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HAL855 数据表(PDF) 43 Page - Micronas |
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HAL855 数据表(HTML) 43 Page - Micronas |
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43 / 102 page ![]() APPLICATION NOTE HAL8xy, HAL100x Programmer Board Micronas Sept. 19, 2013; APN000046_03EN 43 5.3.3. Telegram Codes Sync Bit Each telegram starts with the Sync bit. This logical “0” pulse defines the exact timing for tp0. Command Bits (COM) The Command code contains 3 bits and is a binary number. Table 5–4 shows the avail- able commands and the corresponding codes for the HAL805, HAL815, HAL817 and HAL1000 and Table 5-5 for the HAL82x, HAL83x, HAL880 and HAL1002 registers. Command Parity Bit (CP) This parity bit is “1” if the number of zeros within the 3 Command bits is uneven. The parity bit is “0”, if the number of zeros is even. Address Bits (ADR) The Address code contains 4 bits and is a binary number. Table 5–5 and Table 5-6 shows the available addresses for the HAL805, HAL815, HAL817 and HAL1000 regis- ters and Table 5-5 for the HAL82x, HAL83x, HAL880 and HAL1002 registers. Address Parity Bit (AP) This parity bit is “1” if the number of zeros within the 4 address bits is uneven. The par- ity bit is “0” if the number of zeros is even. Data Bits (DAT) The 14 Data bits contain the register information. The registers use a different number formats for the Data bits. These formats are explained in Section 5.3.4 In the Write command, the last bits are valid. If, for example, the TC register (6 bits) is written, only the last 6 bits are valid. In the Read command, the first bits are valid. If, for example, the TC register (6 bits) is read, only the first 6 bits are valid. Data Parity Bit (DP) This parity bit is “1” if the number of zeros within the binary number is even. The parity bit is “0” if the number of zeros is uneven. Acknowledge After each telegram, the output answers with the Acknowledge signal. This logical “0” pulse defines the exact timing for tpOUT. Table 5–4: Available commands Command Code Explanation READ 2 read a register WRITE 3 write a register PROM 4 program all nonvolatile registers (except the lock bits) ERASE 5 erase all nonvolatile registers (except the lock bits) Please note: For HAL82x, HAL83x, HAL880 and HAL1002 the LOCK bit is set by using the WRITE command followed by a PROM and ERASE (store) sequence. LOCK 7 lock the whole device and switch permanently to the analog-mode (only for HAL805, HAL815, HAL817 and HAL1000) |
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