IRF7466TR [INFINEON]

Power Field-Effect Transistor, 11A I(D), 30V, 0.0125ohm, 1-Element, N-Channel, Silicon, Metal-oxide Semiconductor FET, MS-012AA, SO-8;
IRF7466TR
型号: IRF7466TR
厂家: Infineon    Infineon
描述:

Power Field-Effect Transistor, 11A I(D), 30V, 0.0125ohm, 1-Element, N-Channel, Silicon, Metal-oxide Semiconductor FET, MS-012AA, SO-8

开关 脉冲 光电二极管 晶体管
文件: 总8页 (文件大小:235K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
PD- 93884C  
IRF7466  
SMPS MOSFET  
HEXFET® Power MOSFET  
Applications  
l High Frequency Isolated DC-DC  
VDSS  
30V  
RDS(on) max(mΩ)  
ID  
12.5@VGS = 10V  
11A  
Converters with Synchronous Rectification  
for Telecom and Industrial Use  
l High Frequency Buck Converters for  
Computer Processor Power  
A
A
D
1
2
3
4
8
S
S
Benefits  
7
D
l Ultra-Low Gate Impedance  
l Very Low RDS(on)  
6
S
D
5
G
D
l Fully Characterized Avalanche Voltage  
and Current  
SO-8  
Top View  
Absolute Maximum Ratings  
Symbol  
Parameter  
Max.  
Units  
VDS  
Drain-Source Voltage  
30  
V
VGS  
Gate-to-Source Voltage  
± 20  
V
ID @ TA = 25°C  
ID @ TA = 70°C  
IDM  
Continuous Drain Current, VGS @ 10V  
Continuous Drain Current, VGS @ 10V  
Pulsed Drain Current  
Maximum Power Dissipationƒ  
Maximum Power Dissipationƒ  
Linear Derating Factor  
11  
9.0  
A
90  
2.5  
PD @TA = 25°C  
PD @TA = 70°C  
W
W
1.6  
0.02  
mW/°C  
°C  
TJ , TSTG  
Junction and Storage Temperature Range  
-55 to + 150  
Thermal Resistance  
Symbol  
RθJL  
Parameter  
Junction-to-Drain Lead  
Typ.  
–––  
Max.  
20  
Units  
RθJA  
Junction-to-Ambient „  
–––  
50  
°C/W  
Notes  through „are on page 8  
www.irf.com  
1
3/25/01  
IRF7466  
Static @ TJ = 25°C (unless otherwise specified)  
Parameter  
Min. Typ. Max. Units  
30 ––– –––  
––– 0.028 ––– V/°C Reference to 25°C, ID = 1mA  
Conditions  
V(BR)DSS  
Drain-to-Source Breakdown Voltage  
V
VGS = 0V, ID = 250µA  
V(BR)DSS/TJ Breakdown Voltage Temp. Coefficient  
–––  
–––  
1.0  
9.8 12.5  
13 17  
––– 3.0  
VGS = 10V, ID = 11A ƒ  
VGS = 4.5V, ID = 8.8A ƒ  
VDS = VGS, ID = 250µA  
VDS = 24V, VGS = 0V  
VDS = 24V, VGS = 0V, TJ = 125°C  
VGS = 16V  
mΩ  
V
RDS(on)  
VGS(th)  
IDSS  
Static Drain-to-Source On-Resistance  
Gate Threshold Voltage  
––– ––– 20  
––– ––– 100  
––– ––– 200  
––– ––– -200  
Drain-to-Source Leakage Current  
µA  
Gate-to-Source Forward Leakage  
Gate-to-Source Reverse Leakage  
IGSS  
nA  
VGS = -16V  
Dynamic @ TJ = 25°C (unless otherwise specified)  
Symbol  
gfs  
Parameter  
Forward Transconductance  
Total Gate Charge  
Min. Typ. Max. Units  
Conditions  
VDS = 15V, ID = 8.8A  
ID = 8.8A  
22  
––– –––  
S
Qg  
–––  
–––  
–––  
–––  
–––  
–––  
–––  
–––  
16  
23  
11  
Qgs  
Qgd  
Qoss  
td(on)  
tr  
Gate-to-Source Charge  
Gate-to-Drain ("Miller") Charge  
Output Gate Charge  
Turn-On Delay Time  
Rise Time  
7.4  
nC VDS = 15V  
5.3 8.0  
19 29  
VGS = 4.5V ƒ  
VGS = 0V, VDS = 15V  
VDD = 15V  
10 –––  
2.8 –––  
13 –––  
3.6 –––  
ID = 8.8A  
ns  
pF  
td(off)  
tf  
Turn-Off Delay Time  
Fall Time  
RG = 1.8Ω  
VGS = 4.5V ƒ  
VGS = 0V  
Ciss  
Coss  
Crss  
Input Capacitance  
––– 2100 –––  
––– 710 –––  
Output Capacitance  
Reverse Transfer Capacitance  
VDS = 15V  
–––  
52 –––  
ƒ = 1.0MHz  
Avalanche Characteristics  
Symbol  
EAS  
Parameter  
Single Pulse Avalanche Energy‚  
Avalanche Current  
Typ.  
–––  
Max.  
230  
Units  
mJ  
IAR  
–––  
8.8  
A
Diode Characteristics  
Symbol  
IS  
Parameter  
Min. Typ. Max. Units  
Conditions  
D
Continuous Source Current  
(Body Diode)  
MOSFET symbol  
showing the  
2.3  
––– –––  
––– –––  
A
G
ISM  
Pulsed Source Current  
(Body Diode)   
integral reverse  
p-n junction diode.  
90  
S
––– 0.8 1.3  
––– 0.66 –––  
V
TJ = 25°C, IS = 8.8A, VGS = 0V ƒ  
TJ = 125°C, IS = 8.8A, VGS = 0V ƒ  
TJ = 25°C, IF = 8.8A, VR=15V  
VSD  
Diode Forward Voltage  
trr  
Reverse Recovery Time  
Reverse Recovery Charge  
Reverse Recovery Time  
Reverse Recovery Charge  
––– 42  
––– 59  
––– 42  
––– 61  
63  
89  
63  
92  
ns  
Qrr  
trr  
nC di/dt = 100A/µs ƒ  
ns TJ = 125°C, IF = 8.8A, VR=15V  
nC di/dt = 100A/µs ƒ  
Qrr  
2
www.irf.com  
IRF7466  
1000  
100  
10  
1000  
100  
10  
VGS  
10V  
VGS  
10V  
TOP  
TOP  
5.0V  
4.5V  
4.0V  
3.5V  
3.3V  
3.0V  
5.0V  
4.5V  
4.0V  
3.5V  
3.3V  
3.0V  
BOTTOM 2.7V  
BOTTOM 2.7V  
1
2.7V  
0.1  
0.01  
2.7V  
20µs PULSE WIDTH  
T = 150 C  
J
20µs PULSE WIDTH  
T = 25 C  
J
°
°
1
0.1  
1
10  
100  
0.1  
1
10  
100  
V
, Drain-to-Source Voltage (V)  
V
, Drain-to-Source Voltage (V)  
DS  
DS  
Fig 1. Typical Output Characteristics  
Fig 2. Typical Output Characteristics  
100  
2.0  
11A  
=
I
D
°
T = 150 C  
J
1.5  
1.0  
0.5  
0.0  
10  
°
T = 25 C  
J
1
V
= 15V  
DS  
20µs PULSE WIDTH  
V
= 10V  
GS  
0.1  
2.5  
3.0  
3.5  
4.0 4.5  
5.0  
-60 -40 -20  
0
20 40 60 80 100 120 140 160  
°
V
, Gate-to-Source Voltage (V)  
T , Junction Temperature ( C)  
J
GS  
Fig 3. Typical Transfer Characteristics  
Fig 4. Normalized On-Resistance  
Vs. Temperature  
www.irf.com  
3
IRF7466  
10  
8
100000  
10000  
1000  
I
D
= 8.8A  
V
V
= 24V  
= 15V  
V
= 0V,  
f = 1 MHZ  
DS  
DS  
GS  
C
= C + C  
,
C
ds  
SHORTED  
iss  
gs  
gd  
C
= C  
rss  
gd  
C
= C + C  
oss  
ds gd  
6
Ciss  
Coss  
4
100  
Crss  
10  
2
10  
1
0
0
5
10  
15  
20  
25  
30  
100  
Q
, Total Gate Charge (nC)  
G
V
, Drain-to-Source Voltage (V)  
DS  
Fig 6. Typical Gate Charge Vs.  
Fig 5. Typical Capacitance Vs.  
Gate-to-Source Voltage  
Drain-to-Source Voltage  
1000  
100  
10  
100  
10  
1
OPERATION IN THIS AREA LIMITED  
BY R  
DS(on)  
°
T = 150 C  
J
10us  
100us  
1ms  
°
T = 25 C  
J
°
T = 25 C  
A
10ms  
°
T = 150 C  
Single Pulse  
J
V
= 0 V  
GS  
1.8  
1
0.1  
0.2  
0.1  
1
10  
100  
0.6  
1.0  
1.4  
2.2  
V
, Drain-to-Source Voltage (V)  
V
,Source-to-Drain Voltage (V)  
DS  
SD  
Fig 7. Typical Source-Drain Diode  
Fig 8. Maximum Safe Operating Area  
Forward Voltage  
4
www.irf.com  
Fig 6. On-Resistance Vs. Drain Current  
IRF7466  
12  
10  
8
RD  
VDS  
VGS  
D.U.T.  
RG  
+VDD  
-
4.5V  
6
Pulse Width ≤ 1 µs  
Duty Factor ≤ 0.1 %  
4
Fig 10a. Switching Time Test Circuit  
2
V
DS  
90%  
0
25  
50  
T
75  
100  
125  
°
150  
, Case Temperature ( C)  
C
10%  
V
GS  
t
t
r
t
t
f
d(on)  
d(off)  
Fig 10b. Switching Time Waveforms  
100  
10  
D = 0.50  
0.20  
0.10  
0.05  
0.02  
0.01  
1
P
DM  
t
1
SINGLE PULSE  
(THERMAL RESPONSE)  
0.1  
0.01  
t
2
Notes:  
1. Duty factor D =  
t / t  
1 2  
2. Peak T = P  
J
x Z  
+ T  
10  
DM  
thJA  
A
0.00001  
0.0001  
0.001  
0.01  
0.1  
1
100  
t , Rectangular Pulse Duration (sec)  
1
Fig 10. Maximum Effective Transient Thermal Impedance, Junction-to-Case  
www.irf.com  
5
IRF7466  
0.06  
0.025  
0.020  
0.015  
0.010  
0.005  
0.000  
0.04  
0.02  
0.00  
I
= 11A  
D
V
= 4.5V  
V
GS  
= 10V  
GS  
3.0  
4.0  
V
5.0  
6.0  
7.0  
8.0  
9.0  
10.0  
0
20  
40  
60  
80  
100  
Gate -to -Source Voltage (V)  
I
, Drain Current (A)  
GS,  
D
Fig 12. On-Resistance Vs. Drain Current  
Fig 13. On-Resistance Vs. Gate Voltage  
Current Regulator  
Same Type as D.U.T.  
Q
G
50KΩ  
.3µF  
VGS  
.2µF  
12V  
Q
Q
GD  
GS  
+
600  
V
DS  
D.U.T.  
I
-
D
V
G
TOP  
3.9A  
7.0A  
BOTTOM 8.8A  
V
GS  
3mA  
Charge  
500  
400  
300  
200  
100  
0
I
I
D
G
Current Sampling Resistors  
Fig 13a&b. Basic Gate Charge Test Circuit  
and Waveform  
15 V  
V
(B R )D S S  
DRIVER  
L
t
p
V
DS  
D.U.T  
AS  
R
G
+
V
DD  
-
25  
50  
75  
100  
125  
150  
I
A
20V  
°
Starting T , Junction Temperature ( C)  
0.01  
t
p
J
I
A S  
Fig 14c. Maximum Avalanche Energy  
Fig 14a&b. Unclamped Inductive Test circuit  
Vs. Drain Current  
and Waveforms  
6
www.irf.com  
IRF7466  
SO-8 Package Details  
INC HES  
M ILLIM ETER S  
DIM  
D
M IN  
M AX  
.0688  
.0098  
.018  
M IN  
1.35  
0.10  
0.36  
0.19  
4.80  
3.81  
M AX  
1.75  
0.25  
0.46  
0.25  
4.98  
3.99  
5
-
7
2
B -  
A
.0532  
.0040  
.014  
A1  
B
8
1
6
3
5
4
5
H
E
A
C
D
E
.0075  
.189  
.0098  
.196  
0 .25 (.01 0)  
M
A M  
-
-
.150  
.157  
e
e
.050 BASIC  
.025 BASIC  
1.27 BASIC  
K
x 4 5°  
6X  
e1  
e1  
H
K
0.635 BASIC  
θ
.2284  
.011  
0.16  
0°  
.2440  
5.80  
0.28  
0.41  
0°  
6.20  
0.48  
1.27  
8°  
A
.019  
.050  
8°  
- C  
-
0.1 0 (.0 04 )  
6
C
8 X  
L
8X  
L
A 1  
B
8 X  
θ
0.2 5 (.010 )  
M
C A S B S  
R E C O M M E N D E D F O O T P R IN T  
N O T E S :  
0.7 2 (.028  
8X  
)
1. D IM E N S IO N IN G A N D T O LE R A N C IN G P E R A N S I Y 14 .5M -19 82 .  
2. C O N T R O LL IN G D IM E N S IO N : IN C H .  
3. D IM E N S IO N S A R E S H O W N IN M IL LIM E T E R S (IN C H E S ).  
4. O U TL IN E C O N F O R M S TO JE D E C O U TL IN E M S -01 2A A .  
6.46 ( .2 55  
)
1.78 (.0 70 )  
8X  
5
D IM E N S IO N D O E S N O T IN C L U D E M O L D P R O TR U S IO N S  
M O LD P R O T R U S IO N S N O T TO E XC E E D 0.25 (.0 06 ).  
D IM E N S IO N S IS TH E LE N G T H O F LE A D F O R S O LD E R IN G T O  
A
S U B S TR A TE ..  
6
1 .27  
(
.05 0  
)
3 X  
SO-8 Part Marking  
www.irf.com  
7
IRF7466  
SO-8 Tape and Reel  
TERM INAL NUM BER  
1
12.3  
11.7  
(
(
.484  
.461  
)
)
8.1 ( .318  
7.9 ( .312  
)
)
FEED DIRECTION  
N OTES :  
1. CO NTRO LLING DIM E NSIO N : M ILLIM ETER .  
2. ALL DIM ENS ION S ARE SHO W N IN M ILL IM E TER S(INC HES).  
3. OU TL IN E CO N FO RM S TO EIA-481 & EIA-541.  
330.00  
(12.992)  
M AX.  
14.40 ( .566  
12.40 ( .488  
)
)
NOTES  
:
1. CO NTROLLING DIM ENSION : M ILLIMETER.  
2. OUTLINE CONFORM S TO EIA-481 & EIA-541.  
Notes:  
Repetitive rating; pulse width limited by  
ƒPulse width 400µs; duty cycle 2%.  
max. junction temperature.  
„When mounted on 1 inch square copper board, t<10 sec  
‚Starting TJ = 25°C, L = 5.9mH  
RG = 25, IAS = 8.8A.  
Data and specifications subject to change without notice.  
This product has been designed and qualified for the Industrial market.  
Qualification Standards can be found on IR’s Web site.  
IR WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 90245, USA Tel: (310) 252-7105  
TAC Fax: (310) 252-7903  
Visit us at www.irf.com for sales contact information.3/01  
8
www.irf.com  

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