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LM2776DBVR: CAD Models, Datasheet, Features [FAQ]

  • Contents

Catalog

LM2776DBVR Product Overview

LM2776DBVR CAD Models

LM2776DBVR Pin Configuration

LM2776DBVR Block Diagram

LM2776DBVR Typical Application

LM2776DBVR Features

LM2776DBVR Applications

LM2776DBVR Package Dimensions

LM2776DBVR Datasheet

LM2776DBVR Specifications

LM2776DBVR Manufacturer

Using Warning

LM2776DBVR FAQ

 

LM2776DBVR Product Overview

A positive voltage between 2.7 V and 5.5 V is inverted to the appropriate negative voltage using the LM2776DBVR CMOS charge-pump voltage converter. In place of inductor-based converters, which are more expensive, larger, and more susceptible to electromagnetic interference (EMI), the LM2776DBVR uses three inexpensive capacitors to deliver 200 mA of output current.

 

The LM2776DBVR offers the best performance for battery-powered systems needing a high power negative power supply, requiring just 100 A of running current and operating efficiency better than 90% for typical loads.

 

To retain a compact form factor, the LM2776DBVR has been mounted in TI's 6-pin SOT-23.

 

LM2776DBVR CAD Models

 

 

Figure: PCB Symbol

 

 

Figure: Footprint

 

 

Figure: 3D Models

 

LM2776DBVR Pin Configuration

 

 

Figure: Pin Configuration

Pin Number Pin Name Description
1 VOUT Negative voltage output.
2 GND Power supply ground input.
3 VIN Power supply positive voltage input.
4 EN Enable control pin, tie this pin high (EN = 1) for normal operation, and to GND (EN = 0) for shutdown.
5 C1+ Connect this pin to the positive terminal of the charge-pump capacitor.
6 C1- Connect this pin to the negative terminal of the charge-pump capacitor.

LM2776DBVR Block Diagram

 

 

Figure: Block Diagram

 

LM2776DBVR Typical Application

 

 

Figure: Typical Application

 

LM2776DBVR Features

  • 2-MHz Switching Frequency
  • Greater than 90% Efficiency
  • Current Limit and Thermal Protection
  • No Inductors
  • Input Voltage: 2.7 V to 5.5 V
  • 200-mA Output Current
  • Inverts Input Supply Voltage
  • Low-Current PFM Mode Operation

 

LM2776DBVR Applications

  • Data Converter Supplies
  • Audio Amplifier Power Supplies
  • Portable Electronic Devices
  • Operational Amplifier Power Supplies
  • Interface Power Supplies

 

LM2776DBVR Package Dimensions

 

 

Figure: Package Dimensions

 

LM2776DBVR Datasheet

You can download the datasheet from the link given below:

 

LM2776DBVR Datasheet

 

LM2776DBVR Specifications

Type Description
Category Integrated Circuits (ICs)
Power Management (PMIC)
Voltage Regulators - DC DC Switching Regulators
Mfr Texas Instruments
Series -
Package Tape & Reel (TR)
Cut Tape (CT)
Digi-Reel®
Product Status Active
Function Ratiometric
Output Configuration Negative
Topology Charge Pump
Output Type Fixed
Number of Outputs 1
Voltage - Input (Min) 2.7V
Voltage - Input (Max) 5.5V
Voltage - Output (Min/Fixed) -Vin
Voltage - Output (Max) -
Current - Output 200mA
Frequency - Switching 2MHz
Synchronous Rectifier No
Operating Temperature -40°C ~ 85°C (TA)
Mounting Type Surface Mount
Package / Case SOT-23-6
Supplier Device Package SOT-23-6
Base Product Number LM2776

 

LM2776DBVR Manufacturer

Texas Instruments Incorporated (TI) is an American technological business with its main office in Dallas, Texas. It creates and produces integrated circuits and semiconductors, which it then sells to producers and designers of electronics around the world. According to sales volume, it is one of the top 10 semiconductor businesses in the world. The company concentrates on creating embedded CPUs and analog circuits, which provide more than 80% of its sales. Calculators, microcontrollers, and multi-core processors are among the educational technology items that TI also makes using its digital light processing technology. As of 2016, the business had 45,000 patents worldwide.

 

Using Warning

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

LM2776DBVR FAQ

What is switched-capacitor inverter?

It is suggested to use a unique switched-capacitor inverter. By switching the capacitors between series and parallel connections, the suggested inverter generates an output voltage greater than the input voltage. The quantity of capacitors affects the maximum output voltage.

 

How does a switched-capacitor converter work?

A switched capacitor converter uses capacitors to convert voltage and transfer energy. During the first half of the switching cycle of a voltage inverter, the charge pump capacitor, C1, is charged to the input voltage.

 

What are the advantages of switched-capacitor multilevel inverter?

MLIs have a number of benefits over traditional two-level inverters, including better output voltage waveform generation, less electromagnetic interference, increased power handling capacity, increased efficiency, and reduced voltage stress on switches.

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