Documentos Técnicos
Especificaciones
Casquillo de la Lámpara
E114
Longitud de la Hoja
152.0 mm
Serie
Han-Modular Twin Series
Diámetro Externo
6.8mm
Brand
3MPaís de Origen
United States
Datos del producto
Convertidor elevador de dc-dc MCP1640 Ref Design
The MCP1640 12V/50mA Two Cells Input Boost Converter Reference Design is designed to demonstrate the MCP1640 devices high-voltage boost capability above its typical output range of 5.5V. This board boosts the low-voltage input to 12V and up to 70mA load. By changing specific resistors, a lower/higher output than 12V can be obtained. The MCP1640 Input Boost Converter was developed to help engineers reduce product design cycle time. At 2.0V input and 12V output the board is capable of a maximum of 50mA load current.
Tensión de entrada: dos pilas alcalinas o de litio, 2,0 - 3,0 V típico
Admite un rango de entrada ampliado de 2,0 - 5,0 V
Salida: 12 V / 50 mA típico a entrada de 2,0 V
Salida: 12 V / 70 mA a entrada de 3,3 V
Corriente de entrada sin carga: 0,2 mA a entrada de 3,0 V
Eficiencia: hasta el 75%
Funcionamiento PWM a 500 kHz
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Documentos Técnicos
Especificaciones
Casquillo de la Lámpara
E114
Longitud de la Hoja
152.0 mm
Serie
Han-Modular Twin Series
Diámetro Externo
6.8mm
Brand
3MPaís de Origen
United States
Datos del producto
Convertidor elevador de dc-dc MCP1640 Ref Design
The MCP1640 12V/50mA Two Cells Input Boost Converter Reference Design is designed to demonstrate the MCP1640 devices high-voltage boost capability above its typical output range of 5.5V. This board boosts the low-voltage input to 12V and up to 70mA load. By changing specific resistors, a lower/higher output than 12V can be obtained. The MCP1640 Input Boost Converter was developed to help engineers reduce product design cycle time. At 2.0V input and 12V output the board is capable of a maximum of 50mA load current.
Tensión de entrada: dos pilas alcalinas o de litio, 2,0 - 3,0 V típico
Admite un rango de entrada ampliado de 2,0 - 5,0 V
Salida: 12 V / 50 mA típico a entrada de 2,0 V
Salida: 12 V / 70 mA a entrada de 3,3 V
Corriente de entrada sin carga: 0,2 mA a entrada de 3,0 V
Eficiencia: hasta el 75%
Funcionamiento PWM a 500 kHz