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TSL26721 Arkusz danych(PDF) 18 Page - OSRAM GmbH |
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TSL26721 Arkusz danych(HTML) 18 Page - OSRAM GmbH |
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18 / 47 page ![]() ams Datasheet Page 17 [v1-01] 2019-Nov-20 Document Feedback TSL2672 − Principles Of Operation on the number of proximity pulses, keep in mind that the signal increases proportionally to PPULSE, while noise increases by the square root of PPULSE. Figure 21: Proximity LED Current Driver Waveform Figure 20 illustrates light rays emitting from an external IR LED, reflecting off an object, and being absorbed by the CH0 and CH1 photodiodes. The proximity diode selector (PDIODE) determines which of the two photodiodes is used for a given proximity measurement. Note that neither photodiode is selected when the device first powers up, so PDIODE must be set for proximity detection to work. Referring again to Figure 21, the reflected IR LED and the background energy is integrated during the LED ON time, then during the LED OFF time, the integrated background energy is subtracted from the LED ON time energy, leaving the external IR LED energy to accumulate from pulse to pulse. The proximity gain (PGAIN) determines the integration rate, which can be programmed to 1×, 2×, 4×, or 8× gain. At power up, PGAIN defaults to 1× gain, which is recommended for most applications. For reference, PGAIN equal to 8× is comparable to the TSL2771 1× gain setting. During LED On time integration, the proximity saturation bit in the Status register (0x13) will be set if the integrator saturates. This condition can occur if the proximity gain is set too high for the lighting conditions, such as in the presence of bright sunlight. Once asserted, PSAT will remain set until a special function proximity interrupt clear command is received from the host (see Command Register). After the programmed number of proximity pulses have been generated, the proximity ADC converts and scales the proximity measurement to a 16-bit value, then stores the result in two LED On LED Off IR LED Pulses Background Energy Reflected IR LED + Background Energy 16.0 ms 7.3 ms |
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