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TSL2672 データシート(PDF) 6 Page - OSRAM GmbH |
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TSL2672 データシート(HTML) 6 Page - OSRAM GmbH |
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6 / 47 page ![]() ams Datasheet Page 5 [v1-01] 2019-Nov-20 Document Feedback TSL2672 − Detailed Description Proximity detection requires only a single external LED. This external LED is driven by an internal LED current driver, which pulses the LED with current for approximately 7 microseconds. The number of pulses, from 1 to 255, and the current level, from 1.9 mA to 120 mA, can be programmed and together provide a 16,000:1 contiguous dynamic range. Because the driver is a constant current sink, no external current limiting resistor is required to protect the LED. In addition to the internal LED current driver, the TSL2672 proximity detector provides ON-chip photodiodes, oscillator, integrating amplifier, ADC, state machine controller, programmable interrupt and I²C interface to provide a complete proximity detection solution. Each device has two photodiodes; a channel 0 photodiode (CH0), which is responsive to both visible and infrared light, and a channel 1 photodiode (CH1), which is primarily responsive to only infrared light. The user selects the appropriate diode for their application. The integrating amplifier and ADC converts the selected photodiode current into a digital value providing up to 16 bits of resolution. Upon completion of a proximity conversion cycle, the result is transferred to the proximity data registers where it is available to be read. Communication with the device is accomplished over a fast (up to 400 kHz), two-wire I²C serial bus for easy connection to a microcontroller or embedded controller. The digital output of the device is inherently more noise-immune when compared to an analog interface. The device provides a separate pin for level-style interrupts to simplify and improve system efficiency by eliminating the need to poll for proximity data. When interrupts are enabled, an interrupt is generated when the proximity data either exceeds an upper threshold or is less than a lower threshold. Once generated, the interrupt remains asserted until cleared by the controlling firmware. In addition, a programmable interrupt persistence filter allows the user to determine the number of consecutive out-of-range measurements necessary to trigger an interrupt. Detailed Description |
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