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ADE7816 数据表(PDF) 36 Page - Analog Devices |
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ADE7816 数据表(HTML) 36 Page - Analog Devices |
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36 / 48 page ![]() ADE7816 Data Sheet Rev. 0 | Page 36 of 48 REGISTERS REGISTER PROTECTION To protect the integrity of the data stored in the data memory (located at Address 0x4380 to Address 0x43BE), a write protection mechanism is available. By default, the protection is disabled, and registers that are located between Address 0x4380 and Address 0x43BE can be written without restriction. When the protection is enabled, no writes to these registers are allowed. Registers can always be read, without restriction, independent of the write protection state. To enable the protection, write 0xAD to an internal 8-bit register that is located at Address 0xE7FE, followed by a write of 0x80 to an internal 8-bit register located at Address 0xE7E3. It is recommended that the write protection be enabled before starting the DSP. If any register requires changing after this time, disable the protection, change the value, and then reenable the protection. There is no need to stop the DSP to change these registers. To disable the protection, write 0xAD to an internal 8-bit register that is located at Address 0xE7FE, followed by a write of 0x00 to an internal 8-bit register that is located at Address 0xE7E3. REGISTER FORMAT The ADE7816 includes 8-, 16-, and 32-bit, signed and unsigned registers. All signed registers are in twos complement format. Some of the internal measurements are 24 bits long and have been extended to 32 bits prior to communication. This extension is accomplished in three different ways: sign extending (SE), zero padding (ZP), or zero padded and sign extended (ZPSE). When sign extending is used, the sign bit (Bit 23) of the twos complement signed number is duplicated in the uppermost byte prior to communication. Zero padding is achieved by writing 0s into the upper most byte prior to transmission. This format is used for unsigned numbers only. Zero padded and sign extended formats are shown in Figure 47 and involve padding the most significant bits with 0s and sign extending Bits[27:24]. 31 28 27 24 23 0 24-BIT NUMBER 0000 BITS[27:24] ARE EQUAL TO BIT 23 BIT 23 IS A SIGN BIT Figure 47. ZPSE Communication Format The communication format of each register is specified in the Register Maps section (see Table 12 through Table 15). |
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