Datasheet MAX6012 (Analog Devices)

ManufacturerAnalog Devices
DescriptionPrecision, Low-Power, Low-Dropout, SOT23-3 Voltage References
Pages / Page16 / 1 — Design. Tools. Support. Resources. and Models. Precision, Low-Power, …
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Design. Tools. Support. Resources. and Models. Precision, Low-Power, Low-Dropout,. MAX6012/MAX6021/MAX6025/MAX6030/

Datasheet MAX6012 Analog Devices

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Design Tools Support Resources and Models
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Precision, Low-Power, Low-Dropout, MAX6012/MAX6021/MAX6025/MAX6030/ SOT23-3 Voltage References MAX6041/MAX6045/MAX6050 General Description Features
The MAX6012/MAX6021/MAX6025/MAX6030/MAX6041/ ● 0.2% (max) Initial Accuracy MAX6045/MAX6050 precision, low-dropout, micropower ● 15ppm/°C (max) Temperature Coefficient voltage references are available in miniature SOT23-3 ● 35μA (max) Quiescent Supply Current surface-mount packages. They feature a proprietary ● 0.8μA/V Supply Current Variation with V curvature-correction circuit and laser-trimmed thin-film IN resistors that result in a low temperature coefficient of ● ±500μA Output Source and Sink Current <15ppm/°C and initial accuracy of better than 0.2%. ● 100mV Dropout at 500μA Load Current These devices are specified over the extended tempera- ● 0.12μV/μA Load Regulation ture range. ● 8μV/V Line Regulation These series-mode voltage references draw only 27μA ● Stable with CLOAD = 0 to 2.2nF of quiescent supply current and can sink or source up to
Ordering Information
500μA of load current. Unlike conventional shunt-mode (two-terminal) references that waste supply current and
PART TEMP RANGE PIN- TOP
require an external resistor, devices in the MAX6012
PACKAGE MARK
family offer a supply current that’s virtually independent
MAX6012
AEUR+ -40°C to +85°C 3 SOT23-3 FZAP of supply voltage (with only a 0.8μA/V variation with MAX6012AEUR+T -40°C to +85°C 3 SOT23-3 FZAP supply voltage) and do not require an external resistor. MAX6012BEUR+ -40°C to +85°C 3 SOT23-3 FZDA Additionally, these internally compensated devices do MAX6012BEUR+T -40°C to +85°C 3 SOT23-3 FZDA not require an external compensation capacitor and are
MAX6021
AEUR+ -40°C to +85°C 3 SOT23-3 FZAU stable with up to 2.2nF of load capacitance. Eliminating MAX6021AEUR+T -40°C to +85°C 3 SOT23-3 FZAU the external compensation capacitor saves valuable MAX6021BEUR+ -40°C to +85°C 3 SOT23-3 FZDF board area in space-critical applications. Their low drop- MAX6021BEUR+T -40°C to +85°C 3 SOT23-3 FZDF out voltage and supply-independent, ultra-low supply current make these devices ideal for battery-operated,
MAX6025
AEUR+ -40°C to +85°C 3 SOT23-3 FZAQ low-voltage systems. MAX6025AEUR+T -40°C to +85°C 3 SOT23-3 FZAQ MAX6025BEUR+ -40°C to +85°C 3 SOT23-3 FZDB
Applications
MAX6025BEUR+T -40°C to +85°C 3 SOT23-3 FZDB
MAX6030
AEUR+ -40°C to +85°C 3 SOT23-3 FZDW ● Hand-Held Equipment MAX6030AEUR+T -40°C to +85°C 3 SOT23-3 FZDW ● Data Acquisition Systems MAX6030BEUR+ -40°C to +85°C 3 SOT23-3 FZDX ● Industrial and Process-Control Systems MAX6030BEUR+T -40°C to +85°C 3 SOT23-3 FZDX ● Battery-Operated Equipment
MAX6041
AEUR+ -40°C to +85°C 3 SOT23-3 FZAR ● Hard-Disk Drives MAX6041AEUR+T -40°C to +85°C 3 SOT23-3 FZAR
Selector Guide MAX6045
AEUR+ -40°C to +85°C 3 SOT23-3 FZAS MAX6045AEUR+T -40°C to +85°C 3 SOT23-3 FZAS
MAX6050
AEUR+ -40°C to +85°C 3 SOT23-3 FZAT
PART OUTPUT VOLTAGE (V) INPUT VOLTAGE (V)
MAX6050AEUR+T -40°C to +85°C 3 SOT23-3 FZAT MAX6012 1.247 2.5 to 12.6
Typical Operating Circuit
MAX6021 2.048 2.5 to 12.6 +SUPPLY INPUT (SEE SELECTOR GUIDE) MAX6025 2.500 (VOUT + 200mV) to 12.6 IN OUT REFERENCE MAX6030 3.000 (VOUT + 200mV) to 12.6
MAX6012
OUT
MAX6021
MAX6041 4.096 (V
MAX6025
OUT + 200mV) to 12.6 *
MAX6030 MAX6041
MAX6045 4.500 (VOUT + 200mV) to 12.6
MAX6045 MAX6050
2.2nF MAX* MAX6050 5.000 (V GND OUT + 200mV) to 12.6
Pin Configuration appears at end of data sheet.
*CAPACITORS ARE OPTIONAL 19-4777; Rev 4; 11/22 © 2022 Analog Devices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners. One Analog Way, Wilmington, MA 01887 U.S.A. | Tel: 781.329.4700 | © 2022 Analog Devices, Inc. All rights reserved.