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actual size CS556x/7x/8x 24-pin SSOP CS5560 High-Throughput


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CS556x/7x/8x Family
actual size CS556x/7x/8x 24-pin SSOP
CS5560
High-Throughput Delta-Sigma Converters
CS556x/7x/8x family 24-bit 16-bit Delta-Sigma analog-todigital converters based upon unique modulator filter combination that offers high dynamic range along with very fast filter settling time conversion. These features provide benefits Delta-Sigma converters applications where converters usually dominant, i.e., designs with multiple inputs. These Delta-Sigma ADCs provide designers precision instrumentation, such industrial process controllers, laboratory instrumentation, medical instrumentation, high-speed weighing systems, with significantly higher level dynamic range lower sensitivity system interference while providing high multiplexer throughput. CS556x provides much higher level noise suppression than converters, resulting higher accuracy reduced post-conversion processing. family features error ±0.04 typical (CS5571), compared typical within converters. addition, single-conversion latency digital filter allows conversion-rate switching input with loss throughput. CS556x's high-throughput precision performance stands among high-resolution Delta-Sigma converters. Other features family include: On-chip input buffers that significantly reduce dynamic drive current required, compared competing devices. Fully differential inputs that provide best possible noise rejection dynamic accuracy, with ability measure bipolar signals. Analog supplies ±2.5 Using bipolar supply enables direct connection ground-centered input signals input ADC. Dither control function (CS5571) allows disabling dither reduce noise single-sample measurement signals. flexible serial interface that eases connections variety microcontrollers without external components (includes slave self-sequencing master modes).
www.cirrus.com
CS556x/7x/8x Family
CS5566 eatureS
High-throughput Delta-Sigma converter Exceptional ±0.1 differential nonlinearity error 24-bits, missing codes microsecond conversion rate, latency High-impedance buffered differential input Signal-to-noise ratio: Digital filter nearly flat Nyquist frequency digital ±2.5 analog supplies Simple three/four-wire serial digital interface power consumption 24-pin SSOP package; lead-free assembly
CS5560 eatureS
High-throughput Delta-Sigma converter Exceptional ±0.9 differential nonlinearity error 24-bits, missing codes microsecond conversion rate, latency High-impedance buffered differential input Signal-to-noise ratio: S/(N+D) Digital filter nearly flat Nyquist frequency digital ±2.5 analog supplies Simple three/four-wire serial digital interface power consumption (buffers 24-pin SSOP package; lead-free assembly
CS5581 eatureS
High-throughput Delta-Sigma converter Exceptional ±0.1 differential nonlinearity error 16-bits, missing codes microsecond conversion rate, latency High-impedance buffered single-ended input Signal-to-noise ratio: Digital filter nearly flat Nyquist frequency digital ±2.5 analog supplies Simple three/four-wire serial digital interface power consumption (buffers off) 24-pin SSOP Package; lead-free assembly
CS5571 eatureS
High-throughput Delta-Sigma converter Exceptional ±0.1 differential nonlinearity error 16-bits, missing codes microsecond conversion rate, latency High-impedance buffered single-ended input Signal-to-noise ratio: (Dither Digital filter nearly flat Nyquist frequency digital ±2.5 analog supplies Simple three/four-wire serial digital interface power consumption (buffers off) 24-pin SSOP package; lead-free assembly
Part Number CS5560 CS5566 CS5571 CS5581
Resolution
Throughput kSPS
Integral Linearity
Differential Linearity (LSB) ±0.9 ±0.1 ±0.1 ±0.1
Number Channels Differential Differential Single-ended Single-ended
Power Consumption
Package SSOP SSOP SSOP SSOP
www.cirrus.com
Cirrus 2901
Product Bulletin 0200-0508-PB 2008 Cirrus Logic, Inc. rights reserved. Product information subject change without notice. Cirrus Logic, Cirrus, Cirrus Logic logo designs trademarks Cirrus Logic, Inc. Other brand product names trademarks service marks their respective owners.

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