TSOP32438SS1F Vishay, TSOP32438SS1F Datasheet - Page 11

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TSOP32438SS1F

Manufacturer Part Number
TSOP32438SS1F
Description
Manufacturer
Vishay
Datasheet

Specifications of TSOP32438SS1F

Lead Free Status / RoHS Status
Supplier Unconfirmed
conditions the oscillator frequency is reduced by the current
overload protection to enable a constant current to be
maintained into a low impedance circuit.
Current Limit
Current mode control providing constant current operation is
achieved by monitoring the differential voltage V
the CS1 and CS2 pins, which are connected to a current
sense resistor on the primary low-side MOSFET. In the
absence of an overcurrent condition, V
current limit threshold V
pulled up linearly via the 120 µA current source (I
both DL and DH switch at half the oscillator set frequency.
When a moderate overcurrent condition occurs (V
< V
that is proportional to V
source. Both driver outputs are in frequency fold-back mode
and the switching frequency becomes roughly 20 % of
normal switching frequency. When a severe overcurrent
condition occurs (V
C
C
and DH outputs.
Before V
of the C
drive being taken over by the current limit control loop
through C
switching duty cycle toward the minimum the chip can reach
(D
current, then the switching frequency will start to fold back to
minimum 1/5 of the nominal frequency. This prevents the
on-time of the primary drivers from being reduced to below
100 ns and avoids current tails. If V
will then stop.
With constant current mode control and frequency foldback,
protection of the MOSFET switches is increased. The
converter reverts to voltage mode operation immediately
when the primary current falls below the limit level, and
C
soft-start function does not apply during current limit period,
as this would constitute hiccup mode operation.
Document Number: 71815
S-80038-Rev. J, 14-Jan-08
CS1
CS2
L_CONT
L_CONT
L_CONT
MIN
THCL
Blank
). If this duty cycle reduction still cannot lower the load
L_CONT
), the C
CS
capacitor is charged up and clamped to 6.5 V. The
voltage will be clamped to 1.2 V disabling both DL
capacitor immediately at 2 mA rate and the
L_CONT
reaches severe overcurrent condition, a lowering
L_CONT
voltage results in PWM control of the output
-
+
. Current control initially reduces the
AV
THCL
capacitor will be discharged at a rate
TLCL
CS
< V
Peak Detect
- 100 mV by the I
(typical 100 mV); C
CS
), the NMOS discharges
CS
> V
CS
THCL
is less than lower
A
A
V
V
, the switching
150 mV
100 mV
CS
Figure 6 . Current Limit Circuit
TLCL
PD
L_CONT
between
PU
current
< V
) and
CS
is
+
-
+
-
GM
GM
V
The chip provides a means of sensing the voltage of V
withholding operation of the output drivers until a minimum
voltage of V
is achieved by choosing an appropriate resistive tap between
the ground and V
reference voltage. When the applied voltage is greater than
V
provides the input to the voltage feed forward function.
However, if the divided voltage applied to the V
greater than V
switching until the voltage drops below V
resistive tap on the V
the normal V
Alternatively, a zener clamp diode from V
also be used.
Shutdown Mode
If V
350 mV (V
powers down all unnecessary functions of the controller,
ensures that the primary switches are off and results in a low
level current demand from the V
IN
REF
INDET
Voltage Monitor - V
, the output drivers are activated as normal. V
V
CC
Figure 5. High-Voltage Pre-Regulator Circuit
is forced below the lower threshold, a minimum of
I
0 to 240 µA (nom)
SD
I
120 µA (nom)
PD
V
PU
REF
REF
), the device will enter SHUTDOWN mode. This
CC
CC
(Si9122)
(3.3 V, 300 mV hysteresis), is achieved. This
operating voltage to avoid this condition.
- 0.3 V, the high-side driver, D
IN
V
INEXT
C
, and comparing this voltage with the
2 nF
IN
REG_COMP
V
EXT
IN
divider must be set to accommodate
INDET
HV
V
OFFSET
R
DMOS
EXT
14.5 V
IN
or V
AV
Vishay Siliconix
CC
C
CC
PNP Ext
L_CLAMP
INDET
supplies.
- 0.3 V. Thus, the
www.vishay.com
V
OSC
C
0.5 µF
Si9122
CC
to GND may
VCC
INDET
H
Auxillary
V
INDET
GND
C
R
C
, will stop
CC
L_CONT
EXT
EXT
IN
pin is
, and
also
11

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