Si PIN photodiode S13773, S15193


Catalog excerpts

Si PIN photodiode S13773, S15193 - 1

Surface mount type, high-speed Si photodiodes The S13773 and S15193 are Si PIN photodiodes with sensitivities in the visible to near infrared range and are compatible with lead-free solder reflow. The S13773 features high-speed response while the S15193 features improved near infrared sensitivity. They are suitable for distance measurement laser monitoring. Distance measurement laser monitor H igh sensitivity in the near IR region: 0.64 A/W (S15193, λ=920 nm) Light monitor (from visible to near infrared region) Surface mount type High reliability (wide temperature range) Compatible with lead-free solder reflow Structure Parameter Photosensitive area Package Window material Specification ɸ0.8 Glass epoxy Silicone resin Absolute maximum ratings Parameter Symbol Condition Value Unit Reverse voltage VR max 20 V Operating temperature Topr No dew condensation*1 -40 to +100 °C Storage temperature Tstg No dew condensation*1 -40 to +100 °C Soldering conditions*2 JEDEC J-STD-033C MSL 2a Peak temperature: 260 °C, 3 times*2 *1: When there is a temperature difference between a product and the surrounding area in high humidity environment, dew condensation may occur on the product surface. Dew condensation on the product may cause deterioration in characteristics and reliability. *2: See P.5. JEDEC J-STD-020 MSL 2a Note: xceeding the absolute maximum ratings even momentarily may cause a drop in product quality. Always be sure to use the E product within the absolute maximum ratings. Electrical and optical characteristics (Ta=25 °C) Parameter Spectral response range Peak sensitivity wavelength Photosensitivity Dark current Dark current temperature coefficient Cutoff frequency Terminal capacitance Noise equivalent power

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Si PIN photodiode S13773, S15193 - 2

Spectral response Photosensitivity temperature characteristics (Typ. Ta=25 °C) 0.1 Photocurrent vs. incident light level 0 300 400 500 Incident light level (W) Incident light level (W) KPINB0408EA

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Si PIN photodiode S13773, S15193 - 3

Cutoff frequency vs. reverse voltage Terminal capacitance vs. reverse voltage ark current vs. reverse voltage -20 1 MHz Cutoff frequency Terminal capacitance vs. reverse voltage (S13773) Dark current vs. reverse voltage (Typ. Ta=25 °C) Terminal capacitance Dark current

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Si PIN photodiode S13773, S15193 - 4

Directivity (Typ. light source: tungsten lamp) 30° Relative sensitivity (%) Dimensional outline (unit: mm) Y Dimensional outline (unit: mm) Photosensitive area 0.8 Recommended land pattern Anode Index Photosensitive surface Tolerance: ±0.2 unless otherwise noted Values in parentheses indicate reference values. * Side of the element * There is exposed wiring on side A and side B. To prevent short circuits, do not allow any conductors to come in contact with the wiring. Electrode KPINA0119

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Si PIN photodiode S13773, S15193 - 5

Standard packing specifications Reel (conforms to JEITA ET-7200) Dimensions 180 mm Electrostatic characteristics Conductive Embossed tape (unit: mm, material: PS, conductive) Reel feed direction Recommended temperature profile for reflow soldering Packing quantity 1000 pcs/reel KPINC0027EA Packing type Reel and desiccant in moisture-proof packaging (vacuum-sealed) Recommended solder reflow conditions Peak temperature - 5 °C 30 s max. Cooling 6 °C/s max. ∙ his product supports lead-free soldering. After unpacking, store it in an environment at a temperature of 30 °C or less and a humidity of...

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Si PIN photodiode S13773, S15193 - 6

Related products: Metal package, bare chip type Similar products are available: the metal package S5972 and the bare chip type S5972-04. Bare chip type S5972-04 Related information Precautions ∙ Disclaimer ∙ Surface mount type products Technical information ∙ Si photodiodes / Application circuit examples The content of this document is current as of November 2019. Product specifications are subject to change without prior notice due to improvements or other reasons. This document has been carefully prepared and the information contained is believed to be...

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