Step-Up Voltage Regulator U1V11F3 - 3,3V 1,2A - Pololu 2561

Index: PLL-01894 EAN: 5904422308223

A step-up converter with a 3.3 V output voltage. Maximum input current up to 1.2 A. Supply voltage in the range 0.5 V - 5.5 V. The system has a standby mode.

Step-Up Voltage Regulator U1V11F3 - 3,3V 1,2A - Pololu 2561
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Step-up inverter - 1.2A - Pololu:
Manufacturer: Pololu

Product description: U1V11F3 - 3.3V 1.2A step-up converter - Polol 2561

A controller that increases the voltage from 0.5 to 5.5 V to a constant value of 3.3 V. When 3.3 V is exceeded at the input, the system automatically switches to rope mode of the voltage reducing regulator. The efficiency of the inverter is 70 - 90 % depending on the specified input voltage. The system has a standby mode, which is switched on by giving a low state to the SHDN output. We also offer a versionwith an output voltage of 5 V.

Outputs

The module has three outputs:

  • SHDN -system shutdown - low state, which makes the system go into low power consumption state. The output is pulled to the VIN via a 100 kΩ resistor, which makes the system switched on by default. If the pin is not used, it can be left unconnected or connected to an adjacent VIN. Otherwise, follow the instructions below:
    • For VIN < 0.8 V, the voltage value at SHDN must be below 0.1 * VIN to lock the controller and above 0.9 * VIN to unlock it.
    • For 0.8 V ≤ VIN ≤ 1.5 V, the voltage value at SHDN must be below 0.2 * VIN to lock the controller and above 0.8 * VIN to unlock it.
    • For VIN >11.5 V , the voltage value at SHDN must be below 0.4 V to lock the controller and above 1.2 V to unlock it.

The connectors are properly signed on the board. Output Raster 2.54 mm - popular connectorsgoldpin, allow the module to be mounted incontact plateorconnectionby means ofcables.

On customer's request, we can deliver a system with soldered goldpin connectors. For this purpose, please leave a message in the commentary to the order along with information which slat to mount - angular or straight.

Efficiency of the system

Efficiency is defined as the ratio of output power to input power (Power out)/(Power in). This is a very important parameter when working with portable energysources(batteries and accumulators), where the time of operation on one charging cycle counts. The efficiency of this pulse system is about 70 % - 90 %. The output current depends on the input voltage, details on the diagram:

Efficiency of the system at an output voltage of 3,3 V.

Dangerous voltage pulses

When connecting the power supply to the module, dangerous, short, high amplitude eclectic impulses (so-called pins) may appear, which may permanently damage the system. According to Polol's tests, for input voltages above 4.5 V, the pins may have an amplitude high enough to damage the module. In order to protect against this unwanted phenomenon it is recommended to solder a capacitor of at least 33 uF as close as possible to the pins powering the converter.

U1V11F3 inverter specification

  • Input voltage: 0.5 V to 5.5 V
  • Output voltage: 3,3 V
  • Maximuminputcurrent: 1,2 A
  • Output current: dependent on input voltage -see graph
  • Accuracy of output voltage: 4 %
  • System efficiency: 70 - 90 %
  • Standby state - SHDN output
  • Integrated shutdown system for inverters at too high an operating temperature
  • Dimensions: 15.3 x 11.5 x 3 mm
  • Weight (without connectors): 0.7 g

Length 15 mm
Width 12 mm
Height 3 mm
Voltage to 0.5 V
Voltage from 5.5 V
Voltage output from 3.3 V
Output voltage to 3.3 V
Nominal output voltage 3.3 V
Current 1.2 A
Stabilizer - Type2 switching
Stabilizer - Type step-up
Package width 5 cm
Package height 4 cm
Package depth 0.5 cm
Package weight 0.002 kg

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Product reviews

Step-Up Voltage Regulator U1V11F3 - 3,3V 1,2A - Pololu 2561

5/5

Average grade

1

Customers opinion
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Emil 24.10.2023 Confirmed purchase Translated review
Goods delivered immediately after payment, high-quality converter - a bit expensive, small and very efficient. It sucks the last of the life (read: energy) out of supercaps. Regards ET

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