參數(shù)資料
型號(hào): 70V25S15PFG
廠商: INTEGRATED DEVICE TECHNOLOGY INC
元件分類: SRAM
英文描述: 8K X 16 DUAL-PORT SRAM, 15 ns, PQFP100
封裝: 14 X 14 MM, 1.40 MM HEIGHT, GREEN, PLASTIC, TQFP-100
文件頁(yè)數(shù): 14/25頁(yè)
文件大?。?/td> 211K
代理商: 70V25S15PFG
6.42
21
IDT70V35/34S/L (IDT70V25/24S/L)
High-Speed 3.3V 8/4K x 18 (8/4K x 16) Dual-Port Static RAM
Industrial and Commercial Temperature Ranges
Truth Table III — Interrupt Flag(1)
NOTES:
1. Assumes
BUSYL = BUSYR = VIH.
2. If
BUSYL = VIL, then no change.
3. If
BUSYR = VIL, then no change.
4. A12 is a NC for IDT70V34 and for IDT70V24, therefore Interrupt Addresses are FFF and FFE.
Left Port
Right Port
Function
R/
WL
CEL
OEL
A12L-A0L
(4)
INTL
R/
WR
CER
OER
A12R-A0R
(4)
INTR
LL
X
1FFF(4)
XXX
X
L(2)
Set Right
INTR Flag
XXX
X
L
1FFF(4)
H(3)
Reset Right
INTR Flag
XXX
X
L(3)
LL
X
1FFE(4)
XSet Left
INTL Flag
XL
L
1FFE(4)
H(2)
X
Reset Left
INTL Flag
5624 tbl 15
Truth Table IV — Address BUSY
Arbitration
NOTES:
1. Pins
BUSYL and BUSYR are both outputs when the part is configured as a master. Both are inputs when configured as a slave. BUSY outputs on the
IDT70V35/34 (IDT70V25/24) are push pull, not open drain outputs. On slaves the
BUSY input internally inhibits writes.
2. L if the inputs to the opposite port were stable prior to the address and enable inputs of this port. VIH if the inputs to the opposite port became stable after the
address and enable inputs of this port. If tAPS is not met, either
BUSYL or BUSYR = LOW will result. BUSYL and BUSYR outputs cannot be LOW simultaneously.
3. Writes to the left port are internally ignored when
BUSYL outputs are driving LOW regardless of actual logic level on the pin. Writes to the right port are internally
ignored when
BUSYR outputs are driving LOW regardless of actual logic level on the pin.
4. A12 is a NC for IDT70V34 and for IDT70V24. Address comparison will be for A0 - A11.
Inputs
Outputs
Function
CEL
CER
A12L-A0L
(4)
A12R-A0R
BUSYL(1)
BUSYR(1)
X
NO MATCH
HHNormal
H
X
MATCH
H
Normal
X
H
MATCH
H
Normal
LL
MATCH
Note(2)
Write Inhibit(3)
5624 tbl 16
Truth Table V — Example of Semaphore Procurement Sequence(1,2,3)
NOTES:
1. This table denotes a sequence of events for only one of the eight semaphores on the IDT70V35/34 (IDT70V25/24).
2. There are eight semaphore flags written to via I/O0 and read from all I/O's (I/O0-I/O17 for IDT70V35/34) and (I/O0-I/O15 for IDT70V25/24). These eight semaphores
are addressed by A0-A2.
3.
CE = VIH, SEM = VIL to access the semaphores. Refer to the Semaphore Read/Write Control Truth Tables.
Functions
D0 - D17 Left(2)
D0 - D17 Right(2)
Status
No Action
1
Semaphore free
Left Port Writes "0" to Semaphore
0
1
Left port has semaphore token
Right Port Writes "0" to Semaphore
0
1
No change. Right side has no write access to semaphore
Left Port Writes "1" to Semaphore
1
0
Right port obtains semaphore token
Left Port Writes "0" to Semaphore
1
0
No change. Left port has no write access to semaphore
Right Port Writes "1" to Semaphore
0
1
Left port obtains semaphore token
Left Port Writes "1" to Semaphore
1
Semaphore free
Right Port Writes "0" to Semaphore
1
0
Right port has semaphore token
Right Port Writes "1" to Semaphore
1
Semaphore free
Left Port Writes "0" to Semaphore
0
1
Left port has semaphore token
Left Port Writes "1" to Semaphore
1
Semaphore free
5624 tbl 17
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