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TSL25713 データシート(PDF) 15 Page - OSRAM GmbH

部品番号 TSL25713
部品情報  Light-to-Digital Converter
PDF  39 Pages
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メーカー  OSRAM [OSRAM GmbH]
ホームページ  http://www.osram.com
Logo OSRAM - OSRAM GmbH

TSL25713 データシート(HTML) 15 Page - OSRAM GmbH

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Page 14
ams Datasheet
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[v1-01] 2018-Mar-27
TSL2571 − Principles of Operation
The registers for programming the integration and wait times
are a 2’s compliment values. The actual time can be calculated
as follows:
ATIME = 256 - Integration Time / 2.72 ms
Inversely, the time can be calculated from the register value as
follows:
Integration Time = 2.72 ms × (256 - ATIME)
In order to reject 50/60-Hz ripple strongly present in fluorescent
lighting, the integration time needs to be programmed in
multiples of 10 / 8.3 ms or the half cycle time. Both frequencies
can be rejected with a programmed value of
50 ms (ATIME = 0xED) or multiples of 50 ms (i.e. 100, 150, 200,
400, 600).
The registers for programming the AGAIN hold a two-bit value
representing a gain of 1
×, 8×, 16×, or 120×. The gain, in terms
of amount of gain, will be represented by the value AGAINx, i.e.
AGAINx = 1, 8, 16, or 120.
Lux Equation
The lux calculation is a function of CH0 channel count (C0DATA),
CH1 channel count (C1DATA), ALS gain (AGAINx), and ALS
integration time in milliseconds (ATIME_ms). If an aperture,
glass/plastic, or a light pipe attenuates the light equally across
the spectrum (300 nm to 1100 nm), then a scaling factor referred
to as glass attenuation (GA) can be used to compensate for
attenuation. For a device in open air with no aperture or
glass/plastic above the device, GA = 1. If it is not spectrally flat,
then a custom lux equation with new coefficients should be
generated. (See ams application note).
Counts per Lux (CPL) needs to be calculated only when ATIME
or AGAIN is changed, otherwise it remains a constant. The first
segment of the equation (Lux1) covers fluorescent and
incandescent light. The second segment (Lux2) covers dimmed
incandescent light. The final lux is the maximum of Lux1, Lux2,
or 0.
CPL = (ATIME_ms
× AGAINx) / (GA × 53)
Lux1 = (C0DATA - 2
× C1DATA) / CPL
Lux2 = (0.6
× C0DATA - C1DATA) / CPL
Lux = MAX(Lux1, Lux2, 0)



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