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RT4723 Folha de dados(PDF) 12 Page - Richtek Technology Corporation

Nome de Peças RT4723
Descrição Electrónicos  Built-in Soft-Start
PDF  15 Pages
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Fabricante Electrônico  RICHTEK [Richtek Technology Corporation]
Página de início  http://www.richtek.com
Logo RICHTEK - Richtek Technology Corporation

RT4723 Folha de dados(HTML) 12 Page - Richtek Technology Corporation

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RT4723
Copyright © 2016 Richtek Technology Corporation. All rights reserved.
is a registered trademark of Richtek Technology Corporation.
www.richtek.com
DS4723-00
April
2016
12
Input Current
Inductor Current
Output Current
Time
Time
Output Ripple (ac)
DTs
I
L
V
OUT1
Figure 1. Output Ripple Voltage Without Contribution of
ESR
Under Voltage Lockout
To prevent abnormal operation of the IC in low voltage
condition, an under voltage lockout is included which
shuts down IC operation when input voltage is lower
than the specified threshold voltage.
Soft-Start
The RT4723 employs an internal soft-start feature to
avoid high inrush current during start-up. The soft-start
function is achieved by clamping the output voltage of
the internal error amplifier with another voltage source
that is increased slowly from zero to near VIN during
the soft-start period.
Negative Output Voltage Setting
The Negative output voltage can be programmed by a
MCU through the dedicated pin according to Table 2
“VON Output Voltage with SWIRE Pulse”.
Shutdown Delay and Discharge
When the SWIRE signal is logic low for more than
350
s, the IC function will be shut down. The output
VOP/VON can be actively discharged to GND with
discharge function enabled referring to Table 3
“VOP/VON Shutdown Discharge Selection with SWIRE
Pulse
”. In shutdown mode, the input supply current for
the IC is less than 1
A.
Over Current Protection
The RT4723 includes a cycle-by-cycle current limit
function which monitors the inductor current during
each ON period. The power switch will be forced off to
avoid large current damage once the current is over the
limit level.
Short Circuit Protection
The RT4723 has an advanced output short-circuit
protection mechanism which prevents the IC from
damage by unexpected applications. When the output
becomes shorted to ground, and the output voltage is
under the limit level with 1ms (typ.) duration, the bias
function enters shutdown mode and can only re-start
normal operation after triggering the SWIRE pin.
Over Temperature Protection
The RT4723 equips an over temperature protection
circuitry to prevent overheating due to excessive power
dissipation. The OTP will shut down the bias operation
when ambient temperature exceeds 140
C. Once the
ambient temperature cools down by approximately
15
C, IC will automatically resume normal operation.
To maintain continuous operation, the maximum
junction temperature should be prevented from rising
above 125
C.
Thermal Considerations
For continuous operation, do not exceed absolute
maximum junction temperature. The maximum power
dissipation depends on the thermal resistance of the IC
package, PCB layout, rate of surrounding airflow, and
difference between junction and ambient temperature.
The maximum power dissipation can be calculated by
the following formula :
PD(MAX) = (TJ(MAX)  TA) / JA
where TJ(MAX) is the maximum junction temperature,
TA is the ambient temperature, and JA is the junction to
ambient thermal resistance.
For recommended operating condition specifications,
the maximum junction temperature is 125
C. The
junction to ambient thermal resistance,
JA, is layout
dependent.
For
WL-CSP-15B
1.39x2.07
(BSC)
package, the thermal resistance,
JA, is 49.8C/W on a
standard JEDEC 51-7 four-layer thermal test board.



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