Si1120-A-GM Silicon Laboratories Inc, Si1120-A-GM Datasheet - Page 5

Industrial Optical Sensors Proximity/Ambient Light Snsr w/PWM Out

Si1120-A-GM

Manufacturer Part Number
Si1120-A-GM
Description
Industrial Optical Sensors Proximity/Ambient Light Snsr w/PWM Out
Manufacturer
Silicon Laboratories Inc
Type
Ambient Light Sensor with Analog Outputr
Datasheet

Specifications of Si1120-A-GM

Product
Integrated Ambient Light and Proximity Sensor
Output Type
Analog - Voltage
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
Si1120-A-GMR
Manufacturer:
SILICON LABS/芯科
Quantity:
20 000
Company:
Part Number:
Si1120-A-GMR
Quantity:
8 000
Table 3. Electrical Characteristics
Parameter
IDD Shutdown
IDD Current Idle
IDD Current During Transmit,
Not Saturated
IDD Current During Transmit,
Not Saturated
PRX Pulse Width Range
PRX Logic High Level
PRX Logic Low Level
Min. Detectable Reflectance Input
Max. Detectable Reflectance Input
Max. Detectable Reflectance Input
Calibration Mode PRX Pulse Width Tpwcal
TXO Leakage Current
TXO Current (TX High Power)
TXO Current (TX Low Power)
Power Up Latency*
Full-Scale Ambient Light
Full-Scale Ambient Light
Full-Scale Ambient Light
*Note: Refer to "2.2. Mode Selection" on page 7 for additional information.
Symbol
Itxo_sd
Emax1
Emax2
FSals1
FSals2
FSals3
VOH
Emin
Tprx
VOL
Itxo
Itxo
V
V
SC >VIH, VDD = 2.7 to 3.7,
DD
DD
V
V
TXO = 1 V (Mode 2,3)
V
V
DD
V
V
V
V
TXO = 1 V (Mode 0)
Conditions / Notes
DD
= 3.3 V, LED I = 400 mA
DD
DD
= 3.3 V, LED I = 50 mA
Rev. 1.0
DD
DD
DD
DD
SC = STX <VIL
= 3.3 V (Mode 0,2)
= 3.3 V, No strobe
I
V
V
= 2.2 V (Mode 3)
= 3.7 V (Mode 3)
V
V
OH
= 3.3 V, Mode 1
= 3.3 V, Mode 5
= 3.3 V, Mode 6
= 3.3 V, Mode 7
I
T = 27 °C
OL
DD
DD
DD
DD
= –4 mA
= 4 mA
= 3.3 V,
= 3.3 V,
= 3.3 V
= 3.3 V
V
DD
Min
0.5
–0.7
0.01
Typ
400
500
100
0.1
90
14
12
48
50
10
7
3
1
2500
Max
150
535
1.0
0.6
Si1120
1
mW/cm
mW/cm
µW/cm
Units
mA
mA
mA
mA
kLx
kLx
µA
µA
µA
us
us
µs
Lx
V
V
2
2
2
5

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