• [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    rf-user171530311

    5 years ago

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  • [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    5 years ago

    0 Uses

    0 Comments

    0 Stars


  • [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    0 Uses

    0 Comments

    0 Stars


  • [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    0 Uses

    0 Comments

    0 Stars


  • [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    0 Uses

    0 Comments

    0 Stars


  • [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    5 years ago

    0 Uses

    0 Comments

    0 Stars


  • [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    0 Uses

    0 Comments

    0 Stars


  • [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    0 Uses

    0 Comments

    0 Stars


  • [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    0 Uses

    0 Comments

    0 Stars


  • [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    0 Uses

    0 Comments

    0 Stars


  • [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    0 Uses

    0 Comments

    0 Stars


  • [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    0 Uses

    0 Comments

    0 Stars


  • [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    0 Uses

    0 Comments

    0 Stars


  • voltage regulator

    voltage regulator

    Welcome to your new project. Imagine what you can build here.

    2 years ago

    0 Uses

    0 Comments

    0 Stars


  • [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    0 Uses

    0 Comments

    0 Stars


  • [Simulated] Transformer Types based on Voltage Level

    [Simulated] Transformer Types based on Voltage Level

    Composed of two simulated separate circuits that demonstrate how step up and step down transformers work.

    0 Uses

    0 Comments

    0 Stars


  • VOLTAGE REGULATOR

    VOLTAGE REGULATOR

    Welcome to your new project. Imagine what you can build here.

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    a year ago

    0 Uses

    0 Comments

    0 Stars


  • InterconnectA

    InterconnectA

    This project aims to design and develop a modular monitoring system for a LiC supercapacitor array, incorporating PCBs A and B for voltage sensing on either side of the array, and PCB C for central control. PCBs A and B will measure cell voltages, communicate data via I2C, and feature activity/status LEDs, powered directly from the array. PCB C will aggregate data, managing over/under voltage, overcurrent, and balancing. The goal is a compact, efficient solution to ensure the array's safety and longevity.

    2 years ago

    0 Uses

    55 Comments

    0 Stars


  • PCB Layer View Controller with 2 layer board

    PCB Layer View Controller with 2 layer board

    A simple fixed linear voltage regulator board that can provide 3.3V up to 1A output and could operate down to 1V input-to-output differential. #firstpcbFlux

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    5 months ago

    0 Uses

    53 Comments

    0 Stars


  • Buck Boost Converter 3.3V 500 mA

    Buck Boost Converter 3.3V 500 mA

    A buck boost converter that can be powered from a Li-ion battery and ouput 3.3V @500mA. Powered by the TPS63051YFFR and in the same package as a standard ADAFRUIT buck converter. Input Voltage Range: 2.5 to 5.5 Voltage.

    2 years ago

    0 Uses

    52 Comments

    0 Stars


  • ESP32-S2-MINI-2 Reference Design

    ESP32-S2-MINI-2 Reference Design

    This project is a reference design for an ESP32-S2-MINI-2 based device. It features USB-C for power and data transfer, onboard voltage regulation, and multiple peripheral connections. It also includes a CH340C for USB to serial conversion #referenceDesign #project #ESP32 #ESP32S2 #RF #WIFI #MCU #referenceDesign #simple-embedded #espressif #template

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    6 months ago

    0 Uses

    52 Comments

    0 Stars


  • Yappy Moccasin Wall-E

    Yappy Moccasin Wall-E

    Software: Linux Power Requirements: LiPo battery powered Compliance: RoHS Connectivity: USB, WiFi, Bluetooth, Ethernet Human Interface: Joystick, Display Operating Voltage: 3.3V, 5V, 9V Operating Temp: -40 to +85C Reliability: 10,000hrs MTBF Target Cost: $100

    3 years ago

    0 Uses

    45 Comments

    0 Stars


  • AT06.V3 9W DOB V3.1

    AT06.V3 9W DOB V3.1

    - Buck Converter - Use IC BP2861CJ - Required Parameters: Input voltage: 220VAC Input Power: 9W Power Factor: 0.5 LED Output Voltage: 81VDC LED Output Current: 105mA Driver Efficiency : 90%

    a year ago

    0 Uses

    35 Comments

    0 Stars


  • Tutorial

    Tutorial

    Tutorial project to learn Flux Input voltage is 3V3. Max 3V3 output current is 2A. Output voltage is 3V3. Output voltage should be delayd 100ms after the input voltage reaches 3.0V.

    a year ago

    0 Uses

    28 Comments

    0 Stars


  • Cooling Fan with Solar Panels Design

    Cooling Fan with Solar Panels Design

    This project is a reference design for a 2A Solar Panel Power Manager With 7.2V LiFePO4 Battery and 17V Peak Power Tracking based on LT3652 IC. It includes components like resistors, capacitors, LEDs, and a JST connector for power input and battery connection. The design caters to high input voltage applications and ensures efficient charging with minimal components. #project #LT3652 #ReferenceDesign #charger #BatteryManagement #solar #LiFePO4 #referenceDesign #bms #analog #template #reference-design

    2 years ago

    0 Uses

    27 Comments

    0 Stars


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