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M25PE80-VMP6TP 参数 Datasheet PDF下载

M25PE80-VMP6TP图片预览
型号: M25PE80-VMP6TP
PDF下载: 下载PDF文件 查看货源
内容描述: 8兆位,页擦除串行闪存与字节变性, 75兆赫的SPI总线,标准引脚 [8-Mbit, page-erasable serial flash memory with byte alterability, 75 MHz SPI bus, standard pinout]
分类和应用: 闪存存储内存集成电路时钟
文件页数/大小: 66 页 / 1387 K
品牌: NUMONYX [ NUMONYX B.V ]
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DC and AC parameters  
M25PE80  
Table 22. AC characteristics  
Test conditions specified in Table 17 and Table 18  
Symbol  
Alt.  
Parameter  
Min  
Typ  
Max  
Unit  
Clock frequency for the following  
instructions: FAST_READ, RDLR, PW,  
PP, WRLR, PE, SE, DP, RDP, WREN,  
WRDI, RDSR  
fC  
fC  
D.C.  
50  
20  
MHz  
fR  
Clock frequency for read instructions  
Clock high time  
D.C.  
9
MHz  
ns  
(1)  
tCH  
tCLH  
tCLL  
(1)  
tCL  
Clock low time  
9
ns  
Clock slew rate(2) (peak to peak)  
S active setup time (relative to C)  
S not active hold time (relative to C)  
Data in setup time  
0.1  
5
V/ns  
ns  
tSLCH  
tCHSL  
tDVCH  
tCHDX  
tCHSH  
tSHCH  
tSHSL  
tCSS  
5
ns  
tDSU  
tDH  
2
ns  
Data in hold time  
5
ns  
S active hold time (relative to C)  
S not active setup time (relative to C)  
S deselect time  
5
ns  
5
ns  
tCSH  
tDIS  
tV  
100  
ns  
(2)  
tSHQZ  
Output disable time  
8
8
ns  
tCLQV  
tCLQX  
tTHSL  
tSHTL  
Clock low to output valid  
Output hold time  
ns  
tHO  
0
ns  
Top sector lock setup time  
Top sector lock hold time  
S to deep power-down  
50  
ns  
100  
ns  
(2)  
tDP  
3
µs  
µs  
(2)  
tRDP  
S high to standby mode  
Page write cycle time (256 bytes)  
30  
11  
(3)  
tPW  
25  
5
ms  
ms  
10.1 +  
n * 0.9/256  
Page write cycle time (n bytes)  
Page program cycle time (256 bytes)  
Page program cycle time (n bytes)  
1.35  
(3)  
tPP  
0.45 +  
n * 0.9/256  
tPE  
tSE  
tBE  
Page erase cycle time  
Sector erase cycle time  
Bulk erase cycle time  
10  
1
20  
5
ms  
s
10  
60  
s
1. tCH + tCL must be greater than or equal to 1/ fC.  
2. Value guaranteed by characterization, not 100% tested in production.  
3. When using PP and PW instructions to update consecutive bytes, optimized timings are obtained with one  
sequence including all the bytes versus several sequences of only a few bytes (1 n 256).  
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