LTC3406ES6-3.3
1.5MHz, 600mA Synchronous Step-Down Regulator in ThinSOT
Synchronous Buck ConverterThe LTC3406ES6-3.3 is a synchronous buck converter from Linear Technology. 1.5MHz, 600mA Synchronous Step-Down Regulator in ThinSOT. View the full LTC3406ES6-3.3 datasheet below including key specifications, pinout, electrical characteristics.
Manufacturer
Linear Technology
Category
Synchronous Buck Converter
Package
ThinSOT
Key Specifications
| Parameter | Value |
|---|---|
| Efficiency | Up to 96% |
| Output Current | 600mA |
| Output Voltage | 3.3V |
| Package Height | 1mm |
| Shutdown Current | ≤ 1μA |
| Quiescent Current | 20μA |
| Input Voltage Range | 2.5V to 5.5V |
| Switching Frequency | 1.5MHz |
| Operating Temperature Range | -40°C to 85°C |
Overview
Part: LTC3406 from Linear Technology Corporation
Type: Synchronous Buck Regulator
Description: 2.5–5.5 V input, 600 mA synchronous buck regulator with 1.5 MHz constant frequency operation and up to 96% peak efficiency.
Operating Conditions:
- Supply voltage: 2.5–5.5 V
- Operating temperature: –40 to 85 °C
- Max output current: 600 mA
- Switching frequency: 1.5 MHz
Absolute Maximum Ratings:
- Max junction temperature: 125 °C
- Max storage temperature: –65 to 150 °C
Key Specs:
- Input voltage range: 2.5 V to 5.5 V
- Regulated feedback voltage: 0.5850 V to 0.6150 V (over –40°C to 85°C)
- Oscillator frequency: 1.2 MHz to 1.8 MHz (over full operating temp range)
- Active mode quiescent current: 20 μA (typ)
- Peak inductor current: 0.75 A (min)
- P-channel FET R_DS(ON): 0.4 Ω (typ) at I_SW = 100 mA
- N-channel FET R_DS(ON): 0.35 Ω (typ) at I_SW = –100 mA
- Peak efficiency: Up to 96%
Features:
- High Efficiency: Up to 96%
- Very Low Quiescent Current: Only 20μA During Operation
- 600mA Output Current
- 2.5V to 5.5V Input Voltage Range
- 1.5MHz Constant Frequency Operation
- No Schottky Diode Required
- Low Dropout Operation: 100% Duty Cycle
- 0.6V Reference Allows Low Output Voltages
- Shutdown Mode Draws ≤ 1μA Supply Current
- Current Mode Operation for Excellent Line and Load Transient Response
- Overtemperature Protected
- Low Profile (1mm) ThinSOT™ Package
Applications:
- Cellular Telephones
- Personal Information Appliances
- Wireless and DSL Modems
- Digital Still Cameras
- MP3 Players
- Portable Instruments
Package:
- ThinSOT (1mm profile)
Features
- High Efficiency: Up to 96%
- Very Low Quiescent Current: Only 20μA During Operation
- 600mA Output Current
- 2.5V to 5.5V Input Voltage Range
- 1.5MHz Constant Frequency Operation
- No Schottky Diode Required
- Low Dropout Operation: 100% Duty Cycle
- 0.6V Reference Allows Low Output Voltages
- Shutdown Mode Draws ≤ 1μA Supply Current
- Current Mode Operation for Excellent Line and Load Transient Response
- Overtemperature Protected
- Low Profile (1mm) ThinSOT™ Package
Applications
- Cellular Telephones
- Personal Information Appliances
- Wireless and DSL Modems
- Digital Still Cameras
- MP3 Players
- Portable Instruments
DESCRIPTION
The LTC®3406 is a high efficiency monolithic synchronous buck regulator using a constant frequency, current mode architecture. The device is available in an adjustable version and fixed output voltages of 1.5V and 1.8V. Supply current during operation is only 20μ A and drops to ≤ 1μ A in shutdown. The 2.5V to 5.5V input voltage range makes the LTC3406 ideally suited for single Li-Ion battery-powered applications. 100% duty cycle provides low dropout operation, extending battery life in portable systems. Automatic Burst Mode® operation increases efficiency at light loads, further extending battery life.
Switching frequency is internally set at 1.5MHz, allowing the use of small surface mount inductors and capacitors.
The internal synchronous switch increases efficiency and eliminates the need for an external Schottky diode. Low output voltages are easily supported with the 0.6V feedback reference voltage. The LTC3406 is available in a low profile (1mm) ThinSOT package.
47, LTC and LT are registered trademarks of Linear Technology Corporation. Burst Mode is a registered trademark of Linear Technology Corporation. ThinSOT is a trademark of Linear Technology Corporation. Protected by U.S. Patents, including 6580258, 5481178.
Pin Configuration
LTC3406ES6-3.3 Pinout
Package: ThinSOT-6
| Pin Number | Pin Name | Type | Description |
|---|---|---|---|
| 1 | RUN | I | Run Control Input. Forcing above 1.5V enables the part; below 0.3V shuts down the device. Do not leave floating. |
| 2 | GND | P | Ground Pin. |
| 3 | SW | O | Switch Node Connection to Inductor. Connects to the drains of the internal main and synchronous power MOSFET switches. |
| 4 | VIN | P | Main Supply Pin. Must be closely decoupled to GND with a 2.2μF or greater ceramic capacitor. |
| 5 | VFB | I | Feedback Pin. Receives the feedback voltage from an external resistive divider across the output. |
| 6 | NC | — | No Connect (not described in source material for this variant). |
Notes
- LTC3406ES6-3.3 variant identification: The datasheet section provided covers three variants: LTC3406 (with external VFB pin), LTC3406-1.5, and LTC3406-1.8 (with internal VOUT divider). The part number suffix "-3.3" indicates a fixed 3.3V output version. Pin 5 for the base LTC3406 is labeled VFB (external feedback), which matches the LTC3406ES6-3.3 configuration.
- Pin 6: The ThinSOT-6 package has 6 pins total. Pin 6 is not described in the provided datasheet section; it may be NC or an additional function not covered in this excerpt.
- Decoupling: VIN (Pin 4) requires a 2.2μF or greater ceramic capacitor to GND (Pin 2) placed as close as possible to the pins.
Electrical Characteristics
The ● denotes specifications which apply over the full operating temperature range, otherwise specifications are TA = 25°C. VIN = 3.6V unless otherwise specified.
| SYMBOL | PARAMETER | CONDITIONS | MIN | TYP | MAX | UNITS | |
|---|---|---|---|---|---|---|---|
| IVFB | Feedback Current | ● | ±30 | nA | |||
| VFB | Regulated Feedback Voltage | LTC3406 (Note 4) TA = 25°C LTC3406 (Note 4) 0°C TA ≤ 85°C LTC3406 (Note 4) –40°C ≤ TA ≤ 85°C | ● | 0.5880 0.5865 0.5850 | 0.6 0.6 0.6 | 0.6120 0.6135 0.6150 | V V V |
| ∆VFB | Reference Voltage Line Regulation | VIN = 2.5V to 5.5V (Note 4) | ● | 0.04 | 0.4 | %/V | |
| VOUT | Regulated Output Voltage | LTC3406-1.5, IOUT = 100mA LTC3406-1.8, IOUT = 100mA | ● ● | 1.455 1.746 | 1.500 1.800 | 1.545 1.854 | V V |
| ∆VOUT | Output Voltage Line Regulation | VIN = 2.5V to 5.5V | ● | 0.04 | 0.4 | %/V | |
| IPK | Peak Inductor Current | VIN = 3V, VFB = 0.5V or VOUT = 90%, Duty Cycle < 35% | 0.75 | 1 | 1.25 | A | |
| VLOADREG | Output Voltage Load Regulation | 0.5 | % | ||||
| VIN | Input Voltage Range | ● | 2.5 | 5.5 | V | ||
| IS | Input DC Bias Current Active Mode Sleep Mode Shutdown | (Note 5) VFB = 0.5V or VOUT = 90%, ILOAD = 0A VFB = 0.62V or VOUT = 103%, ILOAD = 0A VRUN = 0V, VIN = 4.2V | 300 20 0.1 | 400 35 1 | μA μA μA | ||
| fOSC | Oscillator Frequency | VFB = 0.6V or VOUT = 100% VFB = 0V or VOUT = 0V | ● | 1.2 | 1.5 210 | 1.8 | MHz kHz |
| RPFET | RDS(ON) of P-Channel FET | ISW = 100mA | 0.4 | 0.5 | Ω | ||
| RNFET | RDS(ON) of N-Channel FET | ISW = –100mA | 0.35 | 0.45 | Ω | ||
| ILSW | SW Leakage | VRUN = 0V, VSW = 0V or 5V, VIN = 5V | ±0.01 | ±1 | μA 3406fa |
Thermal Information
In most applications the LTC3406 does not dissipate much heat due to its high efficiency. But, in applications where the LTC3406 is running at high ambient temperature with low supply voltage and high duty cycles, such as in dropout, the heat dissipated may exceed the maximum junction temperature of the part. If the junction temperature reaches approximately 150°C, both power switches will be turned off and the SW node will become high impedance.
To avoid the LTC3406 from exceeding the maximum junction temperature, the user will need to do some thermal analysis. The goal of the thermal analysis is to determine whether the power dissipated exceeds the maximum junction temperature of the part. The temperature rise is given by:
$TR = (PD)(θJA)$
where $P_D$ is the power dissipated by the regulator and $\theta_{JA}$ is the thermal resistance from the junction of the die to the ambient temperature.
LINEAR
Typical Application
Figure 1a. High Efficiency Step-Down Converter
Figure 1b. Efficiency vs Load Current
ABSOLUTE AXI U RATI GS W W W U (Note 1)
Peak SW Sink and Source Current ........................ 1.3A Operating Temperature Range (Note 2) .. –40°C to 85°C Junction Temperature (Note 3)............................ 125°C Storage Temperature Range ................ – 65°C to 150°C Lead Temperature (Soldering, 10 sec)................. 300°C
Ordering Information
| MPN | Package | Temperature Range | Packing |
|---|---|---|---|
| LTC3406ES6-3.3 | ThinSOT-6 | 0°C to 70°C | null |
| LTC3406 | ThinSOT-6 | -40°C to 85°C | null |
| LTC3406-1.5 | ThinSOT-6 | -40°C to 85°C | null |
| LTC3406-1.8 | ThinSOT |
Related Variants
The following components are covered by the same datasheet.
| Part Number | Manufacturer | Package |
|---|---|---|
| LTC3406 | Linear Technology | — |
| LTC3406-1.5 | Linear Technology | — |
| LTC3406-1.8 | Linear Technology | — |
| LTC3406B | Linear Technology | — |
| LTC3406B-1.5 | Linear Technology | — |
| LTC3406B-1.8 | Linear Technology | — |
| LTC3406E | Linear Technology | — |
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