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Lattice Expands Programmable Solutions into Portable Market with Industry's Lowest Power CPLD Family- Power consumption only 20% of current low power CPLDs, ideal for battery-based products HILLSBORO, OR -- January 20, 2003 - Lattice Semiconductor Corporation (NASDAQ: LSCC), the inventor of in-system programmable (ISPTM) logic products, today announced the immediate availability of the first member of its 1.8-volt ispMACH 4000Z® CPLD family that sets a new standard for the industry's lowest static power consumption. The ispMACH 4032Z device is the first of three initial ispMACH 4000Z devices which span logic capacities from 32 to 128 macrocells. These breakthrough devices provide extremely low static current consumption (20 microamps worst case for a 32 macrocell device) and cost effective logic implementation demanded by handheld and portable applications. By reducing static power consumption to only 20% of previous devices, the new family dramatically expands the application scope of programmable logic in the portable and handheld arenas and provides new programmable solutions within the $6.9 Billion portable consumer semiconductor market as well as other power-conscious segments. These ultra-low power features are also coupled with high-speed operation: the ispMACH 4032Z device provides 3.5ns pin-to-pin delay (tPD), 3.0ns clock-to-output delay (tCO), 2.2ns set-up time (tS), and 265MHz operating frequencies (fMAX).
Traditionally, requirements for low standby power and low cost have limited the use of PLDs in handheld and portable equipment. "The ispMACH 4000Z combines the industry's lowest static power with an extremely cost effective solution," said Stan Kopec, Lattice vice president of corporate marketing. "It is suitable for a wide variety of handheld, portable, and consumer products. At only one-fifth the power consumption of current low-power CPLDs, it will dramatically expand the applications that programmable logic can address within these markets." The ispMACH 4000Z is targeted for applications including cell phones and peripherals, paging devices, GPS positioning equipment, PDAs, digital still camera's, digital video camera's, personal audio equipment, portable medical equipment, automotive telematics and radio, and industrial instrumentation.
Industry's Lowest Static Power Consumption / Fastest Performance
Power Supply and I/O Standard Support
All ispMACH 4000Z devices are Boundary Scan Testable and in-system programmable through an IEEE 1532-compliant JTAG boundary scan (IEEE 1149.1) interface.
Design Tools
Price and Availability
About Lattice Semiconductor
Lattice products are sold worldwide through an extensive network of independent sales representatives and distributors, primarily to OEM customers in the fields of communications, computing, computer peripherals, instrumentation, industrial controls and military systems. Company headquarters are located at 5555 NE Moore Court, Hillsboro, Oregon 97124 USA; Telephone 503-268- 8000, FAX 503-268-8037. For more information on Lattice Semiconductor Corporation, access our World Wide Web site at http://www.latticesemi.com.
Statements in this news release looking forward in time are made pursuant to the safe harbor provisions of the Private Securities Litigation Reform Act of 1995. Investors are cautioned that forward-looking statements involve risks and uncertainties including market acceptance and demand for our new products, our dependencies on our silicon wafer suppliers, the impact of competitive products and pricing, technological and product development risks and other risk factors detailed in the Company's Securities and Exchange Commission filings. Actual results may differ materially from forward-looking statements.
Lattice Semiconductor Corporation, L (& design), Lattice (& design), in-system programmable, ispLEVER, SuperFAST, ispMACH, E 2 CMOS, ISP and specific product designations are either registered trademarks or trademarks of Lattice Semiconductor Corporation or its subsidiaries in the United States and/or other countries.
GENERAL NOTICE: Other product names used in this publication are for identification purposes only and may be trademarks of their respective holders.
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