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SC820 датащи(PDF) 18 Page - Semtech Corporation

номер детали SC820
подробное описание детали  Adapter/USB Dual Input Single-cell Li-ion Charger
PDF  22 Pages
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производитель  SEMTECH [Semtech Corporation]
домашняя страница  http://www.semtech.com
Logo SEMTECH - Semtech Corporation

SC820 датащи(HTML) 18 Page - Semtech Corporation

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SC820
18
conduction of heat from the die to the ambient environ-
ment. In this experiment, the final steady-state BAT
current was 462mA at T
A
= 25C on the SC820 evaluation
board. The fast thermal limiting feature ensures compli-
ance with CCSA YD/T 1591-2006, Telecommunication
Industrial Standard of the People’s Republic of China —
Technical Requirements and Test Method of Charger and
Interface for Mobile Telecommunication Terminal, Section
4.2.3.1.
Short Circuit Protection
The SC820 can tolerate a BAT pin short circuit to ground
indefinitely. The current into a ground short (while
V
BAT
< 1.8V) is approximately 10mA. For V
BAT
> 1.8V, normal
pre-charge current regulation is active.
A short circuit or too little programming resistance to
ground on the IPRGM pin (<< 2.05kΩ) or the IPUSB pin
(<< 4.42kΩ) will prevent proper regulation of the BAT pin
output current for the active programming pin. Prior to
enabling the output a check of the IPRGM and IPUSB pins
is performed to ensure that there is sufficient resistance to
ground. A test current is output on each programming
pin. If the test current produces a voltage of sufficient
amplitude on both programming pins, regardless of input
selected, then the output is enabled. An example with
R
IPRGM
= 2.94kΩ is illustrated in Figure 5, in which the test
current is applied for approximately 250μs to determine
that there is no pin short. If a short on either program-
ming pin is detected, the test current persists until the
short to ground is removed, and then the charging startup
sequence will continue.
400μs/div
Figure 5 — IPRGM Pin Short-to-Ground Test During
Startup
tions of end-of-charge alternating with start-of-charge in
the case that the external VUSB load is removed or is
intermittent.
Input Over-Voltage Protection
The VAD and VUSB input pins are protected from over-
voltage to at least 30V above GND. When the voltage of
the selected input exceeds the Over-Voltage Protection
(OVP) rising threshold (VT
OVP-R
), charging is halted. When
the input voltage falls below the OVP falling threshold
(VT
OVP-F
), charging resumes. Note that the VAD input
remains selected even in the case that the VAD voltage
exceeds the OVP threshold. An excessive VAD voltage will
disable charging despite the presence of a valid VUSB
voltage. An OVP fault turns off the STATB output. STATB is
turned on again when charging restarts.
The OVP threshold has been set relatively high to permit
the use of poorly regulated adapters. Such adapters may
output a high voltage until loaded by the charger. A
too-low OVP threshold could prevent the charger from
ever turning on and loading the adapter to a lower voltage.
If the adapter voltage remains high despite the charging
load, the fast thermal limiting feature will immediately
reduce the charging current to prevent overheating of the
SC820. This behavior is illustrated in Figure 4, in which V
BAT
= 3.0V, I
FQ
= 700mA, and V
VAD
is stepped from 0V to 8.1V.
Initially, power dissipation in the SC820 is 3.6W.
1s/div
V
VAD
(2V/div)
V
VAD
,V
BAT
=0V—
I
BAT
(100mA/div)
I
BAT
=0mA—
V
VAD
=8.1V, V
BAT
=3.0V
I
BAT
=700mA (Initially), P
DISSIPATION
=3.6W (Initially)
V
BAT
(2V/div)
Figure 4 — Thermal Limiting Example
Notice the BAT output current is rapidly reduced to limit
the internal die temperature, then continues to decline as
the circuit board gradually heats up, further reducing the
Applications Information (continued)
I
BAT
(500mA/div)
I
BAT
=0mA—
V
IPRGM
=0V—
V
VIN
(5V/div)
V
IPRGM
(1V/div)
V
VIN
=0V—



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