参数资料
型号: W7NCF08GH10ISABG
厂商: WHITE ELECTRONIC DESIGNS CORP
元件分类: PROM
英文描述: 512M X 16 FLASH 3.3V PROM CARD, 150 ns, UUC
封装: CARD
文件页数: 11/13页
文件大小: 172K
代理商: W7NCF08GH10ISABG
March 2007
Rev. 10
W7NCFxxx-H Series
7
White Electronic Designs Corporation (602) 437-1520 www.whiteedc.com
White Electronic Designs
Signal Description
Signal Name
Dir.
Pin
Description
A10-A0
(PC Card Memory Mode)
I
8, 10, 11, 12, 14, 15,
16, 17, 18, 19, 20
These address lines along with the -REG signal are used to select the following: The I/O
port address registers within the CompactFlash Storage Card or CF+ Card, the memory
mapped port address registers within the CompactFlash Storage Card or CF+ Card, a byte
in the card's information structure and its conguration control and status registers.
A10-A0
(PC Card I/O Mode)
This signal is the same as the PC Card Memory Mode signal.
A2 - A0
(True IDE Mode)
18, 19, 20
In True IDE Mode, only A[2:0] are used to select the one of eight registers in the Task File,
the remaining address lines should be grounded by the host.
BVD1
(PC Card Memory Mode)
I/O
46
This signal is asserted high, as BVD1 is not supported.
-STSCHG
(PC Card I/O Mde)
Status Changed
This signal is asserted low to alert the host to changes in the READY and Write Protect
states , while the I/O interface is congured. Its use is controlled by the Card Cong and
Status Register.
-PDIAG
(True IDE Mode)
In the True IDE Mode, this input / output is the Pass Diagnostic signal in the Master / Slave
handshake protocol.
BVD2
(PC Card Memory Mode)
I/O
45
This signal is asserted high, as BVD2 is not supported.
-SPKR
(PC Card I/O Mode)
This line is the Binary Audio out put from the card. If the Card does not support the Binary
Audio function, this line should be held negated.
-DASP
(True IDE Mode)
In the True IDE Mode, this input/output is the Disk Active/Slave Present signal in the Master/
Slave handshake protocol.
-CD1, -CD2
(PC Card Memory Mode)
O
26, 25
These Card Detect pins are connected to ground on the CompactFlash Storage Card or
CF+ Card. They are used by the host to determine that the CompactFlash Storage Card or
CF+ Card is fully inserted into its socket.
-CD1, CD2
(PC Card I/O Mode)
This signal is the same for all modes.
-CD1, CD2
(True IDE Mode)
This signal is the same for all modes.
-CE1, -CE2
(PC Card Memory Mode)
Card Enable
I
7, 32
These input signals are used both to select the card and to indicate to the card whether
a byte or a word operation is being performed. -CE2 always accesses the odd byte of the
word. -CE1 accesses the even byte or the Odd byte of the word depending on A0 and -CE2.
A multiplexing scheme based on A0, -CE1, -CE2 allows 8 bit hosts to access all data on
D0-D7.
-CE1, -CE2
(PC Card I/O Mode)
Card Enable
This signal is the same as the PC Card Memory Mode signal.
-CS0, CS1
(True IDE Mode)
In the True IDE Mode, -CS0 is the chip select for the task le registers while -CS1 is used
to select the Alternate Status Register and the Device Control Register. While –DMACK is
asserted, -CS0 and –CS1 shall be held negated and the width of the transfers shall be 16
bits.
-CSEL
(PC Card Memory Mode)
I39
This signal is not used for this mode, but should be connected by the host to PC Card A25
or grounded by the host.
-CSEL
(PC Card I/O Mode)
This signal is not used for this mode, but should be connected by the host to PC Card A25
or grounded by the host.
-CSEL
(True IDE Mode)
This internally pulled up signal is used to congure this device as a Master or a Slave when
congured in the True IDE Mode. When this pin is grounded, this device is congured as a
Master. When the pin is open, this device is congured as a Slave.
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