COMMERCIAL AND INDUSTRIAL
TEMPERATURE RANGES
IDT72275/72285
CMOS SuperSync FIFO™ 32,768 x 18 and 65,536 x 18
16
Figure 8. Read Cycle, Empty Flag and First Data Word Latency Timing (IDT Standard Mode)
NOTES:
1. tSKEW3 is the minimum time between a rising WCLK edge and a rising RCLK edge to guarantee that EF will go HIGH (after one RCLK cycle plus tREF). If the time between
the rising edge of WCLK and the rising edge of RCLK is less than tSKEW3, then EF deassertion may be delayed one extra RCLK cycle.
2. LD = HIGH
NOTES:
1. tSKEW1 is the minimum time between a rising RCLK edge and a rising WCLK edge to guarantee that FF will go high (after one WCLK cycle plus tWFF). If the time
between the rising edge of the RCLK and the rising edge of the WCLK is less than tSKEW1, then the FF deassertion may be delayed one extra WCLK cycle.
2. LD = HIGH, OE = LOW, EF = HIGH
Figure 7. Write Cycle and Full Flag Timing (IDT Standard Mode)
D
0
- D
n
WEN
RCLK
FF
REN
t
ENH
t
ENH
Q
0
- Q
n
DATA READ NEXT DATA READDATA IN OUTPUT REGISTER
t
SKEW1
(1)
4674 drw10
WCLK
1
2
1
2
t
DS
t
WFF
t
WFF
t
WFF
t
A
t
ENS
t
ENS
t
SKEW1
(1)
t
DS
t
A
D
X
t
DH
t
CLKH
D
X
+1
t
WFF
t
DH
t
CLK
t
CLKL
NO WRITE
NO WRITE
RCLK
REN
4674 drw 11
EF
t
CLKH
t
CLKL
t
ENH
t
REF
t
A
t
OLZ
t
OE
Q
0
- Q
n
OE
WCLK
(1)
t
SKEW3
WEN
D
0
- D
n
t
ENS
t
ENS
t
ENH
t
DS
t
DHS
D
0
1
2
t
OLZ
LAST WORD
D
0
D
1
D
1
t
ENS
t
ENH
t
DS
t
DH
t
OHZ
LAST WORD
t
REF
t
ENH
t
ENS
t
A
t
A
t
ENS
t
ENH
t
CLK
t
REF
NO OPERATION
NO OPERATION
17
COMMERCIAL AND INDUSTRIAL
TEMPERATURE RANGES
IDT72275/72285
CMOS SuperSync FIFO™ 32,768 x 18 and 65,536 x 18
Figure 9. Write Timing (First Word Fall Through Mode)
NOTES:
1. t
SKEW3 is the minimum time between a rising WCLK edge and a rising RCLK edge to guarantee that OR will go LOW after two RCLK cycles plus tREF. If the time between the rising edge of WCLK and the rising
edge of RCLK is less than t
SKEW3, then OR assertion may be delayed one extra RCLK cycle.
2. t
SKEW2 is the minimum time between a rising WCLK edge and a rising RCLK edge to guarantee that PAE will go HIGH after one RCLK cycle plus tPAE. If the time between the rising edge of WCLK and the rising
edge of RCLK is less than tS
KEW2, then the PAE deassertion may be delayed one extra RCLK cycle.
3. LD = HIGH, OE = LOW
4. n = PAE offset, m = PAF offset and D = maximum FIFO depth.
5. D = 32,769 for IDT72275 and 65,537 for IDT72285.
W
1
W
2
W
4
W
[n +2]
W
[D-m-1]
W
[D-m-2]
W
[D-1]
W
D
W
[n+3]
W
[n+4]
W
[D-m]
W
[D-m+1]
WCLK
WEN
D
0
- D
17
RCLK
t
DH
t
DS
t
SKEW3
(1)
REN
Q
0
- Q
17
PAF
HF
PAE
IR
t
DS
t
DS
t
DS
t
SKEW2
t
A
t
REF
OR
t
HF
t
PAF
t
WFF
W
[D-m+2]
W
1
t
ENH
4674 drw12
DATA IN OUTPUT REGISTER
(2)
W
3
1
2
3
1
D-1
2
+1
][
W
D-1
+2
][
W
2
D-1
+3
][
W
2
1
2
t
PAE
t
ENS
COMMERCIAL AND INDUSTRIAL
TEMPERATURE RANGES
IDT72275/72285
CMOS SuperSync FIFO™ 32,768 x 18 and 65,536 x 18
18
Figure 10. Read Timing (First Word Fall Through Mode)
NOTES:
1. t
SKEW1 is the minimum time between a rising RCLK edge and a rising WCLK edge to guarantee that IR will go LOW after one WCLK cycle plus tWFF. If the time between the rising edge of RCLK and the rising
edge of WCLK is less than t
SKEW1, then the IR assertion may be delayed one extra WCLK cycle.
2. t
SKEW2 is the minimum time between a rising RCLK edge and a rising WCLK edge to guarantee that PAF will go HIGH after one WCLK cycle plus tPAF. If the time between the rising edge of RCLK and the rising
edge of WCLK is less than t
SKEW2, then the PAF deassertion may be delayed one extra WCLK cycle.
3. LD = HIGH
4. n = PAE Offset, m = PAF offset and D = maximum FIFO depth.
5. D = 32,769 for IDT72275 and 65,537 for IDT72285.
WCLK
12
WEN
D
0
- D
17
RCLK
t
ENS
REN
Q
0
- Q
17
PAF
HF
PAE
IR
OR
W
1
W
1
W
2
W
3
W
m+2
W
[m+3]
t
OHZ
t
SKEW1
t
ENH
t
DS
t
DH
t
OE
t
A
t
A
t
A
t
PAF
t
WFF
t
WFF
t
ENS
OE
t
SKEW2
W
D
4674 drw 13
t
PAE
W
[D-n]
W
[D-n-1]
t
A
t
A
t
HF
t
REF
W
[D-1]
W
D
t
A
W
[D-n+1]
W
[m+4]
W
[D-n+2]
(1)
(2)
t
ENS
D-1
][
W
D-1
][
W

72275L10TFG

Mfr. #:
Manufacturer:
IDT
Description:
FIFO IDT
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
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