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OPT3002DNPR Datasheet(PDF) 21 Page - Texas Instruments

Part # OPT3002DNPR
Description  OPT3002 Light-to-Digital Sensor
PDF  38 Pages
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Manufacturer  TI2 [Texas Instruments]
Direct Link  https://www.ti.com
Logo TI2 - Texas Instruments

OPT3002DNPR Datasheet(HTML) 21 Page - Texas Instruments

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OPT3002
www.ti.com
SBOS745A – MAY 2016 – REVISED JUNE 2016
Product Folder Links: OPT3002
Submit Documentation Feedback
Copyright © 2016, Texas Instruments Incorporated
A series of result register output examples with the corresponding LSB weight and resulting optical power are
given in Table 9. Note that many combinations of exponents (E[3:0]) and fractional results (R[11:0]) can map
onto the same optical power result, as shown in the examples of Table 9.
Table 9. Examples of Decoding the Result Register into Optical Power
RESULT REGISTER
(Bits 15-0, Binary)
EXPONENT
(E[3:0], Hex)
FRACTIONAL
RESULT
(R[11:0], Hex)
LSB WEIGHT AT 505-nm
WAVELENGTH
(nW/cm2, Decimal)
RESULTING OPTICAL POWER
AT 505-nm WAVELENGTH
(nW/cm2, Decimal)
0000 0000 0000 0001b
00h
001h
1.2
1.2
0000 1111 1111 1111b
00h
FFFh
1.2
4,914
0011 0100 0101 0110b
03h
456h
9.6
338,227.2
0111 1000 1001 1010b
07h
89Ah
153.6
629,145.6
1000 1000 0000 0000b
08h
800h
307.2
629,145.6
1001 0100 0000 0000b
09h
400h
614.4
629,145.6
1010 0010 0000 0000b
0Ah
200h
1228.8
629,145.6
1011 0001 0000 0000b
0Bh
100h
2457.6
629,145.6
1011 0000 0000 0001b
0Bh
001h
2457.6
2457.6
1011 1111 1111 1111b
0Bh
FFFh
2457.6
10,063,872
To compensate for the spectral response of the device, for input wavelengths other than 505 nm, see the
Compensation for the Spectral Response section.
Note that the exponent field can be disabled (set to zero) by enabling the exponent mask (configuration register,
ME field = 1) and manually programming the full-scale range (configuration register, RN[3:0] < 1100b (0Ch)),
allowing for simpler operation in a manually-programmed, full-scale mode. Calculating optical power from the
result register contents only requires multiplying the result register by the LSB weight (in nW/cm2) associated
with the specific programmed full-scale range (see Table 8). See the low-limit register for details.
See the configuration register conversion time field (CT, bit 11) description for more information on optical power
measurement resolution as a function of conversion time.
7.6.1.1.2
Configuration Register (address = 01h) [reset = C810h]
This register controls the major operational modes of the device. This register has 11 fields, as documented in
this section. If a measurement conversion is in progress when the configuration register is written, then the active
measurement conversion immediately aborts. If the new configuration register directs a new conversion, then
that conversion is subsequently started.
Figure 20. Configuration Register
15
14
13
12
11
10
9
8
RN3
RN2
RN1
RN0
CT
M1
M0
OVF
R/W-1h
R/W-1h
R/W-0h
R/W-0h
R/W-1h
R/W-0h
R/W-0h
R-0h
7
6
5
4
3
2
1
0
CRF
FH
FL
L
POL
ME
FC1
FC0
R-0h
R-0h
R-0h
R/W-1h
R/W-0h
R/W-0h
R/W-0h
R/W-0h
LEGEND: R/W = Read/Write; R = Read only; -n = value after reset
Table 10. Configuration Register Field Descriptions
Bit
Field
Type
Reset
Description
15-12
RN[3:0]
R/W
0Ch
Range number field (read or write).
The range number field selects the full-scale optical power range of the device. The format of
this field is the same as the result register exponent field (E[3:0]); see Table 8.
When RN[3:0] is set to 1100b (0Ch), the device operates in automatic full-scale setting mode,
as described in the Automatic Full-Scale Setting Mode section. In this mode, the automatically
chosen range is reported in the result exponent (register 00h, E[3:0]).
The device powers up as 1100 in automatic full-scale setting mode.
Codes 1101b, 1110b, and 1111b (0Dh, 0Eh, and 0Fh) are reserved for future use.



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