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IDT7140SA20L48G Datasheet(PDF) 11 Page - Integrated Device Technology

Part # IDT7140SA20L48G
Description  HIGH SPEED 1K X 8 DUAL-PORT STATIC SRAM
Download  19 Pages
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Manufacturer  IDT [Integrated Device Technology]
Direct Link  http://www.idt.com
Logo IDT - Integrated Device Technology

IDT7140SA20L48G Datasheet(HTML) 11 Page - Integrated Device Technology

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IDT7130SA/LA and IDT7140SA/LA
High-Speed 1K x 8 Dual-Port Static SRAM
Military, Industrial and Commercial Temperature Ranges
Timing Waveform of Write Cycle No. 2, (CE Controlled Timing)(1,5)
NOTES:
1. R/
W or CE must be HIGH during all address transitions.
2. A write occurs during the overlap (tEW or tWP) of
CE = VIL and R/W = VIL.
3. tWR is measured from the earlier of
CE or R/W going HIGH to the end of the write cycle.
4. During this period, the l/O pins are in the output state and input signals must not be applied.
5. If the
CE LOW transition occurs simultaneously with or after the R/W LOW transition, the outputs remain in the HIGH impedance state.
6. Timing depends on which enable signal (
CE or R/W) is asserted last.
7. This parameter is determined be device characterization, but is not production tested. Transition is measured 0mV from steady state with the Output Test Load
(Figure 2).
8. If
OE is LOW during a R/W controlled write cycle, the write pulse width must be the larger of tWP or (tWZ + tDW) to allow the I/O drivers to turn off data to be placed on the
bus for the required tDW. If
OE is HIGH during a R/W controlled write cycle, this requirement does not apply and the write pulse can be as short as the specified tWP.
Timing Waveform of Write Cycle No. 1, (R/W Controlled Timing)(1,5,8)
tWC
ADDRESS
OE
CE
R/
W
DATA OUT
DATA IN
tAS
(6)
tOW
tDW
tDH
tAW
tWP
(2)
tHZ
(7)
(4)
(4)
tWZ
(7)
tHZ
(7)
2689 drw 10
tWR
(3)
tWC
ADDRESS
CE
R/
W
DATA IN
tAS
(6)
tEW
(2)
tWR
(3)
tDW
tDH
tAW
2689 drw 11


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