Voltage to Current (V-I) Converter


The circuit shown here is a high-side voltage-to-current (V-I) converter. It translates an input voltage of 0 V to 2 V to an output current of 0 mA to 100 mA. The low offset voltage and offset drift of the OPA2333 facilitate excellent DC accuracy for the circuit.

The project provides a high-side current source that supplies an adjustable current to a ground reference load. The first op-amp stage sets a reference current based on the input control voltage. The second op-amp stage acts as a current mirror that gains the reference current and regulates the current sourced from the output PMOSFET Q2 to the load. R2, R4, and R10 set the output current based on the input control voltage. Components C7, R9, R8, R7, C6, R3 provide compensation to ensure stability of the circuit.

The V-I transfer function of the circuit is based on the relationship between the input voltage, VIN, and the three current sensing resistors, R2, R4, and R10. The relationship between VIN and R10 determines the current that flows through the first stage of the design. The current gain from the first stage to the second stage is based on the relationship between R2 and R4. The project is built using OPA2333. Low offset voltage, low-temperature drift, and rail-to-rail output are the key features of this op-amp. The OPA2333 CMOS operational amplifier is a high precision, 5-uV offset, 0.05-μV/°C drift amplifier optimized for low-voltage, single-supply operation with an output swing to within 50 mV of the positive rail. The OPA2333 family uses chopping techniques to provide low initial offset voltage and near-zero drift over time and temperature. Low offset voltage and low drift reduce the offset error in the system, making these devices appropriate for precise DC control. The rail-to-rail output stage of the OPA2333 ensures that the output swing of the operational amplifier is able to fully control the gate of the MOSFET devices within the supply rails.

Features

  • Input Supply 5V DC
  • Input Control Voltage 0 to 2V
  • Output 0 to 100mA
  • Jumper For External/Internal Control Voltage Selection
  • Reference Voltage Generator Chip for 2V Control Voltage Source
  • Header Connector for Input and Output and Power Supply
  • On Board Power LED
  • On Board Trimmer Potentiometer for Control Voltage Adjustment
  • Header Connector for External Control Voltage
  • PCB Dimensions 36.83 x 20.96 mm

 Connections and Other Details

  • CN1: Pin 1 = 2V Input, Pin 2 = GND (External Control Voltage)
  • CN2: Pin 1,2 = VCC, Pin 3,4 = GND
  • CN3: Pin 1,2 = +Load, Pin 3,4 = GND
  • D1: Power LED
  • J1: Solder Jumper for External or Internal Control Voltage Selection. Open = External Control Voltage, Closes = Internal Control Voltage
  • J2: Always Closed

$13.00

dotfry

B130

Misc Drivers

1 In Stock Sold Out 1


HURRY ! ONLY 1 LEFT IN STOCK.

Notify Me


Payment & Security
Payment methods
  • PayPal
Your payment information is processed securely. We do not store credit card details nor have access to your credit card information.
Security
100% ACCURATE
SHIPPING
BIG SAVING ON
WEEKENDS
12H SUPPORT
CONTACT US

The circuit shown here is a high-side voltage-to-current (V-I) converter. It translates an input voltage of 0 V to 2 V to an output current of 0 mA to 100 mA. The low offset voltage and offset drift of the OPA2333 facilitate excellent DC accuracy for the circuit.

The project provides a high-side current source that supplies an adjustable current to a ground reference load. The first op-amp stage sets a reference current based on the input control voltage. The second op-amp stage acts as a current mirror that gains the reference current and regulates the current sourced from the output PMOSFET Q2 to the load. R2, R4, and R10 set the output current based on the input control voltage. Components C7, R9, R8, R7, C6, R3 provide compensation to ensure stability of the circuit.

The V-I transfer function of the circuit is based on the relationship between the input voltage, VIN, and the three current sensing resistors, R2, R4, and R10. The relationship between VIN and R10 determines the current that flows through the first stage of the design. The current gain from the first stage to the second stage is based on the relationship between R2 and R4. The project is built using OPA2333. Low offset voltage, low-temperature drift, and rail-to-rail output are the key features of this op-amp. The OPA2333 CMOS operational amplifier is a high precision, 5-uV offset, 0.05-μV/°C drift amplifier optimized for low-voltage, single-supply operation with an output swing to within 50 mV of the positive rail. The OPA2333 family uses chopping techniques to provide low initial offset voltage and near-zero drift over time and temperature. Low offset voltage and low drift reduce the offset error in the system, making these devices appropriate for precise DC control. The rail-to-rail output stage of the OPA2333 ensures that the output swing of the operational amplifier is able to fully control the gate of the MOSFET devices within the supply rails.

Features

  • Input Supply 5V DC
  • Input Control Voltage 0 to 2V
  • Output 0 to 100mA
  • Jumper For External/Internal Control Voltage Selection
  • Reference Voltage Generator Chip for 2V Control Voltage Source
  • Header Connector for Input and Output and Power Supply
  • On Board Power LED
  • On Board Trimmer Potentiometer for Control Voltage Adjustment
  • Header Connector for External Control Voltage
  • PCB Dimensions 36.83 x 20.96 mm

 Connections and Other Details

  • CN1: Pin 1 = 2V Input, Pin 2 = GND (External Control Voltage)
  • CN2: Pin 1,2 = VCC, Pin 3,4 = GND
  • CN3: Pin 1,2 = +Load, Pin 3,4 = GND
  • D1: Power LED
  • J1: Solder Jumper for External or Internal Control Voltage Selection. Open = External Control Voltage, Closes = Internal Control Voltage
  • J2: Always Closed

Dotfry has partnered with reputed logistic partners for our logistic services, to ensure that all our products reach you in the best of conditions with no damages. We ensure you that we use packaging materials of the best quality, which is sourced from reliable vendors, and ensure thorough testing of package worthiness before using them for shipping and delivery of our products.

Voltage to Current (V-I) Converter
Voltage to Curren...
$13.00