MAX5109
Nonvolatile, Dual, 8-Bit DACs with 2-Wire Serial Interface
Dual 8-Bit DAC with 2-Wire Serial Interface Features Nonvolatile Registers
Part Details
- Nonvolatile Registers Initialize DACs to Stored States
- +2.7V to +5.25V Single-Supply Operation
- Dual 8-Bit DACs with Independent High and Low Reference Inputs
- Rail-to-Rail Output Buffers
- Low 200µA per DAC Supply Current
- Power-Down Mode Reduces Supply Current to 25µA (max)
- 400kHz, I²C-Compatible, 2-Wire Serial Interface
- Asynchronous Active-Low MUTE Input
- Small 16-Pin QSOP Package
The MAX5109 dual 8-bit digital-to-analog converters (DACs) feature nonvolatile registers. These nonvolatile registers store the DAC operating modes and output states, allowing the DACs to initialize to specified configurations at power-up. Precision on-chip output buffers swing rail-to-rail, and provide 8µs settling time. The I²C-compatible, 2-wire serial interface allows for a maximum clock frequency of 400kHz. The MAX5109 has independent high and low reference inputs allowing maximum output voltage range flexibility. The reference rails accept voltage inputs that range from ground to the positive supply rail. This device operates from a single +2.7V to +5.25V supply and consumes 200µA per DAC. A software-controlled power-down mode decreases supply current to less than 25µA. A software-controlled mute mode sets each DAC, or both DACs simultaneously, to their respective REFL_ voltages. The MAX5109 also includes an asynchronous active-low MUTE input, that drives both DAC outputs simultaneously to their respective REFL_ voltages. The MAX5109 is available in a 16-pin QSOP and is specified for operation over the extended (-40°C to +85°C) temperature range.
Applications
- ATE Calibration
- Digital Gain and Offset Adjustments
- Laser Biasing
- Portable Instrumentation
- Power-Amp Bias Control
- Programmable Attenuators
Documentation
Data Sheet 1
Technical Articles 3
This is the most up-to-date revision of the Data Sheet.
Hardware Ecosystem
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