ADR360/ADR361/ADR363/ADR364/ADR365/ADR366 (Rev. E)
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- Manufacturer or author: Analog Devices, Inc.
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Technical content
Low Power, Low Noise Voltage References with Sink/Source Capability Data Sheet ADR360/ADR361/ADR363/ADR364/ADR365/ADR366 Rev. E 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. Tel: 781.329.4700 © 2005–2019 Analog Devices, Inc. All rights reserved. Technical Support www.analog.com
FEATURES
Low temperature coefficient A grade: 25 ppm/°C B grade: 9 ppm/°C H grade: 25 ppm/°C Initial accuracy A grade: ±6 mV maximum (ADR360, ADR361, and ADR363) B grade: ±3 mV maximum (ADR360, ADR361, and ADR363) Ultralow output voltage noise: 6.8 µV p-p (0.1 Hz to 10 Hz) Low dropout: 300 mV Low quiescent current: 190 µA maximum No external capacitor required Output current: +5 mA (sourcing), −1 mA (sinking) Wide temperature range −40°C to +125°C (A grade, B grade) −40°C to +150°C (H grade) Qualified for automotive applications −40°C to +150°C ADR365WHUJZ-R7 −40°C to +125°C ADR365WAUJZ-R7, ADR366WAUJZ-REEL7
APPLICATIONS
Battery-powered instruments Portable medical instruments Data acquisition systems Industrial process controls Automotive PIN CONFIGURATION 05467-001 ADR360/ADR361/ ADR363/ADR364/ ADR365/ADR366 TOP VIEW (Not to Scale) NIC TRIM GND VIN VOUT Figure 1. 5-Lead TSOT (UJ-5) Table 1. ADR360/ADR361/ADR363/ADR364/ADR365/ 1 Contact Analog Devices, Inc., for other voltage options.
3.300 V band gap voltage references that offer low power and
suited for battery-operated applications. See the Ordering Guide for automotive grades.
Data Sheet ADR360/ADR361/ADR363/ADR364/ADR365/ADR366 Rev. E | Page 3 of 20 SPECIFICATIONS ADR360 ELECTRICAL CHARACTERISTICS Input voltage (VIN) = 2.35 V to 15 V , TA = 25°C, unless otherwise noted. Table 2. Parameter Symbol Test Conditions/Comments Min Typ Max Unit OUTPUT VOLTAGE VOUT A grade 2.042 2.048 2.054 V B grade 2.045 2.048 2.051 V INITIAL ACCURACY VOUTERR A grade ±6 mV A grade ±0.29 % B grade ±3 mV B grade ±0.15 % TEMPERATURE COEFFICIENT TCVOUT A grade, −40°C < TA < +125°C 25 ppm/°C B grade, −40°C < TA < +125°C 9 ppm/°C DROPOUT VOL TAGE VIN − VOUT 300 mV LINE REGULATION ∆VOUT/∆VIN VIN = 2.45 V to 15 V, −40°C < TA < +125°C 0.105 mV/V LOAD REGULATION ∆VOUT/∆ILOAD Load resistance (ILOAD)= 0 mA to 5 mA, −40°C < TA < +125°C, VIN = 3 V 0.37 mV/mA ILOAD = −1 mA to 0 mA, −40°C < TA < +125°C, VIN = 3 V 0.82 mV/mA QUIESCENT CURRENT IIN −40°C < TA < +125°C 150 190 µA OUTPUT CURRENT IOUT Sourcing 5 mA Sinking −1 mA VOLTAGE NOISE eN p-p Frequency = 0.1 Hz to 10 Hz 6.8 µV p-p TURN ON SETTLING TIME tR 25 µs LONG-TERM STABILITY1 ∆VOUT 1000 hours 50 ppm OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS 100 ppm RIPPLE REJECTION RATIO RRR Input frequency (fIN) = 60 Hz −70 dB SHORT-CIRCUIT TO GND ISC VIN = 5 V 25 mA VIN = 15 V 30 mA 1 The long-term stability specification is noncumulative. The drift after the first 1000 hours is significantly lower than the drift is in the first 1000 hours.
ADR360/ADR361/ADR363/ADR364/ADR365/ADR366 Data Sheet Rev. E | Page 4 of 20 ADR361 ELECTRICAL CHARACTERISTICS VIN = 2.8 V to 15 V , TA = 25°C, unless otherwise noted. Table 3. Parameter Symbol Test Conditions/Comments Min Typ Max Unit OUTPUT VOLTAGE VOUT A grade 2.494 2.500 2.506 V B grade 2.497 2.500 2.503 V INITIAL ACCURACY VOUTERR A grade ±6 mV A grade ±0.24 % B grade ±3 mV B grade ±0.12 % TEMPERATURE COEFFICIENT TCVOUT A grade, −40°C < TA < +125°C 25 ppm/°C B grade, −40°C < TA < +125°C 9 ppm/°C DROPOUT VOL TAGE VIN − VOUT 300 mV LINE REGULATION ∆VOUT/∆VIN VIN = 2.8 V to 15 V, −40°C < TA < +125°C 0.125 mV/V LOAD REGULATION ∆VOUT/∆ILOAD ILOAD = 0 mA to 5 mA, −40°C < TA < +125°C, VIN = 3.5 V 0.45 mV/mA ILOAD = −1 mA to 0 mA, −40°C < TA < +125°C, VIN = 3.5 V 1 mV/mA QUIESCENT CURRENT IIN −40°C < TA < +125°C 150 190 µA OUTPUT CURRENT IOUT Sourcing 5 mA Sinking −1 mA VOLTAGE NOISE eN p-p Frequency = 0.1 Hz to 10 Hz 8.25 µV p-p TURN ON SETTLING TIME tR 25 µs LONG-TERM STABILITY1 ∆VOUT 1000 hours 50 ppm OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS 100 ppm RIPPLE REJECTION RATIO RRR fIN = 60 Hz −70 dB SHORT-CIRCUIT TO GND ISC VIN = 5 V 25 mA VIN = 15 V 30 mA 1 The long-term stability specification is noncumulative. The drift after the first 1000 hours is significantly lower than the drift is in the first 1000 hours.
Data Sheet ADR360/ADR361/ADR363/ADR364/ADR365/ADR366 Rev. E | Page 5 of 20 ADR363 ELECTRICAL CHARACTERISTICS VIN = 3.3 V to 15 V , TA = 25°C, unless otherwise noted. Table 4. Parameter Symbol Test Conditions/Comments Min Typ Max Unit OUTPUT VOLTAGE VOUT A grade 2.994 3.000 3.006 V B grade 2.997 3.000 3.003 V INITIAL ACCURACY VOUTERR A grade ±6 mV A grade ±0.2 % B grade ±3 mV B grade ±0.1 % TEMPERATURE COEFFICIENT TCVOUT A grade, −40°C < TA < +125°C 25 ppm/°C B grade, −40°C < TA < +125°C 9 ppm/°C DROPOUT VOL TAGE VIN − VOUT 300 mV LINE REGULATION ∆VOUT/∆VIN VIN = 3.3 V to 15 V, −40°C < TA < +125°C 0.15 mV/V LOAD REGULATION ∆VOUT/∆ILOAD ILOAD = 0 mA to 5 mA, −40°C < TA < +125°C, VIN = 4 V 0.54 mV/mA ILOAD = −1 mA to 0 mA, −40°C < TA < +125°C, VIN = 4 V 1.2 mV/mA QUIESCENT CURRENT IIN −40°C < TA < +125°C 150 190 µA OUTPUT CURRENT IOUT Sourcing 5 mA Sinking −1 mA VOLTAGE NOISE eN p-p Frequency = 0.1 Hz to 10 Hz 8.7 µV p-p TURN ON SETTLING TIME tR 25 µs LONG-TERM STABILITY1 ∆VOUT 1000 hours 50 ppm OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS 100 ppm RIPPLE REJECTION RATIO RRR fIN = 60 Hz −70 dB SHORT-CIRCUIT TO GND ISC VIN = 5 V 25 mA VIN = 15 V 30 mA 1 The long-term stability specification is noncumulative. The drift after the first 1000 hours is significantly lower than the drift is in the first 1000 hours.
ADR360/ADR361/ADR363/ADR364/ADR365/ADR366 Data Sheet Rev. E | Page 6 of 20 ADR364 ELECTRICAL CHARACTERISTICS VIN = 4.4 V to 15 V , TA = 25°C, unless otherwise noted. Table 5. Parameter Symbol Test Conditions/Comments Min Typ Max Unit OUTPUT VOLTAGE VOUT A grade 4.088 4.096 4.104 V B grade 4.092 4.096 4.100 V INITIAL ACCURACY VOUTERR A grade ±8 mV A grade ±0.2 % B grade ±4 mV B grade ±0.1 % TEMPERATURE COEFFICIENT TCVOUT A grade, −40°C < TA < +125°C 25 ppm/°C B grade, −40°C < TA < +125°C 9 ppm/°C DROPOUT VOL TAGE VIN − VOUT 300 mV LINE REGULATION ∆VOUT/∆VIN VIN = 4.4 V to 15 V, −40°C < TA < +125°C 0.205 mV/V LOAD REGULATION ∆VOUT/∆ILOAD ILOAD = 0 mA to 5 mA, −40°C < TA < +125°C, VIN = 5 V 0.735 mV/mA ILOAD = −1 mA to 0 mA, −40°C < TA < +125°C, VIN = 5 V 1.75 mV/mA QUIESCENT CURRENT IIN −40°C < TA < +125°C 150 190 µA OUTPUT CURRENT IOUT Sourcing 5 mA Sinking −1 mA VOLTAGE NOISE eN p-p Frequency = 0.1 Hz to 10 Hz 11 µV p-p TURN ON SETTLING TIME tR 25 µs LONG-TERM STABILITY1 ∆VOUT 1000 hours 50 ppm OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS 100 ppm RIPPLE REJECTION RATIO RRR fIN = 60 Hz −70 dB SHORT-CIRCUIT TO GND ISC VIN = 5 V 25 mA VIN = 15 V 30 mA 1 The long-term stability specification is noncumulative. The drift after the first 1000 hours is significantly lower than the drift is in the first 1000 hours.
Data Sheet ADR360/ADR361/ADR363/ADR364/ADR365/ADR366 Rev. E | Page 7 of 20 ADR365 ELECTRICAL CHARACTERISTICS VIN = 5.3 V to 15 V , TA = 25°C, unless otherwise noted. Table 6. Parameter Symbol Test Conditions/Comments Min Typ Max Unit OUTPUT VOLTAGE VOUT A grade 4.992 5.000 5.008 V B grade 4.996 5.000 5.004 V H grade 4.992 5.000 5.008 V INITIAL ACCURACY VOUTERR A grade ±8 mV A grade ±0.16 % B grade ±4 mV B grade ±0.08 % H grade ±8 mV H grade ±0.16 % TEMPERATURE COEFFICIENT TCVOUT A grade, −40°C < TA < +125°C 25 ppm/°C B grade, −40°C < TA < +125°C 9 ppm/°C H grade, −40°C < TA < +150°C 25 ppm/°C DROPOUT VOL TAGE VIN − VOUT 300 mV LINE REGULATION ∆VOUT/∆VIN VIN = 5.3 V to 15 V, −40°C < TA < +125°C 0.25 mV/V VIN = 5.3 V to 15 V, −40°C < TA < +150°C (H grade only) 1.8 mV/V LOAD REGULATION ∆VOUT/∆ILOAD ILOAD = 0 mA to 5 mA, −40°C < TA < +125°C, VIN = 6 V 0.9 mV/mA ILOAD = −1 mA to 0 mA, −40°C < TA < +125°C, VIN = 6 V 2 mV/mA ILOAD = 0 mA to 5 mA, −40°C < TA < +125°C, VIN = 6 V (H grade only) 3.6 mV/mA ILOAD = −1 mA to 0 mA, −40°C < TA < +125°C, VIN = 6 V (H grade only) 30 mV/mA QUIESCENT CURRENT IIN −40°C < TA < +125°C 150 190 µA −40°C < TA < +150°C (H grade only) 150 190 µA OUTPUT CURRENT IOUT Sourcing 5 mA Sinking −1 mA VOLTAGE NOISE eN p-p Frequency = 0.1 Hz to 10 Hz 12.8 µV p-p TURN ON SETTLING TIME tR 20 µs LONG-TERM STABILITY1 ∆VOUT 1000 hours 50 ppm OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS 100 ppm RIPPLE REJECTION RATIO RRR fIN = 60 Hz −70 dB SHORT-CIRCUIT TO GND ISC VIN = 5 V 25 mA VIN = 15 V 30 mA 1 The long-term stability specification is noncumulative. The drift after the first 1000 hours is significantly lower than the drift is in the first 1000 hours.
ADR360/ADR361/ADR363/ADR364/ADR365/ADR366 Data Sheet Rev. E | Page 8 of 20 ADR366 ELECTRICAL CHARACTERISTICS VIN = 3.6 V to 15 V , TA = 25°C, unless otherwise noted. Table 7. Parameter Symbol Test Conditions/Comments Min Typ Max Unit OUTPUT VOLTAGE VOUT A grade 3.292 3.300 3.308 V B grade 3.296 3.300 3.304 V INITIAL ACCURACY VOUTERR A grade ±8 mV A grade ± 0.25 % B grade ±4 mV B grade ± 0.125 % TEMPERATURE COEFFICIENT TCVOUT A grade, −40°C < TA < +125°C 25 ppm /°C B grade, −40°C < TA < +125°C 9 ppm/°C DROPOUT VOL TAGE VIN − VOUT 300 mV LINE REGULATION ∆VOUT/∆VIN VIN = 3.6 V to 15 V, −40°C < TA < +125°C 0. 165 mV/V LOAD REGULATION ∆VOUT/∆ILOAD ILOAD = 0 mA to 5 mA, −40°C < TA < +125°C, VIN = 4.2 V 0. 6 mV/mA ILOAD = 0 mA to 8 mA, −40°C < TA < +125°C, VIN ≥ 4.75 V 0. 6 mV/mA ILOAD = −1 mA to 0 mA, −40°C < TA < +125°C, VIN = 4.2 V 1. 35 mV/mA QUIESCENT CURRENT IIN −40°C < TA < +125°C 150 190 µA OUTPUT CURRENT IOUT Sourcing 5 mA Sinking − 1 mA VOLTAGE NOISE eN p-p Frequency = 0.1 Hz to 10 Hz 9. 3 µV p-p TURN ON SETTLING TIME tR 25 µs LONG-TERM STABILITY1 ∆VOUT 1000 hours 50 ppm OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS 100 ppm RIPPLE REJECTION RATIO RRR fIN = 60 Hz − 70 dB SHORT-CIRCUIT TO GND ISC VIN = 5 V 25 mA VIN = 15 V 30 mA 1 The long-term stability specification is noncumulative. The drift after the first 1000 hours is significantly lower than the drift is in the first 1000 hours.
TA = 25°C, unless otherwise noted. PCB thermal design is required. resistance measured in a one cubic foot sealed enclosure. θJC is the junction to case thermal resistance. Table 9. Thermal Resistance
- NIC = NOT INTERNALLY CONNECTED.
THIS PIN IS NOT CONNECTED INTERNALLY. Figure 2. Pin Configuration Table 10. Pin Function Descriptions 1 NIC Not Internally Connected. This pin is not connected internally. 3 VIN Input Voltage Connection.
Data Sheet ADR360/ADR361/ADR363/ADR364/ADR365/ADR366 Rev. E | Page 17 of 20 TERMINOLOGY Temperature Coefficient The temperature coefficient is the change of output voltage with respect to operating temperature changes normalized by the output voltage at 25°C. This parameter is expressed in ppm/°C and can be determined by ( ) ( ) ( ) ( ) −°= ×°× − 6(ppm/ C) 1025 C OUT OUT OUT OUT V T2 V T1TCV V T2 T1 where: VOUT (T2) = VOUT at Temperature 2. VOUT (T1) = VOUT at Temperature 1. VOUT (25°C) = VOUT at 25°C. Line Regulation Line regulation is the change in output voltage due to a specified change in input voltage. This parameter accounts for the effects of self heating. Line regulation is expressed in either percent per volt, parts per million per volt, or microvolts per volt change in input voltage. Load Regulation Load regulation is the change in output voltage due to a specified change in load current. This parameter accounts for the effects of self heating. Load regulation is expressed in either microvolts per milliampere, parts per million per milliampere, or ohms of dc output resistance. Long-Term Stability Long-term stability is the typical shift of output voltage at 25°C on a sample of devices subjected to a test of 1000 hours at 25°C. ( ) ( )∆= −OUT OUT 0 OUT 1V VtVt ( ) ( ) ( ) ( ) 6ppm 10OUT 0 OUT 1 OUT OUT 0 V t –V tV Vt where: VOUT (t0) = VOUT at 25°C at Time 0. VOUT (t1) = VOUT at 25°C after 1000 hours operation at 25°C. Thermal Hysteresis Thermal hysteresis (VOUT_HYS) is the change of output voltage after the device is cycled from +25°C to −40°C to +125°C and back to +25°C. This is a typical value from a sample of devices put through this cycle. ( )= °−__ 25 COUT HYS OUT OUT TCVV V ( ) ( ) ( ) °−= ×° _ 6
25 Cppm 1025 C
where: VOUT (25°C) = VOUT at 25°C. VOUT_TC = VOUT at 25°C after a temperature cycle at +25°C to −40°C to +125°C and back to +25°C.
ADR360/ADR361/ADR363/ADR364/ADR365/ADR366 Data Sheet Rev. E | Page 20 of 20 OUTLINE DIMENSIONS COMPLIANT TO JEDEC STANDARDS MO-193-AB
0.95 BSC
1.90 REF
0.90 0.70 0.20 0.08 0.60 0.45 0.30 0.50 0.30
0.10 MAX
1.00 MAX
3.05 2.90 2.75 3.05 2.80 2.55 1.75 1.60 1.45 SEATING PLANE Figure 41. 5-Lead Thin Small Outline Transistor Package [TSOT]
Description
Model1, 2 (mV) (%) Marking Code ADR360AUJZ-REEL7 2.048 6 0.29 25 5-Lead TSOT UJ-5 −40°C to +125°C 3,000 R0C ADR360BUJZ-REEL7 2.048 3 0.15 9 5-Lead TSOT UJ-5 −40°C to +125°C 3,000 R0D ADR361AUJZ-REEL7 2.5 6 0.24 25 5-Lead TSOT UJ-5 −40°C to +125°C 3,000 R0E ADR361BUJZ-REEL7 2.5 3 0.12 9 5-Lead TSOT UJ-5 −40°C to +125°C 3,000 R0F ADR363AUJZ-REEL7 3.0 6 0.2 25 5-Lead TSOT UJ-5 −40°C to +125°C 3,000 R0G ADR363BUJZ-REEL7 3.0 3 0.1 9 5-Lead TSOT UJ-5 −40°C to +125°C 3,000 R0H ADR364AUJZ-REEL7 4.096 8 0.2 25 5-Lead TSOT UJ-5 −40°C to +125°C 3,000 R0J ADR364BUJZ-REEL7 4.096 4 0.1 9 5-Lead TSOT UJ-5 −40°C to +125°C 3,000 R0K ADR365AUJZ-REEL7 5.0 8 0.16 25 5-Lead TSOT UJ-5 −40°C to +125°C 3,000 R0L ADR365BUJZ-REEL7 5.0 4 0.08 9 5-Lead TSOT UJ-5 −40°C to +125°C 3,000 R0M ADR365WAUJZ-R7 5.0 8 0.16 25 5-Lead TSOT UJ-5 −40°C to +125°C 3,000 R0L ADR365WHUJZ-R7 5.0 8 0.16 25 5-Lead TSOT UJ-5 −40°C to +150°C 3,000 R3M ADR366AUJZ-REEL7 3.3 8 0.25 25 5-Lead TSOT UJ-5 −40°C to +125°C 3,000 R08 ADR366BUJZ-REEL7 3.3 4 0.125 9 5-Lead TSOT UJ-5 −40°C to +125°C 3,000 R09 ADR366WAUJZ-REEL7 3.3 8 0.25 25 5-Lead TSOT UJ-5 −40°C to +125°C 3,000 R08 1 Z = RoHS Compliant Part. 2 W = Qualified for Automotive Applications. AUTOMOTIVE PRODUCTS The ADR365W and ADR366W 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. ©2005–2019 Analog Devices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners. D05467-0-3/19(E)