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GD25LB128DSJS Datasheet(PDF) 47 Page - GigaDevice Semiconductor (Beijing) Inc. |
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GD25LB128DSJS Datasheet(HTML) 47 Page - GigaDevice Semiconductor (Beijing) Inc. |
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47 / 75 page ![]() 1.8V Uniform Sector Dual and Quad Serial Flash GD25LB128D 47 7.28. Read Unique ID (4BH) The Read Unique ID command accesses a factory-set read-only 128bit number that is unique to each device. The Unique ID can be used in conjunction with user software methods to help prevent copying or cloning of a system. The Read Unique ID command sequence: CS# goes low sending Read Unique ID command 3-Byte Address (000000H) Dummy Byte128bit Unique ID Out CS# goes high. Figure30. Read Unique ID Sequence Diagram Command 0 1 2 3 4 5 6 7 4BH CS# SCLK SI SO High-Z 8 9 10 28 29 30 31 3 2 1 0 23 22 21 24-bit address (000000H) MSB 34 35 36 37 33 6 5 4 3 2 1 0 38 39 Data Out1 32 42 43 44 45 41 46 47 40 7 6 5 4 3 2 1 0 7 6 5 7 Data Out2 CS# SCLK SI SO MSB Dummy Byte 7.29. Erase Security Registers (44H) The GD25LB128D provides three 1024-byte Security Registers which can be erased and programmed individually. These registers may be used by the system manufacturers to store security and other important information separately from the main memory array. The Erase Security Registers command is similar to Sector/Block Erase command. A Write Enable (WREN) command must previously have been executed to set the Write Enable Latch (WEL) bit. The Erase Security Registers command sequence: CS# goes low sending Erase Security Registers command 3-byte address on SI CS# goes high. The command sequence is shown in Figure31. CS# must be driven high after the eighth bit of the last address byte has been latched in; otherwise the Erase Security Registers command is not executed. As soon as CS# is driven high, the self-timed Erase Security Registers cycle (whose duration is tSE) is initiated. While the Erase Security Registers cycle is in progress, the Status Register may be read to check the value of the W rite in Progress (WIP) bit. The Write in Progress (WIP) bit is 1 during the self-timed Erase Security Registers cycle, and is 0 when it is completed. At some unspecified time before the cycle is completed, the Write Enable Latch (WEL) bit is reset. The Security Registers Lock Bit (LB3-1) in the Status Register can be used to OTP protect the security registers. Once the LB bit is set to 1, the Security Registers will be permanently locked; the Erase Security Registers command will be ignored. Address A23-16 A15-12 A11-10 A9-0 Security Register #1 00H 0 0 0 1 0 0 Don ’t care Security Register #2 00H 0 0 1 0 0 0 Don ’t care Security Register #3 00H 0 0 1 1 0 0 Don ’t care |
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