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 GL550/GL551
GL550/GL551
s Features
1. High speed response Response frequency fc : TYP. 12MHz 2. Intermediate beam angle and narrow beam angle GL550 half intensity angle : TYP. 22 GL551 half intensity angle : TYP. 10 3. High output type optical output : TYP. 15mW
High Speed Infrared Emitting Diode
s Outline Dimensions
5.0 0.2
Transparent epoxy resin Protruded resin
(Unit : mm)
1.5 MAX.
7.4 0.2
1
0.8 0.1 *1 2.0 1.5 0.5 0.1
Without plating (1.0)
s Applications
1. Audio equipment
0.5 0.1
*2 2 2
1 Anode 2 Cathode
1
2. AV equipment
(2.54 ) 5.0 0.2
* 1 Dim. (mm) GL550 GL551
* 2 Dim. (mm)
31.5 2 33 2
(2.5) (4.3)
* ( ) : Reference dimensions
s Absolute Maximum Ratings
Parameter Forward current *1 Peak forward current Reverse voltage Power dissipation Operating temperature Storage temperature *2 Soldering temperature Symbol Rating IF 100 1 IFM 4 VR P 190 - 20 to + 85 Topr Tstg - 30 to + 100 260 Tsol
(Ta=25C) Unit mA A V mW C C C
*1 Pulse width 100 s, Duty ratio=0.01 *2 For MAX. 3 seconds at the position of 3.0 mm from the resin edge
" In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any defects that occur in equipment using any of SHARP's devices, shown in catalogs, data books, etc. Contact SHARP in order to obtain the latest version of the device specification sheets before using any SHARP's device."
GL550/GL551
s Electro-optical Characteristics
Parameter Forward voltage Peak forward voltage Reverse current Terminal capacitance Radiant flux Peak emission wavelength Half intensity wavelength Half intensity angle Response frequency GL550 GL551 Symbol VF VFM IR Ct e p
*3
(Ta=25 C) Conditions IF = 50mA IFM = 0.5A VR = 3V VR = 0, f = 1MHZ IF = 50mA IF = 50mA IF = 50mA IF = 50mA IF = 50mA + 10mAp-p MIN. 10 850 TYP. 1.5 70 880 40 22 10 12 MAX. 1.75 3.5 10 22 900 Unit V V A pF mW nm nm MH Z
fc
*3 Frequency to bring about -3dB reduction of modulated radiant flux from 100Hz
Fig. 1 Forward Current vs. Ambient Temperature
120
Fig. 2 Peak Forward Current vs. Duty Ratio
Pulse width<=100 s Ta = 25C
5000
Forward current I F (mA)
80
FM
(mA)
1000 500
100
60
40
Peak forward current I
100 50
20
0 - 40
- 20
0
20 25 40
60
80 85 100
10 10
-4
10
-3
10
-2
10
-1
1
Ambient temperature T a (C)
Duty ratio
GL550/GL551
Fig. 3 Spectral Distribution
100
Fig. 4 Peak Emission Wavelength vs. Ambient Temperature
910 IF=const
Peak emission wavelength (nm)
Relative radiant intensity (%)
900
890
50
880
870
0 750
800
850
900
950
860 - 25
0
25
50
75 85
Wavelength (nm)
Ambient temperature T a (C)
Fig. 5 Forward Current vs. Forward Voltage
1000
Fig. 6 Relative Radiant Flux vs. Ambient Temperature
10
IF=const
5
100 25C 0C - 25C
Relative radiant flux
2.5 3 3.5
(mA)
2
Forward current I
F
Ta=75C 50C 10
1
0.5
0.2
1 0
0.5
1
1.5
2
0.1
- 25
0
25
50
75 85
Forward voltage V F (V)
Ambient temperature T a (C)
Fig. 7 Relative Radiant Output vs. Ambient Temperature (PD413PI)
200 180
Fig. 8 Radiant Flux vs. Forward Current
1000
Ta=25C Pulse (pulse width <= 100 s)
Relative radiant output (%)
160 140 120 100 80 60 40 20 0 - 25 0 25 50 75 100 0.1 1
Radiant flux e ( mW )
100
10
DC
1
10
100
1000
Ambient temperature T a (C)
Forward current I F (mA)
GL550/GL551
Fig. 9 Relative Collector Current vs. Distance (Detector : PD413PI)
100
IF=50mA Ta=25C
Fig. 10 Relative Radiant Intensity vs. Distance
100
Ta=25C
Relative collector current (%)
GL550
Relative radiant intensity (%)
GL551
GL551 GL550
10
10
1
1
0.1 0.1
1
10
100
0.1 0.1
1
10
100
Distance between emitter and detector d (mm)
Distance to detector (mm)
Fig. 11 Radiation Diagram (GL550)
- 20 - 30 - 10 0 Relative radiant intensity (%) + 10 100
(Ta=25 C)
+ 20
Fig. 12 Radiation Diagram (GL551)
- 20 - 30 - 10 0 Relative radiant intensity (%) + 10 100
(Ta=25 C)
+ 20
+ 30 80
+ 30 80
- 40
60
+ 40
- 40
60
+ 40
- 50 - 60 - 70 - 80 - 90
40
+ 50 + 60
- 50 - 60 - 70 - 80 - 90
40
+ 50 + 60
20
+ 70 + 80
20
+ 70 + 80
0
+ 90
0
+ 90
Angular displacement
Angular displacement
q Please refer to the chapter "Precautions for Use". (Page 78 to 93)


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