Dual USB Port Power Supply Controller
ISL6185
Features
• 2.5V to 5V Operating Range
The ISL6185 USB power controller family provides
fully independent overcurrent (OC) fault protection
for two or more USB ports.
• 71mΩ Integrated Power P-channel MOSFET Switches
• Continuous Current Options for 0.6A, 1.1A, 1.5A and
1.8A
This product family consists of sixteen individual
functional product variants and three package options
and is operation rated for a nominal +2.5V to +5V
range and specified over the full commercial and
industrial temperature ranges.
• Thermally insensitive 12ms of Current Limiting Prior
to Turn-Off
• Output Discharges with Reverse Current Blocking
when Disabled
Each ISL6185 type incorporates in a single package
two 71mΩ P-channel MOSFET power switches for
power control and features internal current
monitoring, accurate current limiting and current
limited delay to turn-off for system supply protection
along with control and communication I/O.
• Latch-off or Auto Restart Options
• 1µA Off-State Supply Current.
• Enable Polarity Options
• Industry Std Pin for Pin SOIC and Smaller DFN Pkgs
Available
The ISL6185 family offers product variants with specified
continuous output current levels of 0.6A, 1.1A, 1.5A or
1.8A, enable active high or low inputs and latch off or
automatic retry after over current turn-off making these
devices well suited for many low power applications.
Applications
• USB 1, 2, 3 Port Power Management
• Low Power (18W) Electronic Circuit Limiting and
Breaker
This family of ICs is offered in an industry std. SOIC
pinout and also in the 70% smaller 3x3 DFN packages
providing similar or enhanced performance in the
smallest possible package.
Typical Application
Normalized r
DS(ON)
Temperature Characteristic
D+
Curve
D-
USB
PORT 1
1.3
U
S
B
VBUS
OUT_1
ENABLE_1
FAULT_1
VIN
1.2
1.1
1.0
0.9
0.8
0.7
C
O
N
T
R
O
L
L
E
R
+5V
GND
ISL6185
FAULT_2
ENABLE_2
OUT_2
VBUS
USB
PORT_2
D+
D-
-40
-25
0
25
45
75
85
115
TEMPERATURE (°C)
USB PORT POWER
October 22, 2010
FN6937.0
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
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