Low-Voltage I Cs Enable Precise Re-Synchronization and Fan-Out/Distribution Across Multiple Applications
SANTA CLARA, Calif.—(BUSINESS WIRE)—June 28, 2005— Alliance Semiconductor Corporation (Nasdaq: ALSC), a leading worldwide provider of analog and mixed signal products, high-performance memory products, connectivity and networking solutions for the communications, computing, embedded, industrial and consumer markets, today announced the expansion of its Analog and Mixed Signal product portfolio with the availability of its newest families of high-performance Zero Delay Buffers (ZDB's) and Non-Zero Delay (NZDB) Buffers. The ASM5000 family of PLL-based ZDB's and the ASM2000 family of non-PLL-based NZDB's are designed to address the precise, high accuracy and high-performance (greater than 250MHz) clocking needs of various data communications, networking, telecommunications, industrial and many consumer systems.Fast edge rates (less than 1nS), low propagation delays (50-500pS) high accuracy (duty cycle stability & jitter) along with very high frequency support (greater than 250MHz), characterize both families of these precision buffers. The devices are designed to support one or two 50 ohm transmission lines.
This expansion includes many of the standard high performance (250MHz+) buffers currently in volume demand. The table below details the 3.3 / 2.5V Low Voltage NZDB's devices in this initial release. The second table details the Low Voltage ZDB's. Alliance Semiconductor expects to continue the product expansion as the line continues its evolution into high performance, very low voltage, high accuracy applications.
Class ALSC Part Number PKG Options DESCRIPTION ---------------------------------------------------------------------- NZDB ASM29940L 32 TQFP CMOS/LVPECL_in 18 32 LQFP OUT - TO 250MHz ---------------------------------------------------------------------- NZDB ASM29942C 32 TQFP CMOS_in 18 OUT - TO 32 LQFP 250MHz ---------------------------------------------------------------------- NZDB ASM29942P 32 TQFP LVPECL_in 18 OUT - 32 LQFP TO 250MHz ---------------------------------------------------------------------- NZDB ASM299109 32 TQFP CMOS/LVPECL_in 18 32 LQFP OUT - TO 250MHz W/split rail ---------------------------------------------------------------------- NZDB ASM29946 32 TQFP CMOS_in 10 OUT - TO 32 LQFP 250MHz W/split rail ---------------------------------------------------------------------- NZDB ASM29947 32 TQFP LVTTL_in 9 OUT - TO 32 LQFP 275 MHz ---------------------------------------------------------------------- NZDB ASM29948 32 TQFP CMOS/LVPECL_in 12 32 LQFP OUT - TO 275MHz ---------------------------------------------------------------------- NZDB ASM299456 32 TQFP LVPECL_in 10 OUT - 32 LQFP TO 250MHz W/split rail ----------------------------------------------------------------------
These precision Non PLL based products support either 2.5 or 3.3V power supplies and provide support from DC to well in excess of specification of 250MHz, with up to 18 outputs for precise fanout and distribution of the clock signal with very low prop delay and output skews. Many of these products (ZDBs and NZDBs) support a "split-rail" design that provides for either 3.3V or 2.5V LVCMOS outputs for conversion / translation of either a LVCMOS or LVPECL input to LVCMOS, and thus allows for use across multiple platforms. Single and multiple output bank configurations are supported as well.
Class ALSC Part PKG Options DESCRIPTION Number ---------------------------------------------------------------------- ZDB ASM59772A 52 TQFP CMOS_IN : 12 output 200MHz ZDB w/split rail ---------------------------------------------------------------------- ZDB ASM59773A 52 TQFP CMOS/LVPECL_in : 12 output 200MHz ZDB w/split rail ---------------------------------------------------------------------- ZDB ASM59774A 52 TQFP CMOS _IN : 14 output 8.3 - 125MHz ZDB w/split rail ---------------------------------------------------------------------- ZDB ASM59775A 52 TQFP CMOS _IN : 14 output 8.3 - 200MHz ZDB w/split rail ----------------------------------------------------------------------
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