MAX1422
MAX1422 is 12-Bit 20Msps 3.3V Low-Power ADC manufactured by Maxim Integrated.
Description
The MAX1422 3.3V, 12-bit analog-to-digital converter (ADC) features a fully differential input, pipelined, 12stage ADC architecture with wideband track-and-hold (T/H) and digital error correction incorporating a fully-differential signal path. The MAX1422 is optimized for lowpower, high dynamic performance applications in imaging and digital munications. The converter operates from a single 3.3V supply, consuming only 137m W while delivering a 67d B (typ) signal-to-noise ratio (SNR) at a 5MHz input frequency and a 20Msps sampling frequency. The fully-differential input stage has a small signal -3d B bandwidth of 400MHz and may be operated with single-ended inputs. An internal 2.048V precision bandgap reference sets the ADCs full-scale range. A flexible reference structure acmodates an internally or externally applied buffered or unbuffered reference for applications requiring increased accuracy or a different input voltage range. In addition to low operating power, the MAX1422 features two power-down modes, a reference power-down, and a shutdown mode. In reference power-down, the internal bandgap reference is deactivated, resulting in a 2m A (typ) supply current reduction. For idle periods, a full shutdown mode is available to maximize power savings. The MAX1422 provides parallel, offset binary, CMOSpatible three-state outputs. The MAX1422 is available in a 7mm ✕ 7mm ✕ 1.4mm, 48-pin TQFP package and is specified over the mercial (0°C to +70°C) and extended industrial (-40°C to +85°C) temperature ranges. Pin-patible higher-speed versions of the MAX1422 are also available. Please refer to the MAX1421 data sheet for 40Msps and the MAX1420 data sheet for 60Msps.
- Single 3.3V Power Supply
- 67d B SNR at f IN = 5MHz
- Internal 2.048V Precision Bandgap Reference
- Differential Wideband Input T/H Amplifier
- Power-Down Modes 130m W (Reference Shutdown Mode) 10µW (Shutdown Mode)
- Space-Saving 48-Pin TQFP Package
Features
Ordering Information
PART...