Features: True Dual-Ported memory cells which allow simultaneous reads of the same memory location High-speed access-- Military: 20/25/35/55/70ns (max.)-Industrial: 55ns (max.)-Commercial: 15/17/20/25/35/55ns (max.)Low-power operation IDT7006SActive: 750mW (typ.)Standby: 5mW (typ.)-IDT7006LActive:...
IDT7006L: Features: True Dual-Ported memory cells which allow simultaneous reads of the same memory location High-speed access-- Military: 20/25/35/55/70ns (max.)-Industrial: 55ns (max.)-Commercial: 15/17/20/...
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Symbol |
Rating |
Com'l & Ind'l
|
Unit |
Military |
VTERM |
Terminal Voltage with respect to GND |
0.5 to +4.5 |
V |
-0.5 to +7.0 |
TSTG |
Temperature Under Bias |
55 to +125 |
°C |
-65 to +135 |
TSTG |
Storage Temperature |
50 to +50
|
mA |
-65 to +150 |
IOUT |
DC Output Current |
50
|
mA |
50 |
The IDT7006L is a high-speed 16K x 8 Dual-Port Static RAM. The IDT7006L is designed to be used as a stand-alone 128K-bit Dual-Port RAM or as a combination MASTER/SLAVE Dual-Port RAM for 16-bit-or-more word systems. Using the IDT MASTER/SLAVE Dual-Port RAM approach in 16-bit or wider memory system applications results in full-speed, errorfree operation without the need for additional discrete logic. This device provides two independent ports with separate control, address, and I/O pins that permit independent, asynchronous access for reads or writes to any location in memory. An automatic power down feature controlled by CE permits the on-chip circuitry of each port to enter a very low standby power mode.
Fabricated using IDTís CMOS high-performance technology, these devices typically operate on only 750mW of power. Low-power (L) versions offer battery backup data retention capability with typical power consumption of 500µW from a 2V battery. The IDT7006L is packaged in a ceramic 68-pin PGA, an 68-pin quad flatpack, a PLCC, and a 64-pin thin quad flatpack, TQFP. Military grade product is manufactured in compliance with the latest revision of MIL-PRF- 38535 QML, Class B, making it ideally suited to military temperature applications demanding the highest level of performance and reliability.