MPS MP62170-1 3.3v/5v, single-channel 1.5a current-limited power distribution switch with output discharge Datasheet

MP62170-1/MP62171-1
3.3V/5V, Single-Channel 1.5A
Current-Limited Power Distribution Switch
with Output Discharge
The Future of Analog IC Technology
DESCRIPTION
FEATURES
The MP62170-1/MP62171-1 Power Distribution
Switch features internal current limiting to
prevent damage to host devices due to faulty
load conditions. The MP62170-1/MP62171-1
analog switch has 75mΩ on-resistance and
operates from 2.7V to 5.5V input. It is available
with guaranteed current limits, making it ideal
for load switching applications. The MP621701/MP62171-1 has built-in protection for both
over current and increased thermal stress. For
over current, the device will limit the current by
changing to a constant current mode.
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•
•
•
•
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•
•
As the temperature increases as a result of
short circuit, then the device will shut off. The
device will recover once the device temperature
reduces to approx 120°C.
MP62170-1/MP62171-1 involves discharge
function that provides a resistive discharge path
for the external output capacitor when the part
is disabled.
MP62170-1/MP62171-1 is available in 8-pin
MSOP and SOIC package without exposed pad.
1.5A Continuous Current
Accurate Current Limit
Output Discharge Function
2.7V to 5.5V Supply Range
90uA Quiescent Current
75mΩ MOSFET
Thermal-Shutdown Protection
Under-Voltage Lockout
8ms FLAG Deglitch Time
No FLAG Glitch During Power Up
Reverse Current Blocking
Active High & Active Low Options
SOIC8 & MSOP8 Packages
APPLICATIONS
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Smartphone and PDA
Portable GPS Device
Notebook PC
Set-top-box
Telecom and Network Systems
PC Card Hot Swap
USB Power Distribution
“MPS” and “The Future of Analog IC Technology” are Trademarks of Monolithic
Power Systems, Inc.
TYPICAL APPLICATION
3.3V / 5V Input
1 GND
MP62170-1/
MP62171-1
2, 3 IN
4
EN*
OUT
6, 7, 8
To VBUS
USB Ports
FLAG 5
* EN is active high for MP62171-1
SINGLE-CHANNEL
MP62170-1/MP62171-1 Rev.1.0
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1
MP62170-1/MP62171-1 –CURRENT-LIMITED POWER DISTRIBUTION SWITCH
ORDERING INFORMATION
Part Number
Enable Switch
MP62170ES-1*
MP62170EK-1
MP62171ES-1
MP62171EK-1
Active
Low
Free Air
Temperature
(TA)
Maximum
Typical ShortContinuous Circuit Current Package Top Marking
Load Current
@ TA=25C
Single
1.5A
SOIC8
MSOP
SOIC8
MSOP
2.3A
Active
High
62170ES-1
62170EK-1
62171ES-1
62171EK-1
-20°C to +85°C
* For Tape & Reel, add suffix –Z (e.g. MP62170ES-1–Z).
For RoHS compliant packaging, add suffix –LF(e.g. MP62170ES-1–LF–Z)
PACKAGE REFERENCE
TOP VIEW
GND
1
8
OUT
GND
1
8
OUT
IN
2
7
OUT
IN
2
7
OUT
IN
3
6
OUT
EN*
4
5
FLAG
IN
3
6
OUT
EN*
4
5
FLAG
MSOP8
SOIC8
MP62170-1
Single-Channel
(* EN is active high for MP62171-1)
ABSOLUTE MAXIMUM RATINGS (1)
Thermal Resistance
(3)
IN .................................................-0.3V to +6.0V
EN, FLAG, OUT to GND ..............-0.3V to +6.0V
Continuous Power Dissipation (TA = +25°C) (2)
SOIC8..................................................... 1.4W
MSOP8...................................................... 0.8W
Junction Temperature ...............................150°C
Lead Temperature ....................................260°C
Storage Temperature............... -65°C to +150°C
Operating Junct. Temp (TJ).......-20°C to +125°C
SOIC8..................................... 90 ...... 42... °C/W
MSOP8…. ............................. 150 ..... 65... °C/W
θJA
θJC
Notes:
1) Exceeding these ratings may damage the device.
2) The maximum allowable power dissipation is a function of the
maximum junction temperature TJ (MAX), the junction-toambient thermal resistance θJA, and the ambient temperature
TA. The maximum allowable continuous power dissipation at
any ambient temperature is calculated by PD (MAX) = (TJ
(MAX)-TA)/θJA. Exceeding the maximum allowable power
dissipation will cause excessive die temperature, and the
regulator will go into thermal shutdown. Internal thermal
shutdown circuitry protects the device from permanent
damage.
3) Measured on JESD51-7, 4-layer PCB.
MP62170-1/MP62171-1 Rev.1.0
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MP62170-1/MP62171-1 –CURRENT-LIMITED POWER DISTRIBUTION SWITCH
ELECTRICAL CHARACTERISTICS (4)
VIN=5V, TA=+25°C, unless otherwise noted.
Parameter
Condition
IN Voltage Range
Supply Current
Shutdown Current
Off Switch Leakage
Typ
Max
Units
5.5
120
V
µA
µA
µA
2.3
3
A
2.5
3.3
A
2.65
0.8
0.4
V
mV
mΩ
V
V
V
1
µA
0.5
0.5
3
°C
°C
ms
ms
ms
ms
ms
10
ms
2.7
EN Enabled, IOUT=0
Device Disable, VOUT=float, VIN=5.5V
Device Disable, VIN=5.5V
Current Limit
90
1
1
1.6
Trip Current
Under-voltage Lockout
Under-voltage Hysteresis
FET On Resistance
EN Input Logic High Voltage
EN Input Logic Low Voltage
FLAG Output Logic Low Voltage
FLAG Output High Leakage
Current
Thermal Shutdown
Thermal Shutdown Hysteresis
VOUT Rising Time, Tr (5)
VOUT Falling Time, Tf (6)
Turn On Time, Ton (7)
Turn Off Time, Toff
Min
(8)
Discharge Resistance
FLAG Deglitch Time
EN Input Leakage
Reverse Leakage Current
Current Ramp (slew rate≤100A/s) on
Output
Rising Edge
1.95
250
75
IOUT=100mA (-20°C≤TA≤+85°C)
130
2
ISINK=5mA
VIN=VFLAG=5.5V
140
20
0.9
1.7
VIN=5.5V, CL=1uF, RL=5.5Ω
VIN=2.7V, CL=1uF, RL=5.5Ω
VIN=5.5V, CL=1uF, RL=5.5Ω
VIN=2.7V, CL=1uF, RL=5.5Ω
CL=100µF, RL=5.5Ω
CL=100µF, RL=5.5Ω
500
4
VOUT =5.5V, VIN =GND
8
1
0.2
Ω
15
ms
µA
µA
Notes:
4) Production test at +25°C. Specifications over the temperature range are guaranteed by design and characterization.
5) Measured from 10% to 90% output signal.
6) Measured from 90% to 10% output signal.
7) Measured from 50% EN signal to 90% output signal.
8) Measured from 50% EN signal to 10% output signal.
MP62170-1/MP62171-1 Rev.1.0
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MP62170-1/MP62171-1 –CURRENT-LIMITED POWER DISTRIBUTION SWITCH
PIN FUNCTIONS
SOIC8
MSOP8
Name
Description
1
2, 3
GND
IN
Ground.
Input Voltage. Accepts 2.7V to 5.5V input.
4
———
5
FLAG
IN-to-OUT Over-current, active-low output flag. Open-Drain.
6, 7, 8
OUT
IN-to-OUT Power-Distribution Output (for all 3 output pins)
Active High: (MP62171-1), Active Low: (MP62170-1).
EN
TYPICAL PERFORMANCE CHARACTERISTICS
TA = +25ºC, unless otherwise noted.
OUTx
tf
tr
RL
CL
Vo (OUTx)
90%
10%
90%
10%
TEST CIRCUIT
50%
ENx
50%
ENx
toff
ton
Vo (OUTx)
90%
50%
50%
ton
Vo (OUTx)
toff
90%
10%
10%
VOLTAGE WAVEFORMS
Figure 1—Test Circuit and Voltage Waveforms
MP62170-1/MP62171-1 Rev.1.0
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MP62170-1/MP62171-1 –CURRENT-LIMITED POWER DISTRIBUTION SWITCH
TYPICAL PERFORMANCE CHARACTERISTICS (CONTINUED)
VIN = 5V, VEN = 0V, VCC = 5V, CL = 2.2uF, TA = +25°C, unless otherwise noted.
3
2.5
2
1.5
2.5
3
3.5
4
4.5
5
5.5
1.8
1.1
RISE TIME(ms)
3.5
1
2
1.2
TURN OFF DELAY (ms)
TURN ON DELAY (ms)
4
1
0.9
1.4
1.2
1
0.8
2.5
6
1.6
3
INPUT VOLTAGE (V)
3.5
4
4.5
5
5.5
0.8
6
2.5 3
INPUT VOLTAGE (V)
3.5
4
4.5
5
5.5
6
INPUT VOLTAGE (V)
70
SUPPLY CURRENT (uA)
120
65
FALL TIME (us)
STATIC DRAIN-SOURCE ON-STATE
RESISTANCE VARIATION (%)
Supply Current, Output Enabled Static Drain-Source On-State
Resistance Variation vs.
vs.Input Voltage
Ambient Temperature
60
55
50
45
2.5
3
3.5
4
4.5
5
5.5
110
100
90
80
70
2.5 3
6
INPUT VOLTAGE (V)
3.5 4
4.5
5
5.5
6
AMBIENT TEMPERATURE (oC)
INPUT VOLTAGE (V)
Static Drain-Source On-State
Resistance vs.
Input Voltage
Current Limit vs.
Input Voltage
Input to Output Voltage vs.
Load Current
130
120
110
100
90
80
2.5
3 3.5 4 4.5 5 5.5
INPUT VOLTAGE (V)
6
2.3
200
180
160
CURRENT LIMIT (A)
INPUT TO OUTPUT VOLTAGE (mV)
STATIC DRAIN-SOURCE ON-STATE
IO=1.5A
140
70
IO=0.1A
30
25
20
15
10
5
0
-5
-10
-15
-20
-25
-30-20-10 0 10 20 30 40 50 60 70 80 90
140
120
100
80
60
40
2.2
2.1
2
1.9
20
0
1.8
0
0.3
0.6
0.9
1.2
OUTPUT CURRENT (A)
1.5
2.5
3 3.5 4 4.5 5 5.5
INPUT VOLTAGE (V)
MP62170-1/MP62171-1 Rev.1.0
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10/26/2010
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5
MP62170-1/MP62171-1 –CURRENT-LIMITED POWER DISTRIBUTION SWITCH
TYPICAL PERFORMANCE CHARACTERISTICS (CONTINUED)
Threshold Trip Current vs.
Input Voltage
2.8
2.7
2.6
2.5
2.4
2.3
2.5 3
3.5 4 4.5 5 5.5
INPUT VOLTAGE (V)
6
CURRENT LIMIT RESPONSE TIME (us)
THRESHOLD TRIP CURRENT (A)
VIN = 5V, VEN = 0V, VCC = 5V, CL = 2.2uF, TA = +25°C, unless otherwise noted.
Current Limit Response vs.
Peak Current
12
10
8
6
4
2 4 6 8 1012 1416182022242628
PEAK CURRENT (A)
VOUT
2V/div.
VOUT
2V/div.
VOUT
2V/div.
EN
2V/div.
EN
2V/div.
EN
2V/div.
1ms/div.
100us/div.
1ms/div.
Short Circuit Current,
Device Enabled into Short
Threshold Trip Current
with Ramped Load
on Enabled Device
VOUT
2V/div.
IOUT
1A/div.
VOUT
2V/div.
EN
2V/div.
EN
2V/div.
IOUT
1A/div.
400us/div.
400us/div.
MP62170-1/MP62171-1 Rev.1.0
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1ms/div.
6
MP62170-1/MP62171-1 –CURRENT-LIMITED POWER DISTRIBUTION SWITCH
TYPICAL PERFORMANCE CHARACTERISTICS (CONTINUED)
VIN = 5V, VEN = 0V, VCC = 5V, CL = 2.2uF, TA = +25°C, unless otherwise noted.
220uF
Flag
2V/div.
IOUT
1A/div.
IOUT
1A/div.
470uF
100uF
IOUT
1A/div.
EN
2V/div.
2ms/div.
Flag
5V/div.
1ms/div.
2ms/div.
VOUT
2V/div.
EN
2V/div.
Flag
5V/div.
IOUT
1A/div.
2ms/div.
MP62170-1/MP62171-1 Rev.1.0
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MP62170-1/MP62171-1 –CURRENT-LIMITED POWER DISTRIBUTION SWITCH
FUNCTION BLOCK DIAGRAM
UVLO
IN
Current
Sense
-- -- --
OUT
--
--
--
--
Charge
Pump
-Vref
--
---
AMP
+
+
Logic
--
--
EN*
FLAG
Deglitch
--
--
Thermal
Sense
GND
* EN is active high for MP62171-1
Figure 2—Functional Block Diagram
MP62170-1/MP62171-1 Rev.1.0
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MP62170-1/MP62171-1 –CURRENT-LIMITED POWER DISTRIBUTION SWITCH
DETAILED DESCRIPTION
Over Current
When the load exceeds trip current (minimum
threshold current triggering constant-current
mode) or a short is present, MP621701/MP62171-1 switches into to a constant-current
mode (current limit value). MP62170-1/MP621711 will be shutdown only if the over current
condition stays long enough to trigger thermal
protection.
Trigger over current protection for different
overload conditions occurring in applications:
1) The output has been shorted or overloaded
before the device is enabled or input applied.
MP62170-1/MP62171-1 detects the short or
overload and immediately switches into a
constant-current mode.
2) A short or an overload occurs after the device
is enabled. After the current-limit circuit has
been tripped (reached the trip current
threshold), the device switches into constantcurrent mode. However, high current may
flow for a short period of time before the
current-limit circuit can react.
3)Output current has been gradually increased
beyond the recommended operating current.
The load current rises until the trip current
threshold is reached or until the thermal limit
of the device is exceeded. The MP62170-1/
MP62171-1 is capable of delivering current up
to the trip current threshold without damaging
the device. Once the trip threshold has been
reached, the device switches into its constantcurrent mode.
Thermal Protection
The purpose of thermal protection is to prevent
damage in the IC by allowing exceptive current to
flow and heating the junction. The die
temperature is internally monitored until the
thermal limit is reached. Once this temperature is
reached, the switch will turn off and allow the
chip to cool. The switch has a built-in hysteresis.
Under-voltage Lockout (UVLO)
This circuit is used to monitor the input voltage to
ensure that the MP62170-1/MP62171-1 is
operating correctly. This UVLO circuit also
ensures that there is no operation until the input
voltage reaches the minimum spec.
Enable
The logic pin disables the chip to reduce the
supply current. The device will operate once the
enable signal reaches the appropriate level. The
input is compatible with both COMS and TTL.
Output Discharge
The part involves a discharge function that
provides a resistive discharge path for the
external output capacitor. The function will be
active when the part is disabled (Input voltage is
under UVLO or enable is deasserted) and it will
be done in a very limited time.
Flag Response
The FLAG pin is an open drain configuration.
This FAULT will report a fail mode after an 8ms
deglitch timeout. This is used to ensure that no
false fault signals are reported. This internal
deglitch circuit eliminates the need for extend
components. The FLAG pin is not deglitched
during an over temp. or voltage lockout.
MP62170-1/MP62171-1 Rev.1.0
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MP62170-1/MP62171-1 –CURRENT-LIMITED POWER DISTRIBUTION SWITCH
APPLICATION INFORMATION
Power-Supply Considerations
Over 10µF capacitor between IN and GND is
recommended. This precaution reduces powersupply transients that may cause ringing on the
input and improves the immunity of the device to
short-circuit transients.
In order to achieve smaller output load transient,
placing a high-value electrolytic capacitor on the
output pin(s) is recommended when the output
load is heavy.
3.3V / 5V Input
1 GND
MP62170-1/
MP62171-1
2, 3 IN
4
EN*
OUT
6, 7, 8
To VBUS
USB Ports
FLAG 5
* EN is active high for MP62171-1
SINGLE-CHANNEL
Figure 3—Application Circuit
MP62170-1/MP62171-1 Rev.1.0
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MP62170-1/MP62171-1 –CURRENT-LIMITED POWER DISTRIBUTION SWITCH
PACKAGE INFORMATION
MSOP8
0.114(2.90)
0.122(3.10)
5
8
0.114(2.90)
0.122(3.10)
PIN 1 ID
(NOTE 5)
0.010(0.25)
0.014(0.35)
0.187(4.75)
0.199(5.05)
4
1
0.0256(0.65)BSC
BOTTOM VIEW
TOP VIEW
GAUGE PLANE
0.010(0.25)
0.030(0.75)
0.037(0.95)
0.043(1.10)MAX
SEATING PLANE
0.002(0.05)
0.006(0.15)
FRONT VIEW
0o-6o
0.016(0.40)
0.026(0.65)
0.004(0.10)
0.008(0.20)
SIDE VIEW
NOTE:
0.181(4.60)
0.040(1.00)
0.016(0.40)
1) CONTROL DIMENSION IS IN INCHES. DIMENSION IN BRACKET IS
IN MILLIMETERS.
2) PACKAGE LENGTH DOES NOT INCLUDE MOLD FLASH,
PROTRUSION OR GATE BURR.
3) PACKAGE WIDTH DOES NOT INCLUDE INTERLEAD FLASH OR
PROTRUSION.
4) LEAD COPLANARITY (BOTTOM OF LEADS AFTER FORMING)
SHALL BE 0.004" INCHES MAX.
5) PIN 1 IDENTIFICATION HAS HALF OR FULL CIRCLE OPTION.
6) DRAWING MEETS JEDEC MO-187, VARIATION AA.
7) DRAWING IS NOT TO SCALE.
0.0256(0.65)BSC
RECOMMENDED LAND PATTERN
MP62170-1/MP62171-1 Rev.1.0
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MP62170-1/MP62171-1 –CURRENT-LIMITED POWER DISTRIBUTION SWITCH
SOIC8
0.189(4.80)
0.197(5.00)
0.050(1.27)
0.024(0.61)
8
5
0.063(1.60)
0.150(3.80)
0.157(4.00)
PIN 1 ID
1
0.228(5.80)
0.244(6.20)
0.213(5.40)
4
TOP VIEW
RECOMMENDED LAND PATTERN
0.053(1.35)
0.069(1.75)
SEATING PLANE
0.004(0.10)
0.010(0.25)
0.013(0.33)
0.020(0.51)
0.0075(0.19)
0.0098(0.25)
SEE DETAIL "A"
0.050(1.27)
BSC
SIDE VIEW
FRONT VIEW
0.010(0.25)
x 45o
0.020(0.50)
GAUGE PLANE
0.010(0.25) BSC
0o-8o
0.016(0.41)
0.050(1.27)
DETAIL "A"
NOTE:
1) CONTROL DIMENSION IS IN INCHES. DIMENSION IN
BRACKET IS IN MILLIMETERS.
2) PACKAGE LENGTH DOES NOT INCLUDE MOLD FLASH,
PROTRUSIONS OR GATE BURRS.
3) PACKAGE WIDTH DOES NOT INCLUDE INTERLEAD FLASH
OR PROTRUSIONS.
4) LEAD COPLANARITY (BOTTOM OF LEADS AFTER FORMING)
SHALL BE 0.004" INCHES MAX.
5) DRAWING CONFORMS TO JEDEC MS-012, VARIATION AA.
6) DRAWING IS NOT TO SCALE.
NOTICE: The information in this document is subject to change without notice. Users should warrant and guarantee that third
party Intellectual Property rights are not infringed upon when integrating MPS products into any application. MPS will not
assume any legal responsibility for any said applications.
MP62170-1/MP62171-1 Rev.1.0
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10/26/2010
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