Ultraprecision, 36 V, 2.8 nv/ Hz Dual Rail-to-Rail Output Op Amp AD8676

Similar documents
Ultraprecision, 36 V, 2.8 nv/ Hz Dual Rail-to-Rail Output Op Amp AD8676

Low Power, Precision, Auto-Zero Op Amps AD8538/AD8539 FEATURES Low offset voltage: 13 μv maximum Input offset drift: 0.03 μv/ C Single-supply operatio

16 V, 4 MHz RR0 Amplifiers AD8665/AD8666/AD8668

Dual, Ultralow Distortion, Ultralow Noise Op Amp AD8599

15 MHz, Rail-to-Rail, Dual Operational Amplifier OP262-EP

Low Power, Rail-to-Rail Output, Precision JFET Amplifiers AD8641/AD8642/AD8643

Low Cost JFET Input Operational Amplifiers ADTL082/ADTL084

Precision, Low Noise, CMOS, Rail-to-Rail, Input/Output Operational Amplifiers AD8605/AD8606/AD8608

Low Cost JFET Input Operational Amplifiers ADTL082/ADTL084

AD864/AD8642/AD8643 TABLE OF CONTENTS Specifications... 3 Electrical Characteristics... 3 Absolute Maximum Ratings... 5 ESD Caution... 5 Typical Perfo

Low Cost, Precision JFET Input Operational Amplifiers ADA4000-1/ADA4000-2/ADA4000-4

Micropower Precision CMOS Operational Amplifier AD8500

AD8613/AD8617/AD8619. Low Cost Micropower, Low Noise CMOS Rail-to-Rail, Input/Output Operational Amplifiers PIN CONFIGURATIONS FEATURES APPLICATIONS

Ultraprecision Operational Amplifier OP177

Single-Supply, Rail-to-Rail, Low Power, FET Input Op Amp AD820

TABLE OF CONTENTS Features... Applications... Pin Configurations... General Description... Revision History... 2 Specifications... 3 Absolute Maximum

Dual Low Offset, Low Power Operational Amplifier OP200

Ultralow Offset Voltage Operational Amplifier OP07

High Common-Mode Voltage, Programmable Gain Difference Amplifier AD628

24 MHz Rail-to-Rail Amplifiers with Shutdown Option AD8646/AD8647/AD8648

General-Purpose CMOS Rail-to-Rail Amplifiers AD8541/AD8542/AD8544

4 MHz, 7 nv/ Hz, Low Offset and Drift, High Precision Amplifier ADA EP

General-Purpose CMOS Rail-to-Rail Amplifiers AD8541/AD8542/AD8544

Ultralow Offset Voltage Dual Op Amp AD708

150 μv Maximum Offset Voltage Op Amp OP07D

Dual/Quad Low Power, High Speed JFET Operational Amplifiers OP282/OP482

Dual/Quad Low Power, High Speed JFET Operational Amplifiers OP282/OP482

Low Power, Wide Supply Range, Low Cost Unity-Gain Difference Amplifier AD8276

Single and Dual, Ultralow Distortion, Ultralow Noise Op Amps AD8597/AD8599 PIN CONFIGURATIONS FEATURES APPLICATIONS

Very Low Distortion, Precision Difference Amplifier AD8274

16 V, 1 MHz, CMOS Rail-to-Rail Input/Output Operational Amplifier ADA4665-2

Precision, Very Low Noise, Low Input Bias Current Operational Amplifiers

Dual Precision, Low Cost, High Speed BiFET Op Amp AD712-EP

1.8 V Low Power CMOS Rail-to-Rail Input/Output Operational Amplifier AD8515

1.8 V, Micropower, Zero-Drift, Rail-to-Rail Input/Output Op Amp ADA4051-2

Ultralow Offset Voltage Operational Amplifier OP07

AD8603/AD8607/AD8609. Precision Micropower, Low Noise CMOS Rail-to-Rail Input/Output Operational Amplifiers

Ultralow Power, Rail-to-Rail Output Operational Amplifiers OP281/OP481

Rail-to-Rail, High Output Current Amplifier AD8397

Very Low Distortion, Dual-Channel, High Precision Difference Amplifier AD8274 FUNCTIONAL BLOCK DIAGRAM +V S FEATURES APPLICATIONS GENERAL DESCRIPTION

Quad 7 ns Single Supply Comparator AD8564

Low Cost Low Power Instrumentation Amplifier AD620

Dual Picoampere Input Current Bipolar Op Amp AD706. Data Sheet. Figure 1. Input Bias Current vs. Temperature

Single-Supply, Rail-to-Rail, Low Power, FET Input Op Amp AD820

High Voltage, Current Shunt Monitor AD8215

Low Power, Wide Supply Range, Low Cost Difference Amplifiers, G = ½, 2 AD8278/AD8279

Zero Drift, Unidirectional Current Shunt Monitor AD8219

10-Channel Gamma Buffer with VCOM Driver ADD8710

High Resolution, Zero-Drift Current Shunt Monitor AD8217

High Voltage, Current Shunt Monitor AD8215

Quad Low Offset, Low Power Operational Amplifier OP400

Low Cost, High Speed Differential Amplifier AD8132

Ultraprecision Operational Amplifier OP177

Precision Instrumentation Amplifier AD524

Precision Low Power Single-Supply JFET Amplifiers AD8625/AD8626/AD8627

Dual Picoampere Input Current Bipolar Op Amp AD706

Quad Low Offset, Low Power Operational Amplifier OP400

Zero Drift, Digitally Programmable Instrumentation Amplifier AD8231-EP OP FUNCTIONAL BLOCK DIAGRAM FEATURES ENHANCED PRODUCT FEATURES

Single-Supply, Rail-to-Rail, Low Power FET-Input Op Amp AD820

AD8628/AD8629/AD863 TABLE OF CONTENTS Features... Applications... General Description... Pin Configurations... Revision History... 2 Specifications...

Dual Low Power Operational Amplifier, Single or Dual Supply OP221

Ultralow Input Bias Current Operational Amplifier AD549

Single-Supply, Rail-to-Rail Low Power FET-Input Op Amp AD822

AD MHz, 20 V/μs, G = 1, 10, 100, 1000 i CMOS Programmable Gain Instrumentation Amplifier. Preliminary Technical Data FEATURES

AD8218 REVISION HISTORY

Zero-Drift, High Voltage, Bidirectional Difference Amplifier AD8207

Precision Micropower Single Supply Operational Amplifier OP777

1.8 V, Micropower, Zero-Drift, Rail-to-Rail Input/Output Op Amp ADA4051-1/ADA4051-2

ADA485-/ADA485- TABLE OF CONTENTS Features... Applications... Pin Configurations... General Description... Revision History... Specifications... 3 Spe

Dual Picoampere Input Current Bipolar Op Amp AD706

Single-Supply, 42 V System Difference Amplifier AD8206

AD8601/AD8602/AD8604. Precision CMOS, Single-Supply, Rail-to-Rail, Input/Output Wideband Operational Amplifiers FEATURES PIN CONFIGURATIONS

6 db Differential Line Receiver

16 V Auto-Zero, Rail-to-Rail Output Operational Amplifiers AD8638/AD8639

Single-Supply, Rail-to-Rail Low Power FET-Input Op Amp AD822

SGM8551XN Single-Supply, Single Rail-to-Rail I/O Precision Operational Amplifier

High Performance, 145 MHz FastFET Op Amps AD8065/AD8066

TABLE OF CONTENTS AD8625/AD8626/AD8627 Specifications... 3 Electrical Characteristics... 3 Electrical Characteristics... 4 Absolute Maximum Ratings...

AD8510/AD8512/AD8513. Precision, Very Low Noise, Low Input Bias Current, Wide Bandwidth JFET Operational Amplifiers FEATURES PIN CONFIGURATIONS

Precision Low Power Single-Supply JFET Amplifiers AD8625/AD8626/AD8627

High Voltage, Bidirectional Current Shunt Monitor AD8210

Dual, High Voltage Current Shunt Monitor AD8213

Self-Contained Audio Preamplifier SSM2019

Precision Low Power Single-Supply JFET Amplifier AD8627/AD8626/AD8625

Low Power, Wide Supply Range, Low Cost Unity-Gain Difference Amplifiers AD8276/AD8277

Low Cost, DC to 500 MHz, 92 db Logarithmic Amplifier AD8307

Single-Supply, Rail-to-Rail Low Power FET-Input Op Amp AD822

270 MHz, 400 μa Current Feedback Amplifier AD8005

Precision, Very Low Noise, Low Input Bias Current, Wide Bandwidth JFET Operational Amplifiers AD8610/AD8620

High Voltage Current Shunt Monitor AD8211

1.8 V to 5 V Auto-Zero, In-Amp with Shutdown AD8563

High Voltage, Bidirectional Current Shunt Monitor AD8210

High Common-Mode Voltage, Programmable Gain Difference Amplifier AD628

Low Voltage Micropower Quad Operational Amplifier OP490

Dual Low Bias Current Precision Operational Amplifier OP297

Precision, 16 MHz CBFET Op Amp AD845

Single-Supply 42 V System Difference Amplifier AD8205

SGM8584 Single-Supply, Quad Rail-to-Rail I/O Precision Operational Amplifier

Precision, Low Power, Micropower Dual Operational Amplifier OP290

1.8 V to 5 V Auto-Zero, In-Amp with Shutdown AD8553

Transcription:

Ultraprecision, 36 V, 2. nv/ Hz Dual Rail-to-Rail Output Op Amp AD676 FEATURES Very low voltage noise: 2. nv/ Hz @ khz Rail-to-rail output swing Low input bias current: 2 na maximum Very low offset voltage: 2 μv typical Low input offset drift: 0.6 μv/ C maximum Very high gain: 20 db Wide bandwidth: 0 MHz typical ± V to ± V operation APPLICATIONS Precision instrumentation PLL filters Laser diode control loops Strain gage amplifiers Medical instrumentation Thermocouple amplifiers PIN CONFIGURATIONS OUT A IN A 2 +IN A 3 V 4 AD676 TOP VIEW (Not to Scale) 7 6 V+ OUT B IN B +IN B Figure. -Lead SOIC_N (R-) OUT A IN A 2 +IN A 3 V 4 AD676 TOP VIEW (Not to Scale) 7 6 V+ OUT B IN B +IN B Figure 2. -Lead MSOP (RM-) 0647-00 0647-002 GENERAL DESCRIPTION The AD676 precision operational amplifier offers ultralow offset, drift, and voltage noise combined with very low input bias currents over the full operating temperature range. The AD676 is a precision, wide bandwidth op amp featuring railto-rail output swings and very low noise. Operation is fully specified from ± V to ± V. The AD676 features a rail-to-rail output like that of the OP4, but with wide bandwidth and even lower voltage noise, combined with the precision and low power consumption like that of the industry-standard OP07 amplifier. Unlike other low noise, rail-to-rail op amps, the AD676 has very low input bias current and low input current noise. With typical offset voltage of only 2 μv, offset drift of 0.2 μv/ C, and noise of only 0.0 μv p-p (0. Hz to 0 Hz), the AD676 is perfectly suited for applications where large error sources cannot be tolerated. Precision instrumentation, PLL and other precision filter circuits, position and pressure sensors, medical instrumentation, and strain gage amplifiers benefit greatly from the very low noise, low input bias current, and wide bandwidth. Many systems can take advantage of the low noise, dc precision, and rail-to-rail output swing provided by the AD676 to maximize SNR and dynamic range. The smaller packages and low power consumption afforded by the AD676 allow maximum channel density or minimum board size for space-critical equipment. The AD676 is specified for the extended industrial temperature range ( 40 C to +2 C). The AD676 is available in the -lead MSOP, and the popular -lead, narrow SOIC; both of which are lead-free packages. MSOP packaged devices are only available in tape and reel format. For the single version of this ultraprecision, rail-to-rail op amp, see the AD67 data sheet. Information furnished by Analog Devices is believed to be accurate and reliable. However, no responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other rights of third parties that may result from its use. Specifications subject to change without notice. No license is granted by implication or otherwise under any patent or patent rights of Analog Devices. Trademarks and registered trademarks are the property of their respective owners. 2006 200 Analog Devices, Inc. All rights reserved.

SPECIFICATIONS ELECTRICAL SPECIFICATIONS VS = ±.0 V, VCM = 0 V, VO = 0 V, TA = +2 C, unless otherwise specified. Table. Parameter Symbol Conditions Min Typ Max Unit INPUT CHARACTERISTICS Offset Voltage VOS B Grade (SOIC) 2 0 μv B Grade (MSOP) 60 μv A Grade (SOIC, MSOP) 00 μv Offset Voltage VOS 40 C TA +2 C B Grade (SOIC, MSOP) 60 μv A Grade (SOIC, MSOP) 20 μv Input Bias Current IB 2 +2 na 40 C TA +2 C. +. na Input Offset Current IOS + na 40 C TA +2 C 2. +2. na Input Voltage Range 3.0 +3.0 V Common-Mode Rejection Ratio CMRR VCM = 3.0 V to +3.0 V 0 30 db 40 C TA +2 C 0 db Open-Loop Gain AVO RL = 2 kω to ground, 20 26 db VO = 3. V to +3. V 40 C TA +2 C 7 db Offset Voltage Drift ΔVOS/ΔT 40 C TA +2 C 0.2 0.6 μv/ C OUTPUT CHARACTERISTICS Output Voltage High VOH RL = 0 kω to ground +4.90 +4.9 V 40 C TA +2 C +4. V RL = 2 kω to ground +4.0 +4.9 V 40 C TA +2 C +4.7 V Output Voltage Low VOL RL = 0 kω to ground 4.9 4.90 V 40 C TA +2 C 4. V RL = 2 kω to ground 4.9 4.6 V 40 C TA +2 C 4.2 V Short-Circuit Limit ISC +40 ma Output Current IO ±20 ma POWER SUPPLY Power Supply Rejection Ratio PSRR VS = ±.0 V to ±.0 V 06 20 db 40 C TA +2 C 06 20 db Supply Current/Amplifier ISY VO = 0 V 2. 3.2 ma 40 C TA +2 C 3. ma DYNAMIC PERFORMANCE Slew Rate SR RL = 2 kω 2. V/μs Gain Bandwidth Product GBP 0 MHz NOISE PERFORMANCE Voltage Noise en p-p 0. Hz to 0 Hz 0. μv p-p Voltage Noise Density en f = khz 2. nv/ Hz Current Noise Density in f = 0 Hz 0.3 pa/ Hz Rev. A Page 3 of 2

VS = ± V, VCM = 0 V, VO = 0 V, TA = +2 C, unless otherwise specified. Table 2. Parameter Symbol Conditions Min Typ Max Unit INPUT CHARACTERISTICS Offset Voltage VOS B Grade (SOIC) 2 0 μv B Grade (MSOP) 60 μv A Grade (SOIC, MSOP) 00 μv Offset Voltage VOS 40 C TA +2 C B Grade (SOIC, MSOP) 60 μv A Grade (SOIC, MSOP) 20 μv Input Bias Current IB 2 +2 na 40 C TA +2 C 4. +4. na Input Offset Current IOS + na 40 C TA +2 C 2. +2. na Input Voltage Range 2. +2. V Common-Mode Rejection Ratio CMRR VCM = 2. V to +2. V 30 db 40 C TA +2 C 07 30 db Open-Loop Gain AVO RL = 2 kω to ground, 23 32 db VO = 3. V to +3. V 40 C TA +2 C 7 db Offset Voltage Drift ΔVOS/ΔT 40 C TA +2 C 0.2 0.6 μv/ C OUTPUT CHARACTERISTICS Output Voltage High VOH RL = 0 kω to ground +4. +4.92 V 40 C TA +2 C +4.0 V RL = 2 kω to ground +4.60 +4.7 V 40 C TA +2 C +4.40 V Output Voltage Low VOL RL = 0 kω to ground 4.96 4.94 V 40 C TA +2 C 4.90 V RL = 2 kω to ground 4. 4.7 V 40 C TA +2 C 4.60 V Short-Circuit Limit ISC +40 ma Output Current IO ±20 ma POWER SUPPLY Power Supply Rejection Ratio PSRR VS = ±.0 V to ±.0 V 06 20 db 40 C TA +2 C 06 db Supply Current/Amplifier ISY VO = 0 V 2.7 3.4 ma 40 C TA +2 C 4.2 ma DYNAMIC PERFORMANCE Slew Rate SR RL =0 kω 2. V/μs Gain Bandwidth Product GBP 0 MHz NOISE PERFORMANCE Voltage Noise en p-p 0. Hz to 0 Hz 0. μv p-p Voltage Noise Density en f = khz 2. nv/ Hz Current Noise Density in f = 0 Hz 0.3 pa/ Hz Rev. A Page 4 of 2

ABSOLUTE MAXIMUM RATINGS Table 3. Parameter Rating Supply Voltage ± V Input Voltage ±V supply Differential Input Voltage ±0.7 V Output Short-Circuit Duration to GND Indefinite Storage Temperature Range RM, R Packages 6 C to +0 C Operating Temperature Range 40 C to +2 C Junction Temperature Range RM, R Packages 6 C to +0 C Lead Temperature Range (Soldering, 0 sec) 300 C Stresses above those listed under Absolute Maximum Ratings may cause permanent damage to the device. This is a stress rating only; functional operation of the device at these or any other conditions above those indicated in the operational section of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. THERMAL RESISTANCE Table 4. Thermal Resistance Package Type θja θjc Unit -Lead MSOP (RM) 20 4 C/W -Lead SOIC_N (R) 43 C/W POWER SEQUENCING The op amp supplies must be established simultaneously with, or before, any input signals are applied. If this is not possible, the input current must be limited to 0 ma. ESD CAUTION Rev. A Page of 2

OUTLINE DIMENSIONS.00 (0.96) 4.0 (0.90) 3.20 3.00 2.0 4.00 (0.74) 3.0 (0.497) 0.2 (0.009) 0.0 (0.0040) COPLANARITY 0.0 SEATING PLANE 4.27 (0.000) BSC 6.20 (0.2440).0 (0.224).7 (0.06).3 (0.032) 0. (0.020) 0.3 (0.022) 0.2 (0.009) 0.7 (0.0067) 0.0 (0.096) 0.2 (0.0099).27 (0.000) 0.40 (0.07) COMPLIANT TO JEDEC STANDARDS MS-02-AA CONTROLLING DIMENSIONS ARE IN MILLIMETERS; INCH DIMENSIONS (IN PARENTHESES) ARE ROUNDED-OFF MILLIMETER EQUIVALENTS FOR REFERENCE ONLY AND ARE NOT APPROPRIATE FOR USE IN DESIGN. 0 4 06006-A 0.9 0. 0.7 3.20 3.00 2.0 0. 0.00 PIN 4 0.6 BSC 0.3 0.22 COPLANARITY 0.0. 4.90 4.6.0 MAX SEATING PLANE 0.23 0.0 0 0.0 0.60 0.40 Figure 29. -Lead Standard Small Outline Package [SOIC_N] Narrow Body (R-) Dimensions shown in millimeters and (inches) COMPLIANT TO JEDEC STANDARDS MO-7-AA Figure 30. -Lead Mini Small Outline Package [MSOP] (RM-) Dimensions shown in millimeters ORDERING GUIDE Model Temperature Range Package Description Package Option Branding AD676ARMZ-R2 40 C to +2 C -Lead Mini Small Outline Package [MSOP] RM- A3 AD676ARMZ-REEL 40 C to +2 C -Lead Mini Small Outline Package [MSOP] RM- A3 AD676ARZ 40 C to +2 C -Lead Standard Small Outline Package [SOIC_N] R- AD676ARZ-REEL 40 C to +2 C -Lead Standard Small Outline Package [SOIC_N] R- AD676ARZ-REEL7 40 C to +2 C -Lead Standard Small Outline Package [SOIC_N] R- AD676BRMZ-R2 40 C to +2 C -Lead Mini Small Outline Package [MSOP] RM- AL AD676BRMZ-REEL 40 C to +2 C -Lead Mini Small Outline Package [MSOP] RM- AL AD676BRZ 40 C to +2 C -Lead Standard Small Outline Package [SOIC_N] R- AD676BRZ-REEL 40 C to +2 C -Lead Standard Small Outline Package [SOIC_N] R- AD676BRZ-REEL7 40 C to +2 C -Lead Standard Small Outline Package [SOIC_N] R- Z = RoHs Compliant Part. Rev. A Page of 2