The FPF1005 & FPF1006 are low RDS P-Channel MOSFET
load switches with CMOS controlled turn-on targeting small
package load switch applications. The input voltage range
operates from 1.2V to 5.5V. Switch control is by a logic
input (ON) capable of interfacing directly with low voltage
control signals. In FPF1006, 120Ω on-chip load resistor is
added for output quick discharge when switch is turned off.
Both FPF1005 & FPF1006 are available in a small 2X2
MicroFET-6 pin plastic package.
Supply Input: Input to the power switch and the supply voltage for the IC
2www.fairchildsemi.com
V
2
IN
V
3
IN
Page 3
Absolute Maximum Ratings
ParameterMinMaxUnit
VIN, V
Maximum Continuous Switch Current1.5A
Power Dissipation @ T
Operating Temperature Range-4085°C
Storage Temperature-65150°C
Thermal Resistance, Junction to Ambient86°C/W
Electrostatic Discharge Protection
, ON to GND-0.36V
OUT
= 25°C (Note 1)1.2W
A
HBM2000V
MM200V
Recommended Operating Range
ParameterMinMaxUnit
V
IN
Ambient Operating Temperature, T
A
1.25.5V
-4085°C
Electrical Characteristics
VIN = 1.2 to 5.5V, TA = -40 to +85°C unless otherwise noted. Typical values are at VIN = 3.3V and TA = 25°C.
ParameterSymbolConditionsMinTypMaxUnit
Basic Operation
Operating VoltageV
Quiescent CurrentI
Off Supply CurrentI
Off Switch CurrentI
On-ResistanceR
Output Pull Down Resistance R
ON Input Logic Low Voltage V
ON Input Logic High Voltage V
IN
Q
Q(off)
SD(off)
ON
PD
IL
IH
ON Input LeakageV
Dynamic
Turn on delayt
Turn off delayt
Rise Timet
V
OUT
V
Fall Timet
OUT
ON
OFF
R
F
I
= 0mA, VIN = V
OUT
ON
VON = GND, OUT = open1µA
VON = GND, V
= GND, V
V
ON
= 0 @ VIN = 5.5V, TA = 85°C1µA
OUT
= 0 @ VIN = 3.3V, TA = 25°C10100nA
OUT
VIN = 5.5V, TA = 25°C5070
= 3.3V, TA = 25°C5580
V
IN
= 1.5V, TA = 25°C95135
V
IN
= 1.2V, TA = 25°C165250
V
IN
VIN = 3.3V, VON = 0V, TA = 25°C, FPF100675120Ω
VIN = 5.5V1.25
= 4.5V1.10
IN
= 1.5V0.50
V
IN
VIN = 5.5V2.00
= 4.5V1.75
IN
= 1.5V0.75
V
IN
= VIN or GND-11µA
ON
VIN = 3.3V, RL = 500Ω, CL = 0.1µF, TA = 25°C10µs
VIN = 3.3V, RL = 500Ω, CL = 0.1µF,
T
= 25°C, FPF1005
A
= 3.3V, RL = 500Ω, CL = 0.1µF,
V
IN
R
= 120Ω, TA = 25°C, FPF1006
L_CHIP
VIN = 3.3V, RL = 500Ω, CL = 0.1µF, TA = 25°C10µs
VIN = 3.3V, RL = 500Ω, CL = 0.1µF,
T
= 25°C, FPF1005
A
V
= 3.3V, RL = 500Ω, CL = 0.1µF,
IN
R
= 120Ω, TA = 25°C, FPF1006
L_CHIP
1.25.5V
1µA
mΩ
50µs
10µs
100µs
10µs
FPF1005-FPF1006 IntelliMAX
TM
Advanced Load Management Products
VV
VV
FPF1005-FPF1006 Rev. F
3www.fairchildsemi.com
Page 4
Typical Characteristics
0
)
6
6
)
FPF1005-FPF1006 IntelliMAX
10
8
6
VON = V
4
SUPPLY CURRENT (nA)
2
0
1234567891
SUPPLY VOLTAGE (V
Figure 1. Quiescent Current vs.V
16
14
12
10
8
6
4
SUPPLY CURRENT (nA)
2
0
-40-1510356085
T
, JUNCTI ON TEMPERATURE (oC)
J
IN
VON = 0V
IN
VIN = 5.5V
VIN = 3.3V
2.5
2.0
1.5
1.0
ON THRESHOLD (V)
0.5
0.0
12345
Figure 2. ON Threshold vs. V
10
8
6
4
SUPPLY CURRENT (nA)
2
0
-40-1510356085
, JUNCTION TEMPERATURE (oC)
T
J
MAX LIMIT
TYPICAL
SUPPLY VOLTAGE (V)
IN
VIN = 5.5V
VIN = 3.3V
Figure 3. Quiescent Current vs. Temperature Figure 4. Quiescent Current (off) vs. Temperature
TM
Advanced Load Management Products
800
700
600
500
400
300
200
SUPPLY CURRENT (nA)
100
0
-50-250 255075100
Figure 5. I
FPF1005-FPF1006 Rev. F
VIN = 3.3V
, JUNCTION TEMPERATURE (oC)
T
J
SWITCH-OFF
Current vs. Temperature Figure 6. I
100
90
V
IN
= 5.5V
80
70
60
50
40
30
SUPPLY CURRENT (nA)
20
10
0
12345
SUPPLY VOLTAGE (V
SWITCH-OFF
Current vs. V
IN
4www.fairchildsemi.com
Page 5
Typical Characteristics
7
)
0
FPF1005-FPF1006 IntelliMAX
400
I
= 1A
OUT
350
300
250
200
150
100
ON RESISTANCE (mOhms)
50
0
0123456
Figure 7. R
100
VIN = 3.3V
R
= 500Ω
L
R
= 120Ω, FPF1006
L_CHIP
C
= 0.1uF
L
SUPPLY VOLTAGE (V
vs. V
ON
FPF1005 T
OFF
IN
1.5
VIN = 3.3V
I
= 1A
OUT
1.3
1.1
0.9
ON NORMALIZED
R
0.7
0.5
-50-25 0 25507510
TJ, JUNCTION TEMPERATURE (oC)
Figure 8. RON vs. Temperature
1000
VIN = 3.3V
R
= 500Ω
L
R
= 120Ω, FPF1006
L_CHIP
C
100
= 0.1uF
L
FPF1005 T
FALL
T
RISE
TM
Advanced Load Management Products
FPF1006 T
TURN ON/OFF TIME (uS)
10
-50-250 255075100
Figure 9. T
V
ON
2V/DIV
I
OUT
10mA/DIV
V
OUT
2V/DIV
OFF
T
, JUNCTION TEMPERATURE (oC)
J
vs. Temperature Figure 10. T
ON/TOff
T
ON
VIN=3.3V
C
=1µF
IN
C
OUT
R
=500Ω
L
50µs/DIV50µs/DIV
Figure 11. FPF1005 T
Response Figure 12. FPF1005 T
ON
=0.1µF
10
RISE / FALL TIME (uS)
V
2V/DIV
I
OUT
10mA/DIV
V
2V/DIV
FPF1006 T
FALL
1
-50-25 0 255075100
ON
OUT
, JUNCTION TEMPERATURE (oC)
T
J
RISE/TFALL
vs. Temperature
VIN=3.3V
C
=1µF
IN
C
=0.1µF
OUT
R
=500Ω
L
OFF
Response
FPF1005-FPF1006 Rev. F
5www.fairchildsemi.com
Page 6
Typical Characteristics
FPF1005-FPF1006 IntelliMAX
V
ON
2V/DIV
I
OUT
200mA/DIV
VIN=3.3V
V
OUT
2V/DIV
C
C
R
=1µF
IN
OUT
=10Ω
L
Figure 13. FPF1005 T
V
ON
2V/DIV
I
OUT
10mA/DIV
=0.1µF
50µs/DIV
V
ON
2V/DIV
I
OUT
200mA/DIV
V
OUT
2V/DIV
5µs/DIV
Response Figure 14. FPF1005 T
ON
VIN=3.3V
C
=1µF
IN
C
=0.1µF
OUT
R
=500Ω
L
V
ON
2V/DIV
I
OUT
VIN=3.3V
C
=1µF
IN
C
=0.1µF
OUT
R
=500Ω
L
10mA/DIV
Response
OFF
VIN=3.3V
C
=1µF
IN
C
=0.1µF
OUT
R
=10Ω
L
TM
Advanced Load Management Products
V
OUT
2V/DIV
50µs/DIV50µs/DIV
Figure 15. FPF1006 T
V
ON
2V/DIV
I
OUT
200mA/DIV
V
OUT
2V/DIV
Figure 17. FPF1006 T
VIN=3.3V
C
=1µF
IN
C
=0.1µF
OUT
R
=10Ω
L
V
OUT
2V/DIV
Response Figure 16. FPF1006 T
ON
V
ON
2V/DIV
I
OUT
200mA/DIV
V
OUT
2V/DIV
5µs/DIV50µs/DIV
Response Figure 18. FPF1006 T
ON
Response
OFF
Response
OFF
VIN=3.3V
C
=1µF
IN
C
=0.1µF
OUT
R
=10Ω
L
FPF1005-FPF1006 Rev. F
6www.fairchildsemi.com
Page 7
Note 1: Package power dissipation on 1square inch pad, 2 oz.
copper board
Description of Operation
The FPF1005 & FPF1006 are low R
switches with controlled turn-on. The core of each device is a
55mΩ P-Channel MOSFET and a controller capable of
functioning over a wide input operating range of 1.2-5.5V. The
ON pin, an active HI TTL compatible input, controls the state of
the switch. The FPF1006 contains a 120Ω on-chip load resistor
for quick output discharge when the switch is turned off.
However, V
pin of FPF1006 should not be connected
OUT
directly to the battery source due to the discharge mechanism of
the load switch.
P-Channel load
DS(ON)
Application Information
Typical Application
FPF1005-FPF1006 IntelliMAX
TM
Advanced Load Management Products
C
VIN = 3.3V
IN
OFF ONON
-
VON = 3.3V
Input Capacitor
To limit the voltage drop on the input supply caused by transient
in-rush currents when the switch turns-on into a discharged load
capacitor or short-circuit, a capacitor needs to be placed
between V
close to the pins is usually sufficient. Higher values of C
be used to further reduce the voltage drop during higher current
and GND. A 1µF ceramic capacitor, CIN, placed
IN
IN
can
application.
Output Capacitor
A 0.1µF capacitor, C
GND. This capacitor will prevent parasitic board inductance
from forcing V
the integral body diode in the PMOS switch, a C
C
is highly recommended. A C
OUT
cause V
This could result in current flow through the body diode from
V
to VIN.
OUT
OUT
to exceed VIN when the system supply is removed.
OUT
, should be placed between V
OUT
OUT
and
below GND when the switch turns-off. Due to
greater than
IN
greater than CIN can
OUT
V
IN
FPF1005/6
GND
V
OUT
R
L
C
OUT
Board Layout
For best performance, all traces should be as short as possible.
To be most effective, the input and output capacitors should be
placed close to the device to minimize the effects that parasitic
trace inductances may have on normal and short-circuit
operation. Using wide traces or large copper planes for all pins
(V
, V
IN
electrical effects along with minimizing the case to ambient
thermal impedance.
FPF1005-FPF1006 Rev. F
, ON and GND) will help minimize the parasitic
OUT
7www.fairchildsemi.com
Page 8
Evaluation Board Layout
FPF1005/6 Demo board has the components and circuitry to demonstrate the load switch functions. Thermal performance of the load
switch can be improved significantly by connecting the middle pad (pin 7) to the GND area of the PCB.
Figure 19. Demo board silk screen top
and component assembly drawing.
Figure 20. Demo board top layer view.
Figure 21. Demo board bottom layer view.
Dimensional Outline and Pad Layout
FPF1005-FPF1006 IntelliMAX
TM
Advanced Load Management Products
NOTES:
A. NON-CONFORMS TO JEDEC REGISTRATION.
B. DIMENSIONS ARE IN MILLIMETERS.
C. DIMENSIONS AND TOLERANCES PER
ASME Y14.5M, 1994
FPF1005-FPF1006 Rev. F
8www.fairchildsemi.com
Page 9
TRADEMARKS
The following are registered and unregistered trademarks Fairchild Semiconductor owns or is authorized to use and is not intended to be
an exhaustive list of all such trademarks.
®
ACEx
Across the board. Around the world.™
ActiveArray™
Bottomless™
Build it Now™
CoolFET™
CROSSVOLT™
CTL™
Current Transfer Logic™
DOME™
FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS
HEREIN TO IMPROVE RELIABILITY, FUNCTION, OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE
APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER
ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS. THESE SPECIFICATIONS DO NOT EXPAND THE TERMS OF FAIRCHILD’S
WORLDWIDE TERMS AND CONDITIONS, SPECIFICALLY THE WARRANTY THEREIN, WHICH COVERS THESE PRODUCTS.
LIFE SUPPORT POLICY
FAIRCHILD’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR
SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF FAIRCHILD SEMICONDUCTOR CORPORATION.
As used herein:
1. Life support devices or systems are devices or systems
which, (a) are intended for surgical implant into the body, or
(b) support or sustain life, and (c) whose failure to perform
when properly used in accordance with instructions for use
2. A critical component is any component of a life support
device or system whose failure to perform can be reasonably
expected to cause the failure of the life support device or
system, or to affect its safety or effectiveness.
provided in the labeling, can be reasonably expected to result
in significant injury to the user.
PRODUCT STATUS DEFINITIONS
Definition of Terms
Datasheet IdentificationProduct StatusDefinition
Advance InformationFormative or In Design
This datasheet contains the design specifications for product development.
Specifications may change in any manner without notice.
This datasheet contains preliminary data; supplementary data will be
PreliminaryFirst Production
published at a later date. Fairchild Semiconductor reserves the right to make
changes at any time without notice to improve design.
No Identification NeededFull Production
This datasheet contains final specifications. Fairchild Semiconductor reserves
the right to make changes at any time without notice to improve design.
This datasheet contains specifications on a product that has been
ObsoleteNot In Production
discontinued by Fairchild semiconductor. The datasheet is printed for
reference information only.
Rev. I26
FPF1005-FPF1006 Rev. F
9www.fairchildsemi.com
Loading...
+ hidden pages
You need points to download manuals.
1 point = 1 manual.
You can buy points or you can get point for every manual you upload.