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 Ordering number : EN*A1052
Thick-Film Hybrid IC
STK760-221A-E
Overview
Single-phase Rectification
PFC Hybrid IC
The STK760-221A-E is an average current control type hybrid IC that integrates in a single package the power stages for the step-up active converter and the control IC, and overcurrent/overvoltage protection circuits. It is designed to improve the power factor of single-phase AC power supplies.
Applications
* Power rectification for air conditioners and general-purpose inverters as a single-phase rectification active converter.
Features
* IGBT switching power device employed in the active converter output stage. * On-chip regulator for PFC control supports a wide range of input voltage (up to 50V). * Full complement of protection circuits, including overcurrent, overvoltage, and undervoltage protection, plus soft start function. * Logic level PFC controlled ON/OFF control. * On-chip light-load correction circuit that minimizes output voltage increase when no load is applied. * SIP package providing a high degree freedom for mounting the IC in the set.
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 (home appliances, AV equipment, communication device, office equipment, industrial equipment etc.). 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 applications outside the standard applications of our customer who is considering such use and/or outside the scope of our intended standard applications, please consult with us 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.
61808HKIM No. A1052-1/9
STK760-221A-E
Specifications
Absolute maximum ratings at Tc = 25C
Parameter IGBT (TR2+TR3) Collector-to-emitter voltage Repetitive peak collector current Collector current Allowable power dissipation FRD (D2) Diode reverse voltage Repetitive peak forward current Forward Current Allowable power dissipation FRD (D3) Repetitive peak forward current Forward current Allowable power dissipation Supply voltage (Pin 1) Supply current (Pin 1) Signal pin input voltage Pin 5 Pin 12 Pin 13 Pin 9 Pin 4 Oscillation frequency Maximum AC input voltage Maximum output voltage Input current (in steady state) Load power Chip junction temperature Operating case temperature Storage temperature Tightening torque Dielectric strength voltage VINS Symbol VCES ICP IC Pd VRM IF2P IF2 Pd IFP IF3 Pd Vs Isc VVDET VEI VOVP VIS VONF fOSC VAC VO IIN Wo Tj Tc Tstg M4 screws *3 Sine wave, 50Hz, AC 1 minute *4 Center of the resin package on the reverse side *2 Single-phase full-wave rectification waveform voltage Under the operating conditions of the application circuit Under the operating conditions of the application circuit. VAC=200V -10 to 5.0 -0.3 to VCC 40 264 450 20 4 150 -20 to +105 -40 to +125 1.17 2000 V V kHz V V Arms kW C C C N*m VRMS -0.3 to 5.0 V *1 *1 *1 Conditions Ratings 600 180 70 166 600 160 41 73 15 7 13 21 to 50 60 unit V A A W V A A W A A W V mA
*1. Repetitive peak current with the duty ratio of D=0.1 and tp=1ms. *2. The measurement point must be within 10 millimeters square wide in the center of the resin package on the reverse side. *3. The tightening torque must be within the range of 0.79 to 1.17N * m. The flatness of the heat sink to be connected must be 0.15mm or less. *4. Test conditions: AC 2500V for 1 second. Electrical Characteristics at Tc=25C, Vs=21V with the designated circuit (Apply VCC=18.0V directly to pin 2 unless Vs input is specified.)
Parameter Power output block Collector-to-emitter cutoff current (TR2+TR3) Collector-to-emitter saturation voltage (TR2+TR3) Diode reverse voltage (D2) Diode forward voltage (D2) Diode forward voltage (D3) Junction-to-case thermal resistance IR VF VF j-c1 j-c2 j-c3 VR=600V IF=40A IF=5A IGBT (TR2+TR3) FRD (D2) FRD (D3) 2.1 2.5 0.75 1.7 9.0 ICES VCE(sat) VCE=600V VCC=18.0V, IC=40A 1.9 200 2.4 100 2.6 3.5 A V A V V C /W C /W C /W Fig.1 Fig.2 Fig.1 Fig.3 Fig.3 Symbol Conditions min typ max unit Test circuit
Continued on next page. No. A1052-2/9
STK760-221A-E
Continued from preceding page.
Parameter VCC regulator block VCC regulator output voltage Control IC block Control circuit current dissipation ICC(ON) ICC(OFF) Reference voltage Oscillation frequency Overcurrent protection input threshold voltage Voltage error amplifier reference voltage OVP threshold voltage SS charge current SS input threshold voltage Vr VTHOVP ICHG VTHSSO VTHSSM ON/OFF threshold voltage VTHON VTHOFF Startup VCC voltage Shutdown VCC voltage Power output block Switching time tON tOFF trr Diode recovery current (D2) Irr IC=30A, Inductive load 0.2 0.35 0.85 0.04 20 0.8 1.4 s s s A Fig.10 VTHUON VTHUOFF VCC=18.0V, ONF=5V VCC=18.0V, ONF=5V VCC=18.0V, ONF=5V Duty cycle=0% Duty cycle=DMAX VCC=18.0V VCC=18.0V ONF=5V ONF=5V 3.5 2.4 15.5 8.2 VREF fOSC VTHOCP VCC=18.0V, ONF=5V VCC=18.0V, ONF=0V VCC=18.0V, ONF=5V VCC=18.0V, ONF=5V VCC=18.0V, ONF=5V 4.75 19.3 -1.20 1.509 1.607 7 0.06 5.0 21.5 -1.10 1.55 1.64 11 0.34 3.4 3.95 2.8 16.5 8.9 4.4 3.2 17.5 9.6 11 0.5 5.25 23.7 -1.00 1.591 1.673 mA mA V kHz V V V A V V V V V V Fig.9 Fig.8 Fig.7 Fig.5 Fig.5 VCC Vs=21V, ICCOUT=0 to 40mA 17.9 18.7 19.6 V Fig.4 Symbol Conditions min typ max unit
Test circuit
Fig.6
Application circuit operation: Set to VAC=200V, and VO=380V Power factor cos Wo=400W Wo=2kW 0.9 0.98 0.95 0.99 1.0 Fig.11
Package Dimensions
unit:mm (typ)
70.0 6.0
16.0
0.5
1 2.54 21 2.54=53.34 0.75
22
2.5
58.0 78.0
2.0
0.5
12.5
3.5
31.1
R2.3
4.6
No. A1052-3/9
STK760-221A-E
Block Diagram
2 Vs VREF ONF 1 6 4 VCC constant voltage power supply VREF reference voltage power supply ON/OFF VCC D2 VCC VCC UVLO VCC TR2, 3 19 18 A C 22 K
D3
CT
8
Oscillator
R S Q
15
E
SS
7
Soft Start
PWM
S Overvoltage detector 13 9 12 OVP IS VEI
GND
3 Overcurrent detector SUB Current amplifier Multiplier Voltage error amplifier
Phase compensation 10 IFB 11 IEI 5 VDET
Pin Functions
Pin No. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16, 17 18 19 20, 21 22 Pin Name Vs VCC GND ONF VDET VREF SS CT IS IFB IEI VEI OVP E C A K Operating supply voltage (+18V Reg. input) +18V VCC power supply output GND pin ON/OFF control pin Multiplication input +5V reference voltage output Soft start pin Operating frequency setting pin Current detection signal Phase compensation (current amplification output) Current amplification input Output voltage control input Overvoltage limiting No connection TR2, 3 (IGBT) emitter No connection TR2, 3 (IGBT) collector D2 (FRD) anode No connection D2 (FRD) cathode Description
No. A1052-4/9
STK760-221A-E
Test Circuit
1: IR, ICES
A A
TR1 A B 18 15
D2 22 19
3
VCE, VR
15 B
2: VCE(sat) (Test by pulse)
100k 4 6 V 1k 8 0.47F 100 3 15 IC 2 VCC=18V
18
3: VF (Test by pulse)
A
D2 A B 19 22
D3 15 18
3 V 15 B
IF
4: VCC (VCC-Reg.OUT)
4 5 5.0V 2.40V 1.50V 0.47F 12 9 3 15 13 6 100F V 1 18 VCC 2 ICC OUT Vs=21V
RL=1k

No. A1052-5/9
STK760-221A-E
5: ICC(ON)/ICC(OFF), VREF, fOSC
ICC ICC(ON) 4 ICC(OFF) 5 5.0V 13 2.40V 1.50V 12 9 3 15 0.47F V 6 VREF fOSC 18 A RL=1k 2 100F VCC=18V
6: Vr, VTHOCP
VCC=18V
Vr A B 12 9 VTHOCP 9 12
2 A 18 4 Vr, VTHOCP 5.0V 2.40V 1.50V 13 B 15 5 6
100F
RL=1k
VREF
fOSC
3
0.47F
7: VTHOVP, ICHG
VCC=18V
13 4 5 5.0V 2.40V 0.47F 12 9 6
2 100F RL=1k
VTHOVP
18 7 fOSC
3
15 A ICHG

No. A1052-6/9
STK760-221A-E
8: VTHON, VTHOFF
2 VREF VCC=18V
4
6
VONF 3
V
9: VTHUON, VTHUOFF
ON operation VCC voltage 2 VREF VCC
4
6
VREF Pin6 voltage Low
VONF=5.0V 3
V
10: tON, tOFF, trr, Irr
Input signal (0 to 5V) VCC tr Irr 90% IC tON 10% tOFF 3 15 Input signal 2 100k 4 100 8 19 18 IC Cs VB 22

11: Power factor (COS)
VAC VREF AC INPUT 200V VCC GND ONF W 0.5mH/20A Vs Condition: VAC=200V VO=380V Load1=400W Load2=2kW OVP 15 270k 300k
IS IFB
1234
5678
9 10 11 12 13 220k 220k
IEI
VEI
SS
CT
18 19
22
2.2F /630V
300k 300k 0.056F
0.47F
Vs (DC) =21V 100F/50V
VO W
10F/50V
0.01F
27
GND 0.010/5W
2.2F /630V
470F /450Vx2
0V ON/OFF ON: 4 Pin=5V OFF: 4 Pin=0V (GND)

No. A1052-7/9
LOAD
STK760-221A-E
Sample Application Circuit
AC INPUT 170V to 264V VAC VREF VCC GND ONF IS IFB OVP 15 270k 300k VEI
SS
CT
Ri
0.5mH/20A Ci
1234
5678
9 10 11 12 13 220k 220k
IEI
Vs
18 19
22
2.2F /630V
R1 R2 300k 300k 10F/50V 0.056F
R5 R6
R7 R8
100F/50V
0.47F
Vs (DC) 21V to 40V
VO=380V
0.01F
C1
C2 C3 C4
C5
27 R4
C6 2.2F /630V C7 C8 470F /450Vx2
GND 0.010/5W
0V ON/OFF ON: 4 Pin=5V OFF: 4 Pin=0V (GND)
* When using the IC in a system having an input power voltage of 200V, insert a rush current limiting circuit, which consists of a limiting resistor Ri and a switch, to prevent the internal diodes from being damaged by the charging current from the output capacitor
Recommended conditions
Parameter Commercial AC voltage Output voltage Output overvoltage detection voltage Supply voltage (Pin 1) Vs Symbol VAC VO VOV 50/60Hz Conditions Recommended values 170 to 264 VACx2+(10 to 15) 450 VOUT+(10 to 20) 21 to 40 unit Vrms V V V
Pd - Tc
200
Allowable power dissipation, Pd - W
180 160 140 120 100 80 60 40 20 0 0
TR2+TR3
D2
D3
20 40 60 80 100 120 ITF02482
Case temperature, Tc - C
No. A1052-8/9
STK760-221A-E
Timing Charts
The IC will never be subjected to fatal damage when a power supply input or signals are applied or are not applied at any timing. If the VIN (DC) input is applied to the IC at the timing shown in Figure 12 or 13, however, since the soft start circuit is inactive in this case, it is likely that the overcurrent protection circuit is activated and audible tone is generated out of the coil. To avoid this area of timing, it is necessary that the ON/OFF or VCC input be applied after VIN (DC).
Input entry time Input entry time
VIN (DC) Vs, VCC
0V
0V
0V
0V
ON/OFF 0V ON Voltage control sig. OFF OFF 0V ON


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. SANYO Semiconductor Co.,Ltd. strives to supply high-quality high-reliability products, however, any and all 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. In the event that any or all SANYO Semiconductor Co.,Ltd. products described or contained herein are controlled under any of applicable local export control laws and regulations, such products may require the export license from the authorities concerned in accordance with the above law. No part of this publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopying and recording, or any information storage or retrieval system, or otherwise, without the prior written consent of SANYO Semiconductor Co.,Ltd. Any and all information described or contained herein are subject to change without notice due to product/technology improvement, etc. When designing equipment, refer to the "Delivery Specification" for the SANYO Semiconductor Co.,Ltd. product that you intend to use. Information (including circuit diagrams and circuit parameters) herein is for example only; it is not guaranteed for volume production. Upon using the technical information or products described herein, neither warranty nor license shall be granted with regard to intellectual property rights or any other rights of SANYO Semiconductor Co.,Ltd. or any third party. SANYO Semiconductor Co.,Ltd. shall not be liable for any claim or suits with regard to a third party's intellectual property rights which has resulted from the use of the technical information and products mentioned above.
This catalog provides information as of June, 2008. Specifications and information herein are subject to change without notice.
PS No. A1052-9/9


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