參數(shù)資料
型號(hào): IDT72V261LA15TF8
廠商: IDT, Integrated Device Technology Inc
文件頁(yè)數(shù): 22/27頁(yè)
文件大?。?/td> 0K
描述: IC FIFO SS 8192X18 15NS 64QFP
標(biāo)準(zhǔn)包裝: 1,250
系列: 72V
功能: 同步
存儲(chǔ)容量: 144K(8K x 18)
數(shù)據(jù)速率: 67MHz
訪問(wèn)時(shí)間: 15ns
電源電壓: 3 V ~ 3.6 V
工作溫度: 0°C ~ 70°C
安裝類型: 表面貼裝
封裝/外殼: 64-LQFP
供應(yīng)商設(shè)備封裝: 64-TQFP(10x10)
包裝: 帶卷 (TR)
其它名稱: 72V261LA15TF8
COMMERCIAL AND INDUSTRIAL
TEMPERATURE RANGES
IDT72V261LA/72V271LA
3.3 VOLT CMOS SuperSync FIFO 16,384 x 9 and 32,768 x 9
4
JANUARY 30, 2009
Symbol
Name
I/O
Description
D0–D8
Data Inputs
I
Data inputs for a 9-bit bus.
MRS
Master Reset
I
MRS initializes the read and write pointers to zero and sets the output register to all zeroes.
During Master Reset, the FIFO is configured for either FWFT or IDT Standard mode, one of
two programmable flag default settings, and serial or parallel programming of the offset settings.
PRS
Partial Reset
I
PRS initializes the read and write pointers to zero and sets the output register to all zeroes.
During Partial Reset, the existing mode (IDT or FWFT), programming method (serial or parallel),
and programmable flag settings are all retained.
RT
Retransmit
I
RT asserted on the rising edge of RCLK initializes the READ pointer to zero, sets the EF flag to
LOW (
OR to HIGH in FWFT mode) temporarily and does not disturb the write pointer, programming
method, existing timing mode or programmable flag settings.
RT is useful to reread data from the first
physical location of the FIFO.
FWFT/SI
First Word Fall
I
During Master Reset, selects First Word Fall Through or IDT Standard mode. After Master Reset,
Through/Serial In
this pin functions as a serial input for loading offset registers
WCLK
Write Clock
I
When enabled by
WEN, the rising edge of WCLK writes data into the FIFO and offsets into the
programmable registers for parallel programming, and when enabled by
SEN, the rising edge of
WCLK writes one bit of data into the programmable register for serial programming.
WEN
Write Enable
I
WEN enables WCLK for writing data into the FIFO memory and offset registers.
RCLK
Read Clock
I
When enabled by
REN, the rising edge of RCLK reads data from the FIFO memory and offsets
from the programmable registers.
REN
Read Enable
I
REN enables RCLK for reading data from the FIFO memory and offset registers.
OE
Output Enable
I
OE controls the output impedance of Qn.
SEN
Serial Enable
I
SEN enables serial loading of programmable flag offsets.
LD
Load
I
During Master Reset,
LD selects one of two partial flag default offsets (127 or 1,023) and determines
the flag offset programming method, serial or parallel. After Master Reset, this pin enables writing to
and reading from the offset registers.
DC
Don't Care
I
This pin must be tied to either VCC or GND and must not toggle after Master Reset.
FF/IR
Full Flag/
O
In the IDT Standard mode, the
FF function is selected. FF indicates whether or not the FIFO
Input Ready
memory is full. In the FWFT mode, the
IR function is selected. IR indicates whether or not there
is space available for writing to the FIFO memory.
EF/OR
Empty Flag/
O
In the IDT Standard mode, the
EF function is selected. EF indicates whether or not the FIFO
Output Ready
memory is empty. In FWFT mode, the
OR function is selected. OR indicates whether or not
there is valid data available at the outputs.
PAF
Programmable
O
PAF goes LOW if the number of words in the FIFO memory is more than total word capacity of
Almost-Full Flag
the FIFO minus the full offset value m, which is stored in the Full Offset register. There are two
possible default values for m: 127 or 1,023.
PAE
Programmable
O
PAE goes LOW if the number of words in the FIFO memory is less than offset n, which is stored
Almost-Empty Flag
in the Empty Offset register. There are two possible default values for n: 127 or 1,023. Other values
for n can be programmed into the device.
HF
Half-Full Flag
O
HF indicates whether the FIFO memory is more or less than half-full.
Q0–Q8
Data Outputs
O
Data outputs for a 9-bus
VCC
Power
+3.3 Volt power supply pins.
GND
Ground
Ground pins.
PIN DESCRIPTION
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