AUIRS2301STR [INFINEON]

HIGH AND LOW SIDE DRIVER; 高端和低端驱动器
AUIRS2301STR
型号: AUIRS2301STR
厂家: Infineon    Infineon
描述:

HIGH AND LOW SIDE DRIVER
高端和低端驱动器

驱动器 MOSFET驱动器 驱动程序和接口 接口集成电路 光电二极管 PC
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Sept 8, 2009  
Automotive Grade  
AUIRS2301S  
HIGH AND LOW SIDE DRIVER  
Product Summary  
Features  
Floating channel designed for bootstrap operation  
VOFFSET  
600V Max  
Fully operational to +600V  
Tolerant to negative transient voltage – dV/dt immune  
Gate drive supply range from 5V to 20V  
Undervoltage lockout for both channels  
3.3V, 5V and 15V input logic compatible  
Matched propagation delay for both channels  
Outputs in phase with inputs  
Lower di/dt gate driver for better noise immunity  
Leadfree, RoHS compliant  
Automotive qualified*  
VOUT  
5V – 20V  
120mA / 250mA  
Io+ & I o- (min)  
tON & tOFF (typical)  
Delay Matching  
220ns / 200ns  
50ns  
Package Options  
Typical Applications  
o
o
o
o
Automotive motor drives  
Servo drives  
Micro inverter drives  
General purpose three phase inverters  
8-Lead SOIC  
AUIRS2301S  
Typical Connection Diagram  
www.irf.com  
© 2009 International Rectifier  
1
AUIRS2301S  
Table of Contents  
Page  
Typical Connection Diagram  
Description  
1
3
Feature Comparison  
3
Qualification Information  
Absolute Maximum Ratings  
Recommended Operating Conditions  
Dynamic Electrical Characteristics  
Static Electrical Characteristics  
Functional Block Diagram  
Input/output Timing Diagram  
Lead Definitions  
4
5
5
6
6
7
8
9
Lead Assignments  
9
Application Information and Additional Details  
Package Details  
10  
12  
13  
14  
15  
Tape and Reel Details  
Part Marking Information  
Ordering Information  
www.irf.com  
© 2009 International Rectifier  
2
AUIRS2301S  
Description  
The AUIRS2301S is a high voltage, high speed power MOSFET and IGBT driver with independent high- and  
low-side referenced output channels. Proprietary HVIC and latch immune CMOS technologies enable  
ruggedized monolithic construction. The logic input is compatible with standard CMOS or LSTTL output, down to  
3.3V logic. The output drivers feature a high pulse current buffer stage. The floating channel can be used to drive  
an N-channel power MOSFET or IGBT in the high-side configuration which operates up to 600V.  
www.irf.com  
© 2009 International Rectifier  
3
AUIRS2301S  
Qualification Information†  
Automotive  
(per AEC-Q100††)  
Comments: This family of ICs has passed an  
Automotive qualification. IR’s Industrial and Consumer  
qualification level is granted by extension of the higher  
Automotive level.  
Qualification Level  
MSL3††† 260°C  
Moisture Sensitivity Level  
(per IPC/JEDEC J-STD-020)  
Class M2  
(per AEC-Q100-003)  
Machine Model  
Class H1C  
per AEC-Q100-002  
Class C5  
(per AEC-Q100-011)  
Class II , Level B  
(per AEC-Q100-004)  
Yes  
ESD  
Human Body Model  
(
)
Charged Device Model  
IC Latch-Up Test  
RoHS Compliant  
††  
Qualification standards can be found at International Rectifier’s web site http://www.irf.com/  
Exceptions to AEC-Q100 requirements are noted in the qualification report.  
††† Higher MSL ratings may be available for the specific package types listed here. Please contact your  
International Rectifier sales representative for further information.  
www.irf.com  
© 2009 International Rectifier  
4
AUIRS2301S  
Absolute Maximum Ratings  
Absolute Maximum Ratings indicate sustained limits beyond which damage to the device may occur. All voltage  
parameters are absolute voltages referenced to COM. The thermal resistance and power dissipation ratings are  
measured under board mounted and still air conditions.  
Symbol  
Definition  
Min.  
Max.  
Units  
VB  
VS  
High-side floating absolute voltage  
High-side floating supply offset voltage  
High-side floating output voltage  
Low-side and logic fixed supply voltage  
Low-side output voltage  
-0.3  
VB - 25  
VS - 0.3  
-0.3  
625  
VB + 0.3  
VB + 0.3  
25  
VHO  
VCC  
VLO  
VIN  
V
-0.3  
VCC + 0.3  
Logic input voltage (HIN & LIN)  
COM -0.3 VCC + 0.3  
dVS/dt  
PD  
Allowable offset supply voltage transient  
Package power dissipation @ TA 25°C  
50  
0.625  
200  
V/ns  
W
RthJA  
TJ  
Thermal resistance, junction to ambient  
Junction temperature  
°C/W  
150  
°C  
Storage temperature  
TS  
TL  
-50  
150  
300  
Lead temperature (soldering, 10 seconds)  
Recommended Operating Conditions  
The input/output logic timing diagram is shown in Fig. 1. For proper operation the device should be used within  
the recommended conditions. The VS offset rating is tested with all supplies biased at 15V differential.  
Symbol  
VB  
Definition  
High-side floating supply absolute voltage  
High-side floating supply offset voltage  
High-side floating output voltage  
Low-side and logic fixed supply voltage  
Low-side output voltage  
Min.  
VS + 5  
† 1  
Max.  
VS + 20  
600  
Units  
VS  
VHO  
VCC  
VLO  
VIN  
VS  
VB  
V
5
20  
0
VCC  
Logic input voltage (HIN & LIN)  
Ambient temperature  
COM  
-40  
VCC  
TA  
125  
°C  
†: Logic operational for VS of -5 V to +600 V. Logic state held for VS of -5 V to – VBS.  
(Please refer to the Design Tip DT97 -3 for more details).  
www.irf.com  
© 2009 International Rectifier  
5
AUIRS2301S  
Static Electrical Characteristics  
VBIAS (VCC, VBS) = 15V and TA = 25°C unless otherwise specified. The VIL, VIH and IIN parameters are  
referenced to COM and are applicable to the respective input leads: HIN and LIN. The VO, IO and Ron  
parameters are referenced to COM and are applicable to the respective output leads: HO and LO.  
Symbol  
VIH  
Definition  
Logic “1” input voltage  
Min  
2.5  
Typ  
Max  
Units  
Test conditions  
V
VCC = 10V to 20V  
VIL  
Logic “0” input voltage  
0.8  
0.2  
0.1  
50  
VOH  
VOL  
High level output voltage, VBIAS - VO  
Low level output voltage, VO  
Offset supply leakage current  
Quiescent VBS supply current  
Quiescent VCC supply current  
V
IO = 2mA  
ILK  
VB = VS = 600V  
VIN = 0V or 5V  
IQBS  
IQCC  
60  
160  
260  
µA  
60  
160  
5
260  
20  
5
IIN+  
IIN-  
VCCUV+  
VBSUV+  
Logic “1” input bias current  
Logic “0” input bias current  
VCC and VBS supply undervoltage positive  
going threshold  
VIN = 5V  
VIN = 0V  
3.3  
3
4.1  
3.8  
5
VCCUV-  
VBSUV-  
VCC and VBS supply undervoltage negative  
going threshold  
4.7  
V
VCCUVH  
VBSUVH  
Hysteresis  
0.1  
0.3  
VO = 0V,  
PW 10µs  
VO = 15V,  
PW 10µs  
IO+  
IO-  
Output high short circuit pulsed current  
Output low short circuit pulsed current  
200  
350  
mA  
Dynamic Electrical Characteristics  
VBIAS (VCC, VBS) = 15V, CL = 1000pF, TA = 25°C unless otherwise specified.  
Symbol  
Definition  
Turn-on propagation delay  
Turn-off propagation delay  
Delay matching, HS & LS turn-on/off  
Turn-on rise time  
Min  
Typ  
220  
200  
0
Max  
300  
280  
50  
Units  
Test conditions  
VS = 0V  
ton  
toff  
MT  
tr  
VS = 0V or 600V  
ns  
130  
50  
220  
80  
VS = 0V  
tf  
Turn-off fall time  
www.irf.com  
© 2009 International Rectifier  
6
AUIRS2301S  
Functional Block Diagram:  
www.irf.com  
© 2009 International Rectifier  
7
AUIRS2301S  
Input/Output Pin Equivalent Circuit Diagrams:  
VB  
ESD  
Diode  
25V  
HO  
ESD  
Diode  
VS  
600V  
VCC  
ESD  
Diode  
LO  
25V  
ESD  
Diode  
COM/VSS  
www.irf.com  
© 2009 International Rectifier  
8
AUIRS2301S  
Lead Definitions:  
PIN# Symbol  
Description  
1
2
VCC  
HIN  
LIN  
COM  
LO  
Low-side and logic fixed supply  
Logic input for high-side gate driver outputs (HO), in phase with HO  
Logic input for low-side gate driver outputs (LO), in phase with LO  
Low-side return  
Low-side gate drive output  
High-side floating supply return  
3
4
5
6
VS  
7
8
HO  
VB  
High-side gate drive output  
High-side floating supply  
Lead Assignments  
www.irf.com  
© 2009 International Rectifier  
9
AUIRS2301S  
Application Information and Additional Details  
Figure 1: Input/Output Timing Diagram  
Figure 2: Switching Time Waveform Definitions  
Figure 3: Delay Matching Waveform Definitions  
www.irf.com  
© 2009 International Rectifier  
10  
AUIRS2301S  
Tolerability to Negative VS Transients  
The AUIRS2301S has been seen to withstand negative VS transient conditions on the order of -25V for a period  
of 100 ns (VBIAS (VCC, VBS) = 15V and TA = 25°C).  
An illustration of the AUIRS2301S performance can be seen in Figure 4.  
Even though the AUIRS2301S has been shown able to handle these negative VS transient conditions, it is highly  
recommended that the circuit designer always limit the negative VS transients as much as possible by careful  
PCB layout and component use.  
0
100  
200  
300  
400  
500  
Time (ns)  
Figure 4: -Vs Transient results  
www.irf.com  
© 2009 International Rectifier  
11  
AUIRS2301S  
Package Details  
www.irf.com  
© 2009 International Rectifier  
12  
AUIRS2301S  
Tape and Reel Details  
LOADED TAPE FEED DIRECTION  
B
A
H
D
F
C
NOTE : CONTROLLING  
DIMENSION IN MM  
E
G
CARRIER TAPE DIMENSION FOR 8SOICN  
Metric Imperial  
Code  
A
B
C
D
E
F
G
H
Min  
7.90  
3.90  
11.70  
5.45  
6.30  
5.10  
1.50  
1.50  
Max  
8.10  
4.10  
12.30  
5.55  
6.50  
5.30  
n/a  
Min  
Max  
0.318  
0.161  
0.484  
0.218  
0.255  
0.208  
n/a  
0.311  
0.153  
0.46  
0.214  
0.248  
0.200  
0.059  
0.059  
1.60  
0.062  
F
D
B
C
A
E
G
H
REEL DIMENSIONS FOR 8SOICN  
Metric  
Imperial  
Code  
A
B
C
D
E
F
G
H
Min  
329.60  
20.95  
12.80  
1.95  
98.00  
n/a  
14.50  
12.40  
Max  
330.25  
21.45  
13.20  
2.45  
102.00  
18.40  
17.10  
14.40  
Min  
12.976  
0.824  
0.503  
0.767  
3.858  
n/a  
Max  
13.001  
0.844  
0.519  
0.096  
4.015  
0.724  
0.673  
0.566  
0.570  
0.488  
www.irf.com  
© 2009 International Rectifier  
13  
AUIRS2301S  
Part Marking Information  
www.irf.com  
© 2009 International Rectifier  
14  
AUIRS2301S  
Ordering Information  
Base Part Number  
AUIRS2301  
Standard Pack  
Package Type  
Complete Part Number  
Form  
Quantity  
Tube/Bulk  
95  
AUIRS2301S  
SOIC8  
Tape and Reel  
2500  
AUIRS2301STR  
he information provided in this document is believed to be accurate and reliable. However, International Rectifier assumes no  
responsibility for the consequences of the use of this information. International Rectifier assumes no responsibility for any infringement of  
patents or of other rights of third parties which may result from the use of this information. No license is granted by implication or  
otherwise under any patent or patent rights of International Rectifier. The specifications mentioned in this document are subject to change  
without notice. This document supersedes and replaces all information previously supplied.  
For technical support, please contact IR’s Technical Assistance Center  
http://www.irf.com/technical-info/  
WORLD HEADQUARTERS:  
233 Kansas St., El Segundo, California 90245  
Tel: (310) 252-7105  
www.irf.com  
© 2009 International Rectifier  
15  

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