Applications

Datasheet

ISL21080CIH330
300nA NanoPower Voltage References

Typical Diagram

enlarge +typical diagram

Key Features

    • Reference Output Voltage: 0.900V, 1.024V, 1.250V, 1.500V, 2.048V, 2.500V, 3.000V, 3.300V, 4.096V, 5.000V
    • Initial Accuracy:
      • ISL21080-09 and -10: ±0.7%
      • ISL21080-12: ±0.6%
      • ISL21080-15: ±0.5%
      • ISL21080-20 and -25: ±0.3%
      • ISL21080-30, -33, -41, and -50: ±0.2%
    • Input Voltage Range:
      • ISL21080-09: 2.0V to 5.5V
      • ISL21080-10, -12, -15, -20 and -25: 2.7V to 5.5V
      • ISL21080-30: 3.2V to 5.5V
      • ISL21080-33: 3.5V to 5.5V
      • ISL21080-41: 4.5V to 8.0V
      • ISL21080-50: 5.5V to 8.0V
    • Output Voltage Noise: 30µVP-P (0.1Hz to 10Hz)
    • Supply Current: 1.5µA (Max)
    • Tempco: 50ppm/°C
    • Output Current Capability: ±7mA
    • Operating Temperature Range: -40°C to +85°C
    • Package: 3 Ld SOT-23
    • Pb-Free (RoHS compliant)

Description

The ISL21080 analog voltage references feature low supply voltage operation at ultra-low 310nA typ, 1.5µA max operating current. Additionally, the ISL21080 family features guaranteed initial accuracy as low as ±0.2% and 50ppm/°C temperature coefficient.

These references are ideal for general purpose portable applications to extend battery life at lower cost. The ISL21080 is provided in the industry standard 3 Ld SOT-23 pinout.

The ISL21080 output voltages can be used as precision voltage sources for voltage monitors, control loops, standby voltages for low power states for DSP, FPGA, Datapath Controllers, microcontrollers and other core voltages: 0.9V, 1.024V, 1.25V, 1.5V, 2.048V, 2.5V, 3.0V, 3.3V, 4.096V and 5.0V.

Special Note: Post-assembly x-ray inspection may lead to permanent changes in device output voltage and should be minimized or avoided. For further information, please see "Applications Information" on page 14 and AN1533, "X-Ray Effects on Intersil FGA References".

Applications

    • Energy Harvesting Applications
    • Wireless Sensor Network Applications
    • Low Power Voltage Sources for Controllers, FPGA, ASICs or Logic Devices
    • Battery Management/Monitoring
    • Low Power Standby Voltages
    • Portable Instrumentation
    • Consumer/Medical Electronics
    • Wearable Electronics
    • Lower Cost Industrial and Instrumentation
    • Power Regulation Circuits
    • Control Loops and Compensation Networks
    • LED/Diode Supply

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