FSGM0465RB
FSGM0465RB is Green-Mode Fairchild Power Switch manufactured by Fairchild Semiconductor.
es
- Soft Burst-Mode Operation for Low Standby Power
Consumption and Low Noise
Description
The FSGM0465RB is an integrated Pulse Width Modulation (PWM) controller and Sense FET specifically designed for offline Switch-Mode Power Supplies (SMPS) with minimal external ponents. The PWM controller includes an integrated fixed-frequency oscillator, Under-Voltage Lockout (UVLO), Leading Edge Blanking (LEB), optimized gate driver, internal soft-start, temperature-pensated precise current sources for loop pensation, and self-protection circuitry. pared with a discrete MOSFET and PWM controller solution, the FSGM series can reduce total cost, ponent count, size, and weight; while simultaneously increasing efficiency, productivity, and system reliability. This device provides a basic platform suited for cost-effective design of a flyback converter.
- Precision Fixed Operating Frequency: 66k Hz
- Pulse-by-Pulse Current Limit
- Various Protection Functions: Overload Protection
(OLP), Over-Voltage Protection (OVP), Abnormal Over-Current Protection (AOCP), Internal Thermal Shutdown (TSD) with Hysteresis, Output-Short Protection (OSP), and Under-Voltage Lockout (UVLO) with Hysteresis
- Auto-Restart Mode
- Internal Startup Circuit
- Internal High-Voltage Sense FET: 650V
- Built-in Soft-Start: 15ms Applications
- Power Supply for LCD TV and Monitor, STB and DVD bination
Ordering Information
Output Power Table(2) Part Number Operating Current RDS(ON) Package Junction Limit (Max.) Temperature 230VAC ± 15%(3) Adapter
(4)
85~265VAC Open Frame(5)
Replaces Device
Open Adapter(4) Frame(5)
TO-220F 6-Lead(1) W-Forming TO-220F (1) FSGM0465RBUDTU 6-Lead U-Forming TO-220F .. (1) FSGM0465RBLDTU 6-Lead L-Forming FSGM0465RBWDTU
-40°C ~ +125°C -40°C ~ +125°C -40°C ~ +125°C
2.70A 2.70A 2.70A
2.6Ω 2.6Ω 2.6Ω
60W 60W 60W
70W 70W 70W
33W 33W 33W
48W 48W 48W
FSDM0465RE FSDM0465RE FSDM0465RE
Notes: 1. Pb-free package per JEDEC J-STD-020B. 2. The junction temperature can limit the maximum...