ADR01/ADR02/ADR03/ADR06 (Rev. S)

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  • Manufacturer or author: Analog Devices, Inc.
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Technical content

Ultracompact, Precision 10.0 V/5.0 V/2.5 V/3.0 V Voltage References Data Sheet ADR01/ADR02/ADR03/ADR06 Re v. S Document Feedback 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. On Tel: 781.329.4700 © 2002–2019 Analog Devices, Inc. All rights reserved. Technical Support www.analog.com

FEATURES

Ultracompact SC70 and TSOT packages Low temperature coefficient 8-lead SOIC: 3 ppm/°C typical 5-lead SC70: 9 ppm/°C maximum 5-lead TSOT: 9 ppm/°C maximum Initial accuracy ±0.1% No external capacitor required Low noise 10 µV p-p, 0.1 Hz to 10.0 Hz (ADR02) Wide operating range ADR01: 12.0 V to 36.0 V ADR02: 7.0 V to 36.0 V ADR03: 4.5 V to 36.0 V ADR06: 5.0 V to 36.0 V High output current 10 mA Wide temperature range: −40°C to +125°C ADR01/ADR02/ADR03 pin compatible to industry- standard REF01/REF02/REF03 ADR01, ADR02, ADR03 and ADR06 SOIC (A grade) qualified for automotive applications

APPLICATIONS

Precision data acquisition systems High resolution converters Industrial process control systems Precision instruments Auto battery monitoring PCMCIA cards PIN CONFIGURATIONS VOUT TRIM VIN TEMP GND TOP VIEW (Not to Scale) ADR01/ ADR02/ ADR03/ ADR06 02747-001 Fi gure 1. 5-Lead, SC70/TSOT Surface-Mount Packages TOP VIEW (Not to Scale)

1 NIC

54 TRIM

  1. NIC = NO INTERNAL CONNECT. 02747-002 Fi gure 2. 8-Lead, SOIC Surface-Mount Package GENERAL DESCRIPTION The ADR01, ADR02, ADR03, and ADR06 are precision 10.0 V , 5.0 V , 2.5 V , and 3.0 V, respectively, band gap voltage references featuring high accuracy, high stability, and low power consumption. The devices are housed in tiny, 5-lead SC70 and TSOT packages, as well as in 8-lead SOIC version. The SOIC version of the ADR01, ADR02, and ADR03 are drop-in replacements1 to the industry-standard REF01, REF02, and REF03. The small footprint and wide operating range make the ADR01, ADR02, ADR03, and ADR06 references ideally suited for general- purpose and space-constrained applications. With an external buffer and a simple resistor network, the TEMP pin can be used for temperature sensing and approximation. A TRIM pin is provided on the devices for fine adjustment of the output voltage. The ADR01, ADR02, ADR03, and ADR06 are compact, low drift voltage references that provide a stable output voltage from a wide supply voltage range. The devices are available in 5-lead SC70 and TSOT packages and an 8-lead SOIC package with A, B, and C grade selections. All devices are specified over the extended industrial (−40°C to +125°C) temperature range. The ADR01, ADR02, ADR03, and ADR06 A grade in 8-lead SOIC are qualified for automotive applications.

Table 1. Selection Guide 1 ADR01, ADR02, and ADR03 are component level compatible with REF01, REF02, and REF03, respectively. No guarantees for system level compatibility are implied. temperature monitoring function.

ADR01/ADR02/ADR03/ADR06 Data Sheet Rev. S | Page 2 of 21 TABLE OF CONTENTS

REVISION HISTORY

12/2019—Rev. R to Re v. S Changes to Temperature Monitoring Section, Figure 40, Changes to ADR01 Ordering Guide and ADR02 Ordering Changes to ADR03 Ordering Guide and ADR06 Ordering 1/2012—Rev. Q to Rev. R 11/2011—Rev. P to Rev. Q 10/2011 Rev. O to Rev. P Changes to Features Section, Applications Section, and General Changes to ADR01 Electrical Characteristics Section Changes to ADR02 Electrical Characteristics Section Changes to ADR03 Electrical Characteristics Section Changes to ADR06 Electrical Characteristics Section 10/2010—Rev. N to Rev. O 7/2010—Rev. M to Rev. N 4/2010—Rev. L to Rev. M

Data Sheet ADR01/ADR02/ADR03/ADR06 Rev. S | Page 3 of 21 12/2008—Rev. K to Rev. L 2/2008—Rev. J to Rev. K 3/2007—Rev. I to Rev. J 7/2005—Rev. H to Rev. I 12/2004—Rev. G to Rev. H 9/2004—Rev. F to Rev. G 7/2004—Rev. E to Rev. F 2/2004—Rev. D to Re v. E 8/2003—Rev. C to Rev D 6/2003—Rev. B to Rev C 2/2003—Rev. A to Rev. B 12/2002—Rev. 0 to Rev. A

ADR01/ADR02/ADR03/ADR06 Data Sheet Rev. S | Page 4 of 21 SPECIFICATIONS ADR01 ELECTRICAL CHARACTERISTICS Table 2. Parameter Symbol Test Conditions/Comments Min Typ Max Unit OUTPUT VOLTAGE VO A and C grades 9.990 10.000 10.010 V B grade 9.995 10.000 10.005 V ADR01WARZ 9.986 10.000 10.014 V INITIAL ACCURACY VOERR A and C grades −10 +10 mV −0.1 +0.1 % B grade −5 +5 mV −0.05 +0.05 % ADR01WARZ −14 +14 mV −0.14 +0.14 % TEMPERATURE COEFFICIENT TCVO A grade, 8-lead SOIC, −40°C < TA < +125°C 3 10 ppm/°C A grade, 5-lead TSOT, −40°C < TA < +125°C 25 ppm/°C A grade, 5-lead SC70, −40°C < TA < +125°C 25 ppm/°C B grade, 8-lead SOIC, −40°C < TA < +125°C 1 3 ppm/°C B grade, 5-lead TSOT, −40°C < TA < +125°C 9 ppm/°C B grade, 5-lead SC70, −40°C < TA < +125°C 9 ppm/°C C grade, 8-lead SOIC, −40°C < TA < +125°C 10 40 ppm/°C DROPOUT VOLTAGE VDO 2 V LINE REGULATION ∆VO/∆VIN VIN = 12.0 V to 36.0 V, VIN = 12.0 V to 26.0 V for ADR01WARZ, −40°C < TA < +125°C 7 30 ppm/V LOAD REGULATION ∆VO/∆ILOAD Load current (ILOAD) = 0 mA to 10 mA, −40°C < TA < +125°C, VIN = 15.0 V 40 70 ppm/mA QUIESCENT CURRENT IIN No load, −40°C < TA < +125°C 0.65 1 mA VOLTAGE NOISE eN p-p 0.1 Hz to 10.0 Hz 20 µV p-p 2 ppm p-p VOLTAGE NOISE DENSITY eN 1 kHz 475 nV/√Hz TURN-ON SETTLING TIME tR 4 µs LONG-TERM STABILITY1 ΔVOUT_L TD 1000 hours 50 ppm OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS 70 ppm RIPPLE REJECTION RATIO RRR Input frequency (fIN) = 10 kHz −75 dB SHORT CIRCUIT TO GND ISC 30 mA TEMPERATURE SENSOR Voltage Output at TEMP Pin VTEMP 550 mV Temperature Sensitivity TCVTEMP 1.96 mV/°C 1 The long-term stability specification is noncumulative. The drift in subsequent 1000 hour periods is significantly lower than in the first 1000 hour period.

Data Sheet ADR01/ADR02/ADR03/ADR06 Rev. S | Page 5 of 21 ADR02 ELECTRICAL CHARACTERISTICS Table 3. Parameter Symbol Test Conditions/Comments Min Typ Max Unit OUTPUT VOLTAGE VO A and C grades 4.995 5.000 5.005 V B grade 4.997 5.000 5.003 V INITIAL ACCURACY VOERR A and C grades −5 +5 mV −0.1 +0.1 % B grade −3 +3 mV −0.06 +0.06 % TEMPERATURE COEFFICIENT TCVO A grade, 8-lead SOIC, −40°C < TA < +125°C 3 10 ppm/°C A grade, 5-lead TSOT, −40°C < TA < +125°C 25 ppm/°C A grade, 5-lead SC70, −40°C < TA < +125°C 25 ppm/°C A grade, 5-lead SC70, −55°C < TA < +125°C 30 ppm/°C B grade, 8-lead SOIC, −40°C < TA < +125°C 1 3 ppm/°C B grade, 5-lead TSOT, −40°C < TA < +125°C 9 ppm/°C B grade, 5-lead SC70, −40°C < TA < +125°C 9 ppm/°C C grade, 8-lead SOIC, −40°C < TA < +125°C 10 40 ppm/°C DROPOUT VOLTAGE VDO 2 V LINE REGULATION ∆VO/∆VIN VIN = 7.0 V to 36.0 V, VIN = 7.0 V to 26.0 V for ADR02WARZ, −40°C < TA < +125°C 7 30 ppm/V VIN = 7.0 V to 36.0 V, −55°C < TA < +125°C 7 40 ppm/V LOAD REGULATION ∆VO/∆ILOAD ILOAD = 0 mA to 10 mA, −40°C < TA < +125°C, VIN = 10.0 V 40 70 ppm/mA ILOAD = 0 mA to 10 mA, −55°C < TA < +125°C, VIN = 10.0 V 45 80 ppm/mA QUIESCENT CURRENT IIN No load, −40°C < TA < +125°C 0.65 1 mA VOLTAGE NOISE eN p-p 0.1 Hz to 10.0 Hz 10 µV p-p 2 ppm p-p VOLTAGE NOISE DENSITY eN 1 kHz 240 nV/√Hz TURN-ON SETTLING TIME tR 4 µs LONG-TERM STABILITY1 ΔVOUT_L TD 1000 hours 50 ppm OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS 70 ppm −55°C < TA < +125°C 80 ppm RIPPLE REJECTION RATIO RRR fIN = 10 kHz −75 dB SHORT CIRCUIT TO GND ISC 30 mA TEMPERATURE SENSOR Voltage Output at TEMP Pin VTEMP 550 mV Temperature Sensitivity TCVTEMP 1.96 mV/°C 1 The long-term stability specification is noncumulative. The drift in subsequent 1000 hour periods is significantly lower than in the first 1000 hour period.

ADR01/ADR02/ADR03/ADR06 Data Sheet Rev. S | Page 6 of 21 ADR03 ELECTRICAL CHARACTERISTICS Table 4. Parameter Symbol Test Conditions/Comments Min Typ Max Unit OUTPUT VOLTAGE VO A and C grades 2.495 2.500 2.505 V B grades 2.4975 2.5000 2.5025 V INITIAL ACCURACY VOERR A and C grades −5 +5 mV −0.2 +0.2 % B grades −2.5 +2.5 mV −0.1 +0.1 % TEMPERATURE COEFFICIENT TCVO A grade, 8-lead SOIC, −40°C < TA < +125°C 3 10 ppm/°C A grade, 5-lead TSOT, −40°C < TA < +125°C 25 ppm/°C A grade, 5-lead SC70, −40°C < TA < +125°C 25 ppm/°C A grade, 5-lead SC70, −55°C < TA < +125°C 30 ppm/°C B grade, 8-lead SOIC, −40°C < TA < +125°C 1 3 ppm/°C B grade, 5-lead TSOT, −40°C < TA < +125°C 9 ppm/°C B grade, 5-lead SC70, −40°C < TA < +125°C 9 ppm/°C C grade, 8-lead SOIC, −40°C < TA < +125°C 10 40 ppm/°C DROPOUT VOLTAGE VDO 2 V LINE REGULATION ∆VO/∆VIN VIN = 4.5 V to 36.0 V, VIN = 4.5 V to 26.0 V for ADR03WARZ, −40°C < TA < +125°C 7 30 ppm/V VIN = 4.5 V to 36.0 V, −55°C < TA < +125°C 7 40 ppm/V LOAD REGULATION ∆VO/∆ILOAD ILOAD = 0 mA to 10 mA, −40°C < TA < +125°C, VIN = 7.0 V 25 70 ppm/mA ILOAD = 0 mA to 10 mA, −55°C < TA < +125°C, VIN = 7.0 V 45 80 ppm/mA QUIESCENT CURRENT IIN No load, −40°C < TA < +125°C 0.65 1 mA VOLTAGE NOISE eN p-p 0.1 Hz to 10.0 Hz 5 µV p-p 2 ppm p-p VOLTAGE NOISE DENSITY eN 1 kHz 115 nV/√Hz TURN-ON SETTLING TIME tR 4 µs LONG-TERM STABILITY1 ΔVOUT_L TD 1000 hours 50 ppm OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS 70 ppm −55°C < TA < +125°C 80 ppm RIPPLE REJECTION RATIO RRR fIN = 10 kHz −75 dB SHORT CIRCUIT TO GND ISC 30 mA TEMPERATURE SENSOR Voltage Output at TEMP Pin VTEMP 550 mV Temperature Sensitivity TCVTEMP 1.96 mV/°C 1 The long-term stability specification is noncumulative. The drift in subsequent 1000 hour periods is significantly lower than in the first 1000 hour period.

Data Sheet ADR01/ADR02/ADR03/ADR06 Rev. S | Page 7 of 21 ADR06 ELECTRICAL CHARACTERISTICS Table 5. Parameter Symbol Test Conditions/Comments Min Typ Max Unit OUTPUT VOLTAGE VO A and C grades 2.994 3.000 3.006 V B grade 2.997 3.000 3.003 V INITIAL ACCURACY VOERR A and C grades −6 +6 mV −0.2 +0.2 % B grade −3 +3 mV −0.1 +0.1 % TEMPERATURE COEFFICIENT TCVO A grade, 8-lead SOIC, −40°C < TA < +125°C 3 10 ppm/°C A grade, 5-lead TSOT, −40°C < TA < +125°C 25 ppm/°C A grade, 5-lead SC70, −40°C < TA < +125°C 25 ppm/°C B grade, 8-lead SOIC, −40°C < TA < +125°C 1 3 ppm/°C B grade, 5-lead TSOT, −40°C < TA < +125°C 9 ppm/°C B grade, 5-lead SC70, −40°C < TA < +125°C 9 ppm/°C C grade, 8-lead SOIC, −40°C < TA < +125°C 10 40 ppm/°C DROPOUT VOLTAGE VDO 2 V LINE REGULATION ∆VO/∆VIN VIN = 5.0 V to 36.0 V, VIN = 5.0 V to 26.0 V for ADR06WARZ, −40°C < TA < +125°C 7 30 ppm/V LOAD REGULATION ∆VO/∆ILOAD ILOAD = 0 mA to 10 mA, −40°C < TA < +125°C, VIN = 7.0 V 40 70 ppm/mA QUIESCENT CURRENT IIN No load, −40°C < TA < +125°C 0.65 1 mA VOLTAGE NOISE eN p-p 0.1 Hz to 10.0 Hz 6 µV p-p 2 ppm p-p VOLTAGE NOISE DENSITY eN 1 kHz 127 nV/√Hz TURN-ON SETTLING TIME tR 4 µs LONG-TERM STABILITY1 ΔVOUT_L TD 1000 hours 50 ppm OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS 70 ppm RIPPLE REJECTION RATIO RRR fIN = 10 kHz −75 dB SHORT CIRCUIT TO GND ISC 30 mA TEMPERATURE SENSOR Voltage Output at TEMP Pin VTEMP 550 mV Temperature Sensitivity TCVTEMP 1.96 mV/°C 1 The long-term stability specification is noncumulative. The drift in subsequent 1000 hour periods is significantly lower than in the first 1000 hour period.

Ratings are at 25°C, unless otherwise noted. PCB thermal design is required. Table 7. Thermal Resistance circuit board for surface-mount packages. 2 θJC is the junction-to-case thermal resistance.

Data Sheet ADR01/ADR02/ADR03/ADR06 Rev. S | Page 15 of 21 TERMINOLOGY Dropout Voltage (VDO) Dropout voltage, sometimes referred to as supply voltage headroom or supply output voltage differential, is defined as the minimum voltage differential between the input and output necessary for the device to operate, such as VDO = (VIN − VOUT)min|IL = Constant Because the dropout voltage depends upon the current passing through the device, it is always specified for a given load current. Temperature Coefficient (TCVO) The temperature coefficient relates the change in output voltage to the change in ambient temperature of the device, as normalized by the output voltage at 25°C. TCVO is expressed in ppm/°C and is determined by the following equation: ( ) ( ) 621 OUT OUT O OUT VT VTTCV V C TT −= ××− where: VOUT(T2) is the output voltage at Temperature 2. VOUT(T1) is the output voltage at Temperature 1. VOUT(25°C) is the output voltage at 25°C. Output Voltage Hysteresis (ΔVOUT_HYS) Output voltage hysteresis represents the change in output voltage after the device is exposed to a specified temperature cycle. ΔVOUT_HYS can be expressed as either a shift in voltage or a difference in parts per million from the nominal output as follows: VOUT_HYS = VOUT(25°C) − VOUT_TC (V) ( ) _ 6 (25 ) 10 ppm(25 ) OUT OUT TC OUT HYS OUT V CVV VC −= × where VOUT_TC is the output voltage after temperature cycling. Thermal hysteresis occurs as a result of forces exhibited upon the internal die by its packaging. The effect is more pronounced in devices with smaller packages. Long-Term Stability (ΔVOUT_LTD) Long-term stability refers to the shift in output voltage at 25°C after 1000 hours of operation in a 25°C environment. ΔVOUT_LTD can also be expressed as either a shift in voltage or a difference in parts per million from the nominal output as follows: ΔVOUT_LTD = |VOUT(t1) − VOUT(t0)| (V) ( ) 610 () () 10 ppm() OUT OUT OUT LTD OUT Vt VtV Vt −∆= × where: VOUT(t1) is the VOUT at 25°C after 1000 hours of operation at 25°C. VOUT(t0) is the VOUT at 25°C at Time 0. Line Regulation Line regulation refers to the change in output voltage in response to a given change in input voltage and is expressed in either percent per volt, parts per million per volt, or microvolt per volt change in input voltage. This parameter accounts for the effects of self heating. Load Regulation Load regulation refers to the change in output voltage in response to a given change in load current and is expressed in either microvolts per milliampere, parts per million per milliampere, or ohms of dc output resistance. This parameter accounts for the effects of self heating.

0.10 MAX

0.65 BSC

Figure 46. 5-Lead Thin Shrink Small Outline Transistor Package [SC70]

0.95 BSC

1.90 REF

1.00 MAX

Figure 47. 5-Lead Thin Small Outline Transistor Package [TSOT] REFERENCE ONLY AND ARE NOT APPROPRIATE FOR USE IN DESIGN. Figure 48. 8-Lead Standard Small Outline Package [SOIC_N]

ADR01/ADR02/ADR03/ADR06 Data Sheet Rev. S | Page 20 of 21 ORDERING GUIDES Model1, 2 VOUT (V) Initial Accuracy Temperature Coefficient (ppm/°C) Temperature Range Package

Description

(mV) (%) ADR01ARZ 10 10 0.1 10 −40°C to +125°C 8-Lead SOIC_N R-8 98 ADR01ARZ-REEL7 10 10 0.1 10 −40°C to +125°C 8-Lead SOIC_N R-8 1,000 ADR01BRZ 10 5 0.05 3 −40°C to +125°C 8-Lead SOIC_N R-8 98 ADR01BRZ-REEL7 10 5 0.05 3 −40°C to +125°C 8-Lead SOIC_N R-8 1000 ADR01WARZ-R7 10 14 0.14 10 −40°C to +125°C 8-Lead SOIC_N R-8 1,000 ADR01WARZ-RL 10 14 0.14 10 −40°C to +125°C 8-Lead SOIC_N R-8 2,500 ADR01AUJZ-REEL7 10 10 0.1 25 −40°C to +125°C 5-Lead TSOT UJ-5 3,000 R1E ADR01BUJZ-REEL7 10 5 0.05 9 −40°C to +125°C 5-Lead TSOT UJ-5 3,000 R1F ADR01AKSZ-REEL7 10 10 0.1 25 −40°C to +125°C 5-Lead SC70 KS-5 3,000 R1E ADR01BKSZ-REEL7 10 5 0.05 9 −40°C to +125°C 5-Lead SC70 KS-5 3,000 R1F 1 Z = RoHS Compliant Part. 2 W = Qualified for automotive applications. Model1, 2 VOUT (V) Initial Accuracy Temperature Coefficient (ppm/°C) Temperature Range Package (mV) (%) ADR02ARZ 5 5 0.1 10 −40°C to +125°C 8-Lead SOIC_N R-8 98 ADR02ARZ-REEL 5 5 0.1 10 −40°C to +125°C 8-Lead SOIC_N R-8 2,500 ADR02ARZ-REEL7 5 5 0.1 10 −40°C to +125°C 8-Lead SOIC_N R-8 1,000 ADR02WARZ-REEL 5 5 0.1 10 −40°C to +125°C 8-Lead SOIC_N R-8 2,500 ADR02WARZ-REEL7 5 5 0.1 10 −40°C to +125°C 8-Lead SOIC_N R-8 1,000 ADR02BRZ 5 3 0.06 3 −40°C to +125°C 8-Lead SOIC_N R-8 98 ADR02BRZ-REEL7 5 3 0.06 3 −40°C to +125°C 8-Lead SOIC_N R-8 1,000 ADR02AUJZ-REEL7 5 5 0.1 25 −40°C to +125°C 5-Lead TSOT UJ-5 3,000 R1G ADR02BUJZ-REEL7 5 3 0.06 9 −40°C to +125°C 5-Lead TSOT UJ-5 3,000 R1H ADR02AKSZ-REEL7 5 5 0.1 25 −40°C to +125°C 5-Lead SC70 KS-5 3,000 R1G ADR02BKSZ-REEL7 5 3 0.06 9 −40°C to +125°C 5-Lead SC70 KS-5 3,000 R1H 1 Z = RoHS Compliant Part. 2 W = Qualified for automotive applications.

Data Sheet ADR01/ADR02/ADR03/ADR06 Rev. S | Page 21 of 21 Model1, 2 VOUT (V) Initial Accuracy Temperature Coefficient (ppm/°C) Temperature Range Package Code (mV) (%) ADR03ARZ 2.5 5 0.2 10 −40°C to +125°C 8-Lead SOIC_N R-8 98 ADR03ARZ-REEL7 2.5 5 0.2 10 −40°C to +125°C 8-Lead SOIC_N R-8 1,000 ADR03WARZ-R7 2.5 5 0.2 10 −40°C to +125°C 8-Lead SOIC_N R-8 1,000 ADR03WARZ-RL 2.5 5 0.2 10 −40°C to +125°C 8-Lead SOIC_N R-8 2500 ADR03BRZ 2.5 2.5 0.1 3 −40°C to +125°C 8-Lead SOIC_N R-8 98 ADR03BRZ-REEL7 2.5 2.5 0.1 3 −40°C to +125°C 8-Lead SOIC_N R-8 1,000 ADR03AUJZ-REEL7 2.5 5 0.2 25 −40°C to +125°C 5-Lead TSOT UJ-5 3,000 R1J ADR03BUJZ-REEL7 2.5 2.5 0.1 9 −40°C to +125°C 5-Lead TSOT UJ-5 3,000 R1K ADR03AKSZ-REEL7 2.5 5 0.2 25 −40°C to +125°C 5-Lead SC70 KS-5 3,000 R1J ADR03BKSZ-REEL7 2.5 2.5 0.1 9 −40°C to +125°C 5-Lead SC70 KS-5 3,000 R1K 1 Z = RoHS Compliant Part. 2 W = Qualified for automotive applications. Model1, 2 VOUT (V) Initial Accuracy Temperature Coefficient (ppm/°C) Temperature Range Package Code (mV) (%) ADR06ARZ 3 6 0.2 10 −40°C to +125°C 8-Lead SOIC_N R-8 98 ADR06ARZ-REEL7 3 6 0.2 10 −40°C to +125°C 8-Lead SOIC_N R-8 1,000 ADR06WARZ-R7 3 6 0.2 10 −40°C to +125°C 8-Lead SOIC_N R-8 1,000 ADR06WARZ-RL 3 6 0.2 10 −40°C to +125°C 8-Lead SOIC_N R-8 2500 ADR06BRZ 3 3 0.1 3 −40°C to +125°C 8-Lead SOIC_N R-8 98 ADR06BRZ-REEL7 3 3 0.1 3 −40°C to +125°C 8-Lead SOIC_N R-8 1,000 ADR06BUJZ-REEL7 3 3 0.1 9 −40°C to +125°C 5-Lead TSOT UJ-5 3,000 R1M ADR06AKSZ-REEL7 3 6 0.2 25 −40°C to +125°C 5-Lead SC70 KS-5 3,000 R1L ADR06BKSZ-REEL7 3 3 0.1 9 −40°C to +125°C 5-Lead SC70 KS-5 3,000 R1M 1 Z = RoHS Compliant Part. 2 W = Qualified for automotive applications. AUTOMOTIVE PRODUCTS The ADR01W , ADR02W , ADR03W and ADR06W models are available with controlled manufacturing to support the quality and reliability requirements of automotive applications. Note that these automotive models may have specifications that differ from the commercial models; therefore, designers should review the Specifications section of this data sheet carefully. Only the automotive grade products shown are available for use in automotive applications. Contact your local Analog Devices account representative for specific product ordering information and to obtain the specific Automotive Reliability reports for these models. ©2002–2019 Analog Devices, Inc. All rights re served. Trademarks and registered tradem arks are the property of their respective owners. D02747-0-12/19(S)