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TMD3702VC 数据表(PDF) 14 Page - OSRAM GmbH |
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TMD3702VC 数据表(HTML) 14 Page - OSRAM GmbH |
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14 / 57 page ![]() Datasheet, Public Page 13 [v2-00] 2023-Mar-14 Document Feedback TMD3702VC − Detailed Description Proximity Proximity results are affected by three fundamental factors: the integrated IR VCSEL emission, IR reception, and environmental factors, including target distance and surface reflectivity. The IR reception signal path begins with IR detection from a photodiode and ends with the 10-bit or 14-bit proximity result in PDATA register. Signal from the photodiode is amplified, and offset adjusted to optimize performance. Offset correction or cross-talk compensation is accomplished by adjustment to the POFFSET register. The analog circuitry of the device applies the offset value as a subtraction to the signal accumulation; therefore a positive offset value has the effect of decreasing the results. Color and Ambient Light Sense The color and ALS reception signal path begins as photodiodes receive filtered light and ends with 16-bit results. The IR photodiode primarily used for proximity sense, is multiplexed with the green channel’s ADC to measure the IR content of ambient light. The color photodiodes are filtered with a UV and IR filters. The IR photodiode is filtered to receive only IR. Signal from the RGBC photodiodes simultaneously accumulate for a period of time set by the value in ATIME before the results are available. Measurement of IR must be done in a separate integration because it shares the ADC with the green photodiode. Gain is adjustable from 1x to 512x to facilitate operation over a wide range of lighting conditions. Based on the optical glass used on top of the device, custom equations are empirically derived to calculate the amount of ambient light, color temperature, as well as, determine the light type (e.g. LED, fluorescent, incandescent, etc.) using the ALS results. I²C Characteristics The device uses I²C serial communication protocol for communication. The device supports 7-bit chip addressing and both standard and fast clock frequency modes with a chip address of 0x49. Read and Write transactions comply with the standard set by Philips (now NXP). Internal to the device, an 8-bit buffer stores the register address location of the desired byte to read or write. This buffer auto-increments upon each byte transfer and is retained between transaction events (i.e. valid even after the master issues a STOP command and the I²C bus is released). During consecutive Read transactions, the future/repeated I²C Read transaction may omit the memory address byte normally following the chip address byte; the buffer retains the last register address + 1. Detailed Description |
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