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SST26VF032B-104I/SM 데이터시트(PDF) 76 Page - Microchip Technology

부품명 SST26VF032B-104I/SM
상세설명  2.5V/3.0V 32-Mbit Serial Quad I/O™ (SQI™) Flash Memory
PDF  82 Pages
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제조업체  MICROCHIP [Microchip Technology]
홈페이지  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

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SST26VF032B/SST26VF032BA
DS20005218K-page 76
 2013-2022 Microchip Technology Inc. and its subsidiaries
Classifying these sector/block sizes via the Sector
Type derived from JEDEC Flash Parameter Table:
SFDP address locations 4EH, 50H, and 52H are 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:
• 8-Kbyte Block (Type 2) is calculated by 2n. n is a
byte.
• 32-Kbyte Block (Type 3) is calculated by 2n. n is a
byte.
• 64-Kbyte 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
64-Kbyte Block Section and will also be used for the
Block Protection Register Bit Location formula.
m will have a constant value for specific densities and is
defined as:
•8 Mbit = 4
•16 Mbit = 5
• 32 Mbit = 6
• 64 Mbit = 7
•128 Mbit = 8
Block Protect Register Start/End Bits are mapped in the
SFDP by using the formula (2m + 1) + (c). m is a
constant value that represents the different densities
from 8 Mbit to 128 Mbit (used also in the formula calcu-
lating number of 64-Kbyte Blocks above). The values
that are going to be placed in the Block Protection Bit
Start/End field table are the constant value adder (c)
in the formula and are represented in two’s compliment
except when the value is 00H. If the value is 00H, this
location is the 0 bit location. If the value is other than 0,
then this is a constant value adder (c) that will be used
in the formula. The most significant (left most) bit indi-
cates the sign of the integer; it is sometimes called the
sign bit. If the sign bit is zero, then the number is
greater than or equal to zero, or positive. If the sign bit
is one, then the number is less than zero, or negative.
See Table 11-4 for an example of this formula.
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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