• DC Supply 1cHB

    DC Supply 1cHB

    Constant current (DC) power supply.

    oozliuoo

    5 years ago

    0 Uses

    1 Comment

    0 Stars


  • DC Supply bvxe

    DC Supply bvxe

    Constant current (DC) power supply.

    5 years ago

    0 Uses

    1 Comment

    0 Stars


  • DC Supply oNe8

    DC Supply oNe8

    Constant current (DC) power supply.

    5 years ago

    0 Uses

    1 Comment

    0 Stars


  • DC Supply d45X

    DC Supply d45X

    Constant current (DC) power supply. Can serve as Bate, Battery or Batt

    2 years ago

    0 Uses

    1 Comment

    0 Stars


  • DC Supply fzGu

    DC Supply fzGu

    Constant current (DC) power supply.

    5 years ago

    0 Uses

    1 Comment

    0 Stars


  • DC Supply iDyV

    DC Supply iDyV

    Constant current (DC) power supply.

    5 years ago

    0 Uses

    1 Comment

    0 Stars


  • DC Supply hWZS

    DC Supply hWZS

    Constant current (DC) power supply.

    2 years ago

    0 Uses

    0 Comments

    0 Stars


  • REGULATOR POWER SUPPLY

    REGULATOR POWER SUPPLY

    Almost all basic household electronic circuits need an unregulated AC to be converted to constant DC, in order to operate the electronic device. All devices will have a certain power supply limit and the electronic circuits inside these devices must be able to supply a constant DC voltage within this limit. This DC supply is regulated and limited in terms of voltage and current. But the supply provided from mains may be fluctuating and could easily break down the electronic equipment, if not properly limited. This work of converting an unregulated alternating current (AC) or voltage to a limited Direct current (DC) or voltage to make the output constant regardless of the fluctuations in input, is done by a regulated power supply circuit.

    10 months ago

    0 Uses

    0 Comments

    0 Stars


  • 12v - 5v converter placeholder

    12v - 5v converter placeholder

    This project involves designing a DC-DC buck converter circuit to efficiently step down a 12V input voltage to a stable 5V output voltage. The converter is suitable for various electronic applications requiring 5V DC supply from a 12V source.

    2 years ago

    0 Uses

    12 Comments

    0 Stars


  • 12v - 5v converter placeholder

    12v - 5v converter placeholder

    This project involves designing a DC-DC buck converter circuit to efficiently step down a 12V input voltage to a stable 5V output voltage. The converter is suitable for various electronic applications requiring 5V DC supply from a 12V source.

    +

    U
    U

    a year ago

    0 Uses

    9 Comments

    0 Stars


  • AFBR-S50LV85D Reference Design

    AFBR-S50LV85D Reference Design

    This project involves a Reference Design for the AFBR-S50LV85D by Broadcom, a time of flight sensor. It includes circuitry that implements SPI communication, with capacitors for smoothened DC supply. The core component, AFBR-S50LV85D, connects with the mandatory SPI and power nets. #referenceDesign #industrialsensing #broadcom #template #reference-design

    3 years ago

    0 Uses

    5 Comments

    0 Stars


  • Pretty Peach Battle Mech

    Pretty Peach Battle Mech

    led on and off with 5v dc supply schematic

    a year ago

    0 Uses

    0 Comments

    0 Stars


  • Phase-shifted Oscillator

    Phase-shifted Oscillator

    Sample circuit that outputs a sine wave starting from a DC power supply: https://en.wikipedia.org/wiki/Phase-shift_oscillator

    2 years ago

    0 Uses

    3 Comments

    0 Stars


  • Phase-shifted Oscillator

    Phase-shifted Oscillator

    Sample circuit that outputs a sine wave starting from a DC power supply: https://en.wikipedia.org/wiki/Phase-shift_oscillator

    +

    U

    4 years ago

    0 Uses

    1 Comment

    0 Stars


  • DC-DC Step Down Buck Converter

    DC-DC Step Down Buck Converter

    DC Power Supply Voltage Regulator Buck Converter 8A/100W https://www.amazon.com/DROK-90483-Voltage-Regulator-Converter/dp/B00C4QVTNU/

    4 years ago

    0 Uses

    1 Comment

    0 Stars


  • Phase-shifted Oscillator d8bd

    Phase-shifted Oscillator d8bd

    Sample circuit that outputs a sine wave starting from a DC power supply: https://en.wikipedia.org/wiki/Phase-shift_oscillator

    4 years ago

    0 Uses

    1 Comment

    0 Stars


  • Phase-shifted Oscillator jehR

    Phase-shifted Oscillator jehR

    Sample circuit that outputs a sine wave starting from a DC power supply: https://en.wikipedia.org/wiki/Phase-shift_oscillator

    4 years ago

    0 Uses

    1 Comment

    0 Stars


  • Phase-shifted Oscillator

    Phase-shifted Oscillator

    Sample circuit that outputs a sine wave starting from a DC power supply: https://en.wikipedia.org/wiki/Phase-shift_oscillator

    4 years ago

    0 Uses

    1 Comment

    0 Stars


  • Phase-shifted Oscillator mz3g

    Phase-shifted Oscillator mz3g

    Sample circuit that outputs a sine wave starting from a DC power supply: https://en.wikipedia.org/wiki/Phase-shift_oscillator

    4 years ago

    0 Uses

    1 Comment

    0 Stars


  • SPS

    SPS

    230 VAC to Dual Isolated 5 V / 3.3 V DC Power Supply with Input Protection and EMI Filtering

    7 months ago

    0 Uses

    0 Comments

    0 Stars


  • Smart Vending System Control Board

    Smart Vending System Control Board

    Designing a control board for a smart vending machine. Board will house an ESP32, AC and DC power supply, terminal port for stepper motor, MG990 servo motor, SIM7200 GSM module, 2004 LCD screen.

    a year ago

    0 Uses

    0 Comments

    0 Stars


  • Secret Crimson Hoverboard

    Secret Crimson Hoverboard

    Circuit Overview The circuit you're describing is a digital counter that uses an LDR (Light-Dependent Resistor) and a transistor to detect wheel rotations. The counter's output is then displayed on a seven-segment LED display. Here's a breakdown of the components and their roles: 1. Wheel Rotation Detection (LDR and Transistor) * LDR: The LDR acts as a sensor to detect changes in light intensity. You can mount it on the wheel' or near it, with a reflective or non-reflective surface attached to the wheel. As the wheel rotates, the LDR will be exposed to alternating light and dark conditions, causing its resistance to change. * Transistor: The transistor (e.g., a 2N2222 NPN BJT) is used as a switch or amplifier. The changing resistance of the LDR is used to control the base current of the transistor. When the LDR's resistance drops (more light), the transistor turns on, and when the resistance increases (less light), the transistor turns off. This converts the analog change in light into a digital ON/OFF signal (a pulse). 2. Counter (7490) * 7490 IC: This is a decade counter, meaning it can count from 0 to 9. The output of the transistor (the pulses) is fed into the clock input of the 7490. Each pulse represents one rotation of the wheel, and the 7490 increments its count accordingly. The 7490 has four outputs (Q0, Q1, Q2, Q3) that represent the BCD (Binary-Coded Decimal) equivalent of the count. 3. BCD to Seven-Segment Decoder (7446) * 7446 IC: The 7446 is a BCD-to-seven-segment decoder/driver. Its job is to take the 4-bit BCD output from the 7490 and convert it into a signal that can drive a seven-segment LED display. It has seven outputs (a, b, c, d, e, f, g), each corresponding to a segment of the LED display. 4. Seven-Segment LED Display * Seven-Segment Display: This display is used to show the count. The 7446's outputs are connected to the corresponding segments of the display. 5. Power Supply and Other Components * Power Supply: A regulated DC power supply (e.g., 5V) is needed to power all the ICs and components. * Resistors: Resistors are used for current limiting (e.g., for the LDR and the LED display) and biasing the transistor. * Capacitors: A capacitor might be used for debouncing the signal from the transistor to prevent multiple counts for a single rotation. Conceptual Connections Here is a step-by-step breakdown of how the components would be connected: * LDR and Transistor: * The LDR and a current-limiting resistor are connected in series across the power supply. * The junction between the LDR and the resistor is connected to the base of the NPN transistor. * The emitter of the transistor is connected to ground. * The collector of the transistor, with a pull-up resistor, becomes the output for the pulse signal. * Transistor to 7490: * The output from the transistor's collector is connected to the clock input of the 7490 IC. * The 7490's reset pins (MR and MS) should be connected to ground for normal counting operation. * 7490 to 7446: * The BCD outputs of the 7490 (Q0, Q1, Q2, Q3) are connected to the BCD inputs of the 7446 (A, B, C, D). * 7446 to Seven-Segment Display: * The outputs of the 7446 (a, b, c, d, e, f, g) are connected to the corresponding segments of the seven-segment display. * Crucially, you need to use current-limiting resistors (e.g., 330Ω) in series with each segment to protect the LEDs from high current. * The common terminal of the seven-segment display is connected to the power supply (for a common anode display) or ground (for a common cathode display). This setup creates a chain reaction: wheel rotation changes light, which changes LDR resistance, which turns the transistor on/off, generating a pulse. This pulse increments the 7490, and the 7490's output is decoded by the 7446, which then displays the count on the seven-segment LED.

    a year ago

    0 Uses

    0 Comments

    0 Stars


  • Ferajjssb

    Ferajjssb

    Constant current (DC) power supply. Can serve as Bate, Battery or Batt

    2 years ago

    0 Uses

    0 Comments

    0 Stars


  • iot plant monitoring system

    iot plant monitoring system

    Project Title: Plant Monitoring and Irrigation System Overview: This system is based on the ESP32-S3 and is designed to manage irrigation for a multi-floor building. Key Features: Multi-Floor Operation: The system controls three separate floors. Each floor's irrigation can be managed independently. Irrigation and Pump Control: Each floor uses a solenoid valve to regulate water flow. The solenoid valves are operated via MOSFETs. A relay engages an AC water pump when a MOSFET triggers a solenoid valve. Hardware Interconnects: Screw Terminal connectors are added for connecting the solenoid valves and the motor pump. A DC Jack is included to supply power to the system. User Interface & Connectivity: Two JST connectors are provided for integrating an OLED display, a rotary encoder, and a pushbutton. Future enhancements may include the addition of soil moisture sensors. Remote Control: The system is designed for future integration with Blynk IoT. Blynk IoT will offer both manual control and timer-based irrigation modes for each floor.

    +

    U
    U

    a year ago

    0 Uses

    0 Comments

    0 Stars


  • Milk-V Duo S Carrier

    Milk-V Duo S Carrier

    Dual-rail carrier-board power supply with protected 7V to 16V DC input, 5V 5A primary buck rail, and 3.3V 3A modem buck rail.

    4 months ago

    0 Uses

    0 Comments

    0 Stars


Previous

Page 2 of 3

Next