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M25PX64-SOVME6F 参数 Datasheet PDF下载

M25PX64-SOVME6F图片预览
型号: M25PX64-SOVME6F
PDF下载: 下载PDF文件 查看货源
内容描述: 64兆位,双I / O , 4 KB的界别分组擦除,串行闪存与75 MHz的SPI总线接口 [64-Mbit, dual I/O, 4-Kbyte subsector erase, serial flash memory with 75 MHz SPI bus interface]
分类和应用: 闪存
文件页数/大小: 66 页 / 1330 K
品牌: NUMONYX [ NUMONYX B.V ]
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Instructions  
M25PX64  
6.3  
Read identification (RDID)  
The read identification (RDID) instruction allows to read the device identification data:  
Manufacturer identification (1 byte)  
Device identification (2 bytes)  
A unique ID code (UID) (17 bytes, of which 16 available upon customer request).  
The manufacturer identification is assigned by JEDEC, and has the value 20h for Numonyx.  
The device identification is assigned by the device manufacturer, and indicates the memory  
type in the first byte (71h), and the memory capacity of the device in the second byte (17h).  
The UID contains the length of the following data in the first byte (set to 10h) and 16 bytes of  
the optional customized factory data (CFD) content. The CFD bytes are read-only and can  
be programmed with customers data upon their demand. If the customers do not make  
requests, the devices are shipped with all the CFD bytes programmed to zero (00h).  
Any read identification (RDID) instruction while an erase or program cycle is in progress, is  
not decoded, and has no effect on the cycle that is in progress.  
The read identification (RDID) instruction should not be issued while the device is in deep  
power-down mode.  
The device is first selected by driving Chip Select (S) Low. Then, the 8-bit instruction code  
for the instruction is shifted in. After this, the 24-bit device identification, stored in the  
memory, the 8-bit CFD length followed by 16 bytes of CFD content will be shifted out on  
serial data output (DQ1). Each bit is shifted out during the falling edge of Serial Clock (C).  
The instruction sequence is shown in Figure 10.  
The read identification (RDID) instruction is terminated by driving Chip Select (S) High at  
any time during data output.  
When Chip Select (S) is driven High, the device is put in the standby power mode. Once in  
the standby power mode, the device waits to be selected, so that it can receive, decode and  
execute instructions.  
Table 6.  
Read identification (RDID) data-out sequence  
Device identification  
UID  
Manufacturer identification  
Memory type  
71h  
Memory capacity  
CFD length  
CFD content  
20h  
17h  
10h  
16 bytes  
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