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Precision Micropower Shunt Mode Voltage References ADR5040/ADR5041/ADR5043/ADR5044/ADR5045 Rev. A 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 www.analog.com Fax: 781.461.3113 ©2007 Analog Devices, Inc. All rights reserved.

FEATURES

Ultracompact SC70 and SOT-23 packages Low temperature coefficient: 75 ppm/°C (maximum) Pin compatible with LM4040/LM4050 Initial accuracy: ±0.1% No external capacitor required Wide operating current range: 50 μA to 15 mA Extended temperature range: −40°C to +125°C

APPLICATIONS

Portable, battery-powered equipment Automotives Power supplies Data acquisition systems Instrumentation and process control Energy management PIN CONFIGURATION 06526-001 NOTES 1. NC = NO CONNECT. 2. PIN 3 MUST BE LEFT FLOATING OR CONNECTED TO GROUND. ADR5040/ADR5041/ ADR5043/ADR5044/ ADR5045 V+ 1 V– 2 NC3 Figure 1. 3-Lead SC70 (KS) and 3-Lead SOT-23 (RT) 0.1%, and fast settling time.

5.0 V , the advanced design of the ADR5040/ADR5041/ADR5043/

over the extended temperature range of −40°C to +125°C. Table 1. Selection Table

ADR5040/ADR5041/ADR5043/ADR5044/ADR5045 Rev. A | Page 2 of 17 TABLE OF CONTENTS

REVISION HISTORY

12/07—Rev. 0 to Rev. A Changes to Initial Accuracy and Temperature Coefficient 1/07—Revision 0: Initial Version

ADR5040/ADR5041/ADR5043/ADR5044/ADR5045 Rev. A | Page 3 of 16 SPECIFICATIONS ADR5040 ELECTRICAL CHARACTERISTICS IIN = 50 μA to 15 mA, TA = 25°C, unless otherwise noted. Table 2. Parameter Symbol Conditions Min Typ Max Unit OUTPUT VOLTAGE VOUT IIN = 100 μA Grade A 2.044 2.048 2.052 V Grade B 2.046 2.048 2.050 V INITIAL ACCURACY VOERR IIN = 100 μA Grade A –4.096 +4.096 mV ±0.2 % Grade B –2.048 +2.048 mV ±0.1 % TEMPERATURE COEFFICIENT1 TCVOUT –40°C < TA < +125°C Grade A 10 100 ppm/°C Grade B 10 75 ppm/°C OUTPUT VOLTAGE CHANGE vs. IIN ∆VR IIN = 50 μA to 1 mA IIN = 1 mA to 15 mA –40°C < TA < +125°C 4 8 mV DYNAMIC OUTPUT IMPEDANCE (∆VR/∆IR) IIN = 50 μA to 15 mA 0.2 Ω MINIMUM OPERATING CURRENT IIN TA = 25°C 50 μA –40°C < TA < +125°C 60 μA VOLTAGE NOISE eN IIN = 100 μA; 0.1 Hz to 10 Hz 2.8 μV rms IIN = 100 μA; 10 Hz to 10 kHz 120 μV rms TURN-ON SETTLING TIME tR CLOAD = 0 μF 28 μs OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS IIN = 1 mA 40 ppm 1 Guaranteed by design. ADR5041 ELECTRICAL CHARACTERISTICS IIN = 50 μA to 15 mA, TA = 25°C, unless otherwise noted. Table 3. Parameter Symbol Conditions Min Typ Max Unit OUTPUT VOLTAGE VOUT IIN = 100 μA Grade A 2.495 2.500 2.505 V Grade B 2.4975 2.500 2.5025 V INITIAL ACCURACY VOERR IIN = 100 μA Grade A –5 +5 mV ± 0 . 2 % Grade B –2.5 +2.5 mV ± 0 . 1 % TEMPERATURE COEFFICIENT1 TCVOUT –40°C < TA < +125°C Grade A 10 100 ppm/°C Grade B 10 75 ppm/°C OUTPUT VOLTAGE CHANGE vs. IIN ∆VR IIN = 50 μA to 1 mA IIN = 1 mA to 15 mA –40°C < TA < +125°C 4 8 mV

ADR5040/ADR5041/ADR5043/ADR5044/ADR5045 Rev. A | Page 4 of 16 Parameter Symbol Conditions Min Typ Max Unit DYNAMIC OUTPUT IMPEDANCE (∆VR/∆IR) IIN = 50 μA to 15 mA 0.2 Ω MINIMUM OPERATING CURRENT IIN TA = 25°C 50 μA –40°C < TA < +125°C 60 μA VOLTAGE NOISE eN IIN = 100 μA; 0.1 Hz to 10 Hz 3.2 μV rms IIN = 100 μA; 10 Hz to 10 kHz 150 μV rms TURN-ON SETTLING TIME tR CLOAD = 0 μF 35 μs OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS IIN = 1 mA 40 ppm 1 Guaranteed by design. ADR5043 ELECTRICAL CHARACTERISTICS IIN = 50 μA to 15 mA, TA = 25°C, unless otherwise noted. Table 4. Parameter Symbol Conditions Min Typ Max Unit OUTPUT VOLTAGE VOUT IIN = 100 μA Grade A 2.994 3.000 3.006 V Grade B 2.997 3.000 3.003 V INITIAL ACCURACY VOERR IIN = 100 μA Grade A –6 +6 mV ±0.2 % Grade B –3 +3 mV ±0.1 % TEMPERATURE COEFFICIENT1 TCVOUT –40°C < TA < +125°C Grade A 10 100 ppm/°C Grade B 10 75 ppm/°C OUTPUT VOLTAGE CHANGE vs. IIN ∆VR IIN = 50 μA to 1 mA IIN = 1 mA to 15 mA –40°C < TA < +125°C 4 8 mV DYNAMIC OUTPUT IMPEDANCE (∆VR/∆IR) IIN = 50 μA to 15 mA 0.2 Ω MINIMUM OPERATING CURRENT IIN TA = 25°C 50 μA –40°C < TA < +125°C 60 μA VOLTAGE NOISE eN IIN = 100 μA; 0.1 Hz to 10 Hz 4.3 μV rms IIN = 100 μA; 10 Hz to 10 kHz 180 μV rms TURN-ON SETTLING TIME tR CLOAD = 0 μF 42 μs OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS IIN = 1 mA 40 ppm 1 Guaranteed by design. ADR5044 ELECTRICAL CHARACTERISTICS IIN = 50 μA to 15 mA, TA = 25°C, unless otherwise noted. Table 5. Parameter Symbol Conditions Min Typ Max Unit OUTPUT VOLTAGE VOUT IIN = 100 μA Grade A 4.088 4.096 4.104 V Grade B 4.092 4.096 4.100 V INITIAL ACCURACY VOERR IIN = 100 μA Grade A –8.192 +8.192 mV ±0.2 % Grade B –4.096 +4.096 mV ±0.1 %

ADR5040/ADR5041/ADR5043/ADR5044/ADR5045 Rev. A | Page 5 of 16 Parameter Symbol Conditions Min Typ Max Unit TEMPERATURE COEFFICIENT1 TCVOUT –40°C < TA < +125°C Grade A 10 100 ppm/°C Grade B 10 75 ppm/°C OUTPUT VOLTAGE CHANGE vs. IIN ∆VR IIN = 50 μA to 1 mA –40°C < TA < +125°C 0.7 3 mV IIN = 1 mA to 15 mA –40°C < TA < +125°C 4 8 mV DYNAMIC OUTPUT IMPEDANCE (∆VR/∆IR) IIN = 50 μA to 15 mA 0.2 Ω MINIMUM OPERATING CURRENT IIN TA = 25°C 50 μA –40°C < TA < +125°C 60 μA VOLTAGE NOISE eN IIN = 100 μA; 0.1 Hz to 10 Hz 5.4 μV rms IIN = 100 μA; 10 Hz to 10 kHz 240 μV rms TURN-ON SETTLING TIME tR CLOAD = 0 μF 56 μs OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS IIN = 1 mA 40 ppm 1 Guaranteed by design. ADR5045 ELECTRICAL CHARACTERISTICS IIN = 50 μA to 15 mA, TA = 25°C, unless otherwise noted. Table 6. Parameter Symbol Conditions Min Typ Max Unit OUTPUT VOLTAGE VOUT IIN = 100 μA Grade A 4.990 5.000 5.010 V Grade B 4.995 5.000 5.005 V INITIAL ACCURACY VOERR IIN = 100 μA Grade A –10 +10 mV ±0.2 % Grade B –5 +5 mV ±0.1 % TEMPERATURE COEFFICIENT1 TCVOUT –40°C < TA < +125°C Grade A 10 100 ppm/°C Grade B 10 75 ppm/°C OUTPUT VOLTAGE CHANGE vs. IIN ∆VR IIN = 50 μA to 1 mA –40°C < TA < +125°C 0.8 4 mV IIN = 1 mA to 15 mA –40°C < TA < +125°C 4 8 mV DYNAMIC OUTPUT IMPEDANCE (∆VR/∆IR) IIN = 50 μA to 15 mA 0.2 Ω MINIMUM OPERATING CURRENT IIN TA = 25°C 50 μA –40°C < TA < +125°C 60 μA VOLTAGE NOISE eN IIN = 100 μA; 0.1 Hz to 10 Hz 6.6 μV rms IIN = 100 μA; 10 Hz to 10 kHz 280 μV rms TURN-ON SETTLING TIME tR CLOAD = 0 μF 70 μs OUTPUT VOLTAGE HYSTERESIS ∆VOUT_HYS IIN = 1 mA 40 ppm 1 Guaranteed by design.

Ratings apply at 25°C, unless otherwise noted. soldered in a circuit board for surface-mount packages. Table 8. Thermal Resistance

ADR5040/ADR5041/ADR5043/ADR5044/ADR5045 Rev. A | Page 10 of 16 TERMINOLOGY Temperature Coefficient The change in output voltage with respect to operating temperature changes. It is normalized by an output voltage of 25°C. This parameter is expressed in ppm/°C and is determined by the following equation: () () () () 610C 25C ppm ×− × ° −=⎥⎦ ° 1 2UTO 1OUT2OUT OUT T TV T V T VTCV (1) where: VOUT(25°C) = VOUT at 25°C. VOUT(T1) = VOUT at Temperature 1. VOUT(T2) = VOUT at Temperature 2. Thermal Hysteresis The change in output voltage after the device is cycled through temperatures ranging from +25°C to −40°C, then to +125°C, and back to +25°C. This is common in precision reference and is caused by thermal-mechanical package stress. Changes in envi- ronmental storage temperature, board mounting temperature, and the operating temperature are some of the factors that can contribute to thermal hysteresis. The following equation expresses a typical value from a sample of parts put through such a cycle: ( ) [] () 10C 25 C 25ppm C 25 − °= − ° = OUT TC OUTOUT HYS OUT TC OUTOUTHYS OUT V VVV VVV (2) where: VOUT(25°C) = VOUT at 25°C. VOUT_TC = VOUT at 25°C after a temperature cycle from +25°C to −40°C, then to +125°C, and back to +25°C.

ADR5040/ADR5041/ADR5043/ADR5044/ADR5045 Rev. A | Page 13 of 16 OUTLINE DIMENSIONS ALL DIMENSIONS COMPLIANT WITH EIAJ SC70 0.40 0.25

0.10 MAX

1.00 0.80 SEATING PLANE 1.10 0.80 0.40 0.10 0.26 0.10 0.30 0.20 0.10 PIN 1

0.65 BSC

2.20 2.00 1.80 2.40 2.10 1.80 1.35 1.25 1.15

0.10 COPLANARITY

Figure 24. 3-Lead Thin Shrink Small Outline Transistor Package [SC70] Figure 25. 3-Lead Small Outline Transistor Package [SOT-23-3]

Description

ADR5040AKSZ-R21 2.048 4.096 100 –40°C to +125°C 3-Lead SC70 KS-3 250 R2J ADR5040AKSZ-REEL1 2.048 4.096 100 –40°C to +125°C 3-Lead SC70 KS-3 10,000 R2J ADR5040AKSZ-REEL71 2.048 4.096 100 –40°C to +125°C 3-Lead SC70 KS-3 3,000 R2J ADR5040ARTZ-R21 2.048 4.096 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 250 R2J ADR5040ARTZ-REEL1 2.048 4.096 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 10,000 R2J ADR5040ARTZ-REEL71 2.048 4.096 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 3,000 R2J ADR5040BKSZ-R21 2.048 2.048 75 –40°C to +125°C 3-Lead SC70 KS-3 250 R2L ADR5040BKSZ-REEL71 2.048 2.048 75 –40°C to +125°C 3-Lead SC70 KS-3 3,000 R2L ADR5040BRTZ-R21 2.048 2.048 75 –40°C to +125°C 3-Lead SOT-23-3 RT-3 250 R2L ADR5040BRTZ-REEL71 2.048 2.048 75 –40°C to +125°C 3-Lead SOT-23-3 RT-3 3,000 R2L

ADR5040/ADR5041/ADR5043/ADR5044/ADR5045 Rev. A | Page 14 of 16 Model Output Voltage (V) Initial Accuracy (mV) Tempco Industrial (ppm/°C) Temperature Range Package ADR5041AKSZ-R21 2.500 5 100 –40°C to +125°C 3-Lead SC70 KS-3 250 R2N ADR5041AKSZ-REEL1 2.500 5 100 –40°C to +125°C 3-Lead SC70 KS-3 10,000 R2N ADR5041AKSZ-REEL71 2.500 5 100 –40°C to +125°C 3-Lead SC70 KS-3 3,000 R2N ADR5041ARTZ-R21 2.500 5 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 250 R2N ADR5041ARTZ-REEL1 2.500 5 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 10,000 R2N ADR5041ARTZ-REEL71 2.500 5 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 3,000 R2N ADR5041BKSZ-R21 2.500 2.5 75 –40°C to +125°C 3-Lead SC70 KS-3 250 R2Q ADR5041BKSZ-REEL71 2.500 2.5 75 –40°C to +125°C 3-Lead SC70 KS-3 3,000 R2Q ADR5041BRTZ-R21 2.500 2.5 75 –40°C to +125°C 3-Lead SOT-23-3 RT-3 250 R2Q ADR5041BRTZ-REEL71 2.500 2.5 75 –40°C to +125°C 3-Lead SOT-23-3 RT-3 3,000 R2Q ADR5043AKSZ-R21 3.0 6 100 –40°C to +125°C 3-Lead SC70 KS-3 250 R2S ADR5043AKSZ-REEL1 3.0 6 100 –40°C to +125°C 3-Lead SC70 KS-3 10,000 R2S ADR5043AKSZ-REEL71 3.0 6 100 –40°C to +125°C 3-Lead SC70 KS-3 3,000 R2S ADR5043ARTZ-R21 3.0 6 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 250 R2S ADR5043ARTZ-REEL1 3.0 6 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 10,000 R2S ADR5043ARTZ-REEL71 3.0 6 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 3,000 R2S ADR5043BKSZ-R21 3.0 3 75 –40°C to +125°C 3-Lead SC70 KS-3 250 R2U ADR5043BKSZ-REEL71 3.0 3 75 –40°C to +125°C 3-Lead SC70 KS-3 3,000 R2U ADR5043BRTZ-R21 3.0 3 75 –40°C to +125°C 3-Lead SOT-23-3 RT-3 250 R2U ADR5043BRTZ-REEL71 3.0 3 75 –40°C to +125°C 3-Lead SOT-23-3 RT-3 3,000 R2U ADR5044AKSZ-R21 4.096 8.192 100 –40°C to +125°C 3-Lead SC70 KS-3 250 R2W ADR5044AKSZ-REEL1 4.096 8.192 100 –40°C to +125°C 3-Lead SC70 KS-3 10,000 R2W ADR5044AKSZ-REEL71 4.096 8.192 100 –40°C to +125°C 3-Lead SC70 KS-3 3,000 R2W ADR5044ARTZ-R21 4.096 8.192 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 250 R2W ADR5044ARTZ-REEL1 4.096 8.192 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 10,000 R2W ADR5044ARTZ-REEL71 4.096 8.192 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 3,000 R2W ADR5044BKSZ-R21 4.096 4.096 75 –40°C to +125°C 3-Lead SC70 KS-3 250 R2Y ADR5044BKSZ-REEL71 4.096 4.096 75 –40°C to +125°C 3-Lead SC70 KS-3 3,000 R2Y ADR5044BRTZ-R21 4.096 4.096 75 –40°C to +125°C 3-Lead SOT-23-3 RT-3 250 R2Y ADR5044BRTZ-REEL71 4.096 4.096 75 –40°C to +125°C 3-Lead SOT-23-3 RT-3 3,000 R2Y ADR5045AKSZ-R21 5.0 10 100 –40°C to +125°C 3-Lead SC70 KS-3 250 R30 ADR5045AKSZ-REEL1 5.0 10 100 –40°C to +125°C 3-Lead SC70 KS-3 10,000 R30 ADR5045AKSZ-REEL71 5.0 10 100 –40°C to +125°C 3-Lead SC70 KS-3 3,000 R30 ADR5045ARTZ-R21 5.0 10 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 250 R30 ADR5045ARTZ-REEL1 5.0 10 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 10,000 R30 ADR5045ARTZ-REEL71 5.0 10 100 –40°C to +125°C 3-Lead SOT-23-3 RT-3 3,000 R30 ADR5045BKSZ-R21 5.0 5 75 –40°C to +125°C 3-Lead SC70 KS-3 250 R32 ADR5045BKSZ-REEL71 5.0 5 75 –40°C to +125°C 3-Lead SC70 KS-3 3,000 R32 ADR5045BRTZ-R21 5.0 5 75 –40°C to +125°C 3-Lead SOT-23-3 RT-3 250 R32 ADR5045BRTZ-REEL71 5.0 5 75 –40°C to +125°C 3-Lead SOT-23-3 RT-3 3,000 R32 1 Z = RoHS Compliant Part.

ADR5040/ADR5041/ADR5043/ADR5044/ADR5045 Rev. A | Page 15 of 16 NOTES

ADR5040/ADR5041/ADR5043/ADR5044/ADR5045 Rev. A | Page 16 of 16 NOTES Purchase of licensed I2C components of Analog Devices or one of its sublicensed Associated Companies conveys a license for the purchaser under the Philips I2C Patent Rights to use these components in an I2C system, provided that the system conforms to the I2C Standard Specification as defined by Philips. ©2007 Analog Devices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners. D06526-0-12/07(A)