TOP242 Power Integrations Inc., TOP242 Datasheet - Page 5

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TOP242

Manufacturer Part Number
TOP242
Description
Family Extended Power/ Design Flexible/Integrated Off-line Switcher
Manufacturer
Power Integrations Inc.
Datasheet

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TOPSwitch-GX Family Functional Description
Like TOPSwitch, TOPSwitch-GX is an integrated switched
mode power supply chip that converts a current at the control
input to a duty cycle at the open drain output of a high voltage
power MOSFET. During normal operation the duty cycle of the
power MOSFET decreases linearly with increasing CONTROL
pin current as shown in Figure 7.
In addition to the three terminal TOPSwitch features, such as the
high voltage start-up, the cycle-by-cycle current limiting, loop
compensation circuitry, auto-restart, thermal shutdown, the
TOPSwitch-GX incorporates many additional functions that
reduce system cost, increase power supply performance and
design flexibility. A patented high voltage CMOS technology
allows both the high voltage power MOSFET and all the low
voltage control circuitry to be cost effectively integrated onto a
single monolithic chip.
Three terminals, FREQUENCY, LINE-SENSE, and
EXTERNAL CURRENT LIMIT (available in Y or R package)
or one terminal MULTI-FUNCTION (available in P or G
Package) have been added to implement some of the new
functions. These terminals can be connected to the SOURCE
pin to operate the TOPSwitch-GX in a TOPSwitch-like three
terminal mode. However, even in this three terminal mode, the
TOPSwitch-GX offers many new transparent features that do
not require any external components:
1. A fully integrated 10 ms soft-start limits peak currents and
2. DC
3. Frequency reduction at light loads lowers the switching
4. Higher switching frequency of 132 kHz reduces the
5. Frequency jittering reduces EMI.
6. Hysteretic over-temperature shutdown ensures automatic
7. Packages with omitted pins and lead forming provide large
8. Tighter absolute tolerances and smaller temperature vari-
The LINE-SENSE (L) pin is usually used for line sensing by
connecting a resistor from this pin to the rectified DC high
voltage bus to implement line overvoltage (OV), under-voltage
(UV) and line feed forward with DC
mode, the value of the resistor determines the OV/UV thresholds
and the DC
above the under-voltage threshold. See Table 2 and Figure 11.
voltages during start-up and dramatically reduces or
eliminates output overshoot in most applications.
input voltage requirement and/or higher power capability.
losses and maintains good cross regulation in multiple
output supplies.
transformer size with no noticeable impact on EMI.
recovery from thermal fault. Large hysteresis prevents circuit
board overheating.
drain creepage distance.
ations on switching frequency, current limit and PWM gain.
MAX
of 78% allows smaller input storage capacitor, lower
MAX
is reduced linearly starting from a line voltage
MAX
reduction. In this
Figure 7. Relationship of Duty Cycle and Frequency to CONTROL
The pin can also be used as a remote ON/OFF and a
synchronization input.
The EXTERNAL CURRENT LIMIT (X) pin is usually used to
reduce the current limit externally to a value close to the operating
peak current, by connecting the pin to SOURCE through a
resistor. This pin can also be used as a remote ON/OFF and a
synchronization input in both modes. See Table 2 and Figure 11.
For the P or G packages the LINE-SENSE and EXTERNAL
CURRENT LIMIT pin functions are combined on one MULTI-
FUNCTION (M) pin. However, some of the functions become
mutually exclusive as shown in Table 3.
The FREQUENCY (F) pin in the Y or R package sets the
switching frequency to the default value of 132 kHz when
connected to SOURCE pin. A half frequency option of 66 kHz
can be chosen by connecting this pin to CONTROL pin instead.
Leaving this pin open is not recommended.
132
30
78
38
10
Auto-restart
Auto-restart
TOP242/5 1.6 2.0
TOP246/9 2.2 2.6
Pin Current.
Note: For P and G packages I
I
I
CD1
CD1
I
L
= 190 µA
August 8, 2000
I
I
B
B
I
L
= 190 µA
I
I
C
C
(mA)
(mA)
Slope = PWM Gain
L
is replaced with I
I
L
TOP242-249
= 125 µA
I
L
= 125 µA
5.2
5.8
I
L
< I
PI-2633-060500
7/01
M
L(DC)
I
.
L
E
6.0
6.6
< I
L(DC)
5

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