SC4905A/B
POWER MANAGEMENT
2006 Semtech Corp. www.semtech.com7
This feed forward action provides an immediate duty cycle
adjustment while maintaining a constant oscillator fre-
quency.
A maximum duty cycle can be programmed by connect-
ing a resistor divider from the VFF to the DMAX pin. The
scaling of the VFF signal will set the maximum duty cycle
percentage.
An external error amplifier will provide the error signal to
the FB pin of the SC4905.
A current sense input is provided via the ILIM pin. The
current sense input from a sense resistor is used for the
peak current limit comparator.
Once VDD has exceeded the UVLO (VDD under voltage
lock out) limit, the internal reference, oscillator, drivers and
logic are powered up.
SYNC is a positive edge triggered input with a threshold
set to 0.5*VFF.
By connecting a faster external control signal to the SYNC
pin, the internal oscillator frequency will be synchronized
to the positive edge of the external control signal. In a
single controller operation, SYNC could be grounded or
connected to an external synchronization clock within the
SYNC frequency (see page 3).
In the Bi-Phase operation mode a very unique oscillator
is utilized to allow two SC4905 to be synchronized
together and work out of phase. This feature is setup by
simple connection of the SYNC input to the RC pin of the
other part. The fastest oscillator automatically becomes
the master, forcing the two PWMs to operate out of
phase. This feature minimizes the input and output
ripples, and reduces stress on the capacitors.
eciveD
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A5094CSV4.4V4
B5094CSV6.11V5
THEORY OF OPERATION
The SC4905 is a versatile 10 pin BICMOS primary side
voltage mode controller optimized for applications requir-
ing minimum space such as isolated DC-DC and off-line
switching power supplies.
The device contains all of the control and drive circuity
required for isolated or non-isolated power supplies,
where an external error amplifier is used. Fixed oscillator
frequency up to 1MHz can be programmed by an exter-
nal RC network.
The SC4905 is a voltage mode controller, utilizing a feed
forward scheme to accommodate for any variations in
the input supply voltage resulting in a duty cycle
adjustment. This feed forward action results in an
improved dynamic performance of the converter.
The SC4905 also provides a programmable maximum duty
cycle to prevent core saturation when a transformer is used.
As an added level of protection, SC4905 provides a cycle
by cycle peak current limit during an over current condition.
SUPPLY
A single supply, VDD is used to provide the bias for the
internal reference, oscillator, drivers, and logic circuitry
of the SC4905.
PWM CONTROLLER
The SC4905 is a BICMOS primary side voltage mode
controller for use in isolated DC-DC and off-line switch-
ing power supplies. It is a highly integrated solution, re-
quiring few external components.
The device features a high speed oscillator with integrated
feed forward compensation, accurately programmable
maximum duty cycle, voltage mode of operation, line volt-
age monitoring, supply UVLO, low start-up current, low
voltage current limit threshold and user accessible refer-
ence.
Two voltage options are available for the SC4905. The
SC4905A version has a typical VDD under voltage of
4.4V, and a 4V reference, while the SC4905B version
provides a 11.6V VDD UVLO, and a 5V reference.
The Oscillator frequency is programmed by a resistor and
a capacitor network connected to the line supply voltage .
Any variations in the input supply voltage result in a duty
cycle adjustment, provided by the change of the oscillator
peak voltage via the VFF pin.
Application Information
SC4905A/B
POWER MANAGEMENT
2006 Semtech Corp. www.semtech.com8
VDD UNDER VOLTAGE LOCK OUT
According to the application, and the voltages available,
the SC4905A (UVLO = 4.4V), or the SC4905B (UVLO =
11.6V) can be used to provide the VDD undervoltage
lock out function to ensure the converters controlled
start up.
Before the VDD UVLO has been reached, the internal ref-
erence, oscillator, OUT driver, and logic are disabled.
REFERENCE
A 4V (SC4905A) or a 5V(SC4905B) reference voltage is
available that can be used to source a typical current
up to 5mA to the external circuitry. The REF can be used
to provide the feed back circuitry with a regulated bias.
OSCILLATOR
The oscillator frequency is set by connecting a RC network
as shown below.
U1
SC4905
4
5
3
2
101
6
7
8
9
DMAX
RC
VFF
FB
REFVDD
SYNC
ILIM
GND
OUT
RB
8.25k
RT
280k
RM
2k
Rosc
499k
Cosc
220p, 16V
Vin
The oscillator has a ramp voltage that will track the volt-
age at the VFF pin (1.2V<VFF<3.6V). The oscillator peak
voltage is derived by charging the oscillator capacitor (Cosc)
to the VFF voltage via the oscillator resistor (Rosc). The
bias current to charge the Cosc is controlled by the Rosc.
Once the RC pin has reached the VFF voltage, the oscil-
lator ramp is discharged by an internal switch hence cre-
ating the triangle oscillator ramp.
Application Information (Cont.)
Since the Rosc is referenced to the input supply voltage,
any variation in the supply is directly translated into a
variation in the duty cycle, while maintaining the fixed
frequency operation.
Following equation can be used to calculate the oscilla-
tor frequency:
()
05.1VFFCR
2
VFF
Vin
F
OSCOSC
OSC
The recommended range if timing resistors is between
10 kohm and 500kohm and range of timing capacitors
is between 100pF and 1000pF. Timing resistors less
than 10 kohm should be avoided.
SC4905A/B
POWER MANAGEMENT
2006 Semtech Corp. www.semtech.com9
FEED FORWARD & MAXIMUM DUTY CYCLE
The feed forward function provided by the SC4905 will
improve the dynamic performance of the converter in
response to the changes in the input supply.
In voltage mode controllers without the voltage feed for-
ward circuitry, any changes in the input supply will cause
an error in the output voltage which is sensed by the error
amplifier and eventually is translated to an adjustment in
the duty cycle by the controller. This delay in the response
will cause the slower dynamic performance of the con-
verter.
This problem is resolved by sensing the input supply line
and making the adjustment in the duty cycle immediately
at the PWM controller.
R14
280k
C27
220p, 16V
R15
499k
Shut Down
Vin
R16
2k
R18
8.25k
U1
SC4905
4
5
3
2
101
6
7
8
9
DMAX
RC
VFF
FB
REFVDD
SYNC
ILIM
GND
OUT
The SC4905 uses the input supply line as the bias for
the oscillator circuitry, and the VFF pin. Any changes in
the line will cause the ramp peak voltage to be adjusted
to the VFF pin voltage while maintaining the oscillator
frequency unchanged.
The VFF pin can also be used to shut down the SC4905
if it is pulled down to GND by an open collector circuitry.
This can be useful for overvoltage protection or other
control signals.
The SC4905 also provides a programmable duty cycle,
that can be set by an external voltage divider from the
VFF pin. The ratio of the divider will determine the pro-
grammed duty cycle allowed.
VFF
VDMAX
%DutyCycle =
If the application does not require an upper limit on the
duty cycle, the VFF pin should be connected to the DMAX
pin. In this mode, the duty cycle will be allowed to increase
to the maximum limit of about 100%.
SYNC/Bi-Phase operation
In noise sensitive applications where synchronization of
the oscillator frequency to a reference frequency is re-
quired, the SYNC pin can accept the external clock.By
connecting an external control signal to the SYNC pin,
the Internal oscillator frequency will be synchronized to
the positive edge of the external control signal. SYNC is
a positive edge triggered input with a threshold set to
0.5*VFF.
In a single controller operation, SYNC chould be grounded
or connected to an external synchronization clock within
the SYNC frequency (see page 3).
Rosc2
VIN
Cosc1 Cosc2
U2
SC4905
4
5
3
2
101
6
7
8
9
DMAX
RC
VFF
FB
REFVDD
SYNC
ILIM
GND
OUT
Rosc1
U1
SC4905
4
5
3
2
101
6
7
8
9
DMAX
RC
VFF
FB
REFVDD
SYNC
ILIM
GND
OUT
In the Bi-Phase operation mode a very unique oscillator
is utilized to allow two SC4905 to be synchronized
together and work out of phase. This feature is setup by
simple connection of the SYNC input to the RC pin of the
other part. The fastest oscillator automatically becomes
the master, forcing the two PWMs to operate out of
phase. This feature minimizes the input and output
ripples, and reduces stress on the capacitors.
Application Information (Cont.)

SC4905AIMSTRT

Mfr. #:
Manufacturer:
Semtech
Description:
Switching Controllers HG PERFORMANCE VLTG
Lifecycle:
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