MAX6029_V01 MAXIM | Alldatasheet
Document overview
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Technical content
Features
- Ultra-Low 5.25µA (max) Supply Current
- ±0.15% (max) Initial Accuracy
- 30ppm/°C (max) Temperature Coefficient
- 4mA Output Source Current
- 1mA Output Sink Current
- 2.5V to 12.6V Supply Range
- Low 200mV Dropout
- Stable with Capacitive Loads Up to 10µF
- No External Capacitors Required
- Miniature 5-Pin SOT23 Package, 8-Pin SO Package GND N.C.N.C. 1 5 OUTIN MAX6029 SOT23 TOP VIEW OUT N.C.GND N.C. N.C.IN N.C. N.C. SO MAX6029 Pin Configuration
Ordering Information
MAX6029EUK21+T 5 SOT23 AEHD MAX6029EUK25+T 5 SOT23 AEHF MAX6029ESA25+ 8 SO — MAX6029EUK30+T 5 SOT23 AEHH MAX6029EUK33+T 5 SOT23 AEHN MAX6029EUK41+T 5 SOT23 AEHJ MAX6029ESA41+ 8 SO — MAX6029EUK50+T 5 SOT23 AEHL Selector Guide PART PIN-PACKAGE OUTPUT VOLTAGE (V) MAX6029EUK21 5 SOT23 2.048 MAX6029EUK25 5 SOT23 2.500 MAX6029ESA25 8 SO 2.500 MAX6029EUK30 5 SOT23 3.000 MAX6029EUK33 5 SOT23 3.300 MAX6029EUK41 5 SOT23 4.096 MAX6029ESA41 8 SO 4.096 MAX6029EUK50 5 SOT23 5.000 Note: All devices are specified over the -40°C to +85°C oper- ating temperature range. +Denotes a lead(Pb)-free/RoHS-compliant package.
MAX6029 Ultra-Low-Power Precision Series Voltage Reference Maxim Integrated | 2www.maximintegrated.com Absolute Maximum Ratings Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specificatio ns is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. Continuous Power Dissipation (T A = +70°C) (VIN = 2.5V, IOUT = 0, TA = TMIN to TMAX, unless otherwise noted. Typical values are at TA = +25°C.) (Note 1) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS OUTPUT Output Voltage V OUT TA = +25°C 2.0449 2.0480 2.0511 V Output Voltage Temperature Coefficient TCVOUT (Notes 2, 3) 30 ppm/ °C Line Regulation ΔVOUT/ΔVIN VIN = 2.5V to 12.6V 27 200 µV/V IOUT = 0 to 4mA 0.22 0.7Load Regulation ΔVOUT/ ΔIOUT IOUT = 0 to -1mA 2.4 5.5 µV/µA Output Short-Circuit Current I SC 60 mA Long-Term Stability ΔVOUT/time 1000 hours at +25 °C 150 ppm Thermal Hysteresis (Note 4) 140 ppm DYNAMIC CHARACTERISTICS f = 0.1Hz to 10Hz 30 µV P-PNoise Voltage e OUT f = 10Hz to 1kHz 115 µV RMS Ripple Rejection ΔVOUT/ΔVIN VIN = 2.5V ±200mV, f = 120Hz 43 dB Turn-On Settling Time t R To VOUT = 0.1% of final value 450 µs INPUT Supply Voltage Range V IN 2.5 12.6 V Supply Current I IN 5.25 µA Change in Supply Current I IN/VIN VIN = 2.5V to 12.6V 1.5 µA/V
MAX6029 Ultra-Low-Power Precision Series Voltage Reference Maxim Integrated | 3www.maximintegrated.com (VIN = 2.7V, IOUT = 0, TA = TMIN to TMAX, unless otherwise noted. Typical values are at TA = +25°C.) (Note 1) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS OUTPUT MAX6029EUK 2.4963 2.5000 2.5038Output Voltage V OUT TA = +25°C MAX6029ESA 2.495 2.500 2.505 V Output Voltage Temperature Coefficient TCVOUT (Notes 2, 3) 30 ppm/ °C Line Regulation ΔVOUT/ΔVIN VIN = 2.7V to 12.6V 30 230 µV/V IOUT = 0 to 4mA 0.1 0.6Load Regulation ΔVOUT/ΔIOUT IOUT = 0 to -1mA 2.5 6.2 µV/µA IOUT = 0 100Dropout Voltage (Note 5) V IN - VOUT IOUT = 4mA 200 mV Output Short-Circuit Current I SC 60 mA Long-Term Stability ΔVOUT/time 1000 hours at +25 °C 150 ppm Thermal Hysteresis (Note 4) 140 ppm DYNAMIC CHARACTERISTICS f = 0.1Hz to 10Hz 39 µV P-PNoise Voltage e OUT f = 10Hz to 1kHz 137 µV RMS Ripple Rejection ΔVOUT/ΔVIN VIN = 2.7V ±200mV, f = 120Hz 34 dB Turn-On Settling Time t R To VOUT = 0.1% of final value 700 ms INPUT Supply Voltage Range V IN 2.7 12.6 V Supply Current I IN 5.75 µA Change in Supply Current I IN/VIN VIN = 2.7V to 12.6V 1.5 µA/V
MAX6029 Ultra-Low-Power Precision Series Voltage Reference Maxim Integrated | 4www.maximintegrated.com (VIN = 3.2V, IOUT = 0, TA = TMIN to TMAX, unless otherwise noted. Typical values are at TA = +25°C.) (Note 1) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS OUTPUT Output Voltage V OUT TA = +25°C 2.9955 3.0000 3.0045 V Output Voltage Temperature Coefficient TCVOUT (Notes 2, 3) 30 ppm/ °C Line Regulation ΔVOUT/ΔVIN VIN = 3.2V to 12.6V 15 250 µV/V IOUT = 0 to 4mA 0.1 0.6Load Regulation ΔVOUT/ ΔIOUT IOUT = 0 to -1mA 2.4 6.5 µV/µA IOUT = 0 100Dropout Voltage (Note 5) V IN - VOUT IOUT = 4mA 200 mV Output Short-Circuit Current I SC 60 mA Long-Term Stability ΔVOUT/time 1000 hours at +25 °C 150 ppm Thermal Hysteresis (Note 4) 140 ppm DYNAMIC CHARACTERISTICS f = 0.1Hz to 10Hz 39 µV P-PNoise Voltage e OUT f = 10Hz to 1kHz 161 µV RMS Ripple Rejection ΔVOUT/ΔVIN VIN = 3.2V ±200mV, f = 120Hz 37 dB Turn-On Settling Time t R To VOUT = 0.1% of final value 775 µs INPUT Supply Voltage Range V IN 3.2 12.6 V Supply Current I IN 6.75 µA Change in Supply Current I IN/VIN VIN = 3.2V to 12.6V 1.5 µA/V
MAX6029 Ultra-Low-Power Precision Series Voltage Reference Maxim Integrated | 5www.maximintegrated.com (VIN = 3.5V, IOUT = 0, TA = TMIN to TMAX, unless otherwise noted. Typical values are at TA = +25°C.) (Note 1) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS OUTPUT Output Voltage V OUT TA = +25°C 3.2951 3.3000 3.3050 V Output Voltage Temperature Coefficient TCVOUT (Notes 2, 3) 30 ppm/ °C Line Regulation ΔVOUT/ΔVIN VIN = 3.5V to 12.6V 30 270 µV/V IOUT = 0 to 4mA 0.1 0.6Load Regulation ΔVOUT/ΔIOUT IOUT = 0 to -1mA 2.4 7 µV/µA IOUT = 0 100Dropout Voltage (Note 5) V IN - VOUT IOUT = 4mA 200 mV Output Short-Circuit Current I SC 60 mA Long-Term Stability ΔVOUT/time 1000 hours at +25 °C 150 ppm Thermal Hysteresis (Note 4) 140 ppm DYNAMIC CHARACTERISTICS f = 0.1Hz to 10Hz 56 µV P-PNoise Voltage e OUT f = 10Hz to 1kHz 174 µV RMS Ripple Rejection ΔVOUT/ΔVIN VIN = 3.5V ±200mV, f = 120Hz 38 dB Turn-On Settling Time t R To VOUT = 0.1% of final value 1 ms INPUT Supply Voltage Range V IN 3.5 12.6 V Supply Current I IN 7.25 µA Change in Supply Current I IN/VIN VIN = 3.5V to 12.6V 1.5 µA/V
MAX6029 Ultra-Low-Power Precision Series Voltage Reference Maxim Integrated | 6www.maximintegrated.com (VIN = 4.3V, IOUT = 0, TA = TMIN to TMAX, unless otherwise noted. Typical values are at TA = +25°C.) (Note 1) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS OUTPUT MAX6029EUK 4.0899 4.0960 4.1021Output Voltage V OUT TA = +25°C MAX6029ESA 4.088 4.096 4.104 V Output Voltage Temperature Coefficient TCVOUT (Notes 2, 3) 30 ppm/ °C Line Regulation ΔVOUT/ΔVIN VIN = 4.3V to 12.6V 30 310 µV/V IOUT = 0 to 4mA 0.1 0.6Load Regulation ΔVOUT/ΔIOUT IOUT = 0 to -1mA 2.5 8.5 µV/µA IOUT = 0 100Dropout Voltage (Note 5) V IN - VOUT IOUT = 4mA 200 mV Output Short-Circuit Current I SC 60 mA Long-Term Stability ΔVOUT/time 1000 hours at +25 °C 150 ppm Thermal Hysteresis (Note 4) 140 ppm DYNAMIC CHARACTERISTICS f = 0.1Hz to 10Hz 72 µV P-PNoise Voltage e OUT f = 10Hz to 1kHz 210 µV RMS Ripple Rejection ΔVOUT/ΔVIN VIN = 4.3V ±200mV, f = 120Hz 36 dB Turn-On Settling Time t R To VOUT = 0.1% of final value 1.2 ms INPUT Supply Voltage Range V IN 4.3 12.6 V Supply Current I IN 8.75 µA Change in Supply Current I IN/VIN VIN = 4.3V to 12.6V 1.5 µA/V
MAX6029 Ultra-Low-Power Precision Series Voltage Reference Maxim Integrated | 7www.maximintegrated.com Note 1: MAX6029 is 100% production tested at TA = +25°C and is guaranteed by design for TA = TMIN to TMAX as specified. Note 2: Temperature coefficient is defined by box method: (VMAX - VMIN)/(ΔT ✕ V+25°C). Note 3: Not production tested. Guaranteed by design. Note 4: Thermal hysteresis is defined as the change in TA = +25°C output voltage before and after temperature cycling of the device (from TA = TMIN to TMAX). Initial measurement at TA = +25°C is followed by temperature cycling the device to TA = +85°C then to TA = -40°C and another measurement at TA = +25°C is compared to the original measurement at TA = +25°C. Note 5: Dropout voltage is the minimum input voltage at which VOUT changes by 0.1% from VOUT at rated VIN and is guaranteed by Load Regulation Test. (VIN = 5.2V, IOUT = 0, TA = TMIN to TMAX, unless otherwise noted. Typical values are at TA = +25°C.) (Note 1) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS OUTPUT Output Voltage V OUT TA = +25°C 4.9925 5.0000 5.0075 V Output Voltage Temperature Coefficient TCVOUT (Notes 2, 3) 30 ppm/ °C Line Regulation ΔVOUT/ΔVIN VIN = 5.2V to 12.6V 34 375 µV/V IOUT = 0 to 4mA 0.3 0.8Load Regulation ΔVOUT/ ΔIOUT IOUT = 0 to -1mA 3.3 9 µV/µA IOUT = 0 100Dropout Voltage (Note 5) V IN - VOUT IOUT = 4mA 200 mV Output Short-Circuit Current I SC 60 mA Long-Term Stability ΔVOUT/time 1000 hours at +25 °C 150 ppm Thermal Hysteresis (Note 4) 140 ppm DYNAMIC CHARACTERISTICS f = 0.1Hz to 10Hz 90 µV P-PNoise Voltage e OUT f = 10Hz to 1kHz 245 µV RMS Ripple Rejection ΔVOUT/ΔVIN VIN = 5.2V ±200mV, f = 120Hz 38 dB Turn-On Settling Time t R To VOUT = 0.1% of final value 1.4 ms INPUT Supply Voltage Range V IN 5.2 12.6 V Supply Current I IN 10.5 µA Change in Supply Current I IN/VIN VIN = 5.2V to 12.6V 1.5 µA/V
MAX6029 Ultra-Low-Power Precision Series Voltage Reference Maxim Integrated | 8www.maximintegrated.com Typical Operating Characteristics (VIN = 2.5V for MAX6029EUK21, VIN = 3.2V for MAX6029EUK30, and VIN = 5.2V for MAX6029EUK50, IOUT = 0, TA = +25°C, unless otherwise noted.) OUTPUT VOLTAGE vs. TEMPERATURE (VOUT = 2.048V) MAX6029 toc01 TEMPERATURE (°C) OUTPUT VOLTAGE (V) 603510-15 2.042 2.044 2.046 2.048 2.050 2.040 -40 85
3 TYPICAL UNITS
OUTPUT VOLTAGE vs. TEMPERATURE (VOUT = 3V) MAX6029 toc02 TEMPERATURE (°C) OUTPUT VOLTAGE (V) 603510-15 2.993 2.995 2.997 2.999 3.001 3.003 2.991 -40 85 OUTPUT VOLTAGE vs. TEMPERATURE (VOUT = 5V) MAX6029 toc03 TEMPERATURE (°C) OUTPUT VOLTAGE (V) 4.990 4.992 4.994 4.996 4.998 5.000 5.002 5.004 5.006 4.988 603510-15-40 85 SUPPLY CURRENT vs. INPUT VOLTAGE MAX6029 toc04 INPUT VOLTAGE (V) SUPPLY CURRENT (μA) 121110987654321 01 3 VOUT = 3V VOUT = 5V VOUT = 2.048V SUPPLY CURRENT vs. TEMPERATURE MAX6029 toc05 TEMPERATURE (°C) SUPPLY CURRENT (μA) 603510-15 3.0 3.5 4.0 4.5 5.0 5.5 6.0 6.5 7.0 2.5 -40 85 VOUT = 3V VOUT = 5V VOUT = 2.048V DROPOUT VOLTAGE vs. SOURCE CURRENT (VOUT = 2.048V) MAX6029 toc06 SOURCE CURRENT (mA) DROPOUT VOLTAGE (V) 651 2 3 4 0.02 0.04 0.06 0.08 0.10 0.12 0.14 0.16 DROPOUT VOLTAGE vs. SOURCE CURRENT (VOUT = 3V) MAX6029 toc07 SOURCE CURRENT (mA) DROPOUT VOLTAGE (V) 653 421 0.01 0.02 0.03 0.04 0.05 0.06 0.07 0.08 0.09 0.10 0.11 DROPOUT VOLTAGE vs. SOURCE CURRENT (VOUT = 5V) MAX6029 toc08 SOURCE CURRENT (mA) DROPOUT VOLTAGE (V) 653 421 0.01 0.02 0.03 0.04 0.05 0.06 0.07 0.08 0.09 LOAD REGULATION (VOUT = 2.048V) MAX6029 toc09 OUTPUT CURRENT (mA) OUTPUT VOLTAGE (V) 653 40 1 2-1 2.0475 2.0480 2.0485 2.0490 2.0495 2.0500 2.0505 2.0510 2.0515 2.0520 2.0470 -2 7
MAX6029 Ultra-Low-Power Precision Series Voltage Reference Maxim Integrated | 9www.maximintegrated.com LINE REGULATION (VOUT = 2.048V) MAX6029 toc10 INPUT VOLTAGE (V) OUTPUT VOLTAGE (V) 2.04774 2.04776 2.04778 2.04780 2.04782 2.04784 2.04786 2.04788 2.04790 2.04792 2.04772 2.5 13.0 LOAD REGULATION (VOUT = 3V) MAX6029 toc11 OUTPUT CURRENT (mA) OUTPUT VOLTAGE (V) 653 40 1 2-1 3.0015 3.0020 3.0025 3.0030 3.0035 3.0040 3.0045 3.0050 3.0055 3.0010 -2 7 LINE REGULATION (VOUT = 3V) MAX6029 toc12 INPUT VOLTAGE (V) OUTPUT VOLTAGE (V) 121110987654 3.00160 3.00165 3.00170 3.00175 3.00180 3.00155 31 3 LOAD REGULATION (VOUT = 5V) MAX6029 toc13 OUTPUT CURRENT (mA) OUTPUT VOLTAGE (V) 653 40 1 2-1 5.0015 5.0020 5.0025 5.0030 5.0035 5.0040 5.0045 5.0050 5.0005 5.0010 -2 7 LINE REGULATION (VOUT = 5V) MAX6029 toc14 INPUT VOLTAGE (V) OUTPUT VOLTAGE (V) 12116 7 8 9 10 5.00066 5.00068 5.00070 5.00072 5.00074 5.00076 5.00078 5.00080 5.00064 51 3 POWER-SUPPLY REJECTION RATIO vs. FREQUENCY (VOUT = 2.048V) MAX6029 toc15 FREQUENCY (kHz) PSRR (dB) 100101 -50 -40 -30 -20 -10 -60 0.1 1000 POWER-SUPPLY REJECTION RATIO vs. FREQUENCY (VOUT = 3V) MAX6029 toc16 FREQUENCY (kHz) PSRR (dB) 100101 -50 -40 -30 -20 -10 -60 0.1 1000 POWER-SUPPLY REJECTION RATIO vs. FREQUENCY (VOUT = 5V) MAX6029 toc17 FREQUENCY (kHz) PSRR (dB) 100101 -45 -40 -35 -30 -25 -20 -15 -10 -50 0.1 1000 Typical Operating Characteristics (continued) (VIN = 2.5V for MAX6029EUK21, VIN = 3.2V for MAX6029EUK30, and VIN = 5.2V for MAX6029EUK50, IOUT = 0, TA = +25°C, unless otherwise noted.) LINE-TRANSIENT RESPONSE (VOUT = 2.048V) MAX6029 toc18 200μs/div 2.5V 2.048V VIN 200mV/div AC-COUPLED VOUT 200mV/div AC-COUPLED
MAX6029 Ultra-Low-Power Precision Series Voltage Reference Maxim Integrated | 10www.maximintegrated.com LINE-TRANSIENT RESPONSE (VOUT = 3V) MAX6029 toc19 200μs/div 3.7V 3.2V VIN 200mV/div AC-COUPLED VOUT 200mV/div AC-COUPLED LINE-TRANSIENT RESPONSE (VOUT = 5V) MAX61029 toc20 200μs/div 5.7V 5.2V VIN 200mV/div AC-COUPLED VOUT 100mV/div AC-COUPLED LOAD-TRANSIENT RESPONSE (SOURCING, VOUT = 2.048V) MAX6029 toc21 100μs/div 4mA 2.048V IOUT 10mA/div VOUT 500mV/div AC-COUPLED COUT = 0 LOAD-TRANSIENT RESPONSE (SINKING, VOUT = 2.048V) MAX6029 toc22 1ms/div -1mA 2.048V IOUT 2mA/div VOUT 500mV/div AC-COUPLED COUT = 0 LOAD-TRANSIENT RESPONSE (SOURCING, VOUT = 2.048V) MAX6029 toc23 400μs/div 4mA 2.048V IOUT 10mA/div VOUT 500mV/div AC-COUPLED COUT = 1μF LOAD-TRANSIENT RESPONSE (SINKING, VOUT = 2.048V) MAX6029 toc24 1ms/div -1mA 2.048V IOUT 2mA/div VOUT 500mV/div AC-COUPLED COUT = 1μF Typical Operating Characteristics (continued) (VIN = 2.5V for MAX6029EUK21, VIN = 3.2V for MAX6029EUK30, and VIN = 5.2V for MAX6029EUK50, IOUT = 0, TA = +25°C, unless otherwise noted.)
MAX6029 Ultra-Low-Power Precision Series Voltage Reference Maxim Integrated | 11www.maximintegrated.com LOAD-TRANSIENT RESPONSE (SINKING, VOUT = 5V) MAX6029 toc28 2ms/div -1mA IOUT 1mA/div VOUT 1V/div AC-COUPLED COUT = 1μF TURN-ON TRANSIENT (VOUT = 2.048V) MAX6029 toc29 200μs/div 2.5V 2.048V VIN 1V/div VOUT 1V/div TURN-ON TRANSIENT (VOUT = 3V) MAX6029 toc30 200μs/div 3.2V VIN 2V/div VOUT 1V/div LOAD-TRANSIENT RESPONSE (SOURCING, VOUT = 5V) MAX6029 toc25 400μs/div 4mA IOUT 10mA/div VOUT 500mV/div AC-COUPLED COUT = 0 LOAD-TRANSIENT RESPONSE (SINKING, VOUT = 5V) MAX6029 toc26 2ms/div -1mA IOUT 1mA/div VOUT 1V/div AC-COUPLED COUT = 0 LOAD-TRANSIENT RESPONSE (SOURCING, VOUT = 5V) 6029 toc27 400μs/div 4mA IOUT 10mA/div VOUT 200mV/div AC-COUPLED COUT = 1μF Typical Operating Characteristics (continued) (VIN = 2.5V for MAX6029EUK21, VIN = 3.2V for MAX6029EUK30, and VIN = 5.2V for MAX6029EUK50, IOUT = 0, TA = +25°C, unless otherwise noted.)
MAX6029 Ultra-Low-Power Precision Series Voltage Reference Maxim Integrated | 12www.maximintegrated.com NOISE vs. FREQUENCY (VOUT = 5V) MAX6029 toc37 FREQUENCY (kHz) NOISE (μVRMS/√Hz) 40302010 05 0 0.1Hz TO 10Hz OUTPUT NOISE (VOUT = 5V) MAX6029 toc34 1s/div VOUT 20μV/div NOISE vs. FREQUENCY (VOUT = 2.048V) MAX6029 toc35 FREQUENCY (kHz) NOISE (μVRMS/√Hz) 403010 20 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 05 0 NOISE vs. FREQUENCY (VOUT = 3V) MAX6029 toc36 FREQUENCY (kHz) NOISE (μVRMS/√Hz) 40302010 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 6.0 6.5 05 0 0.1Hz TO 10Hz OUTPUT NOISE (VOUT = 2.048V) MAX6029 toc32 1s/div VOUT 10μV/div 0.1Hz TO 10Hz OUTPUT NOISE (VOUT = 3V) MAX6029 toc33 1s/div VOUT 10μV/div TURN-ON TRANSIENT (VOUT = 5V) MAX6029 toc31 400μs/div 5.2V VIN 2V/div VOUT 2V/div Typical Operating Characteristics (continued) (VIN = 2.5V for MAX6029EUK21, VIN = 3.2V for MAX6029EUK30, and VIN = 5.2V for MAX6029EUK50, IOUT = 0, TA = +25°C, unless otherwise noted.)
the capacitor as close to IN as possible. tion and extends battery life. cycled over its entire operating temperature range. appearing across the device.
1 LSB, as a function of the operating temperature range
ture coefficient as the only parameter affecting accuracy. when heavily loaded and operating close to dropout. Figure 1. Temperature Coefficient vs. Operating Temperature Range for a 1 LSB Maximum Error
MAX6029 Ultra-Low-Power Precision Series Voltage Reference Maxim Integrated | 14www.maximintegrated.com OUT GND IN MAX6029 VIN = 2.5V TO 12.6V *CAPACITOR IS OPTIONAL. Typical Operating Circuit Chip Information PROCESS: BiCMOS
Package Information
For the latest package outline information and land patterns (foot- prints), go to www.maximintegrated.com/packages. Note that a “+”, “#”, or “-” in the package code indicates RoHS status only. Package drawings may show a different suffix character, but the drawing pertains to the package regardless of RoHS status. PACKAGE TYPE PACKAGE CODE OUTLINE NO. LAND PATTERN NO.
5 SOT23 U5+1 21-0057 90-0174
8 SO S8+2 21-0041 90-0096
Maxim Integrated cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim Integrated product. No circuit patent licenses are implied. Maxim Integrated reserves the right to change the circuitry and specifications without notice at any time. The parametric values (min and max limits) shown in the Electrical Characteristics table are guaranteed. Other parametric values quoted in this data sheet are provided for guidance. Maxim Integrated and the Maxim Integrated logo are trademarks of Maxim Integrated Products, Inc. © 2009 Maxim Integrated Products , Inc. | 15 MAX6029 Ultra-Low-Power Precision Series Voltage Reference For pricing, delivery, and ordering information, please contact Maxim Direct at 1-888-629-4642, or visit Maxim Integrated’s website at www.maximintegrated.com.
Revision History
0 7/03 Initial release — 1 8/06 Added SO package 1, 2, 14, 15 2 11/06 Updated voltage output limits 3, 6 3 1/09 Added lead-free notation to Ordering Information 1