Errol Leon, Analog Applications Precision Linear Analog Applications

Slides:



Advertisements
Similar presentations
Georgia Tech Digital Back-end µHRG interface Curtis Mayberry School of Electrical and Computer Engineering Georgia Institute of Technology January 13 th,
Advertisements

PSPICE Tutorial. Introduction SPICE (Simulation Program for Integrated Circuits Emphasis) is a general purpose analog circuit simulator that is used to.
Introduction to Analog-to-Digital Converters
Amplifier Circuit This amplifier circuit DC analysis.
Solving Op Amp Stability Issues Part 1
Experiment 17 A Differentiator Circuit
OPA549 and Negative Whisker on Enable
Composite Amplifier Stability Analysis First Scheme & Second Scheme Tim Green, MGTS Precision Linear Analog Applications August 7,
Solving Op Amp Stability Issues Part 3 (For Voltage Feedback Op Amps) Tim Green & Collin Wells Precision Analog Linear Applications 1.
Digital to Analog Converter for High Fidelity Audio Applications Matt Smith Alfred Wanga CSE598A.
OPA348 High Pass Filter Tim Green, MGTS Precision Linear Analog Applications July 9,
SYDE 292 Circuits, Instrumentation and Measurement Instructor: Prof. Dan Stashuk DC 2613 Ext Objectives: Based on E & M.
Class D Output Power Estimation Audio Group Applications 1.
Tim Green, Linear Applications OPA735 Zo Released SPICE Macro AC Stability Analysis.
TLC271 Stability Investigation Tim Green, MGTS Precision Linear Analog Applications February 25,
Solving Op Amp Stability Issues Part 3 (For Voltage Feedback Op Amps) Tim Green & Collin Wells Precision Analog Linear Applications 1.
Digital to Analog Converter for High Fidelity Audio Applications Matt Smith Alfred Wanga CSE598A.
Analog to Digital Converters
RD53 Analog IP blocks WG : developments and plans at CPPM M. Barbero, L. Gallin Martel (LPSC), Dzahini (LPSC), D. Fougeron, R. Gaglione (LAPP), F. Gensolen,
Simulated Inductance Experiment 25.
Low Power, High-Throughput AD Converters
ASIC Development for Vertex Detector ’07 6/14 Y. Takubo (Tohoku university)
Evaluation of OPA569 Bridge-Tied-Load Errol Leon and Thomas Kuehl Precision Linear Analog Applications January 26,
CMOS Analog Design Using All-Region MOSFET Modeling
Evaluation of OPA569 Bridge-Tied-Load Errol Leon and Thomas Kuehl Precision Linear Analog Applications February 3,
Current Monitor Group (1606) Maya Dubrow Barath Parthasarathy Andrew Pikul Jason Stock.
Created by Tim Green, Art Kay Presented by Peggy Liska
SAR ADC Input Types TIPL 4003 TI Precision Labs – ADCs
Quiz: Calculating the total noise for ADC systems TIPL 4204 TI Precision Labs – ADCs Created by Art Kay.
Quiz: Determining a SAR ADC’s Linear Range when using Instrumentation Amplifiers TIPL 4102 TI Precision Labs – ADC Hello, and welcome to the TI Precision.
Created by Tim Green, Art Kay Presented by Peggy Liska
Created by Tim Green, Art Kay Presented by Peggy Liska
B.Sc. Thesis by Çağrı Gürleyük
SAR ADC Power Scaling TIPL 4601 TI Precision Labs – ADCs
Quiz: DC Specifications TIPL 4001 TI Precision Labs – ADCs
Quiz: Driving a SAR ADC with a Fully Differential Amplifier TIPL 4103 TI Precision Labs – ADCs Created by Art Kay.
SAR ADC Power Scaling TIPL 4601 TI Precision Labs – ADCs
R&D activity dedicated to the VFE of the Si-W Ecal
UNIT-5 Design of CMOS Op Amps.
Created by Luis Chioye, Art Kay Presented by Peggy Liska
Quiz: SAR ADC Input Types TIPL 4003 TI Precision Labs – SAR
Clock Driver PSpice Simulations IUCAA Bhushan Joshi Kalpesh Chillal
Gentec: 12 Bit Driver for TMS320F2837xD Delfino MCU
Tim Green, MGTS Precision Linear Analog Applications January 8, 2015
CALICE COLLABORATION LPC Clermont LAL Orsay Samuel MANEN Julien FLEURY
SAR ADC Power Scaling TIPL 4601 TI Precision Labs – ADCs
Created by Tim Green, Art Kay Presented by Peggy Liska
Aliasing and Anti-aliasing Filters TIPL 4304 TI Precision Labs – ADCs
A Low Power Readout ASIC for Time Projection Chambers in 65nm CMOS
Amplifier Settling and Charge Bucket Filter Design TIPL 4405-L TI Precision Labs – ADCs Hello and welcome to the TI Precision labs hands-on experiment.
Created by Luis Chioye, Art Kay Presented by Cynthia Sosa
Created by Luis Chioye Presented by Cynthia Sosa
Created by Luis Chioye Presented by Cynthia Sosa
Created by Luis Chioye Presented by Cynthia Sosa
OPA1632 Stability Analysis
Capacitor Charging: Voltage Across Sample & Hold Capacitor
Tim Green, MGTS Precision Op Amp Applications Manager January 10, 2018
Created by Art Kay Presented by Peggy Liska
Quiz: Introduction to SAR ADC Component Selection TIPL 4401 TI Precision Labs – ADCs Hello, and welcome to the TI Precision Lab discussing input offset.
Inductive Sensor Analysis
Modeling CDAC SAR Input A case study of ADS8320
ADS7841 SAR Input Model (6/1/17)
OPA549 Improved Howland Current Pump Stability Analysis
Refine the Rfilt and Cfilt Values TIPL 4404 TI Precision Labs – ADCs
Comparator Test Buffer
Quiz: Introduction to SAR ADC Component Selection TIPL 4401 TI Precision Labs – ADCs Hello, and welcome to the TI Precision Lab discussing input offset.
Inductive Sensor Analysis
12 bit SAR driver for TIVA MCU TM4C129ENCPDT
OPA2227 All NPN Output Stage Analysis
Current Monitor Group (1606)
Presentation transcript:

OPA340 driving ADS7816 - 12bit ADC Errol Leon, Analog Applications Precision Linear Analog Applications October 5, 2016

Summary Assumptions of ADC 5V supply same as Vref Fclk runs at 3.2MHz Model is ½ LSB accurate Model and simulate 12 bit ADC from ADS7816 datasheet Model and simulate OPA340 directly driving 12 bit ADC ADS7816 Model and simulate OPA340 directly driving 12 bit ADC ADS7816 with Rflt and Cflt Summary and recommended circuit

Modeling ADS7816 - 12bit ADC

ADS7816 - ADC Modeling - Calculations

ADS7816 - ADC Modeling - Calculations

ADS7816- ADC Modeling- Schematic Equivalent circuit of ADC CSH - sample capacitor 25pF RSW – switch resistance 187Ω R1 – voltage source interface resistance 100Ω

ADS7816- ADC Modeling- Simulation

Modeling OPA340 directly driving ADS7816

OPA340 directly driving ADS7816- ADC Modeling- Schematic R2, R3, and R4 are used only for simulation convergence.

Transient Analysis of OPA340 directly driving ADS7816 circuit Settling Time Settling time within a ½ LSB of Verror at 11.61uV

Modeling OPA340 with RC Filter ADS7816

OPA340 with RC Filter to ADS7816- ADC Modeling- Schematic R2, R3, and R4 are used only for simulation convergence.

Transient Analysis of OPA340 directly driving ADS7816 circuit Settling Time Settling time within a ½ LSB of Verror at 438.1uV

Transient Analysis of DC Voltage Circuit Settling Time - Summary Both circuits are within a 1/2 LSB setting time. Recommended to use RC filter to mitigate 2nd and 3rd order effects based off of parasitic switching capacitance from the ADC as well as filtering high frequency noise..

Op Amp Reference For more in-depth learning about op amps and op amp stability look at TI Precision Labs at: www.ti.com/precisionlabs Analog Engineer’s Pocket Reference A “must-have” for every Board/System Design Engineer Download: http://www.ti.com/lsds/ti/amplifiers-linear/precision-amplifier-support-community.page#pocketref Buy Hardcopy: https://store.ti.com/Search.aspx?k=pocket+reference&pt=-1 All Embedded Schematics in this presentation can be run in the Free TINA_TI SPICE simulator available at: http://www.ti.com/tool/tina-ti