MC33023DWR2 The On Semiconductor MC33023DWR2 is a high-speed, fixed-frequency, single-ended PWM controller designed for off-line and DC-to-DC converter applications. It operates up to 1MHz with a 90% maximum duty cycle.
Mfr Part #:

MC33023DWR2

Available from 1 distributors
Mfr Name: On Semiconductor
On Semiconductor
The On Semiconductor MC33023DWR2 is a high-speed, fixed-frequency, single-ended PWM controller designed for off-line and DC-to-DC converter applications. It operates up to 1MHz with a 90% maximum duty cycle.
Total Stock: 30,000 pcs
$ Price Range: $0.75

MC33023DWR2 Available from 1 distributor

Authorised
Non-Authorised
Distributor Stock Pricing MOQ PKG Lead Time Date Code On Order Quantity On Order Delivery
Non-Authorised Inventory information
30,000 pcs
30000 pcs On Request 1 On Request On Request 00+ On Request On Request

MC33023DWR2 Specifications Quick View

Most important parameters for selection – full specs in datasheet.
Category
Manufacturer Name
Control Features
Duty Cycle
Fault Protection
Frequency
Internal Switch(s)
Mounting Type
Operating Temperature
Output Current
Output Isolation
SVHC Present
Supplier Device Package
Supplier Package
Topology
Voltage

MC33023DWR2 Description

Short technical summary and product information.

The MC33023DWR2 from ON Semiconductor is a high-speed, fixed-frequency, single-ended pulse width modulator (PWM) controller. It is optimized for high-frequency operation and is suitable for off-line and DC-to-DC converter applications, offering a cost-effective solution with minimal external components.

 

Key electrical features include a 50 ns propagation delay to output, a wide bandwidth error amplifier, and a high current totem pole output. It supports voltage or current mode operation up to 1.0 MHz with a maximum duty cycle of 90%. Protective features include input undervoltage lockout with hysteresis and cycle-by-cycle current limiting.

 

This controller is available in a 16-SOIC package and is designed for surface mount applications. It operates within a temperature range of -40°C to 105°C (TA) and accepts an input voltage range of 10V to 30V.

 

The MC33023 series is functionally similar to the UC3823 and is Pb-Free. It integrates an oscillator, a temperature-compensated reference, a wide bandwidth error amplifier, a high-speed current-sensing comparator, and a high-current totem pole output.

MC33023DWR2 Quick Information

Product Type: PWM Controller
Series: MC33023
Canonical Name: MC33023 High Speed Single-Ended PWM Controller
Subcategory: Offline Switch

MC33023DWR2 Compliance

RoHS Status: RoHS Compliant
Moisture Sensitivity Level (MSL): 1 Unlimited
REACH Status: REACH Unaffected
Lead Free: Pb-Free

MC33023DWR2 Estimated Pricing

Qty Low High
1+ $0.75 $0.75

Estimated market price range - modelled values for guidance only, not live distributor offers.

MC33023DWR2 Features

  • High speed single-ended PWM controller.
  • Optimized for high frequency operation.
  • Supports voltage or current mode control.
  • Integrated undervoltage lockout.
  • Pb-Free device.

MC33023DWR2 Applications

  • Designed for off-line converters.
  • Suitable for DC-to-DC converters.
  • Cost-effective solution.
  • Minimal external components required.

MC33023DWR2 FAQs

7 frequently asked questions generated from this part’s specifications.
What is the operating voltage range for the MC33023DWR2?

The MC33023DWR2 operates within a voltage range of 10 V to 30 V.

What is the package type for the MC33023DWR2?

The MC33023DWR2 is available in a 16-SOIC (0.295", 7.50mm Width) package.

What is the operating temperature range of the MC33023DWR2?

The MC33023DWR2 has an ambient operating temperature range of -40°C to 105°C.

What is the typical propagation delay to output?

The typical propagation delay to output is 50 ns.

What is the maximum duty cycle of this device?

The maximum duty cycle is 90%.

What is the maximum operating frequency?

The maximum operating frequency is 1 MHz.

Does the MC33023DWR2 have undervoltage lockout?

Yes, it features input undervoltage lockout with hysteresis.

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