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LTC3406ES5
+BOMSwitching Voltage Regulators LTC3406 - 1.5MHz, 600mA Synchronous Step-Down Regulator in ThinSOT
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ManufacturerAnalog Devices
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Mfr. Part #LTC3406ES5
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Datasheet LTC3406ES5 DataSheet
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In Stock22211
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Specifications
| Attribute | Value |
Overview
Description
The LTC3406ES5 features low output voltage ripple and fast transient response due to its internal compensation and low RDS(ON) synchronous switches. It offers a low dropout operation, enabling efficient operation even at low input voltages. The converter also has a Power Saving Mode for improved efficiency at light loads and can be synchronized to an external clock, providing flexibility in noise-sensitive applications.
Protection features include current limiting, thermal shutdown, and internal soft-start. It is housed in a compact 5-lead SOT-23 package, making it an ideal choice for space-constrained designs.
Equivalent
1. TPS62050 by Texas Instruments – A 1A step-down converter with a similar input voltage range.
2. MP2307 by Monolithic Power Systems – Offers similar functionality with a 3A output.
3. MIC23050 by Microchip Technology – Features a 600mA output with comparable efficiency.
These alternatives offer similar voltage regulation capabilities suitable for applications requiring compact, high-efficiency power supplies.
Features
1. High Efficiency: Achieves up to 95% efficiency, thanks to its synchronous rectification.
2. Wide Input Voltage Range: Operates from 2.5V to 5.5V, suitable for single-cell lithium-ion batteries and 3.3V or 5V systems.
3. Output Current: Delivers up to 600mA of continuous output current.
4. Fixed Output Voltage Options: Available in multiple fixed output voltage versions or an adjustable version that allows output voltage configuration via external resistors.
5. Low Quiescent Current: Consumes only 40µA during operation, reducing power drain during idle periods.
6. Burst Mode Operation: Ensures high efficiency at light loads.
7. Fast Transient Response: Quick adaptation to load changes.
8. Compact Package: Offered in a 5-lead TSOT-23 package, ideal for space-constrained applications.
9. Protection Features: Includes overcurrent protection, short-circuit protection, and thermal shutdown.
10. Soft-Start Capability: Minimizes inrush current during startup.
These features make the LTC3406ES5 an excellent choice for portable electronics and other applications requiring efficient step-down conversion.
Pinout
1. VIN (Pin 1): This is the input supply pin. It should be connected to a voltage source from 2.5V to 5.5V.
2. GND (Pin 2): This is the ground pin and serves as the reference point for the circuit.
3. SW (Pin 3): This pin is connected to the inductor and is the switch node for the DC/DC converter.
4. VFB (Pin 4): This is the feedback pin used to set the output voltage via an external resistor divider.
5. RUN/SS (Pin 5): This pin is used to enable the device and can also be used to implement soft-start functionality to limit inrush current during startup.
The LTC3406ES5 is designed for applications requiring high efficiency and compact size, like portable electronics.
Manufacturer
In 2017, Linear Technology was acquired by Analog Devices, Inc., which is another major player in the semiconductor industry. Analog Devices focuses on delivering a wide array of analog, mixed-signal, and digital signal processing technology, including data converters, amplifiers, radio frequency integrated circuits, power management technology, sensors, and other analog functions. The acquisition combined the strengths of Linear Technology and Analog Devices, enhancing their position in the analog segment of the semiconductor market.
Application
1. Mobile Phones: Power management for various components.
2. Wireless and Bluetooth Devices: Efficient power regulation for extended battery life.
3. Digital Cameras: Supplying consistent voltage to image sensors and processors.
4. Handheld Instruments: Providing stable power in compact, battery-operated devices.
5. GPS Receivers: Ensuring efficient power conversion for location services.
6. PDAs and Palmtop Computers: Managing power in small form-factor computing devices.
Its compact size, high efficiency, and low quiescent current make it ideal for these battery-powered applications.