參數(shù)資料
型號(hào): HB52F169EN
廠商: Hitachi,Ltd.
英文描述: 64 MB Unbuffered SDRAM DIMM(64 MB 未緩沖同步DRAM DIMM)
中文描述: 64 MB的無(wú)緩沖SDRAM的內(nèi)存(64 MB的未緩沖同步的DRAM內(nèi)存)
文件頁(yè)數(shù): 32/71頁(yè)
文件大小: 906K
代理商: HB52F169EN
HB52F88EM-75F, HB52F89EM-75F, HB52F168EN-75F, HB52F169EN-
32
Pin Functions
CK0 to CK3 (input pin):
CK is the master clock input to this pin. The other input signals are referred at
CK rising edge.
S0 to S3 (input pin):
When S is Low, the command input cycle becomes valid. When S is High, all inputs
are ignored. However, internal operations (bank active, burst operations, etc.) are held.
RE, CE and W (input pins):
Although these pin names are the same as those of conventional DRAMs, they
function in a different way. These pins define operation commands (read, write, etc.) depending on the com-
bination of their voltage levels. For details, refer to the command operation section.
A0 to A11 (input pins):
Row address (AX0 to AX11) is determined by A0 to A11 level at the bank active
command cycle CK rising edge. Column address (AY0 to AY8) is determined by A0 to A8 level at the read
or write command cycle CK rising edge. And this column address becomes burst access start address. A10
defines the precharge mode. When A10 = High at the precharge command cycle, all banks are precharged.
But when A10 = Low at the precharge command cycle, only the bank that is selected by A12/A13 (BA) is
precharged.
A12/A13 (input pin):
A12/A13 are bank select signal (BA). The memory array is divided into bank 0, bank
1, bank 2 and bank 3. If A12 is Low and A13 is Low, bank 0 is selected. If A12 is High and A13 is Low,
bank 1 is selected. If A12 is Low and A13 is High, bank 2 is selected. If A12 is High and A13 is High, bank
3 is selected.
CKE0, CKE1 (input pin):
This pin determines whether or not the next CK is valid. If CKE is High, the
next CK rising edge is valid. If CKE is Low, the next CK rising edge is invalid. This pin is used for power-
down and clock suspend modes.
DQMB0 to DQMB7 (input pins):
Read operation: If DQMB is High, the output buffer becomes High-Z.
If the DQMB is Low, the output buffer becomes Low-Z.
Write operation: If DQMB is High, the previous data is held (the new data is not written). If DQMB is Low,
the data is written.
DQ0 to DQ63 (input/output pins):
Data is input to and output from these pins.
CB0 to CB7 (input/output pins):
Data is input to and output from these pins.
V
CC
(power supply pins):
3.3 V is applied.
V
SS
(power supply pins):
Ground is connected.
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