 Digital to Analog Converter Mezzanine
Mezzanine card for the PCI-bus 1605P. Provides a total of 32 channels of 12-bit D-to-A output. A 1605P card when equipped with a 482P-32 mezzanine an additional two chassis I/O openings (three total) are required for connectors.
 

 

Model 1602P Single-Board PCM Data System
Stored program PCM frame synchronizer and data decommutator, capable of real-time decommutation of the most complex computer generated high rate PCM formats at rates to 32 MHz. Provides six sub-frame decommutators and two memories of 1 MB each, for instructions and data. Allows for the addition of two mezzanine cards, the 472 PCM Bit Synchronizer module and the 470 Time Code Generator/Translator including a PAM/PCM Format Simulator.

Contact EMC   |   Legal   |   Privacy

© 2010 EMC Corporation. All rights reserved.