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EN25B32T-75FI Datasheet(PDF) 11 Page - Eon Silicon Solution Inc.

Part # EN25B32T-75FI
Description  32 Mbit Serial Flash Memory with Boot and Parameter Sectors
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Manufacturer  EON [Eon Silicon Solution Inc.]
Direct Link  http://www.essi.com.tw
Logo EON - Eon Silicon Solution Inc.

EN25B32T-75FI Datasheet(HTML) 11 Page - Eon Silicon Solution Inc.

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This Data Sheet may be revised by subsequent versions
©2004 Eon Silicon Solution, Inc., www.essi.com.tw
or modifications due to changes in technical specifications.
11
EN25B32
Rev. C, Issue Date: 2007/06/21
Table 3a. Protected Area Sizes- Bottom Boot Sector Organization
Status Register
Content
Memory Content
BP2
Bit
BP1
Bit
BP0
Bit
Protect Sectors
Addresses
Density(KB)
Portion
1
1
1
All
000000h-3FFFFFh
4096KB
All
1
1
0
Sector 0 to 35
000000h-1FFFFFh
2048KB
Lower 1/2
1
0
1
Sector 0 to 4
000000h-00FFFFh
64KB
Lower 1/64
1
0
0
Sector 0 to 3
000000h-007FFFh
32KB
Lower 1/128
0
1
1
Sector 0 to 2
000000h-003FFFh
16KB
Lower 1/256
0
1
0
Sector 0 to 1
000000h-001FFFh
8KB
Lower 1/512
0
0
1
Sector 0
000000h-000FFFh
4KB
Lower 1/1024
0
0
0
None
None
None
None
Table 3b. Protected Area Sizes- Top Boot Sector Organization
Status Register
Content
Memory Content
BP2
Bit
BP1
Bit
BP0
Bit
Protect Sectors
Addresses
Density(KB)
Portion
0
0
0
None
None
None
None
0
0
1
Sector 67
3FF000h-3FFFFFh
4KB
Upper 1/1024
0
1
0
Sector 66 to 67
3FE000h-3FFFFFh
8KB
Upper 1/512
0
1
1
Sector 65 to 67
3FC000h-3FFFFFh
16KB
Upper 1/256
1
0
0
Sector 64 to 67
3F8000h-3FFFFFh
32KB
Upper 1/128
1
0
1
Sector 63 to 67
3F0000h-3FFFFFh
64KB
Upper 1/64
1
1
0
Sector 32 to 67
200000h-3FFFFFh
2048KB
Upper 1/2
1
1
1
All
000000h-3FFFFFh
4096KB
All
Hold Function
The Hold (HOLD) signal is used to pause any serial communications with the device without resetting the
clocking sequence. However, taking this signal Low does not terminate any Write Status Register,
Program or Erase cycle that is currently in progress.
To enter the Hold condition, the device must be selected, with Chip Select (CS#) Low. The Hold condition
starts on the falling edge of the Hold (HOLD) signal, provided that this coincides with Serial Clock (CLK)
being Low (as shown in Figure 4.).
The Hold condition ends on the rising edge of the Hold (HOLD) signal, provided that this coincides with
Serial Clock (CLK) being Low.
If the falling edge does not coincide with Serial Clock (CLK) being Low, the Hold condition starts after
Serial Clock (CLK) next goes Low. Similarly, if the rising edge does not coincide with Serial Clock (CLK)
being Low, the Hold condition ends after Serial Clock (CLK) next goes Low. (This is shown in Figure 4.).
During the Hold condition, the Serial Data Output (DO) is high impedance, and Serial Data Input (DI) and
Serial Clock (CLK) are Don’t Care.
Normally, the device is kept selected, with Chip Select (CS#) driven Low, for the whole duration of the
Hold condition. This is to ensure that the state of the internal logic remains unchanged from the moment
of entering the Hold condition.
If Chip Select (CS#) goes High while the device is in the Hold condition, this has the effect of resetting the
internal logic of the device. To restart communication with the device, it is necessary to drive Hold (HOLD)
High, and then to drive Chip Select (CS#) Low. This prevents the device from going back to the Hold
condition.


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