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ADP5350ACPZ-1-R7 Datenblatt(PDF) 33 Page - Analog Devices

Teilenummer ADP5350ACPZ-1-R7
Bauteilbeschribung  Advanced Battery Management PMIC with Inductive Boost LED and Three LDO Regulators
PDF  63 Pages
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Hersteller  AD [Analog Devices]
Direct Link  http://www.analog.com
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ADP5350ACPZ-1-R7 Datenblatt(HTML) 33 Page - Analog Devices

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Data Sheet
ADP5350
Rev. B | Page 33 of 63
LED in Series
The ADP5350 supports connecting LEDs in series (see
Figure 54 for an example).
Figure 54. Four LEDs in Series (15 mA Each) for Grouped Backlight Connected
to D1, and One LED Strip or Indicator (2 mA) in D5 with Connection to VISOS Rail
Figure 54 shows four LEDs in series (15 mA each), in grouped
backlight configuration, connected to D1, and one additional
LED indicator (2 mA) connected to D5 and the VISOS rail.
1.
Configure the boost regulator as follows:
a.
Set BST_MODE = 0 to configure the boost in LED
operation mode.
b.
Set BST_BL = 1 to configure the boost to provide the
bias voltage to the LED backlight only.
c.
Set BST_OVP = 0 to configure the boost OVP
threshold = 18.5 V.
2.
Configure the grouped backlight as follows:
a.
Set IBL[5:0] = 15 mA for the LED backlight current.
b.
Set the BL_FI and BL_FO code for the fade in and
fade out timer (if required).
c.
Set FOVR = 1 to enable the fading overwritten feature
(if required).
3.
Configure the individual current sink as follows:
a.
Set ILED5 = 2 mA for D5 sink current.
b.
Set the LED5_ON and LED5_OFF code for the
blinking timer (if required).
4.
Set EN_BL = 1 to enable the LED backlight.
5.
Set EN_LED5 = 1 to enable the LED indicator.
Boost Switching Frequency
The boost regulator of the ADP5350 operates in 1.5 MHz fixed
switching frequency and it is synchronized with the switching
frequency in battery charger.
Boost Current Limit
The boost regulator in the ADP5350 includes the peak current-
limit protection circuitry to limit the amount of positive current
flowing through the battery to the output. Two current-limit
thresholds (600 mA or 300 mA) can be selected using the
BST_IPK bit. The programmable current-limit threshold
feature allows the use of a small size inductor for low power
applications.
As the battery discharges, the lower battery voltage results in
higher peak current through the battery ESR, which may cause
early shutdown of other devices on the battery. The programmable
current threshold can be used to change the current limit
according to different battery voltages.
Overvoltage Fault
The boost regulator contains OVP circuits to prevent damage if
the VOUT4 voltage becomes excessive for any reason. To keep a
safe output level, the integrated OVP circuit monitors the VOUT4
voltage. When the VOUT4 voltage exceeds the OVP rising
threshold, the boost regulator stops switching, causing the
output voltage to drop. When the VOUT4 voltage goes lower than
the OVP falling threshold, the boot regulator begins switching,
causing the output to rise. The overvoltage threshold is
programmable (default of 18.5 V) in the BST_OVP register.
The overvoltage threshold level must be programmed according
to the output voltage because the various OVP thresholds
provide different internal compensation depending on the
boost output voltage.
LED Open-Circuit Protection
The LED circuit contains a headroom control circuit to minimize
power loss at each current source. Therefore, the minimum
feedback voltage is achieved by regulating the output voltage of
the boost regulator. If any LED string is opened during normal
operation, the current source headroom voltage is pulled to AGND.
In this condition, LED open-circuit protection activates when the
voltage on the Dx pin is less than 200 mV and the VOUT4 voltage
rises to the OVP level. If LED open-circuit protection is
triggered, the open LED channel turns off while the other LED
channel continues to work, and the LEDx_OPEN bit is set to 1
in the LED_STATUS register. The open LED channel remains
disabled to ensure protection against a potential LED open
circuit, until the processor clears the fault register by rewriting a
1 to the fault bit or the ADP5350 is power cycled.
When one channel is selected for independent LED operation
and the bias voltage is separate from the LED backlight group
(BST_BL = 1), the LED open-circuit protection has no effect on
this channel due to the boost OVP never being detected on this
channel.
LINEAR LOW DROPOUT (LDO) REGULATORS
The ADP5350 integrates three LDO regulators. LDO1 is a low
quiescent current LDO that can be used as a supply that is
always on for the system. LDO2 and LDO3 are general-purpose
LDO regulators.
All LDO input power rails are supplied from the VIN123 pin
and share the input power of the control circuits with the VIN4
pin. Thus, the VIN123 pin must be tied to the VIN4 pin in all
applications.
The LDO regulator operates with an input voltage range of
2.7 V to 5.5 V. The wide supply range makes the regulator
suitable for cascading configurations where the LDO supply
FB4
C10
4.7µF
ADP5350
VOUT4 (UP TO 17.5V)
AGND
PGND4
VOUT4
D1
BOOST
VISOS
L2
4.7µH
C9
4.7µF
D2
D3
D4
D5
SW4
LED STRIP
OR INDICATOR
15mA
D1
LED
DRIVER
VISOS
D2 D3 D4
2mA
D6



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