DocumentCode :
803788
Title :
Programmable 2D linear filter for video applications
Author :
Kamp, Winfried ; Künemund, Ronald ; Söldner, Heinz ; Hofer, Reinhold
Author_Institution :
Siemens AG, Munich, West Germany
Volume :
25
Issue :
3
fYear :
1990
fDate :
6/1/1990 12:00:00 AM
Firstpage :
735
Lastpage :
740
Abstract :
A fully integrated 2-D linear filter including a line buffer for a 7×7 kernel is presented. To run the filter in real time at video clock frequencies, an array of pipelined carry-save adders was used as a very fast arithmetic unit. The filter chip contains 292451 transistors on a silicon area of 135 mm2. The maximum clock frequency under worst-case conditions for technology and temperature was simulated to be 20 MHz. The main blocks are designed as independent parameterizable modules. The line buffer and the arithmetic unit are available as macros in a standard cell library for semicustom design. With these macros a semicustom chip for image enhancement in a X-ray system was produced. This chip works with a system frequency of 13 MHz. The line buffer module is used in another full-custom image processing chip-a two-dimensional rank order filter with a kernel size of also 7×7. This chip contains more than 300000 transistors on a silicon area of 103 mm2. In this case the module containing the 1-D FIR (finite impulse response) filters is replaced by additional pixel delays and a sorter module. Simulations have shown that the chip could work with clock frequencies up to 20 MHz
Keywords :
VLSI; computerised picture processing; digital filters; digital signal processing chips; pipeline processing; video signals; 1-D FIR; 2D linear filter; X-ray system; clock frequency; full-custom image processing chip; image enhancement; independent parameterizable modules; kernel size; line buffer; pipelined carry-save adders; pixel delays; semicustom design; sorter module; standard cell library; two-dimensional rank order filter; very fast arithmetic unit; video applications; video clock frequencies; worst-case conditions; Arithmetic; Clocks; Finite impulse response filter; Frequency; Image enhancement; Kernel; Libraries; Nonlinear filters; Silicon; Temperature;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/4.102668
Filename :
102668
Link To Document :
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