MIP5S30MTSCF. Established : Revised : Product Standards. Silicon MOSFET type Integrated Circuit

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1 Type Application Structure Silicon MOSFET type Integrated Circuit For Switching Power Supply Control CMOS type Equivalent Circuit Figure 7 Package DIP7A1B Marking MIP5S30 A.ABSOLUTE MAXIMUM RATINGS No. Item Symbol Ratings Unit Note 1 Drain Voltage DRAIN 0.3 ~ 650 V 2 Drain Current(Continuous) (Tc=25 ) IDP 7.0 A 3 VCC Voltage VCC 0.3 ~ 45 V 4 VDD Voltage VDD 0.3 ~ 10 V 5 LS Voltage VLS 0.3 ~ 10 V 6 IS Voltage VIS 0.3 ~ 5 V 7 FB Voltage VFB 0.3 ~ 8 V 8 Junction Temperature Control IC& Tj 150 Power MOSFET 9 Storage Temperature Tstg 55 ~ 150 B.RECOMMENDED OPERATING CONDITIONS No. Item Symbol Conditions Unit Note 1 Junction Temperature (Control IC) Tjcon 40 ~ Junction Temperature (Power MOSFET) Tjmos 40 ~ Recommended VCC operation voltage range at Heavy Load VCC 13 ~ 28 V Page 1 of 8

2 C.ELECTRICAL CHARACTERISTICS Measure conditions (TC=25 ±3 ) NO. Item Symbol Conditions Typ. Min. Max. Unit CONTROL FUNCTIONS *Design Guarantee Item, **Reference Item 1 VCC Start Voltage 2 VCC Stop Voltage 3 VCC Start/Stop Hysteresis 4 VDD Reference Voltage VCC(ON) V VCC(OFF) V VCC(ON) VCC(OFF) D_VCC V VCC = 21 V VDD V 5 VCC Pin Current at Startup VCC = VCC(ON) 0.5 V, ICC(SB) FB : open ma 6 VCC Pin Current at Low Load VCC = 15 V, ICC(STB) IFB = IFB1 10μA ma VCC Pin Current at Operating VCC = 21 V, IFB = 20μA 7 ICC(OP) DRAIN = 5 V ma 8 VCC Pin Current at OLP VCC = 21 V ICC(OL) VFB = VFB(OL) open ma 9 Output Frequency VCC = 21 V, VFB = 3 V, fosc DRAIN = 5 V khz 10 Jitter Frequency Deviation VCC = 21 V, VFB = 3 V, d_fosc DRAIN = 5 V khz **11 Jitter Frequency Modulation Rate VCC = 21 V, VFB = 3 V, fm DRAIN = 5 V 350 Hz 12 Maximum Duty Cycle VCC = 21 V, VFB = 3 V, MAXDC DRAIN = 5 V % 13 Feedback Current ON OFF, IFB1 VCC = 21 V μa **14 Feedback Current Hysteresis OFF ON, IFBHYS VCC = 21 V 1 μa 15 FB Pin Voltage VCC = 21 V, IFB = IFB1 VFB V 16 FB Pin Grounded Current VCC = 21 V, VFB = 0 V IFB μa 17 FB Pin Pulldown resistance VCC =40V, VFB = VFB1 at Output Stop RFB(OFF) Ω Page 2 of 8

3 No. Item Symbol Measure Conditions Typ. Min. Max. Unit 18 VCC Pin Charging Current VCC = 0 V, FB : open, DRAIN = 50 V ICCH ma *19 Soft Start Time CIRCUIT PROTECTIONS *Design Guarantee Item, **Reference Item VCC = VCC(ON) 0.5 V, FB : open, ICCH2 DRAIN = 50 V ma DRAIN = 50 V Tsoft ms 20 Current Limit Detection Maximum VCC = 21 V, VFB = 3 V, Voltage VLIMIT(MAX) DRAIN = 5 V mv 21 Current Limit Detection Maximum VCC = 21 V, VFB = 3 V, VLS = 0.75 V, Voltage at Input Compensation Mode VLIMIT_L DRAIN = 5 V mv 22 Slope Compensation Ramp VCC = 21 V, VFB = 3 V, VLIM_SLP DRAIN = 5 V mv/μs **23 Slope Compensation Start Duty Cycle VCC = 21 V, VFB = 3 V, D_SLP DRAIN = 5 V % *24 Current Detection Minimum Voltage VCC = 21 V, IFB = IFB1, at Low load VIS(OFF)min DRAIN = 5 V mv **25 Jitter Deviation of Current Detection VCC = 21 V, IFB = IFB1, Voltage at Low load D_VIS(OFF) DRAIN = 5 V 40 mv 26 LS Pin Detect Voltage at VCC = 21 V, VFB = 3 V, Input Compensation Detect Voltage VLS(CL) DRAIN = 5 V V 27 LS Pin Detect Voltage at VCC = 21 V, VFB = 3 V, Input Compensation Release Voltage VLS(CL)L DRAIN = 5 V V 28 LS Pin Detect Voltage at VCC = 21 V, VFB = 3 V, Input Compensation Hysteresis VLS(CL)HYS DRAIN = 5 V V 29 LS Pin Detect Voltage at VCC = 21 V, VFB = 3 V, Over AC Input Protection Detect VLS(OV) DRAIN = 5 V V 30 LS Pin Detect Voltage at VCC = 21 V, VFB = 3 V, Over AC Input Protection Return VLS(OV)L DRAIN = 5 V V 31 LS Pin Detect Voltage at VCC = 21 V, VFB = 3 V, Over AC Input Protection Hysteresis VLS(OV)HYS DRAIN = 5 V V 32 VCC Frequency Count at OLP VCC = VCC(ON) VCC(OFF) OLP_CNT 4 **33 Blanking Time at ON Ton(BLK) 440 ns **34 Current Limit Delay Td(OCL) 150 ns 35 FB Pin Over Load Protection Voltage VCC = 21 V, VFB(OL) DRAIN = 5 V V 36 FB Pin Charging Current at Over Load VCC = 21 V, VFB = 3 V, IFB(OL) DRAIN = 5 V μa Page 3 of 8

4 No. Item Symbol Measure Conditions Typ. Min. Max. Unit 37 VCC Over Voltage Protection VFB = 3 V, DRAIN = 5 V VCC(OV) V 38 VDD Stop Voltage VCC = 21 V, VFB = 3 V, VDD(OV) DRAIN = 5 V V 39 VDD Stop Current VCC = 21 V, VFB = 3 V, IDD(OV) DRAIN = 5 V ma 40 VDD clamp Current VCC = 21 V, VDD = 10 V IDD(CLP) ma **41 Over Load Protection Filter Time VCC = 21 V Td(OL) 20 μs **42 Over Voltage Protection Latch VCC = 21 V Stop Filter Time Td(LAT) 150 μs 43 VDD Latch Reset Threshold Voltage VDDreset V *44 Thermal Shutdown Temperature (Control IC) TOTP **45 Thermal Shutdown Temperature Hysteresis (Control IC) TOTPHYS 70 Power MOSFET *Design Guarantee Item, **Reference Item 46 Minimum Drain Voltage VD(MIN) V 47 Drain Pin Breakdown Voltage VCC = 40 V, VDSS IDRAIN = 250μA,, 650 V 48 Drain Pin Leakage Current VCC = 40 V IDSS DRAIN = 520 V 2 7 μa 49 ON Resistance VCC = 21 V, VFB = 3 V, RDS(ON) IDRAIN = 1 A, Ω **50 Rise Time VCC = 21 V, VFB = 3 V, tr DRAIN = 5 V 200 ns **51 Fall Time VCC = 21 V, VFB = 3 V, tf DRAIN = 5 V 100 ns Page 4 of 8

5 Figure 1: Measure circuit/pin Layout L Rd VDRAIN /IDRAIN VCC /ICC VDD /IIDD 6.8 kω VFB /IFB VLS /ILS Rs VIS /IIS 1μF 0.1μF 0.1μF 1μF 3μF Pin No. Pin Name Function 1 FB Feedback control 2 GND Ground 3 LS Input Compensation / AC Over Input Voltage Protection 4 IS MOSFET Source / Current Detection 5 DRAIN 6 7 VCC 8 VDD MOSFET Drain / Power supply for startup Power supply from bias winding / Over Voltage Protection Power Supply Voltage for circuits / Over Voltage Protection Figure 2: fosc, d_fosc, fm measurement frequency fosc (average) d_fosc 1/fM time Page 5 of 8

6 Figure 3: VLSVLIMIT Characteristics VLIMIT VLIMIT(MAX) VLIMIT_L VLS(CL)HYS VLS(OV)HYS 0 VLS(CL) VLS VLS(OV) (Oscillation ( 発振停止 stop) ) Figure 4: IFBVLIMIT Characteristics Over Current Protection threshold Voltage of IS VLIMIT IFBHYS VIS(OFF)min IFB(OL) Oscillation restart Oscillation stop IFB1 IFB Page 6 of 8

7 Figure 5: Over Load Protection Characteristics Tsoft Tsoft Tsoft Tsoft VCC(ON) VCC terminal Voltage t(olp) VCC(OFF) Td(OL) ILIMIT ILIMIT Max Output Power Drain Current of Power MOSFET Oscillation Stop and Timer Intermittent Oscillation Start FB terminal Voltage VFB(OL) VDD Output Power Max Output Power Over Load Detection Oscillation stop Oscillation restart Figure 6: tr, tf measurement DRAIN voltage tf tr 90% 10% time Page 7 of 8

8 Figure 7: Block Diagram DRAIN VCC VDD FB External Latch VFB(OL) Clamping Circuit Over Input voltage Detection VCC(ON)/ VCC(OFF) VDD IV Converter Oscillator with Jitter Light load Detection VIS(OFF) Lower Limit with Jitter VCC(OV) MAXDUTY CLOCK Restart Trigger Over Temp. Detection Under Voltage Lock Out Timer Intermittent S R S R Q Q Q Q Regulator Vdrv = 12.5V Power MOSFET LS VLIMIT(MAX) VLIMIT_L VLIMIT Change Slope Compensation Leading Edge Blanking IS RC filter GND Precautions for Use 1 Connect a ceramic capacitor with value 0.1 μf between VDD pin and GND Precautions for Use 2 The product has risks for breakdown or burst or giving off smoke in following conditions. Avoid the following use. Fuse should be added at the input side or connect Zener diode between control pin and GND, etc. as a countermeasure to pass regulatory Safety Standard. Concrete countermeasure could be provided individually. However, customer should make the final judgment. (1) Reverse the Drain pin and FB pin connection to the power supply board. (2) Connect to pins in which different Maximum ratings. Page 8 of 8

9 Request for your special attention and precautions in using the technical information and semiconductors described in this book (1) If any of the products or technical information described in this book is to be exported or provided to nonresidents, the laws and regulations of the exporting country, especially, those with regard to security export control, must be observed. (2) The technical information described in this book is intended only to show the main characteristics and application circuit examples of the products. No license is granted in and to any intellectual property right or other right owned by Panasonic Corporation or any other company. Therefore, no responsibility is assumed by our company as to the infringement upon any such right owned by any other company which may arise as a result of the use of technical information described in this book. (3) The products described in this book are intended to be used for general applications (such as office equipment, communications equipment, measuring instruments and household appliances), or for specific applications as expressly stated in this book. Please consult with our sales staff in advance for information on the following applications, moreover please exchange documents separately on terms of use etc.: Special applications (such as for invehicle equipment, airplanes, aerospace, automotive equipment, traffic signaling equipment, combustion equipment, medical equipment and safety devices) in which exceptional quality and reliability are required, or if the failure or malfunction of the products may directly jeopardize life or harm the human body. Unless exchanging documents on terms of use etc. in advance, it is to be understood that our company shall not be held responsible for any damage incurred as a result of or in connection with your using the products described in this book for any special application. (4) The products and product specifications described in this book are subject to change without notice for modification and/or improvement. At the final stage of your design, purchasing, or use of the products, therefore, ask for the most uptodate in advance to make sure that the latest specifications satisfy your requirements. (5) When designing your equipment, comply with the range of absolute maximum rating and the guaranteed operating conditions (operating power supply voltage and operating environment etc.). Especially, please be careful not to exceed the range of absolute maximum rating on the transient state, such as poweron, poweroff and modeswitching. Otherwise, we will not be liable for any defect which may arise later in your equipment. Even when the products are used within the guaranteed values, take into the consideration of incidence of break down and failure mode, possible to occur to semiconductor products. Measures on the systems such as redundant design, arresting the spread of fire or preventing glitch are recommended in order to prevent physical injury, fire, social damages, for example, by using the products. (6) Comply with the instructions for use in order to prevent breakdown and characteristics change due to external factors (ESD, EOS, thermal stress and mechanical stress) at the time of handling, mounting or at customer's process. We do not guarantee quality for disassembled products or the product remounted after removing from the mounting board. When using products for which dampproof packing is required, satisfy the conditions, such as shelf life and the elapsed time since first opening the packages. (7) When reselling products described in this book to other companies without our permission and receiving any claim of request from the resale destination, please understand that customers will bear the burden. (8) This book may be not reprinted or reproduced whether wholly or partially, without the prior written permission of our company. No

No. Item Symbol Ratings Unit Note 1 Drain Voltage DRAIN -0.3 ~ 700 V VCC -0.3 ~ 45 V VDD -0.3 ~ 10 V VLS -0.3 ~ 10 V VIS -0.3 ~ 5 V VFB -0.

No. Item Symbol Ratings Unit Note 1 Drain Voltage DRAIN -0.3 ~ 700 V VCC -0.3 ~ 45 V VDD -0.3 ~ 10 V VLS -0.3 ~ 10 V VIS -0.3 ~ 5 V VFB -0. Type Application Structure Silicon MOSFET type Integrated Circuit For Switching Power Supply Control BiCMOS type Equivalent Circuit Figure 7 Package DIP7A1B Marking MIP6S3A A.ABSOLUTE MAXIMUM RATINGS No.

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