Product Information

CS5533-ASZ

CS5533-ASZ electronic component of Cirrus Logic

Datasheet
Analog to Digital Converters - ADC 4-Ch 16-Bit ADCs w/ Ultra Low Noise PGIA

Manufacturer: Cirrus Logic
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)

1: USD 14.076 ea
Line Total: USD 14.08

0 - Global Stock
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
0 - Global Stock


Ships to you between Thu. 02 May to Wed. 08 May

MOQ : 1
Multiples : 1

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CS5533-ASZ
Cirrus Logic

1 : USD 17.8823
10 : USD 15.7748
25 : USD 15.12
100 : USD 13.322
250 : USD 12.6682
500 : USD 11.8509
1000 : USD 10.8701

0 - Global Stock


Ships to you between Thu. 02 May to Wed. 08 May

MOQ : 236
Multiples : 236

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CS5533-ASZ
Cirrus Logic

236 : USD 11.3849

0 - Global Stock


Ships to you between Wed. 08 May to Fri. 10 May

MOQ : 1
Multiples : 1

Stock Image

CS5533-ASZ
Cirrus Logic

1 : USD 14.076
10 : USD 13.087
25 : USD 12.5465
118 : USD 11.3505
295 : USD 10.7985
531 : USD 10.2695
1003 : USD 9.8095
2537 : USD 9.8095
5015 : USD 9.7405

0 - Global Stock


Ships to you between Thu. 02 May to Wed. 08 May

MOQ : 1
Multiples : 1

Stock Image

CS5533-ASZ
Cirrus Logic

1 : USD 17.3686
2 : USD 11.3981
4 : USD 10.7739

     
Manufacturer
Product Category
RoHS - XON
Icon ROHS
Series
Mounting Style
Package / Case
Resolution
Number of Channels
Interface Type
Sampling Rate
Input Type
Architecture
Conversion Rate
Operating Supply Voltage
Minimum Operating Temperature
Maximum Operating Temperature
Packaging
Number Of Converters
Brand
Snr
Maximum Power Dissipation
Factory Pack Quantity :
Voltage Reference
Height
Length
Width
Cnhts
Hts Code
Inl - Integral Nonlinearity
Mxhts
Pd - Power Dissipation
Product Type
Reference Voltage
Subcategory
Taric
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CS5531/32/33/34-AS 16-bit and 24-bit ADCs with Ultra-low-noise PGIA Features General Description The CS5531/32/33/34 are highly integrated Analog- Chopper-stabilized PGIA (Programmable to-Digital Converters (ADCs) which use charge-balance Gain Instrumentation Amplifier, 1x to 64x) techniques to achieve 16-bit (CS5531/33) and 24-bit 12 nV/Hz 0.1 Hz (No 1/f noise) at 64x (CS5532/34) performance. The ADCs are optimized for 1200 pA Input Current with Gains >1 measuring low-level unipolar or bipolar signals in weigh scale, process control, scientific, and medical Delta-sigma Analog-to-digital Converter applications. Linearity Error: 0.0007% FS Noise Free Resolution: Up to 23 bits To accommodate these applications, the ADCs come as either two-channel (CS5531/32) or four-channel Two- or Four-channel Differential MUX (CS5533/34) devices and include a very low noise chop- per-stabilized instrumentation amplifier (6 nV/Hz 0.1 Scalable Input Span via Calibration Hz) with selectable gains of 1, 2, 4, 8, 16, 32, and 5 mV to differential 2.5V 64. These ADCs also include a fourth order modu- lator followed by a digital filter which provides twenty Scalable V Input: Up to Analog Supply REF selectable output word rates of 6.25, 7.5, 12.5, 15, 25, 30, 50, 60, 100, 120, 200, 240, 400, 480, 800, 960, 1600, Simple Three-wire Serial Interface 1920, 3200, and 3840 Sps (MCLK = 4.9152 MHz). SPI and Microwire Compatible Schmitt Trigger on Serial Clock (SCLK) To ease communication between the ADCs and a micro- controller, the converters include a simple three-wire se- R/W Calibration Registers Per Channel rial interface which is SPI and Microwire compatible with a Schmitt-trigger input on the serial clock (SCLK). Selectable Word Rates: 6.25 to 3,840 Sps High dynamic range, programmable output rates, and Selectable 50 or 60 Hz Rejection flexible power supply options makes these ADCs ideal solutions for weigh scale and process control Power Supply Configurations applications. VA+ = +5 V VA- = 0 V VD+ = +3 V to +5 V VA+ = +2.5 V VA- = -2.5 V VD+ = +3 V to +5 V ORDERING INFORMATION VA+ = +3 V VA- = -3 V VD+ = +3 V See page 47 VA+ C1 C2 VREF+ VREF- VD+ CS AIN1+ DIFFERENTIAL PGIA PROGRAMMABLE TH 4 ORDER 1,2,4,8,16 SDI AIN1- SINC FIR FILTER SERIAL 32,64 MODULATOR INTERFACE SDO AIN2+ MUX SCLK AIN2- (CS5533/34 AIN3+ SHOWN) AIN3- CLOCK CALIBRATION GENERATOR AIN4+ LATCH SRAM/CONTROL LOGIC AIN4- VA- A0/GUARD A1 OSC1 OSC2 DGND DEC 19 Copyright Cirrus Logic, Inc. 2010-2019 CS5531/32/33/34-AS TABLE OF CONTENTS 1. CHARACTERISTICS AND SPECIFICATIONS ..........................................................4 ANALOG CHARACTERISTICS..........................................................................4 TYPICAL RMS NOISE (NV), CS5531/32/33/34 .................................................7 TYPICAL NOISE-FREE RESOLUTION(BITS), CS5532/34...............................7 5 V DIGITAL CHARACTERISTICS ....................................................................8 3 V DIGITAL CHARACTERISTICS ....................................................................8 DYNAMIC CHARACTERISTICS ........................................................................9 ABSOLUTE MAXIMUM RATINGS .....................................................................9 SWITCHING CHARACTERISTICS ..................................................................10 2. GENERAL DESCRIPTION .......................................................................................12 2.1. Analog Input ....................................................................................................12 2.1.1. Analog Input Span ................................................................................... 13 2.1.2. Multiplexed Settling Limitations ............................................................13 2.1.3. Voltage Noise Density Performance .....................................................13 2.1.4. No Offset DAC ......................................................................................14 2.2. Overview of ADC Register Structure and Operating Modes ............................14 2.2.1. System Initialization ..............................................................................15 2.2.2. Serial Port Interface ..............................................................................22 2.2.3. Reading/Writing On-Chip Registers ......................................................23 2.3. Configuration Register .....................................................................................23 2.3.1. Power Consumption .............................................................................23 2.3.2. System Reset Sequence ......................................................................23 2.3.3. Input Short ............................................................................................24 2.3.4. Guard Signal .........................................................................................24 2.3.5. Voltage Reference Select .....................................................................24 2.3.6. Output Latch Pins .................................................................................24 2.3.7. Offset and Gain Select ..........................................................................25 2.3.8. Filter Rate Select ..................................................................................25 2.4. Setting up the CSRs for a Measurement .........................................................27 2.5. Calibration ........................................................................................................30 2.5.1. Calibration Registers ............................................................................30 2.5.2. Performing Calibrations ........................................................................31 2.5.3. Self-calibration ......................................................................................31 2.5.4. System Calibration ................................................................................32 2.5.5. Calibration Tips .....................................................................................32 2.5.6. Limitations in Calibration Range ...........................................................33 2.6. Performing Conversions ..................................................................................33 2.6.1. Single Conversion Mode .......................................................................33 2.6.2. Continuous Conversion Mode ..............................................................34 2.6.3. Examples of Using CSRs to Perform Conversions and Calibrations ....35 2.7. Using Multiple ADCs Synchronously ...............................................................36 2.8. Conversion Output Coding ..............................................................................36 2.9. Digital Filter ......................................................................................................38 2.10. Clock Generator ...............................................................................................39 2.11. Power Supply Arrangements ...........................................................................39 2.12. Getting Started ................................................................................................43 2.13. PCB Layout .....................................................................................................43 3. PIN DESCRIPTIONS ...............................................................................................44 4. SPECIFICATION DEFINITIONS ...............................................................................46 5. ORDERING INFORMATION .....................................................................................47 6. ENVIRONMENTAL, MANUFACTURING, & HANDLING INFORMATION ..............47 7. PACKAGE DRAWINGS ...........................................................................................48 2 DS289F7

Tariff Desc

8542.39.23 No ..Linear/analogue and peripheral integrated circuits, timers, voltage regulators, A/D and D/A converters, telecommunication and modem integrated circuits, other than board level products Free

Electronic integrated circuits- Processors and controllers, whether or not combined with memories, converters, logic circuits, amplifiers, clock and timing circuits, or other circuits
Cirrus
CIRRUS LOGIC
Cirrus Logic Inc
Cirrus Logic Inc.
Wolfson
Wolfson / Cirrus Logic
WOLFSON MICROELECTRONICS
Wolfson Microelectronics PLC

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