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Series Information for MAX6023EBT12+T - Maxim Integrated


The MAX6023 is a family of low-dropout, micropower voltage references in a 5-bump, chip-scale package (UCSP™). The MAX6023 series-mode (three-terminal) references, which operate with input voltages from 2.5V to 12.6V (1.25V and 2.048V options) or (VOUT + 0.2V) to 12.6V (all other voltage options), are available with out- put voltage options of 1.25V, 2.048V, 2.5V, 3.0V, 4.096V, 4.5V, and 5.0V. These devices are guaranteed an initial accuracy of ±0.2% and 30ppm/°C tempera- ture drift over the -40°C to +85°C extended temperature range. UCSPs offer the benefit of moving to smaller footprint and lower profile devices, significantly smaller than even SC70 or SOT23 plastic surface-mount packages. The significantly lower profile (compared to plastic SMD packages) of the UCSP makes the device ideal for height-critical applications. Miniature UCSP packages also enable device placement close to sources and allow more flexibility in a complex or large design layout. The MAX6023 voltage references use only 27µA of sup- ply current. And unlike shunt-mode (two-terminal) refer- ences, the supply current of the MAX6023 family varies only 0.8µA/V with supply-voltage changes, translating to longer battery life. Additionally, these internally compen- sated devices do not require an external compensation capacitor and are stable up to 2.2nF of load capaci- tance. The low-dropout voltage and the low supply cur- rent make these devices ideal for battery-operated systems.


Voltage Reference Type:
Series - Fixed
Product Range:
Reference Voltage:
Initial Accuracy:
Temperature Coefficient:
± 10ppm/°C
Voltage Reference Case Style:
No. of Pins:
Operating Temperature Min:
Operating Temperature Max:
Automotive Qualification Standard:
MSL 1 - Unlimited
No SVHC (15-Jan-2018)

Alternate Descriptions

Avnet America

V-Ref Precision 1.25V 0.5mA 5-Pin UCSP T/R

Avnet Europe

V-Ref Precision 1.25V 0.5mA 5-Pin UCSP T/R

Avnet Asia

V-Ref Precision 1.25V 0.5mA 5-Pin UCSP T/R

Future Electronics

Precision, Low-Power, Low-Dropout, UCSP Voltage Reference