The SGM6013-ADJYTDI6G/TR is a high-efficiency, adjustable output, step-down DC-DC converter designed by SG Micro Corp. It is tailored for applications requiring precise and efficient power delivery from a higher voltage source. This converter is optimized for battery-powered systems and point-of-load regulation scenarios.
Applications
- Portable Electronics
- Battery-Powered Devices
- Point-of-Load (POL) Regulation
- Wireless Communication Devices
- Industrial Control Systems
Features
- Adjustable Output Voltage
- High Efficiency up to 95%
- Low Quiescent Current
- Over-Temperature Protection (OTP)
- Short-Circuit Protection (SCP)
- Under-Voltage Lockout (UVLO)
- Internal Compensation
- Small Package (TDI6G)
Benefits
- Provides a flexible power solution with adjustable output voltage suitable for various applications
- Extends battery life in portable applications due to its high efficiency
- Reduces power consumption in standby mode with its low quiescent current
- Protects the device from damage due to overheating with OTP
- Prevents damage from short circuits with SCP
- Ensures reliable operation by disabling the converter when the input voltage is too low (UVLO)
- Simplified design and reduces external component count with internal compensation
- Saves board space due to its small package size
Additional Details
The SGM6013-ADJYTDI6G/TR operates with an input voltage ranging from 2.7V to 5.5V. The output voltage can be adjusted using external resistors. The device employs a high-frequency PWM control scheme to minimize output ripple and ensure a fast transient response. It features integrated protection mechanisms such as over-temperature protection, short-circuit protection, and under-voltage lockout. The internal compensation network ensures stable operation over a wide range of operating conditions. It is available in a compact TDI6G package, making it well-suited for space-constrained applications. The /TR suffix indicates tape and reel packaging for automated assembly. The precise switching frequency helps in designing efficient filter circuits with smaller component sizes.