OP910 OPTEK | Alldatasheet

Document overview

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Technical content

  • Narrow receiving angle
  • Fast switching time
  • Linear response vs. irradiance
  • Enhanced temperature range De scrip tion The OP910 consists of a PIN silicon photodiode mounted in a two-leaded hermetic TO-46 package. The narrow receiving angle has an acceptance half angle of ±12o. Ab so lute Maxi mum Rat ings (TA = 25o C un less oth er wise noted) Lead Sol der ing Tem per ature [1/16 inch (1.6 mm) from case for 5 sec . with sol der ing NOTES: (1) RMA Flux is rec om mended. Du ra tion can be ex tended to 10 sec. max. when flow sol der ing. (2) Light source is an un fil tered GaAIAs LED with a peak wave length of 885 nm and a radio met ric in ten sity level which var ies less than 10% over the en tire lens sur face of the pho to di ode being tested. (3) Junc tion tem pera ture main tained at 25o C. (4) To cal cu late typi cal dark cur rent in nA, use. The for mual ID = 10 (0.042 TAt-1.5) where TA is am bi ent tem pera ture in o C. (5) Der ate line arly 2.5 mw/o C above 25o C. Prod uct Bul le tin OP910 December 1998 PIN Sili con Photodiode Type OP910 Optek Tech nol ogy, Inc. 1215 W. Crosby Road Car roll ton, Texas 75006 (972)323- 2200 Fax (972)323-2396 3-70 *THIS DIMENSION CONTROLLED AT HOUSING SURFACE. DIMENSIONS ARE IN INCHES (MILLIMETERS). Wave length - nm Typi cal Spec tral Re sponse Typi cal Per form ance Curves

Op tek re serves the right to make changes at any time in or der to im prove de sign and to sup ply the best prod uct pos si ble. Op tek Tech nol ogy, Inc. 1215 W. Crosby Road Car roll ton, Texas 75006 (972)323- 2200 Fax (972)323-2396 Elec tri cal Char ac ter is tics (TA = 25o C un less oth er wise noted) SYM BOL PA RAME TER MIN TYP MAX UNITS TEST CON DI TIONS IL Light Current 10 13 mA VR = 20 V, Ee = .50 mW/cm2 note 2,3 ID Dark Current 1 10 nA VR = 20 V, Ee = 0.0 V(BR)R Reverse Voltage Breakdown 100 V IR = 100 mA tr Rise Time 10 nS VR = 20 V, RL = 50 OHMS tf Fall Time 10 nS VR = 20 V, RL = 50 OHMS ∅ Half Angle +/- 12 degr. IF = Constant CP Capacitance 13 pF VR = 0 V, F = 1 Mhz, Ee = 0 Typi cal Per form ance Curves Normalized Light Current vs Reverse Voltage VR - Reverse Voltage - V TA = 25o C λ = 935 nm Total Capacitance vs Reverse Voltage VR - Reverse Voltage - V TA = 25o C Ee = 0 mW/cm2 f = 1 MHz Normalized Light and Dark Current vs Ambient Temperature TA - Ambient Temperature - o C VR = 5 V λ = 935 nm Normalized to TA = 25o C Dark Current Light Current Light Current vs Irradiance Switching Time Test Circuit 3-71 Ee - Irradiance - mW/cm2