STK621-061-E [SANYO]

3-phase Inverter Motor Drive Inverter Hybrid IC; 三相变频电机驱动逆变器的混合集成电路
STK621-061-E
型号: STK621-061-E
厂家: SANYO SEMICON DEVICE    SANYO SEMICON DEVICE
描述:

3-phase Inverter Motor Drive Inverter Hybrid IC
三相变频电机驱动逆变器的混合集成电路

电机 驱动
文件: 总8页 (文件大小:87K)
中文:  中文翻译
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Ordering number : ENA1032A  
Thick-Film Hybrid IC  
3-phase Inverter Motor Drive  
STK621-061-E  
Inverter Hybrid IC  
Overview  
This IC is a 3-phase inverter power hybrid IC containing power elements (IGBT and FRD), pre-driver, overcurrent and  
excessive temperature protection circuit.  
Application  
3-phase inverter motor drive  
Features  
Integrates power elements (IGBT and FRD), pre-driver, and protective circuit.  
Protective circuits including overcurrent (bus line), excessive temperature and pre-drive low voltage protection are  
built in.  
Direct input of CMOS level control signals without an insulating circuit (photocoupler, etc) is possible.  
Single power supply drive is possible by using a bootstrap circuit with a built-in IC  
Temperature monitor is possible by the thermistor inside the IC  
Built-in simultaneous upper/lower ON prevention circuit to prevent arm shorting through simultaneous ON input for  
the upper and lower side transistors.  
(Dead time is required for preventing shorting due to switching delay.)  
SIP (The single in-line package) of the transfer full mold structure.  
Any and all SANYO Semiconductor Co.,Ltd. products described or contained herein are, with regard to  
"standard application", intended for the use as general electronics equipment. The products mentioned herein  
shall not be intended for use for any "special application" (medical equipment whose purpose is to sustain life,  
aerospace instrument, nuclear control device, burning appliances, transportation machine, traffic signal system,  
safety equipment etc.) that shall require extremely high level of reliability and can directly threaten human lives  
in case of failure or malfunction of the product or may cause harm to human bodies, nor shall they grant any  
guarantee thereof. If you should intend to use our products for new introduction or other application different  
from current conditions on the usage of automotive device, communication device, office equipment, industrial  
equipment etc. , please consult with us about usage condition (temperature, operation time etc.) prior to the  
intended use. If there is no consultation or inquiry before the intended use, our customer shall be solely  
responsible for the use.  
Specifications of any and all SANYO Semiconductor Co.,Ltd. products described or contained herein stipulate  
the performance, characteristics, and functions of the described products in the independent state, and are not  
guarantees of the performance, characteristics, and functions of the described products as mounted in the  
customer's products or equipment. To verify symptoms and states that cannot be evaluated in an independent  
device, the customer should always evaluate and test devices mounted in the customer  
's products or  
equipment.  
O0312HKPC 013-06-0028 No.A1032-1/8  
STK621-061-E  
Specifications  
Absolute Maximum Ratings at Tc = 25°C  
Parameter  
Supply voltage  
Symbol  
Conditions  
Ratings  
unit  
V
V
V
+ - , surge < 500V  
*1  
*2  
450  
600  
30  
CC  
Collector-emitter voltage  
Output current  
+ - U (V, W) or U (V, W) - −  
V
CE  
I
+, , U, V, W terminal current  
A
O
Output peak current  
Pre-driver supply voltage  
Input signal voltage  
FAULT terminal voltage  
Maximum loss  
Iop  
+, , U, V, W terminal current PW = 100μs  
45  
A
VD1, 2, 3, 4  
VB1 - U, VB2 - V, VB3 - W, V  
DD  
- V  
SS  
20  
V
V
HIN1, 2, 3, LIN1, 2, 3 terminal  
FAULT terminal  
0 to 7  
20  
V
IN  
VFAULT  
Pd  
V
Per 1 channel  
49  
W
Junction temperature  
Storage temperature  
Operating temperature  
Tightening torque  
Tj  
IGBT, FRD junction temperature  
150  
°C  
°C  
°C  
Nm  
VRMS  
Tstg  
TC  
-40 to +125  
-20 to +100  
1.17  
H-IC case temperature  
A screw part at use M4 type screw  
50Hz sine wave AC 1 minute  
*3  
*4  
Withstand voltage  
Vis  
2000  
In the case without the instruction, the voltage standard is - terminal = V terminal voltage.  
SS  
*1 Surge voltage developed by the switching operation due to the wiring inductance between the + and –terminals.  
*2 VD1 = between VB1-U, VD2 = VB2-V, VD3 = VB3-W, VB4 = V -V , terminal voltage.  
DD SS  
*3 Flatness of the heat-sink should be lower than 0.25mm.  
*4 The test condition is AC 2500V, 1 second.  
Electrical Characteristics at Tc=25°C, VD=15V  
Test  
Ratings  
typ  
Parameter  
Symbol  
Conditions  
unit  
Circuit  
min  
max  
Power output part  
Collector-to-emitter cut-off current  
Boot-strap diode reverse current  
Collector-to-emitter saturation voltage  
I
V
= 600V  
Fig.1  
Fig.1  
0.5  
mA  
mA  
CE  
IR (BD)  
CE  
VR (BD) = 600V  
0.5  
V
(SAT)  
I
= 15A  
Upper side  
Lower side  
Upper side  
Lower side  
1.8  
2.0  
1.7  
1.9  
2.1  
2.5  
V
V
CE  
O
Fig.2  
Fig.3  
Diode forward voltage  
V
I
= -15A  
V
F
O
V
Junction-to-substrate thermal resistance  
Control (Pre-driver) part  
θj-c (T)  
θj-c (D)  
IGBT  
FWD  
°C/W  
°C/W  
Pre-drive power supply consumption  
electric current  
I
VD1, 2, 3 = 15V  
VD4 = 15V  
0.07  
2
0.4  
5
D
Fig.4  
mA  
Input ON voltage  
V
Output ON  
0.8  
V
V
IH  
Input OFF voltage  
V
Output OFF  
3.0  
IL  
Protection part  
Excessive temperature  
TSD  
The substrate surface  
100  
46  
120  
58  
°C  
A
Overcurrent protection electric current  
Pre-drive low voltage protection  
Fault terminal input electric current  
Fault clearness delay time  
ISD  
PW = 100μs  
Fig.5  
UVLO  
IOSD  
FLTCLR  
10  
12  
V
VFault = 0.1V  
0.5  
mA  
After each protection  
operation ending  
18  
90  
80  
ms  
Board Temperature Mounting resistance  
Rt  
Resistance between the Fault  
110  
kΩ  
and V  
terminals  
SS  
Switching time  
tON  
tOFF  
ISO  
I
= 15A, Inductive load  
0.8  
1.0  
μs  
μs  
V
O
O
Fig.6  
Electric current output signal level  
I
= 15A  
0.141  
In the case without the instruction, the voltage standard is - terminal = V terminal voltage.  
SS  
No.A1032-2/8  
STK621-061-E  
Notes  
1. Input ON voltage indicates a value to turn on output stage IGBT.  
Input OFF voltage indicates a value to turn off output stage IGBT.  
At the time of output ON, set the input signal voltage 0V to V (MAX).  
IH  
At the time of output OFF, set the input signal voltage V (MIN) to 5V.  
IL  
2. When the internal protection circuit operates, there is a Fault signal ON (When the Fault terminal is low level, Fault  
signal is ON state : output form is open DRAIN) but the Fault signal doesn't latch.  
After protection operation ends, it returns automatically within about 18ms to 80ms and resumes operation beginning  
condition. So, after Fault signal detection, set OFF (HIGH) to all input signals at once.  
However, the operation of pre-drive power supply low voltage protection (UVLO: it has a hysteresis about 0.3V) is  
as follows.  
Upper side There is no Fault signal output, but it does a corresponding gate signal OFF.  
Incidentally, it returns to the regular operation when recovering to the normal voltage, but the latch  
continues among input signal ON (LOW).  
Lower side It outputs Fault signal with gate signal OFF.  
However, it is different from the protection operation of upper side, it is automatically resets about  
18ms to 80ms later and resumes operation beginning condition when recovering to normal voltage.  
(The protection operation doesn't latch by the input signal.)  
3. When assembling the hybrid IC on the heat sink with M4 type screw, tightening torque range is 0.79N•m to 1.17N•m.  
Flatness of the heat-sink should be lower than 0.25mm.  
4. The pre-drive low voltage protection is the feature to protect a device when the pre-driver supply voltage declines  
with the operating malfunction. As for the pre-driver supply voltage decline in case of operation beginning, and so on,  
we request confirmation in the set.  
Package Dimensions  
unit:mm (typ)  
6.0  
1.5  
70.0  
3.5  
7.0  
5.0  
1
22  
1.5  
3.5  
0.5  
2.54  
0.75  
5.0  
21 2.54=53.34  
5.0  
10.0  
74.0  
64.0  
2.7  
78.0  
82.0  
No.A1032-3/8  
STK621-061-E  
Internal Equivalent Circuit Diagram  
VB1(1)  
CB  
U(2)  
VB2(4)  
CB  
V(5)  
VB3(7)  
CB  
W(8)  
DB DB DB  
U.V.  
U.V.  
U.V.  
+(10)  
Shunt Resistor  
-(12)  
Level  
Shifter  
Level  
Shifter  
Level  
Shifter  
HIN1(13)  
HIN2(14)  
HIN3(15)  
LIN1(16)  
LIN2(17)  
LIN3(18)  
FAULT(19)  
ISO(20)  
Logic  
Logic  
Logic  
Latch time is 18ms to 80ms  
(Automatic reset)  
Latch  
Over-Current  
V
(21)  
(22)  
DD  
Over-temp.  
V
SS  
V
-Under Voltage  
DD  
Thermistor  
No.A1032-4/8  
STK621-061-E  
Test Circuit  
Fig 1: I  
CE  
I
CE  
1
2
U+  
10  
2
V+  
10  
5
W+  
10  
8
U-  
2
V-  
5
W-  
VD1=15V  
M
A
M
N
8
12  
12  
12  
4
5
VD2=15V  
VD3=15V  
VD4=15V  
V
CE  
7
8
21  
22  
N
Fig 2: V (SAT)  
CE  
1
U+  
10  
2
V+  
10  
5
W+  
10  
8
U-  
2
V-  
5
W-  
8
VD1=15V  
VD2=15V  
VD3=15V  
VD4=15V  
M
2
M
N
4
5
12  
16  
12  
17  
12  
18  
m
13  
14  
15  
I
V
O
7
8
V
(SAT)  
CE  
21  
m
22  
N
Fig 3: V  
F
M
U+  
10  
2
V+  
10  
5
W+  
10  
8
U-  
2
V-  
5
W-  
8
M
N
12  
12  
12  
V
I
O
V
F
N
Fig 4: I  
D
I
D
A
VD1  
1
VD2  
4
VD3  
7
VD4  
21  
m
VD*  
m
n
n
2
5
8
22  
No.A1032-5/8  
STK621-061-E  
Fig 5: ISD  
1
2
2
VD1=15V  
VD2=15V  
VD3=15V  
Input signal  
4
5
7
8
I
O
I
SD  
I
O
21  
VD4=15V  
100μS  
Input signal  
16  
22  
12  
Fig 6: Switching Time  
1
2
Input signal  
(0 to 5V)  
10  
2
VD1=15V  
VD2=15V  
VD3=15V  
4
5
90%  
7
8
V
CC  
I
O
CS  
10%  
21  
VD4=15V  
I
O
tON  
tOFF  
Input signal  
16  
22  
12  
Example of the application circuit  
STK621-061-E  
+
-
1
2
4
5
7
8
10  
12 13 14 15 16 17 18 19 20 21 22  
CB  
CB  
CB  
CS  
M
Control Logic  
+
-
+
V
CC  
CI  
V
=15V  
DD  
CD  
No.A1032-6/8  
STK621-061-E  
Recommendation Operating Conditions  
min  
typ  
280  
max  
400  
Parameter  
Supply voltage  
Symbol  
Conditions  
+ - −  
unit  
V
V
0
CC  
Pre-driver supply voltage  
VD1, 2, 3  
VD4  
VB1 - U, VB2 - V, VB3 - W  
12.5  
13.5  
0
15  
15  
17.5  
16.5  
0.3  
5
V
V
V
- V *1  
SS  
DD  
Input ON voltage  
Input OFF voltage  
PWM frequency  
Dead time  
V
V
(ON)  
HIN1, HIN2, HIN3,  
IN  
LIN1, LIN2, LIN3 Terminal  
(OFF)  
3.5  
1
IN  
fPWM  
DT  
20  
kHz  
μs  
Upper/lower input signal downtime  
‘M4’ Type Screw  
2
Tightening torque  
MT  
0.79  
1.17  
Nm  
*1. Pre-driver power supply (VD4 = 15 1.5V) must have the capacity of I = 20mA (DC), 0.5A (Peak).  
O
Usage Precaution  
1. Single power supply drive is possible by using a bootstrap circuit with a built-in IC.  
(When not using bootstrap circuit, each upper side pre-drive power supply needs an independent power supply.  
Externally set.)  
Also, the upper side power supply voltage sometimes declines by the way of controlling. Confirm it.  
2. Because the jump voltage which is accompanied by the vibration in case of switching operation occurs by the  
influence of the floating inductance of the wiring of the outer power supply which is connected with of the + terminal  
and the –terminal, restrains and spares serge voltage being as the connection of the snubber circuit  
(Capacitor/CS/about 0.1 - 10μF) for the voltage absorption with the neighborhood as possible between + and the -  
terminal, and so on, with making a wiring length (among the terminals each from CI) short and making a wiring  
inductance small.  
3. ISO terminal (20pin) is for the electric current monitor. Be careful, because the overcurrent protection does not  
operate when short-circuiting in the ISO terminal and the V terminal.  
SS  
4. Output form of the FAULT terminal is open DRAIN (it is operating as FAULT when becoming LOW).  
When the pull up with the resistance, use above 5.6kΩ.  
5. Zener diode with 5V (5.0 - 5.4V) is connected with the inside of the signal input terminal.When inputting the voltage  
which exceeds 5V,connect resistor to between the side of the power and the signal input terminal,for the input current  
of the signal input terminal become equal to or less than 0.5mA.  
This resistor is effective with the noise absorption of the signal terminal,too.  
6. The overcurrent protection feature operates only when it is possible to do a circuit control normally. For the safety,  
put a fuse, and so on in the V  
CC  
line.  
7. Because the IC sometimes destroys and bursts when motor connection terminal (2pin, 5pin, 8pin) becomes open  
while the motor turns, especially, be careful of the connection ( the soldering condition ) of this terminal.  
8. If - terminal and V terminal are short-circuited, since an over-current protection (ISD) value will become lower  
SS  
than the inside setting value of HIC, please do not connect externally.  
(–terminal and V terminal are connected inside HIC)  
SS  
This data shows the example of the application circuit, does not guarantee a design as the mass production set.  
No.A1032-7/8  
STK621-061-E  
SANYO Semiconductor Co.,Ltd. assumes no responsibility for equipment failures that result from using  
products at values that exceed, even momentarily, rated values (such as maximum ratings, operating condition  
ranges, or other parameters) listed in products specifications of any and all SANYO Semiconductor Co.,Ltd.  
products described or contained herein.  
Regarding monolithic semiconductors, if you should intend to use this IC continuously under high temperature,  
high current, high voltage, or drastic temperature change, even if it is used within the range of absolute  
maximum ratings or operating conditions, there is a possibility of decrease reliability. Please contact us for a  
confirmation.  
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semiconductor products fail or malfunction with some probability. It is possible that these probabilistic failures or  
malfunction could give rise to accidents or events that could endanger human lives, trouble that could give rise  
to smoke or fire, or accidents that could cause damage to other property. When designing equipment, adopt  
safety measures so that these kinds of accidents or events cannot occur. Such measures include but are not  
limited to protective circuits and error prevention circuits for safe design, redundant design, and structural  
design.  
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intellectual property rights which has resulted from the use of the technical information and products mentioned  
above.  
This catalog provides information as of October, 2012. Specifications and information herein are subject  
to change without notice.  
PS  
No.A1032-8/8  

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