CPC1832
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CPC1832NTR (pdf) |
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CPC1832N |
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INTEGRATED CIRCUITS DIVISION Parameter Open Circuit Voltage Short Circuit Current Rating 8 50 * Direct sunlight Approximately 6000 lux Units V • 8V Output • Triggers with Natural Sunlight • Provides True Wireless Power • No EMI/RFI Generation • Wave Solderable • Replacement of Discrete Components • Solid State Reliability • Portable Electronics • Solar Battery Chargers • Battery Operated Equipment • Consumer Electronics • Off-Grid Installation • Wireless Sensors and Detection • Flame Detection • Self Powered Sunlight/ Light Detection • Self Powered Products • Remote Installation CPC1832 8V Output Solar Cell The CPC1832 is a monolithic photovoltaic string of solar cells on Silicon-On-Insulator SOI . This patented design allows for higher voltage solar cells in a compact package. When operating in sunlight or a bright artificial light environment, the optical energy will activate the cell array, and generate a voltage at the output. The solar cells are capable of generating a floating source voltage and current sufficient to drive and power CMOS ICs, logic gates, and/or provide "trickle charge" for battery applications. Ordering Information Part # CPC1832N CPC1832NTR Description 16-Pin Clear Molded SOIC Package 50/Tube 16-Pin Clear Molded SOIC Package 1000/Reel Block Diagram 16 V+ DS-CPC1832-R04 INTEGRATED CIRCUITS DIVISION CPC1832 Absolute Maximum Ratings Ratings 10 Operational Temperature -40 to +85 Storage Temperature -40 to +125 Electrical absolute maximum ratings are at 25°C Units V °C °C Absolute Maximum Ratings are stress ratings. Stresses in excess of these ratings can cause permanent damage to the device. Functional operation of the device at conditions beyond those indicated in the operational sections of this data sheet is not implied. Electrical Characteristics Parameter Conditions Max Units Output Characteristics 25°C Open Circuit Voltage Short Circuit Current Direct Sun 6000 lux High Intensity Lamp Direct Sun 6000 lux Normalized Output Voltage V PERFORMANCE DATA* Normalized Open Circuit Output Voltage vs. Light Intensity Light Intensity lux X 1000 Normalized Output Current PA Normalized Short Circuit Output Current vs. Light Intensity Light Intensity lux X 1000 Normalized Open Circuit Output Voltage vs. Incident Angle of Light to Photodiode Surface Incident Angle Degrees Normalized Output Current Normalized Short Circuit Output Current vs. Incident Angle of Light to Photodiode Surface Incident Angle Degrees Normalized Output Voltage *The Performance data shown in the graphs above is typical of device performance. For guaranteed parameters not indicated in the written please contact our application department. INTEGRATED CIRCUITS DIVISION |
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