Inspector SPS Series-SPS1502
Inspector SPS Series-Shimada Electronics

Inspector SPS Series
Shimada Electronics


About This Product

Feature Uses four technology to achieve high quality and durability that reduces the risk of quality accidents to the limit. 1. Realizes high durability by using palladium plating frames In general, soldering is performed after the product is completed, but after completion, plating may invade and lead to quality accidents. Our products are not feared because they are pre -plated. 2. There is no quality deterioration due to components with low temperature assembly The low -temperature speed curing diver has achieved high adhesion of chips, frames and resins. In addition, the high bonding quality due to the oxidation of the frame and the reduction of impurities have no quality deterioration due to the components. 3. Recruitment of high -confidence resin/structure Highly reliable mold resin, mold of voice dressing due to reduced pressure, deterioration prevention package due to double structure prevents quality deterioration. 4. Adopted Epi -Ei Ha, stable operation even in large -class basin With the adoption of Epi Eiha, VCE (SAT) is about 40%lower compared to other companies, and stable operations are realized even in the tier basin.

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    Inspector SPS Series




*Please note that we may not be able to accommodate sample requests.

1 Models of Inspector SPS Series

Product Image Part Number Price (excluding tax) Collector Emitter voltage Collector and emitter saturation voltage Collector current Collector loss Collector loss reduction rate (TA> 25 ℃) Dark current Emitta collector interconnection voltage Half -price angle Operating temperature Optical current Peak sensitivity wavelength Redeseed temperature (5s) Response time drop time Response time increased time storage temperature
Inspector SPS Series-Part Number-SPS1502

SPS1502

Available upon quote 30V Condition E = 0.1mw/cm2, IL = 15μatyp0.15vmax0.4v 50ma 75MW -1 MW/℃ Condition VCE = 24V, E = 0. Typ0.005μA. Max0.1μA 5V ± 15 ° -30 ~+95 ℃ Condition E = 0.1mw/cm2, VCE = 3vmin50μatyp130μAmax210μA 870nm 260 ° C Conditions VCE = 5V, IC = 2ma, RL = 100ωTyp6μs Conditions VCE = 5V, IC = 2ma, RL = 100ωTyp6μs -40 ~+100 ℃

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