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AS73211 数据表(PDF) 53 Page - OSRAM GmbH |
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AS73211 数据表(HTML) 53 Page - OSRAM GmbH |
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53 / 66 page ![]() Document Feedback AS73211 Register Description Datasheet • PUBLIC DS000556 • v3-01 • 2018-Feb-07 65 │ 52 Figure 52: Register OPTREG – Address Bh OPTREG NAME VALUE [b] N bit 7 to 1 - 0111001 (1) Reserved bit 0 INIT_IDX 0 Defining the index address is only possible via write sequence and not affected by I²C STOP condition, which is necessary, if the I²C master does not support the I²C Repeated START condition. 1 (2) Each I²C STOP condition sets the internal register address to the default value. After writing an index address, it is possible to change the data direction for reading using I²C Repeated START condition. (1) Default value after power-on reset and software reset, but different, not relevant values after changing CREG1:GAIN or CREG3:CCLK. The recommended write value is 0000000b in case of OPTREG:INIT_IDX should be changed. (2) Default value after power-on reset and software reset. 8.8 Output Register Bank All output result registers are 16-bit registers. The registers read access is only possible if state Measurement is activated. One exception offers register OSR, which is writable too. In that case one byte is assigned to address 0h (see also chapter “Operational State Register – OSR”). But the reading access of address 0h in Measurement state results in a first byte for OSR information and a second byte for STATUS information. Figure 53: Output Result Register Bank ADDRESS (1) [hex] ACCESS (2) NAME NUMBER OF BITS DESCRIPTION 0 rw OSR 8 (1) Operational State Register ro STATUS 8 (1) Status Register 1 ro TEMP 16 (2) Temperature Measurement Result (0h + 12bits for the value) 2 ro MRES1 16 (2) Measurement Result X-Channel 3 ro MRES2 16 (2) Measurement Result Y-Channel 4 ro MRES3 16 (2) Measurement Result Z-Channel 5 ro OUTCONVL 16 (2) Time reference, result of conversion time measurement (least significant byte and middle byte) 6 ro OUTCONVH 16 (2) Time reference, result of conversion time measurement (most significant byte and one empty byte with 00h) (1) Reading access of address 0h in measurement state results in a first byte for OSR information and a second byte for STATUS information. (2) Least Significant Byte comes first. |
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