ISL29003IROZ-T7 Intersil, ISL29003IROZ-T7 Datasheet - Page 7

IC SENSOR LIGHT-DGTL I2C 6-ODFN

ISL29003IROZ-T7

Manufacturer Part Number
ISL29003IROZ-T7
Description
IC SENSOR LIGHT-DGTL I2C 6-ODFN
Manufacturer
Intersil
Datasheet

Specifications of ISL29003IROZ-T7

Wavelength
540nm
Output Type
I²C™
Package / Case
6-ODFN
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
ISL29003IROZ-T7TR

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ISL29003IROZ-T7
Manufacturer:
INTERSIL
Quantity:
1 831
Interrupt Threshold HI Register 02(hex)
This register sets the HI threshold for the interrupt pin and
the interrupt flag. By default, the Interrupt threshold HI is
FF(hex). The 8-bit data written to the register represents the
upper MSB of a 16-bit value. The LSB is always 00(hex).
Interrupt Threshold LO Register 03(hex)
This register sets the LO threshold for the interrupt pin and
the interrupt flag. By default, the Interrupt threshold LO is
00(hex). The 8-bit data written to the register represents the
upper MSB of a 16-bit value. The LSB is always 00(hex).
Sensor Data Register 04(hex) and 05(hex)
When the device is configured to output a 16-bit data, the
least significant byte is accessed at 04(hex), and the most
significant byte can be accessed at 05(hex). The sensor data
register is refreshed after every integration cycle.
Timer Data Register 06(hex) and 07(hex)
Note that the timer counter value is only available when
using the External Timing Mode. The 06(hex) and 07(hex)
are the LSB and MSB respectively of a 16-bit timer counter
value corresponding to the most recent sensor reading.
Each clock cycle increments the counter. At the end of each
integration period, the value of this counter is made available
over the I
introduced by slight timing errors caused by imprecise
external timing. Microcontrollers, for example, often cannot
provide high-accuracy command-to-command timing, and
the timer counter value can be used to eliminate the
resulting noise.
BITS
3. Interrupt persist; Bits 1 and 0. The interrupt pin and the
3:2
0:0
0:1
1:0
1:1
interrupt flag is triggered/set when the data sensor
reading is out of the interrupt threshold window after m
consecutive number of integration cycles. The interrupt
persist bits determine m.
TABLE 9. RANGE/GAIN TYPICAL FSR LUX RANGES
1
2
3
4
BITS 1:0
k RANGE (k)
0:0
0:1
1:0
1:1
2
C. This value can be used to eliminate noise
15,568
62,272
3892
973
TABLE 10. INTERRUPT PERSIST
R
RANGE@
EXT = 100k
FSR LUX
NUMBER OF INTEGRATION CYCLES
15,568
62,272
3892
973
7
R
RANGE@
FSR LUX
EXT = 50k
124,544
31,136
1946
7784
16
1
4
8
R
RANGE@
EXT = 500k
FSR LUX
12,454
3114
195
778
ISL29003
Calculating Lux
The ISL29003’s output codes, DATA, are directly
proportional to lux.
The proportionality constant α is determined by the Full
Scale Range, FSR, and the n-bit ADC, which is user defined
in the command register. The proportionality constant can
also be viewed as the resolution; The smallest lux
measurement the device can measure is α.
α
Full Scale Range, FSR, is determined by the software
programmable Range/Gain, Range(k), in the command
register and an external scaling resistor R
referenced to 100kΩ.
FSR
The transfer function effectively for each timing mode
becomes:
INTERNAL TIMING MODE
EXTERNAL TIMING MODE
n = 4, 8, 12, or 16. This is the number of clock cycles
programmed in the command register.
Range(k) is the user defined range in the Gain/Range bit in
the command register.
R
pin.
DATA is the output sensor reading in number of counts
available at the data register.
2
Internal Timing Mode. For the External Timing Mode, the
maximum number of counts is stored in the data register
named COUNTER.
E
E
E
n
ADDRESS
EXT
=
=
=
=
represents the maximum number of counts possible in
(hex)
FSR
------------
Range k ( )
----------------------------------------------------
α
Range k ( )
----------------------------------------------------
04
05
06
07
=
2
is an external scaling resistor hardwired to the R
×
n
Range k ( )
DATA
COUNTER
2
Least-significant byte of most recent sensor reading.
Most-significant byte of most recent sensor reading.
Least-significant byte of timer counter value
corresponding to most recent sensor reading.
Most-significant byte of timer counter value
corresponding to most recent sensor reading.
n
×
×
TABLE 11. DATA REGISTERS
100kΩ
----------------- -
100kΩ
----------------- -
R
R
×
EXT
EXT
100kΩ
----------------- -
R
EXT
×
×
DATA
DATA
CONTENTS
EXT
which is
August 8, 2008
(EQ. 4)
FN7464.5
(EQ. 1)
(EQ. 5)
(EQ. 2)
(EQ. 3)
EXT

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