FAN7362M [FAIRCHILD]
High-Side Gate Driver; 高边栅极驱动器型号: | FAN7362M |
厂家: | FAIRCHILD SEMICONDUCTOR |
描述: | High-Side Gate Driver |
文件: | 总9页 (文件大小:176K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
September 2005
FAN7361, FAN7362
High-Side Gate Driver
Features
Description
•
Floating Channel Designed for Bootstrap Operation to
+600V.
The FAN7361/2, a monolithic high-side gate driver IC, can drive
MOSFETs and IGBTs which operate up to +600V. Fairchild’s
high voltage process and common-mode noise canceling tech-
nique provides stable operation of the high-side driver under
high dv/dt noise circumstances. An advanced level short circuit
allows high-side gate driver operation up to VS=-9.8V(typ.) for
VBS=15V.
•
Typically 250mA/500mA Sourcing/Sinking Current Driving
Capability
•
•
•
•
Common-Mode dv/dt Noise Canceling Circuit
VCC & VBS Supply Range from 10V to 20V
UVLO Function
The UVLO circuit prevents malfunction when VBS is lower than
the specified threshold voltage. Output drivers typically source/
sink 250mA/500mA, respectively, which is suitable for fluores-
cent lamp ballast, PDP scan driver, motor control, and so on.
Output In-phase with Input
Typical Applications
•
•
•
Fluorescent Lamp Ballast
PDP Scan Driver
Motor Control
8SOIC
1
©2005 Fairchild Semiconductor Corporation
FAN7361,FAN7362 Rev. 1.0.0
1
www.fairchildsemi.com
Block Diagrams
HIGH-SIDE DRIVER
UVLO
VB
8
VCC
3
LEVEL
SHIFTER
HO
VS
7
6
R R
S
NOISE
CANCELLER
Q
SHORT PULSE
GENERATOR
IN
2
4
GND
Pin Assignments
1
2
3
4
8
7
6
5
NC
IN
VB
HO
FAN7361/7362
VCC
VS
GND
NC
Pin Definitions
Pine Number
Pin Name
I/O
Pin Function Description
1
2
3
4
5
6
7
8
NC
IN
-
I
No Connection
Logic Input for High Side Gate Driver Output
Supply Voltage
Vcc
I
GND
I
Logic Ground
NC
VS
HO
VB
-
No Connection
I
High Voltage Floating Supply Return
High Side Driver Output
High Side Floating Supply
O
I
2
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FAN7361,FAN7362 Rev. 1.0.0
Absolute Maximum Ratings
Parameter
Highg side offset voltage
Symbol
Min.
Max.
VB+0.3
625
Unit
VS
VB-25
High side floating supply voltage
High side floating output voltage HO
Logic fixed supply voltage
Logic input voltage (IN)
-0.3
VB
VHO
VS-0.3
VB+0.3
25
V
VCC
VIN
-0.3
-0.3
Vcc+0.3
± 50
Allowable offset voltage slew rate
Power dissipation
dVs/dt
PD
-
-
-
-
-
V/ns
W
0.625
200
Thermal resistance, junction to ambient
Junction temperature
Rthja
TJ
°C/W
°C
150
Storage temperature
TS
150
°C
Notes:
1.Absolute maximum ratings indicate sustained limits beyond which damage to the device may occur. All voltage parameters are
absolute voltage referenced to GND, all currents are defined positive into any lead.
Recommended Operating Ratings
Parameter
High side floating supply voltage
High side floating supply offset voltage
High side (HO) output voltage
Logic input voltage (IN)
Symbol
VB
Min.
VS+10
6-Vcc
VS
Max.
VS+20
600
Unit
V
VS
VHO
VIN
VB
GND
10
Vcc
Logic supply voltage
VCC
TA
20
Ambient Temperature
-40
125
°C
ESD Level
Parameter
Pins
Conditions
Level
±1500
±1000
±300
Unit
IN, VCC, COM, VB, HO
Human Body Model (HBM)
R=1.5kΩ, C=100pF
VS
V
Machine Model (MM)
All Pins
All Pins
C=200pF
Charged Device Model (CDM)
±500
3
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FAN7361,FAN7362 Rev. 1.0.0
Electrical Characteristics
(VBIAS(VCC, VBS)=15.0V, TA = 25°C, unless otherwise specified. The VIN and IIN parameters are referenced to GND. The VO and IO
parameters are referenced to VS.
Parameter
Symbol
VBSUV+(FAN7361)
VBSUV+(FAN7362)
VBSUV-(FAN7361)
VBSUV-(FAN7362)
VBSHYS(FAN7361)
VBSHYS(FAN7362)
ILK
Conditions
Min. Typ. Max. Unit
8.2
9.2
8.6
8.6
8.2
0.5
0.4
-
10.2
9.6
9.2
9.2
-
VBS supply under voltage positive
becoming threshold
VIN=0V
VIN=0V
VIN=0V
7.6
7.4
VBS supply under voltage negative
becoming threshold
V
7.2
-
VBS supply under voltage lockout hyster-
esis
-
-
Offset supply leakage current
Quiescent VBS supply current
Quiescent VCC supply current
Operating VBS supply current
VB=VS=HO=600V
-
10
80
75
550
-
IQBS
VIN=0V or 5V
-
50
30
420
-
µA
IQCC
VIN=0V
-
-
IPBS
CL=1nF, f=10kHz
VIH
-
-
-
-
3.6
3.3
-
(FAN7361)
Logic “1” input voltage
Logic “0” input voltage
VIH
-
-
(FAN7362)
VIL
-
1.0
0.8
(FAN7361)
V
VIL
-
-
(FAN7362)
High level output voltage,
VΒ-VHO
VOH
No load
-
-
0.1
Low level output voltage, VHO
Logic “1” input bias current
VOL
IIN+
IIN-
No load
VIN=5V
VIN=0V
-
-
-
-
0.1
90
2.0
-
50
µA
Logic “0” input bias current
1.0
250
Output high short circuit pulse current
Output low short circuit pulsed current
IO+
VHO=0V, VIN=5V, PW ≤ 10us 200
mA
V
VHO=15V, VIN=0V,
400
IO-
500
-9.8
-
PW ≤ 10us
Allowable negative VS pin voltage for IN
signal propagation to HO
-
VS
-
-7
Dynamic Electrical Characteristics
(VBIAS(VCC, VBS) = 15.0V, VS=GND, CL=1000pF and TA = 25°C, unless otherwise specified.
Parameter
Turn-on propagation delay
Turn-off propagation delay
Turn-on rise time
Symbol
Conditions
Min. Typ. Max. Unit
ton
toff
tr
VS=0V
-
-
-
-
120
90
200
180
160
100
VS=0V or 600V
ns
-
-
70
Turn-off fall time
tf
30
4
www.fairchildsemi.com
FAN7361,FAN7362 Rev. 1.0.0
Typical Characteristics
VCC=15V
IN=COM=0V
Fig. 1 IQCC vs. Supply Voltage
Fig. 2 Input Bias Current vs. Supply Voltage
10.0
9.5
9.0
8.5
8.0
7.5
7.0
6.5
6.0
5.5
5.0
FAN7361VBSSUV+
FAN7362VBSSUV+
FAN7361VBSSUV-
FAN7362VBSSUV-
-40
-20
0
20
40
60
80
100
120
AMBIENT TEMPERATURE[ 'C]
Fig. 3 VBS UVLO vs. Temperature
Fig. 4 Turn On/Off Propagation Time vs. Temperature
Fig. 5 Rising/Falling Time vs. Temperature
Fig. 6 Output Sinking/Sourcing Current vs. Temperature
5
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FAN7361,FAN7362 Rev. 1.0.0
Switching Time Definitions
5V
Vcc=15V
50%
50%
IN
10µF
0.1µF
VB
0.1µF
15V
10µF
tr
tf
toff
VS
HVIC
ton
GND
CL
90%
90%
IN
HO
HO-VS
10%
10%
Fig. 8 Input/Output Timing Diagram
Fig. 7 Switching Time Test Circuit
Typical Application Circuit
DB
Up to 600V
VCC
IN
VCC
VB
3
8
CBS
2
7
FAN7362
IN
HO
LOAD
4
6
VS
GND
L
C1
ON / OFF
CONTROLLER
C2
LAMP
6
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FAN7361,FAN7362 Rev. 1.0.0
Mechanical Dimensions
Package
8SOP
7
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FAN7361,FAN7362 Rev. 1.0.0
Ordering Information
Device
Package
Operating Temperature
Packing
Tube
FAN7361M
FAN7361MX
FAN7362M
FAN7362MX
Tape & Reel
Tube
8SOIC
-40°C ~ +125°C
Tape & Reel
8
www.fairchildsemi.com
FAN7361,FAN7362 Rev. 1.0.0
9
www.fairchildsemi.com
FAN7361,FAN7362 Rev.1.0.0
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