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SST26WF016BA Datasheet(PDF) 71 Page - Microchip Technology |
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SST26WF016BA Datasheet(HTML) 71 Page - Microchip Technology |
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71 / 75 page ![]() 2014 Microchip Technology Inc. DS20005013D-page 71 SST26WF016B/SST26WF016BA (2m + 1) + (c). See “Memory Configuration”. From the initial location, there will be a bit location for every increment by 1 until it reaches the Block Protec- tion Register Bit End Location (BPEL). This number range from BPSL to BPEL will correspond to, and be equal to, the number of sectors/blocks on this Major Section. 11.1.4 BLOCK PROTECTION REGISTER BIT END LOCATION (BPEL) Block Protection Register Bit End Location designates the end bit location in the Block Protection Register bit where the last sector/block of this Major Section ends. The value in this field is a constant value adder (c) for a given formula or equation, (2m + 1) + (c). See “Mem- ory Configuration” 11.1.5 MEMORY CONFIGURATION For the SST26WF016B/016BA family, the memory configuration is setup with different contiguous block sizes from bottom to the top of the memory. For exam- ple, starting from bottom of memory it has four 8KByte blocks, one 32KByte block, x number of 64KByte blocks depending on memory size, then one 32KByte block, and four 8KByte block on the top of memory. See Table 11-3. Classifying these sector/block sizes via the Sector Type derived from JEDEC Flash Parameter Table: SFDP address locations 4EH, 50H, and 52H is as fol- lows: • 8 KByte Blocks are classified as Sector Type 2 (@4EH of SFDP) • 32 KByte Blocks are classified as Sector Type 3 (@50H of SFDP) • 64 KByte Blocks are classified as Sector Type 4 (@52H of SFDP) For the Number of Sectors associated with the contig- uous sectors/blocks, a formula is used to determine the number of sectors/blocks of these Sector Types: • 8KByte Block (Type 2) is calculated by 2n. n is a byte. • 32KByte Block (Type 3) is calculated by 2n. n is a byte. • 64KByte Block (Type 4) is calculated by (2m - 2). m can either be a 4, 5, 6, 7 or 8 depending on the memory size. This m field is going to be used for the 64KByte Block Section and will also be used for the Block Protection Register Bit Location for- mula. m will have a constant value for specific densities and is defined as: TABLE 11-3: MEMORY BLOCK DIAGRAM REPRESENTATION 8 KByte Bottom Block (from 000000H) Section 1: Sector Type Number Section 1: Number of Sectors Section 1: Block-Protection Register Bit Start Location Section 1: Block-Protection Register Bit End Location 32 KByte Section 2: Sector Type Number Section 2: Number of Sectors Section 2: Block-Protection Register Bit Start Location Section 2: Block-Protection Register Bit End Location 64 KByte Section 3: Sector Type Number Section 3: Number of Sectors Section 3: Block-Protection Register Bit Start Location Section 3: Block-Protection Register Bit End Location 32 KByte Section 4: Sector Type Number Section 4: Number of Sectors Section 4: Block-Protection Register Bit Start Location Section 4: Block-Protection Register Bit End Location 8 KByte (Top Block) Section 5: Sector Type Number Section 5: Number of Sectors Section 5: Block-Protection Register Bit Start Location Section 5: Block-Protection Register Bit End Location |
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