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DC2798 Demo Circuit for LTC7841

Analog Devices DC2798 Demo Circuit for LTC7841 is a high voltage, dual-phase single output boost converter with 10V to 16V input range. The output voltage is adjustable from VIN to 48V and the output can supply a 10A maximum load current. The demo board has an LTC7841 controller, which is a 60V dual-phase single output boost controller with digital power system management. The Analog Devices DC2798A powers up to default settings and produces power based on the command from the serial bus communication. This allows for easy evaluation of the DC/DC converter. To fully explore the extensive power system management features of the part, download the GUI software LTpowerPlay® onto a PC and use ADI’s I2C/SMBus/PMBus dongle DC1613A to connect to the board. LTpowerPlay allows the user to reconfigure the part on-the-fly, view the telemetry of voltage, current, temperature, and fault status.

TT-MU-584-DC2798A
in stock INR 29131.89664
Analog Devices
1 1

Power Management IC Development Tools 2-Phase Single VOUT demo board w/ PMBus

Sku: TT-MU-584-DC2798A
₹29,131.9


Sold By: tenettech
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Description of product

DC2798 Demo Circuit for LTC7841

Analog Devices DC2798 Demo Circuit for LTC7841 is a high voltage, dual-phase single output boost converter with 10V to 16V input range. The output voltage is adjustable from VIN to 48V and the output can supply a 10A maximum load current. The demo board has an LTC7841 controller, which is a 60V dual-phase single output boost controller with digital power system management. The Analog Devices DC2798A powers up to default settings and produces power based on the command from the serial bus communication. This allows for easy evaluation of the DC/DC converter. To fully explore the extensive power system management features of the part, download the GUI software LTpowerPlay® onto a PC and use ADI’s I2C/SMBus/PMBus dongle DC1613A to connect to the board. LTpowerPlay allows the user to reconfigure the part on-the-fly, view the telemetry of voltage, current, temperature, and fault status.