Documente tehnice
Specificatii
Marca
MicrochipResolution
10 bit
Timp montare
Surface Mount
Tip pachet
QFN
Numar pini
28
Dimensiuni
5 x 5 x 0.8mm
Lungime
5mm
Latime
5mm
Inaltime
0.8mm
Maximum Operating Supply Voltage
3.6 V
Temperatura maxima de lucru
+125 °C
Minimum Operating Supply Voltage
2.7 V
Frecventa minima de auto-rezonanta
-40 °C
Tara de origine
Thailand
Detalii produs
MCP39F511N Energy Measurement ICs
The MCP39F511N from Microchip is an integrated, dual-channel, single-phase power monitoring device that provides real-time measurement of input power and energy values for AC/DC power supplies. The capabilities of the MCP39F511N are ideal for applications such as dual-socket wall outlets, power strips, AC/DC power supplies, and power distribution.
On-board are three Analogue-to-Digital Converters (ADCs) for voltage and current load measurement, a 16-bit Calculation Engine, EEPROM and a flexible 2-Wire Interface. An integrated low-drift voltage reference combined with the 94.5 dB of SINAD performance on each measurement channel allows for better than 0.5% accurate designs across a 4000:1 dynamic range.
Energy/Power Measurement - Microchip
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P.O.A.
73
Documente tehnice
Specificatii
Marca
MicrochipResolution
10 bit
Timp montare
Surface Mount
Tip pachet
QFN
Numar pini
28
Dimensiuni
5 x 5 x 0.8mm
Lungime
5mm
Latime
5mm
Inaltime
0.8mm
Maximum Operating Supply Voltage
3.6 V
Temperatura maxima de lucru
+125 °C
Minimum Operating Supply Voltage
2.7 V
Frecventa minima de auto-rezonanta
-40 °C
Tara de origine
Thailand
Detalii produs
MCP39F511N Energy Measurement ICs
The MCP39F511N from Microchip is an integrated, dual-channel, single-phase power monitoring device that provides real-time measurement of input power and energy values for AC/DC power supplies. The capabilities of the MCP39F511N are ideal for applications such as dual-socket wall outlets, power strips, AC/DC power supplies, and power distribution.
On-board are three Analogue-to-Digital Converters (ADCs) for voltage and current load measurement, a 16-bit Calculation Engine, EEPROM and a flexible 2-Wire Interface. An integrated low-drift voltage reference combined with the 94.5 dB of SINAD performance on each measurement channel allows for better than 0.5% accurate designs across a 4000:1 dynamic range.