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TSL2569CS 数据表(PDF) 36 Page - OSRAM GmbH |
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TSL2569CS 数据表(HTML) 36 Page - OSRAM GmbH |
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36 / 56 page ![]() ams Datasheet Page 35 [v1-00] 2016-Apr-12 Document Feedback TSL2568, TSL2569 − Application Information: Software In order to generate an interrupt on demand during system test or debug, a test mode (INTR = 11) can be used. The following example illustrates how to generate an interrupt on demand: // Generate an interrupt Address = 0x39 //Slave addr also 0x29 or 0x49 Command = 0x86 //Address Interrupt register Data = 0x30 //Test interrupt WriteByte (Address, Command, Data) //Interrupt line should now be low Calculating Lux The TSL256x is intended for use in ambient light detection applications such as display backlight control, where adjustments are made to display brightness or contrast based on the brightness of the ambient light, as perceived by the human eye. Conventional silicon detectors respond strongly to infrared light, which the human eye does not see. This can lead to significant error when the infrared content of the ambient light is high, such as with incandescent lighting, due to the difference between the silicon detector response and the brightness perceived by the human eye. This problem is overcome in the TSL256x through the use of two photodiodes. One of the photodiodes (channel 0) is sensitive to both visible and infrared light, while the second photodiode (channel 1) is sensitive primarily to infrared light. An integrating ADC converts the photodiode currents to digital outputs. Channel 1 digital output is used to compensate for the effect of the infrared component of light on the channel 0 digital output. The ADC digital outputs from the two channels are used in a formula to obtain a value that approximates the human eye response in the commonly used Illuminance unit of Lux: Chipscale Package For 0 < CH1/CH0 ≤ 0.35 Lux = 0.00713 × CH0 - 0.00975 × CH1 For 0.35 < CH1/CH0 ≤ 0.45 Lux = 0.00813 × CH0 - 0.01250 × CH1 For 0.45 < CH1/CH0 ≤ 0.52 Lux = 0.00935 × CH0 - 0.01521 × CH1 For 0.52 < CH1/CH0 ≤ 0.67 Lux = 0.00394 × CH0 - 0.00482 × CH1 For 0.67 < CH1/CH0 ≤ 0.85 Lux = 0.00337 × CH0 - 0.00396 × CH1 For CH1/CH0 > 0.85 Lux = 0 |
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