DocumentCode :
1160381
Title :
The DSP32C: AT&Ts second generation floating point digital signal processor
Author :
Fuccio, Michael L. ; Gadenz, Renato N. ; Garen, Craig J. ; Huser, Joan M. ; Ng, Benjamin ; Pekarich, Steven P. ; Ulery, Kreg D.
Author_Institution :
AT&T Bell Lab., Holmdel, NJ, USA
Volume :
8
Issue :
6
fYear :
1988
Firstpage :
30
Lastpage :
48
Abstract :
The WEDSP32C high-performance, programmable digital signal processor supports 32-bit floating-point arithmetic and is upwardly compatible with its predecessor, the WEDSP32. Because it is implemented in 0.75- mu m (effective channel length) CMOS technology, the second-generation device achieves high functional density with low power consumption. The DSP32C offers the following features: 25-Mflop operation; 16-Mb/s serial-input and serial-output ports; a 160-bit, parallel I/O port for control and data transfer; interrupt facilities; single-instruction mu -law and A-law data conversions; single-instruction conversions between integers and floating-point data; a byte-addressable, on-chip memory that is extendable off chip; direct memory access to and from internal and external memory via parallel and serial I/O ports; 16 Mbytes of address space; and IEEE Std. 754 floating-point format conversion. The authors describe the DSP32C´s instruction set, architecture, and application development tools. The latter includes an assembler, a simulator, an optimizing C compiler, and special-purpose hardware.<>
Keywords :
digital arithmetic; digital signal processing chips; 16 Mbyte; 25 MFLOPS; 32 bit; A-law data conversions; AT&T; CMOS technology; DSP32C; IEEE Std. 754; WEDSP32C; application development tools; assembler; direct memory access; interrupt; optimizing C compiler; second generation floating point digital signal processor; simulator; single-instruction conversions; special-purpose hardware; CMOS technology; Computer applications; Digital signal processing chips; Digital signal processors; Floating-point arithmetic; Hardware; Optimizing compilers; Registers; Signal generators; Signal processing;
fLanguage :
English
Journal_Title :
Micro, IEEE
Publisher :
ieee
ISSN :
0272-1732
Type :
jour
DOI :
10.1109/40.16779
Filename :
16779
Link To Document :
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