PhotoInterrupter(Transimissive)
LG23FFD
DIMENSIONS
The LG23FFD photointerrupter combine high output GaAs IRED with Photo IC. The sensor makes possible easy development of object detecting systems with high performance, high reliability and small equipment size.
(Unit : mm)
FEATURES
• PWB direct mount type • GAP:3.0mm
APPLICATIONS
• • • • Copiers Facsimiles Auto stampers Ticket vending machines (Ta=25°C)
Rating 100 60 5 1 17 30 200 -20 ~ +85 -30 ~ +85 260 Unit mW mA V A V mA mW °C °C °C
MAXIMUM RATINGS
Item Symbol PD Power dissipation IF Forward current Input VR Reverse voltage IFP Pulse forward current *1 VCC Supply voltage IOL Output Low level output current PO Power dissipation Topr. Operating temp.*2 Tstg. Storage temp.*2 Tsol. Soldering temp.*3 *1. Pulse width : tw≤100㎲. period T=10 ㎳ *2. No icebound or dew
*3. For MAX. 5 seconds at the position of 1mm from the resin edge.
ELECTRO-OPTICAL CHARACTERISTICS
Conditions Symbol IF=20mA VF VR=5V Input IR IF=20mA λp VCC VCC=5V,IF=0mA,IOL=16mA VOL VCC=5V,IF=20mA,RL=10kΩ Output VOH VCC=5V,IF=0mA,RL=10kΩ ICCL VCC=5V,IF=20mA,RL=10kΩ ICCH VCC=5V,RL=10kΩ IFLH L→H threshold input current*4 VCC=5V,RL=10kΩ IFHL /IFLH Trans- Hysteresis *5 mission L→H propagation time tPLH tPHL H→L propagation time VCC=5V,IF=18mA,RL=3.3kΩ Rise time tr Fall time tf *4. IFLH represents forward current when output changes from low to high. Item Forward voltage Reverse current Peak wavelength Operating supply voltage Low level output voltage High level output voltage Low level supply current High level supply current *5. IFHL represents forward current when output changes from high to low. Min. 4.5 4.5 0.50 Typ. 1.2 940 0.3 3 3 5 0.80 1 3 0.6 0.02
(Ta=25°C)
Max. 1.4 10 16.5 0.4 10 10 12 0.95 Unit. V µA nm V V V mA mA mA µs µs µs µs
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PhotoInterrupter(Transimissive)
LG23FFD
Collector power dissipation Vs. Ambient temperature
(mA)
Forward current Vs. Forward voltage
Low level output voltage Vs. Low level output current
Collector power dissipation P C
Ambient temperature Ta
Forward voltage VF
Low level output voltage V OL
Forward current IF
Low level output current IOL
Relative threshold input current Vs. Supply voltage
Relative threshold input current Vs. Ambient temperature
Relative threshold input current I FLH,IFHL Light current I L
Relative threshold input current I FLH,IFHL
Supply voltage V CE
Ambient temperature Ta
Measurement of high level output voltage
Measurement of propagation time
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