FSDL0165RL_NL Fairchild Semiconductor, FSDL0165RL_NL Datasheet - Page 3

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FSDL0165RL_NL

Manufacturer Part Number
FSDL0165RL_NL
Description
Manufacturer
Fairchild Semiconductor
Datasheet

Specifications of FSDL0165RL_NL

Power Switch Family
FSDL0165R
Input Voltage
85 to 265V
Power Switch On Resistance
8Ohm
Output Current
1.06A
Number Of Outputs
Single
Mounting
Surface Mount
Supply Current
3mA
Package Type
LSOP
Operating Temperature (min)
-25C
Operating Temperature (max)
85C
Operating Temperature Classification
Commercial
Pin Count
8
Power Dissipation
1.5W
Lead Free Status / RoHS Status
Compliant
Pin Definitions
Pin Configuration
Pin Number
6, 7, 8
1
2
3
4
5
Pin Name
Drain
GND
Vstr
Vcc
Vfb
Ipk
Sense FET source terminal on primary side and internal control ground.
Positive supply voltage input. Although connected to an auxiliary transform-
er winding, current is supplied from pin 5 (Vstr) via an internal switch during
startup (see Internal Block Diagram section). It is not until Vcc reaches the
UVLO upper threshold (12V) that the internal start-up switch opens and de-
vice power is supplied via the auxiliary transformer winding.
The feedback voltage pin is the non-inverting input to the PWM comparator.
It has a 0.9mA current source connected internally while a capacitor and op-
tocoupler are typically connected externally. A feedback voltage of 6V trig-
gers over load protection (OLP). There is a time delay while charging
external capacitor Cfb from 3V to 6V using an internal 5uA current source.
This time delay prevents false triggering under transient conditions, but still
allows the protection mechanism to operate under true overload conditions.
This pin adjusts the peak current limit of the Sense FET. The feedback
0.9mA current source is diverted to the parallel combination of an internal
2.8kΩ resistor and any external resistor to GND on this pin to determine the
peak current limit. If this pin is tied to Vcc or left floating, the typical peak cur-
rent limit will be 1.2A.
This pin connects directly to the rectified AC line voltage source. At start up
the internal switch supplies internal bias and charges an external storage
capacitor placed between the Vcc pin and ground. Once the Vcc reaches
12V, the internal switch is opened.
The drain pins are designed to connect directly to the primary lead of the
transformer and are capable of switching a maximum of 650V. Minimizing
the length of the trace connecting these pins to the transformer will decrease
leakage inductance.
Figure 3. Pin Configuration (Top View)
GND
Vcc
Vfb
Ipk
1
2
3
4
8LSOP
8DIP
Pin Function Description
8
7
6
5
Drain
Drain
Drain
Vstr
FSDL0165RN
3

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