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ST-ONEMP Datasheet(PDF) 18 Page - STMicroelectronics

Part # ST-ONEMP
Description  Fully integrated controller for multiport smart chargers
PDF  39 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

ST-ONEMP Datasheet(HTML) 18 Page - STMicroelectronics

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IZCD: This comparator compares SRVDS with SSGND. It is used to detect the zero crossing of the current during
SR mos conduction phase. Referring to Figure 5, the comparator is triggered in instant 2.
SR1V: This comparator compares SRVDS with a 1 V threshold. It is used to detect when the primary side low
side FET is turned off, making the voltage across the SR MOS drop. This comparator commands the turn-on of
the SR mos. Referring to Figure 5, the comparator is triggered in instant 1.
8.2.5
Secondary side current sense resistor
The secondary side current sense has a full-scale range VCSFSR equal to 25 mV. The current sense is chosen
according to the formula:
RsenseSec<VCSFSR
IMAX
(5)
8.3
High voltage startup
The ST-ONEMP is equipped with internal HV start-up circuitry dedicated to supplying the IC during the initial
start-up phase, before the self-supply winding is operating. An external capacitor connected to the PVCC pin is
charged by the HV start-up circuitry, connected to the HV pin.
When the power is applied to the circuit and the voltage on the input is high enough, the HV generator is
sufficiently biased to start operating, thus it draws the current IHVON through the HV pin and charges the capacitor
connected between PVCC pin and ground. This charging current is limited at 1 mA in case the voltage on PVCC
is lower than VPVCC_SO, in order to prevent excessive IC dissipation if the pin is accidentally shorted to ground.
As the PVCC voltage reaches the start-up threshold (VPVCCOn) the chip starts operating, and the control logic
disables the HV generator.
The IC is powered by the energy stored in the PVCC capacitor until the auxiliary winding develops a voltage high
enough to sustain the operation.
8.4
Soft-start
As soon as the proper conditions for startup are met, the primary side controller performs a soft-start
autonomously until the secondary side is powered and able to take control of the switching.
During soft-start the IC operates in constant off-time, peak current mode. The user can set the off-time by
connecting a resistor from the OSC pin to ground.
The peak current during soft-start is determined by comparing the SS pin and ISEN pin voltages. Connecting a
capacitor to the SS sets the soft-start duration.
The primary side controlled soft-start ends as the secondary side takes control of the conversion.
During the soft-start the high-side is controlled in complementary mode, with deadtimes determined by a resistor
connected between DT and ground. Note that during soft-start both the deadtimes are equal to TDT_SS which is
approximately double the value used in normal mode for LS to HS.
As the voltage on the secondary side reaches VSVCCON, the secondary side IC boots up, takes control of the
conversion and the converter starts to operate in normal mode as described in Section 8.5.1 . The secondary
side controller continues the soft-start operating in closed loop and ramping the SVCC voltage to 5 V, then the
soft-start ends.
Figure 6. Soft-start waveforms: primary side
controlled soft-start phase
Figure 7. Soft-start waveforms: switch to
secondary side control
ST-ONEMP
High voltage startup
DS13989 - Rev 2
page 18/39



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