Features: ·170Msps Conversion Rate·Low Noise Floor of -68dBFS·Excellent Low-Noise Characteristics SNR = 65.8dB at fIN = 65MHz SNR = 64.5dB at fIN = 250MHz·Excellent Dynamic Range SFDR = 76.5dBc at fIN = 65MHz SFDR = 72.9dBc at fIN = 250MHz·59.5dB NPR for fNOTCH = 28.8MHz and a Noise Bandwidth of 5...
MAX1213: Features: ·170Msps Conversion Rate·Low Noise Floor of -68dBFS·Excellent Low-Noise Characteristics SNR = 65.8dB at fIN = 65MHz SNR = 64.5dB at fIN = 250MHz·Excellent Dynamic Range SFDR = 76.5dBc at f...
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The MAX1213 is a monolithic, 12-bit, 170Msps analogto- digital converter (ADC) optimized for outstanding dynamic performance at high-IF frequencies up to
300MHz. The product operates with conversion rates up to 170Msps while consuming only 788mW.
At 170Msps and an input frequency up to 250MHz, the MAX1213 achieves a spurious-free dynamic range (SFDR) of 72.9dBc. Its excellent signal-to-noise ratio
(SNR) of 65.8dB at 10MHz remains flat (within 2dB) for input tones up to 250MHz. This ADC yields an excellent low-noise floor of -68dBFS, which makes it ideal for wideband applications such as cable head-end receivers and power-amplifier predistortion in cellular base-station transceivers.
The MAX1213 requires a single 1.8V supply. The analog input is designed for either differential or single-ended operation and can be AC- or DC-coupled. The ADC also features a selectable on-chip divide-by-2 clock circuit, which allows the user to apply clock frequencies as high as 340MHz. This helps to reduce the phase noise of the input clock source. A low-voltage differential signal (LVDS) sampling clock is recommended for best performance. The converter's digital outputs are LVDS compatible and the data format can be selected to be either two's complement or offset binary.
The MAX1213 is available in a 68-pin QFN package with exposed paddle (EP) and is specified over the industrial (-40 to +85 ) temperature range.
See the Pin-Compatible Versions table for a complete selection of 8-bit, 10-bit, and 12-bit high-speed ADCs in this family.