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PDF FS7KM-5 Data sheet ( Hoja de datos )

Número de pieza FS7KM-5
Descripción HIGH-SPEED SWITCHING USE
Fabricantes Mitsubishi Electric Semiconductor 
Logotipo Mitsubishi Electric Semiconductor Logotipo



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FS7M0880
Fairchild Power Switch(FPS)
www.fairchildsemi.com
Features
• Precision Fixed Operating Frequency
• FS7M0880(66kHz)
• Pulse By Pulse Over Current Limiting
• Over Load Protection
• Over Voltage Protection (Min. 25V)
• Internal Thermal Shutdown Function
• Under Voltage Lockout
• Internal High Voltage Sense FET
• Latch Up Mode
• Soft Start
Description
The Fairchild Power Switch(FPS) product family is specially
designed for an off line SMPS with minimal external
components. The Fairchild Power Switch(FPS) consists of a
high voltage power SenseFET and the current mode PWM con-
troller IC. The PWM controller includes an integrated fixed
oscillator, the under voltage lock out, the leading edge blanking
block, the optimized gate turn-on/turn-off driver, the thermal
shut down protection, the over voltage protection, the tempera-
ture compensated precision current sources for loop compensa-
tion and an fault protection circuit. Compared to just PWM
controller combined MosFET or RCC switching converter solu-
tion, a Fairchild Power Switch(FPS) can reduce total compo-
nent price, design size, and weight,also simultaneously increase
efficiency, productivity, and system reliability. It has a simple
method of application well suited for cost down design in either
a flyback converter or a forward converter.
TO-3P-5L
Internal Block Diagram
1
1. DRAIN 2. GND 3. VCC 4. FB 5. S/S
#3 Vcc
#4
Feedback
#5
Soft Start
Vcc Vcc
5uA 1mA
OSC
Vck
UVLO
Good
Logic
Voltage
Ref.
#4
Drain
2.5R
S
Q
R
R
Voffset
LEB
5V
Rsense
Reset
Reset
7.5V
Thermal
Protection
OVP
OCL
Sense
#2
Source
SenseFET GND
S
Q
R
Control IC
©2003 Fairchild Semiconductor Corporation
Rev.1.0.1

1 page




FS7KM-5 pdf
FS7M0880
Block Diagram
It can be divided into several large, functional sections:
under voltage lockout circuitry (UVLO); reference voltage;
oscillator (OSC); pulse width modulation (PWM) block;
protection circuits; and gate driving circuits.
described in Fig 2. Although VCC only needs to be set above
9V during operation, it should be set such that OVP does not
execute during an overload condition. For a full load, about
18~20V is appropriate for the VCC voltage and for no load,
about 13~14V.
Start Up
Input voltage range: 85 ~ 265 V (AC)
When Vac is minimum and it is started by the DC Link bulk
capacitor, the starting resistance is calculated as follows:
Rstart = 8----5---8---0--2--µ---–-A---1---5-- = 1.3M
When Vac is maximum and it is started by the DC Link Bulk
capacitor, the power loss is calculated as follows:
Ploss
=
(---2---6----5-------2-----–-----1---5----)--2-
1.3M
=
0.1(W)
Protection
The FPS has several self-protection circuits, which can
operate without additional external components, thereby
acquiring reliability without increase in cost. After a
protection circuit comes on, it can completely stop the SMPS
until the cutoff AC power is reconnected (Latch Mode
Protection) or it can make the SMPS operate above the
UVLO by unlatching the control voltage below the ULVO
(Auto Restart Mode Protection).
Va
265V
85V
UVLO
When it is started by the one-phase of the AC-Lines and Vac
is minimum, the starting resistance is calculated as follows:
RStart
=
-2---------8---5--------2-----–----1----5---π--
2π
÷
(80µA)
= 38M
When it is started bythe one-phase of the AC_Line and Vac
is maximum, the power loss is calculated as follows:
Va(rms) =
2--1--π--
π
o
(Vp
sin
t
15
)2dt
= 177V(Vp = 265 2)
Ploss
=
V-----a----(--r--m------s---)--2--
Rstart
=
(---1---7----7---)---2-
38M
= 82(mW)
The starting current across the starting resistor charges the
SPS VCC capacitor. When the VCC becomes greater than the
starting voltage, the SPS starts to switch the built-in
MOSFET. Once it starts, the current in the SPS control IC
abruptly is increased to 7mA, makes it difficult to operate
with the current through the starting resistor. Therefore, after
it starts, the auxiliary winding of the transformer supplies
most of the power to SPS. It is best to use an appropriate size
VCC power capacitor, generally about 33µF, because if it is
too large, the starting time can be delayed. This operation is
Figure 1. Detail of the undervoltage lockout (UVLO)
circuitry in a Fairchild Power Switch. The gate
operating circuit holds in a low state during UVL
thereby maintaining the SenseFET at turnoff.
These two operations are user-command operations, so the
user can select the
operation from the IC or by carefully controlling circuit
constants. The operation and applications for each protection
are described below.
Icc
[ m A]
20
7
Power On Reset
R a nge
0.1
6V 9V 15V
Vcc
Vz [V]
Fig 2 < Start-up Waveform >
Figure 2. Start-up Waveform
Over Load Protection
In abnormal status of SMPS over load is distinguished from
load short. This happens when a load exceeds a pre-set load
during normal operation. That is, the FPS overload
protection circuit stops the FPS if an instantaneous load
increases and becomes greater than 50W during normal
operation, when the maximum SMPS output had been
pre-set to 30W. In this type of protection, the protection
5

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FS7KM-5 arduino
Package Dimensions (Continued)
TO-3P-5L(Forming)
FS7M0880
11

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