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VL6180 数据表(PDF) 26 Page - STMicroelectronics

部件名 VL6180
功能描述  Proximity sensing module
PDF  73 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

VL6180 数据表(HTML) 26 Page - STMicroelectronics

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Functional description
VL6180
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DocID024986 Rev 14
Figure 16. Typical ranging current consumption (10 Hz sampling rate)
The minimum average current consumption in Figure 16. is 1.5 mA, 0.5 mA of which comes
from pre-calibration before each measurement and 1.0 mA from post-processing (readout
averaging). Pre-calibration is a fixed overhead but readout averaging can be reduced or
effectively disabled by setting the READOUT__AVERAGING_SAMPLE_PERIOD{0x10A} to
zero (default setting is 48).
Note:
Decreasing the READOUT__AVERAGING_SAMPLE_PERIOD will increase sampling noise. It
is recommended that any change in setting be properly evaluated in the end application.
Minimum current consumption scales with sampling rate i.e. at a sampling rate of 1 Hz the
current consumption associated with pre- and post-processing will be 0.15 mA.
2.14.2
Current consumption calculator
Table 11. gives a breakdown of typical current consumption for pre-calibration, ranging and
readout averaging.
Current consumption can then be calculated as follows:
I (A) = sampling_rate * [Q1 + (Q2 * RESULT__RANGE_RETURN_CONV_TIME in ms) + 
Q3 * (1.3 + (READOUT__AVERAGING_SAMPLE_PERIOD * 0.0645 ms))]
Table 7. gives typical convergence times for different target reflectance.
So, for example, RESULT__RANGE_RETURN_CONV_TIME for a 3% target at 50 mm is 4.35
ms. At 10 Hz sampling rate this gives:
I (A) = 10 * [41.6 + (22 * 4.35) + 25 * (1.3 + (48 * 0.0645))] = 2472 A
Table 11. Breakdown of current consumption
Label
Phase
I (mA)
t (ms)
Q (
C) = I x t
Q1
Pre-calibration
13.0
3.2
41.6
Q2
Ranging
22.0
per ms
22.0 per ms
Q3
Readout averaging
25.0
per ms
25.0 per ms



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