AAT4612IGV-T1

更新时间:2024-09-18 01:56:29
品牌:ANALOGICTECH
描述:Current Limited Load Switch

AAT4612IGV-T1 概述

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AAT4612  
Current Limited Load Switch  
SmartSwitch  
General Description  
Features  
The AAT4612 SmartSwitch™ is a member of  
AnalogicTech's Application Specific Power MOS-  
FET™ (ASPM™) product family. It is a Current  
Limited P-channel MOSFET power switch designed  
for high-side load-switching applications operating  
with inputs ranging from 2.4V to 5.5V which makes it  
ideal for both 3V and 5V systems. An integrated cur-  
rent-limiting circuit protects the input supply from large  
currents which potentially cause the supply to fall out  
of regulation. In addition, the AAT4612 thermal over-  
load protection limits power dissipation and junction  
temperatures associated with prolonged periods of  
operation in current limit. Due to its low RDS(ON), the  
AAT4612 can be used to control loads that require up  
to 1A even while operating at high ambient tempera-  
tures. The ultra fast current-limit response to a sud-  
den short circuit is a mere 500ns which reduces the  
requirements of local supply bypassing. Quiescent  
current is a low 10µA and in shutdown mode, the  
supply current decreases to less than 1µA.  
2.4V to 5.5V Input voltage range  
1A current limit trip threshold  
Fast transient response:  
<1µs response to short circuit  
Low quiescent current  
10µA typ  
1µA max with Switch off  
100mtypical RDS(ON)  
Undervoltage Lockout  
Thermal Shutdown  
Temp range -40 to 85°C  
4kV ESD Rating  
5-pin SOT23 package  
8-pin SC70JW package  
Applications  
Peripheral ports  
The AAT4612 is available in a 5-pin SOT23, and an  
8-pin SC70JW specified over a -40 to 85°C temper-  
ature range.  
Notebook computers  
Personal communication devices  
Hot swap supplies  
The AAT4600 Series is a family of adjustable and  
fixed SmartSwitch™ products with a range of current  
handling capabilities. Available are single versions  
with adjustable current limit (AAT4610, AAT4601) as  
well as fixed current limit (AAT4625), and dual ver-  
sions with fixed current limit (AAT4626, AAT4670).  
Typical Application  
INPUT  
VCC  
5
1
IN  
OUT  
AAT4612  
SOT23  
4
ON  
ON  
CIN  
COUT  
1µF  
0.47µF  
GND  
2
GND  
GND  
4612.2002.1.0.9  
1
AAT4612  
Current Limited Load Switch  
Pin Descriptions  
Pin #  
SOT23-5  
SC70JW  
Symbol  
OUT  
GND  
NC  
Function  
1
2
3
4
5
2
P-channel MOSFET drain  
Ground connection  
5, 6, 7, 8  
Not internally connected  
Active low enable Input  
P-channel MOSFET source  
1
ON  
3, 4  
IN  
Pin Configuration  
SOT23-5  
SC70JW-8  
1
8
OUT  
GND  
NC  
1 5 IN  
2
GND  
GND  
GND  
GND  
ON  
OUT  
IN  
2
3
4
7
6
5
3 4  
ON  
IN  
2
4612.2002.1.0.9  
AAT4612  
Current Limited Load Switch  
Absolute Maximum Ratings (TA=25°C unless otherwise noted)  
Symbol  
VIN  
Description  
Value  
-0.3 to 6  
-0.3 to 6  
-0.3 to 6  
Internally Limited  
-40 to 150  
4000  
Units  
V
IN to GND  
VON  
ON to GND  
V
VOUT  
Iout  
OUT to GND  
V
Output Current  
A
TJ  
Operating Junction Temperature Range  
ESD Rating1—HBM  
Maximum Soldering Temperature (at Leads)  
°C  
V
VESD  
TLEAD  
300  
°C  
Note: Stresses above those listed in Absolute Maximum Ratings may cause permanent damage to the device. Functional operation at con-  
ditions other than the operating conditions specified is not implied. Only one Absolute Maximum rating should be applied at any one time.  
Note 1: Human body model is a 100pF capacitor discharged through a 1.5kresistor into each pin.  
Thermal Characteristics  
Symbol  
ΘJA  
Description  
Value  
150  
Units  
°C/W  
mW  
Maximum Thermal Resistance 2 (SOT23-5, SC70JW-8)  
PD  
Maximum Power Dissipation 2 (SOT23-5, SC70JW-8)  
667  
Note 2: Mounted on a demo board.  
Electrical Characteristics (VIN = 5V, TA = -40 to 85°C unless otherwise noted. Typical values  
are at TA=25°C; bold values denote full temperature range)  
Symbol Description  
Conditions  
Min Typ Max Units  
VIN  
IQ  
Operation Voltage  
2.4  
5.5  
20  
1
V
µA  
µA  
µA  
V
Quiescent Current  
VIN = 5V, ON = active, IOUT = 0  
ON = inactive, VIN = 5.5V  
ON = inactive, VIN = 5.5V, VOUT = 0  
VIN falling  
10  
IQ(OFF)  
ISD(OFF)  
VUVLO  
VUVLO(hys)  
Off Supply Current  
Off Switch Current  
0.1  
1.9  
0.3  
100  
140  
1.5  
1
Undervoltage Lockout  
Undervoltage Lockout Hysteresis  
V
VIN=5.0V, TA = 25ºC  
VIN=3.0V, TA = 25ºC  
VOUT = VIN - 0.5V  
150  
180  
2.0  
RDS(ON)  
On-Resistance  
m  
ILIM  
Current Limit  
1
A
V
3
VON(L)  
ON Input Low Voltage  
VIN = 2.7V to 5.5V  
0.8  
V
IN = 2.7V 4.2V  
2.0  
2.4  
VON(H)  
ON Input High Voltage  
V
3
VIN = > 4.2V to 5.0V  
VON = 5.5V  
ION(SINK)  
tRESP  
ON Input leakage  
0.01  
500  
2.5  
1
1
µA  
ns  
µs  
µs  
°C  
Current Loop Response  
Turn-Off Time  
VIN = 5V  
TOFF  
VIN = 5V, RL = 10Ω  
VIN = 5V, RL = 10Ω  
TON  
Turn-On Time  
OTMP  
Over Temperature Shutdown  
125  
Note 3: For VIN outside this range consult typical ON threshold curve.  
4612.2002.1.0.9  
3
AAT4612  
Current Limited Load Switch  
Typical Characteristics  
Quiescent Current vs. Temperature  
Quiescent Current vs. Input Voltage  
20  
15  
10  
5
20  
15  
10  
5
0
0
-40  
-20  
0
20  
40  
60  
80  
100  
120  
0
1
2
3
4
5
6
120  
120  
Temperature (°C)  
IN (V)  
Current Limit vs. VOUT  
RDS(ON) vs. Temperature  
1.4  
180  
160  
140  
120  
100  
80  
1.2  
1.0  
0.8  
0.6  
0.4  
0.2  
0.0  
VIN=3V  
VIN=5V  
60  
40  
20  
0
0
1
2
3
4
5
-40  
-20  
0
20  
40  
60  
80  
100  
VOUT (V)  
Temperature (°C)  
Off-Supply Current vs. Temperature  
Off-Switch Current vs. Temperature  
1.00  
0.10  
0.01  
0.00  
1.00  
0.10  
0.01  
0.00  
-40  
-20  
0
20  
40  
60  
80  
100  
120  
-40  
-20  
0
20  
40  
60  
80  
100  
Temperature (°C)  
Temperature (°C)  
4
4612.2002.1.0.9  
AAT4612  
Current Limited Load Switch  
Typical Characteristics  
Turn-On  
Turn-Off  
RL=10, CL=0.47µF  
RL=10, CL=0.47µF  
6
5
4
6
5
4
ON  
OUT  
3
2
3
ON  
OUT  
2
1
1
0
0
-1  
-1  
-0.5  
0.0  
0.5  
1.0  
1.5  
2.0  
-5  
0
5
10  
15  
20  
Time (µs)  
Time (µs)  
Short Circuit through 0.3 Ω  
Thermal Shutdown Response  
6.0  
12  
10  
8
Input Voltage  
5.0  
4.0  
3.0  
2.0  
1.0  
0.0  
Output Voltage (5V/div)  
6
Output Current  
Output Voltage  
4
2
Output Current (1A/div)  
0
-1  
0
1
2
3
4
5
Time (µs)  
Time (50ms/div)  
ON Threshold vs. VIN  
2.4  
2.2  
2
VON(H)  
1.8  
1.6  
1.4  
1.2  
1
VON(L)  
0.8  
0.6  
0.4  
2
2.5  
3
3.5  
4
4.5  
5
5.5  
VIN (V)  
4612.2002.1.0.9  
5
AAT4612  
Current Limited Load Switch  
Functional Block Diagram  
IN  
OUT  
Over-Temp  
Protection  
Under-Voltage  
Lockout  
Current  
Limit  
ON  
GND  
the thermal limit threshold. The device will thermal  
cycle indefinitely until the over current condition is  
removed. The AAT4612 operates with input volt-  
ages ranging from 2.4V to 5.5V which, along with  
its extremely low operating current, makes it ideal  
for battery-powered applications. In cases where  
the input voltage drops below 2.4V, the AAT4612  
MOSFET is protected from entering the saturated  
region of operation by being automatically shut  
down by an under voltage lockout circuit.  
Functional Description  
The AAT4612 is a single channel current limited  
load switch that protects against short circuits by  
current limiting to a preset level. A patented fast  
acting current limit loop limits the current in a frac-  
tion of a micro second and instantly resets to low  
impedance once the short circuit condition is  
removed.  
The AAT4612 is internally protected  
from thermal damage by an over temperature  
detection circuit. If the die temperature reaches the  
internal thermal limit, the power device is switched  
off until the die temperature cools to a level below  
The AAT4612 is ideally suited for protection of  
peripheral ports such as USB, RS232 and parallel  
ports.  
6
4612.2002.1.0.9  
AAT4612  
Current Limited Load Switch  
When switching the AAT4612 on into a capacitive  
load, the AAT4612 will charge the output capacitive  
load at a rate no greater than the current limit setting.  
Applications Information  
Input Capacitor  
The input capacitor, CIN protects the power supply  
from current transients generated by the load  
attached to the AAT4612. When a short circuit is  
suddenly applied to the output of the AAT4612, a  
large current, limited only by the RDS(ON) of the  
MOSFET, will flow for less than 1µs before the cur-  
rent limit circuitry activates. (See characteristic  
curve "Short Circuit Through 0.3.") In this event,  
a moderately sized CIN will dramatically reduce the  
voltage transient seen by the power supply and by  
other circuitry upstream from the AAT4612. The  
extremely fast short circuit response time of the  
AAT4612 reduces the size requirement of CIN.  
Attaching Loads  
Capacitive loads attached to an enabled AAT4612  
will charge at a rate no greater than the current limit  
setting.  
Thermal Considerations  
Since the AAT4612 has internal current limit and  
over temperature protection, junction temperature  
is rarely a concern. However, if the application  
requires large currents in a hot environment, it is  
possible that temperature rather than current limit  
will be the dominant regulating condition. In these  
applications, the maximum current available with-  
out risk of an over temperature condition must be  
calculated. The maximum internal temperature  
while current limit is not active can be calculated  
using Equation 1.  
CIN should be located as close to the device VIN pin  
as practically possible. Ceramic, tantalum or alu-  
minum electrolytic capacitors are appropriate for  
CIN. There is no specific capacitor ESR require-  
ment for CIN. However, for higher current opera-  
tion, ceramic capacitors are recommended for CIN  
due to their inherent capability over tantalum  
capacitors to withstand input current surges from  
low impedance sources such as batteries in  
portable devices.  
2
TJ(MAX) = IMAX × RDS(ON)(MAX) × RθJA + TA(MAX)  
In Equation 1, IMAX is the maximum current  
required by the load. RDS(ON)(MAX) is the maxi-  
mum rated RDS(ON) of the AAT4612 at high temper-  
ature. RθJA is the thermal resistance between the  
AAT4612 die and the board onto which it is mount-  
ed. TA(MAX) is the maximum temperature that the  
PCB under the AAT4612 would be if the AAT4612  
were not dissipating power. Equation 1 can be  
rearranged to solve for IMAX; Equation 2.  
Output Capacitor  
In order to insure stability while current limit is  
active, a small capacitance of approximately  
0.47µF is required. No matter how large the output  
capacitor however, output current is limited to the  
value set by the AAT4612 current limiting circuitry,  
so very large output capacitors can be used.  
(TSD(MIN) - TA(MAX))  
(RDS(ON)(MAX) × RθJA  
IMAX  
=
)
TSD(MIN) is the minimum temperature required to  
activate the AAT4612 over temperature protection.  
With typical specification of 125°C, 115°C is a safe  
minimum value to use.  
For example, USB ports are specified to have at  
least 120µF of capacitance down stream from their  
controlling power switch. The current limiting circuit  
will allow an output capacitance of 1000µF or more  
without disturbing the upstream power supply.  
For example, if an application is specified to oper-  
ate in 50°C environments, the PCB operates at  
temperatures as high as 85°C. The application is  
sealed and its PCB is small, causing RθJA to be  
approximately 150 °C/W. Using Equation 2,  
ON  
In many systems, power planes are controlled by  
integrated circuits which run at lower voltages than  
the power plane itself. The enable input (ON) of  
the AAT4612 has low and high threshold voltages  
that accommodate this condition. The threshold  
voltages are compatible with 5 volt TTL, and 2.5  
volt to 5 volt CMOS systems.  
((115 - 85)  
IMAX  
=
= 1 A  
(188m × 150))  
The AAT4612 is safe to operate at the maximum  
current level of 1A at 85°C.  
4612.2002.1.0.9  
7
AAT4612  
Current Limited Load Switch  
Ordering Information  
Part Number  
Package  
Marking  
Bulk  
N/A  
N/A  
Tape and Reel  
AAT4612IGV-T1  
AAT4612IJS-T1  
SOT23-5  
SC70JW-8  
Package Information  
SOT23-5  
e
Millimeters  
Inches  
Dim  
Min  
1.00  
0.00  
0.70  
0.35  
0.10  
2.70  
1.40  
Max  
1.30  
0.10  
0.90  
0.50  
0.25  
3.10  
1.80  
Min  
Max  
S1  
A
A1  
A2  
b
c
D
0.039  
0.000  
0.028  
0.014  
0.004  
0.106  
0.055  
0.051  
0.004  
0.035  
0.020  
0.010  
0.122  
0.071  
H
E
E
e
1.90  
0.075  
H
L
S
S1  
Θ
2.60  
0.37  
0.45  
0.85  
1°  
3.00  
0.102  
0.015  
0.018  
0.033  
1°  
0.118  
D
0.55  
1.05  
9°  
0.022  
0.041  
9°  
A
A2  
A1  
c
I
Note:  
S
b
L
1. PACKAGE BODY SIZES EXCLUDE MOLD FLASH  
PROTRUSIONS OR GATE BURRS.  
2. TOLERANCE 0.1000mm (4mil) UNLESS  
OTHERWISE SPECIFIED  
3. COPLANARITY: 0.1000mm  
4. DIMENSION L IS MEASURED IN GAGE PLANE.  
5. CONTROLLING DIMENSION IS MILLIMETER;  
CONVERTED INCH DIMENSIONS ARE NOT  
NECESSARILY EXACT.  
8
4612.2002.1.0.9  
AAT4612  
Current Limited Load Switch  
SC70JW-8  
e
e
e
Millimeters  
Min Max  
2.10 BSC  
Inches  
Min Max  
0.083 BSC  
Dim  
E
E1  
L
1.75  
0.23  
2.00  
0.40  
1.10  
0.10  
1.00  
0.069  
0.009  
0.079  
0.016  
0.043  
0.004  
0.039  
E
A
A1  
A2  
D
e
b
c
Θ
Θ1  
0
0.70  
0.028  
2.00 BSC  
0.50 BSC  
0.079 BSC  
0.020 BSC  
b
D
0.15  
0.10  
0
0.30  
0.20  
8º  
0.006  
0.004  
0
0.012  
0.008  
8º  
0.048REF  
c
A2  
A
4º  
10º  
4º  
10º  
A1  
L
Θ
Θ1  
E1  
4612.2002.1.0.9  
9
AAT4612  
Current Limited Load Switch  
This page intentionally left blank.  
Advanced Analogic Technologies, Inc.  
1250 Oakmead Parkway, Suite 310, Sunnyvale, CA 94086  
Phone (408) 524-9684  
Fax (408) 524-9689  
10  
4612.2002.1.0.9  

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