Infrared Emitter. IRP3012V24-E5 Datasheet

IRP3012V24-E5 Emitter. Datasheet pdf. Equivalent

Part IRP3012V24-E5
Description Infrared Emitter
Feature IRP3012V24-E5 SMD Type 940nm Infrared Emitter Features  Small double-end package  Viewing Angle a.
Manufacture CT Micro
Datasheet
Download IRP3012V24-E5 Datasheet



IRP3012V24-E5
IRP3012V24-E5
SMD Type 940nm Infrared Emitter
Features
Small double-end package
Viewing Angle at X axis (Note3) = 22.50
High reliability
Good spectral matching to Si photo detector
RoHS compliance
Applications
Infrared sensor
Infrared Touch Panel Solutions
Description
The IRP3012V24-E5 is a GaAlAs infrared LED
housed in a miniature SMD package. The device
has a peak wavelength of 940nm LED spectrally
matched with phototransistor or photodiode.
Package Outline
Schematic
Anode
Cathode
CT Micro
Proprietary & Confidential
Page 1
Rev 0(Preliminary)
Feb, 2014



IRP3012V24-E5
IRP3012V24-E5
SMD Type 940nm Infrared Emitter
Absolute Maximum Rating at 250C
Symbol
Parameters
IF Continuous Forward Current
IFP Peak Forward Current
VR Reverse Voltage
Topr Operating Temperature
Tstg Storage Temperature
Tsol Soldering Temperature
PD Power Dissipation at(or below) 25Free Air Temperature
RTHJA Junction to Ambient Thermal Resistance
Ratings
70
0.7
5
-40 ~ +85
-40 ~ +100
260
119
540
Units
mA
A
V
0C
0C
0C
mW
0C/W
Notes
1
2
Electro-Optical Characteristics TA = 25°C (unless otherwise specified)
Optical Characteristics
Symbol
Parameters
Ie Radiant Intensity
λp Peak Wavelength
Δλ Spectral Bandwidth
θ1/2
Angle of Half Intensity (X)
Angle of Half Intensity (Y)
Test Conditions
IF=20mA
IF =70mA
IF=20mA
IF=20mA
IF=20mA
Min Typ Max Units Notes
3.5 4.65
- 16.0
-
mW/sr
-
- 940 - nm
- 30 - nm
- 22.5 -
deg 3
20
Electrical Characteristics
Symbol
Parameters
VF Forward Voltage
IR Reverse Current
Test Conditions
IF=20mA
IF=70mA
VR=5V
Notes:
1: IFP Conditions--Pulse Width100μs and Duty1%.
2: Soldering time5 seconds.
3 : Test condition :
Min Typ Max Units Notes
1.0 1.25 1.5
1.1 1.38 1.7
- - 10
V
μA
CT Micro
Proprietary & Confidential
Page 2
Rev 0(Preliminary)
Feb, 2014





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