Title :
A microprogrammable real-time video signal processor (VSP) LSI
Author :
Yamashina, Masakazu ; Enomoto, Tadayoshi ; Kunio, Takemitsu ; Tamitani, Ichiro ; Harasaki, Hidenobu ; Nishitani, Takao ; Satoh, Masao ; Kikuchi, Koichi
fDate :
12/1/1987 12:00:00 AM
Abstract :
A microprogrammable real-time video signal processor (VSP) LSI has been developed for constructing a parallel video signal processing system. The VSP LSI employs a flexible multistage pipelined architecture and can handle such sophisticated image signal processing as high-speed edge detection and motion compensation. It contains many operational function units such as an arithmetic logic unit and with absolute value calculation capability, a minimum/maximum value detector, a two-port SRAM, RAM address pointer and clocked bus lines. The VSP LSI has been designed using two different kinds of automatic layout programs. The chip, which was fabricated with a 2.5-μm CMOS and double-layer metallization technology, has an area of 9.91×9.50 mm/SUP 2/ and contains about 48000 MOSFETs. It operates at a clock frequency of 14.3 MHz with a single 5-V power supply and typically consumes 240 mW. An experimental system, using a single VSP LSI chip, has been constructed in order to demonstrate various application capabilities, such as interframe difference operations, high-speed edge detection and motion compensation.
Keywords :
CMOS integrated circuits; Computerised picture processing; Large scale integration; Microprocessor chips; Microprogramming; Parallel processing; Pipeline processing; Real-time systems; Signal processing equipment; Video signals; computerised picture processing; large scale integration; microprocessor chips; microprogramming; parallel processing; pipeline processing; real-time systems; signal processing equipment; video signals; Arithmetic; CMOS logic circuits; Clocks; Detectors; Image edge detection; Large scale integration; Motion compensation; Real time systems; Signal processing; Video signal processing;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.1987.1052862