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 PHOTODIODE
Si APD
S9251 series
High sensitivity in near IR range (=900 nm)
Features Applications
l High sensitivity in near IR range (=900 nm) l Operational stability
l Rangefinder l Spatial light transmission
s General ratings / Absolute maximum ratings
Dimensional outline/ Window material *1 /K /K Effective *2 active area size (mm) 0.2 0.5 1.0 1.5 Effective active area (mm2) 0.03 0.19 0.78 1.77 Absolute maximum ratings Operating Storage temperature temperature Topr Tstg (C) (C) -20 to +85 -55 to +125
Type No.
Package
S9251-02 S9251-05 S9251-10 S9251-15
TO-18 TO-5
s Electrical and optical characteristics (Typ. Ta=25 C, unless otherwise noted)
Photo Quantum Break do w n Spectral Peak *3 Temp sensitivity efficiency voltage response sensitivity coefficient VBR S QE range wavelength ID=100 A of VBR M=1 M=1 Type No. p =900 nm =900 nm Typ. Max. (V) (V) Dark *3 C ut-off *3 Terminal *3 current freque ncy capacitance ID fc Ct RL=50 Typ. Max. (nA) (nA) 0.1 1 0.2 2 0.4 4 0.8 8 Excess *3 Gain noise M figure =900 n m x =900 n m
(nm)
(nm)
(A/W)
(%)
(V/C) 1.85
(MHz) 400 380 350
S9251-02 S9251-05 440 to 860 0.52 72 250 350 1100 S9251-10 S9251-15 *1: K: borosilicate glass *2: Area in which a typical gain can be obtained. *3: Values measured at a gain listed in the characteristics table.
(pF) 0.4 0.7 1.9 3.6
0.3
100
1
Si APD
s Spectral response (M=100)
(Typ. Ta=25 C) 60
S9251 series
(Typ. Ta=25 C)
s Quantum efficiency vs. wavelength
90 80 (Typ. Ta=25 C)
s Dark current vs. reverse voltage
1 A
QUANTUM EFFICIENCY (%)
PHOTO SENSITIVITY (A/W)
50
100 nA
70 60 50 40 30 20
10 pA
40
DARK CURRENT
10 nA
30
1 nA S9251-10 100 pA
S9251-15
20
S9251-02 S9251-05
10
10
0 200
400
600
800
1000
1200
0 200
400
600
800
1000
1200
1 pA
0
100
200
300
WAVELENGTH (nm)
KAPDB0079EA
WAVELENGTH (nm)
KAPDB0080EA
REVERSE VOLTAGE (V)
KAPDB0081EA
s Gain vs. reverse voltage
10000 (Typ. =900 nm)
s Terminal capacitance vs. reverse voltage
1000 (Typ. Ta=25 C)
-20 C 1000
0 C
20 C
TERMINAL CAPACITANCE (pF)
100
GAIN
100 60 C 10 40 C
10
S9251-15
1
S9251-10
S9251-02
1 100
S9251-05 300
0.1
150 200 250 300
0
100
200
REVERSE VOLTAGE (V)
KAPDB0082EA
REVERSE VOLTAGE (V)
KAPDB0083EA
s Dimensional outlines (unit: mm)
S9251-02/-05
5.4 0.2
3.6 0.2
S9251-10/-15
9.1 0.2
4.2 0.2 0.4 MAX. 2.8
WINDOW 3.0 0.2
4.7 0.1
WINDOW 5.9 0.1
8.1 0.1
PHOTOSENSITIVE SURFACE 0.45 LEAD
2.8
PHOTOSENSITIVE SURFACE 0.45 LEAD
13
0.4 MAX.
2.54 0.2
5.08 0.2
1.2 MAX. The glass window may extend a maximum of 0.1 mm beyond the upper surface of the cap. CASE
CASE 1.5 MAX.
The glass window may extend a maximum of 0.2 mm beyond the upper surface of the cap.
KAPDA0029EA
(20)
KAPDA0030EA
Information furnished by HAMAMATSU is believed to be reliable. However, no responsibility is assumed for possible inaccuracies or omissions. Specifications are subject to change without notice. No patent rights are granted to any of the circuits described herein. (c)2004 Hamamatsu Photonics K.K.
HAMAMATSU PHOTONICS K.K., Solid State Division 1126-1 Ichino-cho, Higashi-ku, Hamamatsu City, 435-8558 Japan, Telephone: (81) 53-434-3311, Fax: (81) 53-434-5184, http://www.hamamatsu.com
U.S.A.: Hamamatsu Corporation: 360 Foothill Road, P.O.Box 6910, Bridgewater, N.J. 08807-0910, U.S.A., Telephone: (1) 908-231-0960, Fax: (1) 908-231-1218 Germany: Hamamatsu Photonics Deutschland GmbH: Arzbergerstr. 10, D-82211 Herrsching am Ammersee, Germany, Telephone: (49) 08152-3750, Fax: (49) 08152-2658 France: Hamamatsu Photonics France S.A.R.L.: 19, Rue du Saule Trapu, Parc du Moulin de Massy, 91882 Massy Cedex, France, Telephone: 33-(1) 69 53 71 00, Fax: 33-(1) 69 53 71 10 United Kingdom: Hamamatsu Photonics UK Limited: 2 Howard Court, 10 Tewin Road, Welwyn Garden City, Hertfordshire AL7 1BW, United Kingdom, Telephone: (44) 1707-294888, Fax: (44) 1707-325777 North Europe: Hamamatsu Photonics Norden AB: Smidesvagen 12, SE-171 41 Solna, Sweden, Telephone: (46) 8-509-031-00, Fax: (46) 8-509-031-01 Italy: Hamamatsu Photonics Italia S.R.L.: Strada della Moia, 1/E, 20020 Arese, (Milano), Italy, Telephone: (39) 02-935-81-733, Fax: (39) 02-935-81-741
2
Cat. No. KAPD1013E02 Dec. 2004 DN


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