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RT9709 データシートの表示(PDF) - Richtek Technology

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RT9709 Datasheet PDF : 12 Pages
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RT9709
Applications Information
Power Up
The RT9709 has an input under voltage lockout (UVLO)
threshold of 2.6V with a built-in hysteresis of 100mV.
Before the input voltage reaches the UVLO threshold, the
RT9709 is off. When the input voltage is over the UVLO
threshold; the RT9709 will delay for 10ms and after the
10ms delay, the soft-start will be activated. The 10ms delay
allows any transients at the input during a hot insertion of
the power supply to settle down before the IC starts to
operate.
During the soft-start transition, the RT9709 slowly turns
on the internal MOSFET to reduce the inrush current.
Enable Control
The RT9709 offers an enable (EN) input. When the EN pin
is pulled to logic high (>1.5V), the RT9709 will be shut
down. When the EN pin is pulled to logic low (<0.4V), the
RT9709 will be powered on.The EN pin has an internal
pull-down resistor so that leaving the EN pin floating can
enable the IC.
Warning Indication Output
The WRN pin is an open-drain output that indicates a LOW
signal when any protection event occurs (Input OVP, Output
OCP, OTP and Battery OVP). When the protection events
are released and then the WRN pin indicates a HIGH signal.
The 4-bit binary counters for the battery OVP and the OCP
are reset to zero when the IC is re-enabled.
Over Temperature Protection (OTP)
The RT9709 monitors its own internal temperature to prevent
thermal failures. The chip turns off the MOSFET when the
internal temperature reaches 140°C with a built-in
hysteresis of 50°C. The IC will resume to normal operation
until the internal temperature falls to 90°C.
Input Over Voltage Protection
The RT9709 monitors the input voltage to prevent the input
over voltage leading to output system failures. The input
OVP threshold is set to 6.8V for the RT9709. When the
input voltage exceeds the threshold, the RT9709 outputs
a logic signal to turn off the internal MOSFET within 1us
to prevent the device in the handheld system from
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damaging. The hysteresis of the input OVP threshold is
100mV. When the input voltage is reduced to the normal
operation voltage range, the RT9709 will re-enable the
MOSFET.
Battery Over Voltage Protection
The RT9709 monitors the battery voltage by the VB pin.
When the battery voltage exceeds the 4.35V battery OVP
threshold, the RT9709 has a built-in 180us blanking time
to prevent any transient voltage from triggering the battery
OVP. If the OVP situation still exists after 180us, the
internal MOSFET will be turned off and the WRN pin
indicates a LOW signal. The battery OVP threshold has a
30mV built-in hysteresis. The control logic contains a 4-
bit binary counter. If the battery over voltage event occurs
for consecutive 16 times, the MOSFET will be turned off
permanently. The OVP latch status can be reset by the
EN pin.
Selecting RVB
The RT9709 monitors the battery voltage by the VB pin.
The RT9709 will be turned off when the battery voltage
exceeds the 4.4V battery OVP threshold. The VB pin is
connected to the battery pack positive terminal via an
isolation resistor (RVB) and the resistor is an important
component. The RVB determines some parameters such
as battery OVP threshold error and VB pin leakage current.
Generally, it is necessary to decrease the RVB for reducing
the battery OVP threshold error. However, this will increase
the VB pin leakage current. So, it is an important issue to
get a trade-off between the battery OVP threshold error
and the VB pin leakage current, the allowable resistance
of the RVB is 200kΩ to 1MΩ.
Over Current Protection (OCP)
The RT9709 monitors the output current to prevent the
output short or the charging of the battery with an excessive
current. The OCP (Over Current Protection) threshold can
be set by the ILIM pin. The RT9709 has a built-in 170us
delay time to prevent any transient noise triggering from
the OCP. If the OCP situation still exists for 170us, the
internal MOSFET will be turned off and the WRN pin
indicates a LOW signal. When the OCP happens for
consecutive 16 times, the internal MOSFET will be turned
off permanently unless the input power is recycled or the
enable pin is toggled.
DS9709-02 April 2011

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