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TSL26721 데이터시트(PDF) 33 Page - OSRAM GmbH |
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TSL26721 데이터시트(HTML) 33 Page - OSRAM GmbH |
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33 / 47 page ![]() Page 32 ams Datasheet Document Feedback [v1-01] 2019-Nov-20 TSL2672 − Principles O f Operation Proximity Data Registers (0x18 - 0x19) Proximity data is stored as a 16-bit value. When the lower byte is read, the upper byte is latched into a shadow register. The shadow register ensures that both bytes are the result of the same proximity cycle, even if additional proximity cycles occur between the lower byte and upper byte register readings. The simplest way to read both bytes is to perform a two-byte I²C read operation using the auto-increment protocol, which is set in the Command register TYPE field. Figure 39: Proximity Data Registers Proximity Offset Register (0x1E) The 8-bit proximity offset register provides compensation for proximity offsets caused by device variations, optical crosstalk, and other environmental factors. Proximity offset is a sign-magnitude value where the sign bit, bit 7, determines if the offset is negative (bit 7 = 0) or positive (bit 7 = 1). At power up, the register is set to 0x00. The magnitude of the offset compensation depends on the proximity gain (PGAIN), proximity LED drive strength (PDRIVE), and the number of proximity pulses (PPULSE). Because a number of environmental factors contribute to proximity offset, this register is best suited for use in an adaptive closed-loop control system. See available ams application notes for proximity offset register application information. Figure 40: Proximity Offset Register Register Address Bits Description PDATAL 0x18 7:0 Proximity data low byte PDATAH 0x19 7:0 Proximity data high byte 76 5 4 3 2 1 0 SIGN MAGNITUDE Field Bit Description SIGN 7 Proximity Offset Sign. The offset sign shifts the proximity data negative when equal to 0 and positive when equal to 1. MAGNITUDE 6:0 Proximity Offset Magnitude. The offset magnitude shifts the proximity data positive or negative, depending on the proximity offset sign. The actual amount of the shift depends on the proximity gain (PGAIN), proximity LED drive strength (PDRIVE), and the number of proximity pulses (PPULSE). |
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