ncp1083 ON Semiconductor, ncp1083 Datasheet - Page 16

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ncp1083

Manufacturer Part Number
ncp1083
Description
Integrated High Power Poe-pd Interface & Dc-dc Converter Controller With 9v Auxiliary Supply Support
Manufacturer
ON Semiconductor
Datasheet

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VPORT reaches the Vuvlo_on threshold.
internal error amplifier of the NCP1083 and the internal
1.2 V reference voltage regulate the DC−DC output voltage.
In this configuration, the feedback loop compensation
network should be inserted between the FB and COMP pins
as shown in Figures 3, 4 and 5.
because it is already implemented externally with the shunt
regulator on the secondary side of the DC−DC controller
(see Figure 2). Therefore the FB pin must be strapped to
ARTN and the output transistor of the opto−coupler has to
be connected on the COMP pin where an internal 5 kW
pull−up resistor is tied to the VDDL supply (see Figure 16).
the output voltage to ramp up in a controlled fashion,
eliminating output voltage overshoot. This function is
programmed by connecting a capacitor Css between the SS
and ARTN pins.
is fully discharged. After coming out of POR, an internal
current source of 5 mA typically starts charging the capacitor
Css to initiate soft−start. When the voltage on SS pin has
reached 0.45 V (typical), the gate driver is enabled and
DC−DC operation starts with a duty cycle limit which
increases with the SS pin voltage. The soft−start function is
finished when the SS pin voltage goes above 1.6 V for which
the duty cycle limit reaches its maximum value of 80
percent.
equation:
Error Amplifier
Soft−Start
Both VDDH and VDDL regulators turn on as soon as
In non−isolated converter topologies, the high gain
In isolated topologies the error amplifier is not used
The soft−start function provided by the NCP1083 allows
While the DC−DC controller is in POR, the capacitor Css
Soft−start can be programmed by using the following
tss(ms) + 0.23
Css(nf)
http://onsemi.com
16
senses the current flowing in the external MOSFET for
current mode control and cycle−by−cycle current limit. This
is performed by the current limit comparator which, on the
CS pin, senses the voltage across the external Rcs resistor
located between the source of the MOSFET and the ARTN
pin.
CS pin which ensures that the current limit and PWM
comparators are not prematurely trigged by the current spike
that occurs when the switching MOSFET turns on.
problems that exist with converters running in continuous
conduction mode (CCM) and when the duty cycle is close
or above 50 percent, the NCP1083 integrates a current slope
compensation circuit. The amplitude of the added slope
compensation is typically 110 mV over one cycle.
250 kHz, the internal slope provided by the NCP1083 is
27.5 mV/ mA typically.
inserted between OSC and ARTN, and is defined by the
following equation:
The duty cycle limit is fixed internally at 80 percent.
Current Limit Comparator
DC−DC Controller Oscillator
Slope Compensation Circuitry
The NCP1083 current limit block behind the CS pin
The NCP1083 also provides a blanking time function on
To overcome sub−harmonic oscillations and instability
As an example, for an operating switching frequency of
The frequency is configured with the Rosc resistor
R
OSC
(kW) +
F
OSC
38600
(kHz)

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