Datasheet AD5235 (Analog Devices) - 7

HerstellerAnalog Devices
BeschreibungNonvolatile Memory, Dual 1024-Position Digital Potentiometer
Seiten / Seite32 / 7 — Data Sheet. AD5235. Timing Diagrams. CPHA = 1. t12. CLK. CPOL = 1. B23. …
RevisionF
Dateiformat / GrößePDF / 800 Kb
DokumentenspracheEnglisch

Data Sheet. AD5235. Timing Diagrams. CPHA = 1. t12. CLK. CPOL = 1. B23. t17. HIGH. OR LOW. SDI. B23 (MSB). B0 (LSB). SDO. B24*. t14. t15. t16. RDY

Data Sheet AD5235 Timing Diagrams CPHA = 1 t12 CLK CPOL = 1 B23 t17 HIGH OR LOW SDI B23 (MSB) B0 (LSB) SDO B24* t14 t15 t16 RDY

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Data Sheet AD5235 Timing Diagrams CPHA = 1 CS t12 t t 3 13 t t 1 2 CLK t CPOL = 1 5 B23 B0 t17 t4 t7 t6 HIGH HIGH OR LOW OR LOW SDI B23 (MSB) B0 (LSB) t t 8 t 11 t9 10 SDO B24* B23 (MSB) B0 (LSB) t14 t15 t16 RDY *THE EXTRA BIT THAT IS NOT DEFINED IS NORMALLY THE LSB OF THE CHARACTER PREVIOUSLY TRANSMITTED.
002
THE CPOL = 1 MICROCONTROLLER COMMAND ALIGNS THE INCOMING DATA TO THE POSITIVE EDGE OF THE CLOCK.
02816- Figure 2. CPHA = 1 Timing Diagram
CPHA = 0 CS t12 t1 t t 3 13 t2 t5 B23 B0 t17 CLK CPOL = 0 t4 t7 t6 HIGH HIGH OR LOW OR LOW SDI B23 (MSB IN) B0 (LSB) t8 t10 t11 t9 SDO B23 (MSB OUT) B0 (LSB) * t14 t15 t16 RDY *THE EXTRA BIT THAT IS NOT DEFINED IS NORMALLY THE MSB OF THE CHARACTER JUST RECEIVED.
003
THE CPOL = 0 MICROCONTROLLER COMMAND ALIGNS THE INCOMING DATA TO THE POSITIVE EDGE OF THE CLOCK.
02816- Figure 3. CPHA = 0 Timing Diagram Rev. F | Page 7 of 32 Document Outline Features Applications General Description Functional Block Diagram Revision History Specifications Electrical Characteristics—25 kΩ, 250 kΩ Versions Interface Timing and EEMEM Reliability Characteristics—25 kΩ, 250 kΩ Versions Timing Diagrams Absolute Maximum Ratings ESD Caution Pin Configuration and Function Descriptions Typical Performance Characteristics Test Circuits Theory of Operation Scratchpad and EEMEM Programming Basic Operation EEMEM Protection Digital Input and Output Configuration Serial Data Interface Daisy-Chain Operation Terminal Voltage Operating Range Power-Up Sequence Layout and Power Supply Bypassing Advanced Control Modes Linear Increment and Decrement Instructions Logarithmic Taper Mode Adjustment Using to Re-Execute a Previous Command Using Additional Internal Nonvolatile EEMEM Calculating Actual End-to-End Terminal Resistance RDAC Structure Programming the Variable Resistor Rheostat Operation Programming the Potentiometer Divider Voltage Output Operation Programming Examples EVAL-AD5235SDZ Evaluation Kit Applications Information Bipolar Operation from Dual Supplies Gain Control Compensation High Voltage Operation DAC Bipolar Programmable Gain Amplifier 10-Bit Bipolar DAC Programmable Voltage Source with Boosted Output Programmable Current Source Programmable Bidirectional Current Source Programmable Low-Pass Filter Programmable Oscillator Optical Transmitter Calibration with ADN2841 Resistance Scaling Resistance Tolerance, Drift, and Temperature Coefficient Mismatch Considerations RDAC Circuit Simulation Model Outline Dimensions Ordering Guide