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 SLD-67HF2
Planar Photodiode
Features * Hermetic flat window package * High short circuit current * Low profile TO-5 package * Large active area * Multiple dark current ranges available Description This planar silicon photodetector is designed to operate in either photovoltaic or reverse bias mode to provide low capacitance with fast switching speed. It provides excellent linearity in output signal versus irradiance. Encapsulated in a flat window, dual lead TO-5 package, it is the ideal part for applications requiring a hermetic seal. Absolute Maximum Ratings Storage Temperature Operating Temperature Soldering Temperature (2) Note: (1) Ee = source @ 2854 K (2) >2 mm from case for <5 sec. (3) Ee = source @ = 940nm
4.2 12.7 min 8.3 Anode+
o 9.1
5.1
0.41 - 0.48 2.3 Cathode (Common to case) Dimensions in mm. Tolerance: +/-0.13
Chip size: 3.6 mm. X 3.6 mm. Active area: 9.8 sq.mm.
Directional Sensitivity Characteristics
40 30 20 10 1.0 0.8 0.6 0.4 0.2 0.0
-40 to +125C -40 to +125C 260C
50
Half Angle = 45
60 70 80 90 100 1.0 0.8 0.6 0.4
20
40
60
80
100 120
Electrical Characteristics (TA=25C unless otherwise noted) Symbol Parameter Min Typ ISC Short Circuit Current 450 650 VOC Open Circuit Voltage 0.40 ID Reverse Dark Current: SLD-67HF2A SLD-67HF2B SLD-67HF2C SLD-67HF2D SLD-67HF2E CJ Junction Capacitance 180 tR Rise Time 8 tF Fall Time 10 VBR Reverse Breakdown Voltage 50 Maximum Sensitivity Wavelength 930 P Sensitivity Spectral Range 400 R Acceptance Half Angle 45 1/2 Specifications subject to change without notice
5200 St. Patrick St., Montreal Que., H4E 4N9, Canada Tel: 514-768-8000 Fax: 514-768-8889
QF-84
Max
Units Test Conditions 2 A VR = 0 V, Ee = 25mW/cm (1) 2 V Ee = 25mW/cm (1) nA nA nA nA nA pf sec sec V nm nm Deg VR = 100 mV, Ee = 0 VR = 5V, Ee = 0 VR = 5V, Ee = 0 VR = 5V, Ee = 0 VR = 5V, Ee = 0 VR = 0, Ee = 0, f = 1 MHz VR=10V, RL=1k (3) VR=10V, RL=1k (3) IR = 100 A
100 100 20 5 1
1100
(off center-line)
102136 REV 2
The Old Railway, Princes Street Ulverston, Cumbria, LA12 7NQ, UK Tel: 01 229 581 551 Fax: 01 229 581 554


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