1SP0635X2X1-DIM800NSM33 POWER-INTEGRATIONS | Alldatasheet
Document overview
- PDF pages: 9
Technical content
SCALE™-2 1SP0635x2x1(C)-DIM800NSM33-F000 www.power.com/gate-driver Page 1 1SP0635x2x1-DIM800NSM33-F000 and 1SP0635x2x1C-DIM800NSM33-F000 Data Sheet Compact, high-performance, plug-and-play single-channel IGBT driver based on SCALE™-2 technology for individual and parallel-connected modules in 2-level, 3-level and multilevel converter topologies Abstract The SCALE™-2 plug-and-play driver 1SP0635x2x1-DIM800NSM33-F000 / 1SP0635x2x1C-DIM800NSM33-F000 (Coated version using ELPEGUARD SL 1307 FLZ/2 from Lackwerke Peters with a typical thickness of 50µm ) is a compact single-channel intelligent gate driver designed for Dynex IGBTs DIM800NSM33-F000 and TIM800NSM33. The master driver 1SP0635x2M1(C)-DIM800NSM33-F000 features a fiber-optic interface with a built-in isolated DC/DC power supply. It can be used as stand-alone driver or in conjunction with up to three 1SP0635D2S1(C)-DIM800NSM33-F000 slaves to drive up to four parallel-connected IGBT modules of type DIM800NSM33-F000 or TIM800NSM33. For drivers adapted to other types of high-power and high-voltage IGBT modules, refer to: www.power.com/gate-driver/go/plug-and-play Features Applications Plug-and-play solution Allows parallel connection of IGBT modules For 2-level, 3-level and multilevel topologies Built-in isolated DC/DC power supply (master) Fiber-optic links (master) Built-in interface to 1SP0635D2S1(C) (slave) Duty cycle 0...100% Dynamic Advanced Active Clamping DA2C Dynamic IGBT short-circuit protection Monitoring of supply voltage Monitoring of gate voltage Extremely reliable; long service life Shortens application development time Suitable for DIM800NSM33-F000 and TIM800NSM33 Traction Railroad power supplies Light rail vehicles HVDC Flexible AC transmission systems (FACTS) Medium-voltage converters Industrial drives Wind-power converters Medical applications Research And many others
SCALE™-2 1SP0635x2x1(C)-DIM800NSM33-F000 Data Sheet www.power.com/gate-driver Page 2 Safety Notice! The data contained in this data sheet is intended exclusively for technically trained staff. Handling all high- voltage equipment involves risk to life. Strict compliance with the respective safety regulations is mandatory! Any handling of electronic devices is subject to the general specifications for protecting electrostatic-sensitive devices according to international standard IEC 60747-1, Chapter IX or European standard EN 100015 (i.e. the workplace, tools, etc. must comply with these standards). Otherwise, this product may be damaged. Important Product Documentation This data sheet contains only product-specific data. For a detailed description, must-read application notes and common data that apply to the whole series, please refer to the “Description & Application Manual for 1SP0635 SCALE-2 IGBT Drivers” on www.power.com/gate-driver/go/1SP0635. When applying SCALE-2 plug-and-play drivers, please note that these drivers are specifically adapted to a particular type of IGBT module. Therefore, the type designation of SCALE-2 plug-and-play drivers also includes the type designation of the corresponding IGBT module. These drivers are not valid for IGBT modules other than those specified. Incorrect use may result in failure. Mechanical Dimensions Dimensions: Refer to the relevant “Description and Application Manual” Mounting principle: Connected to IGBT module with screws Fiber-Optic Interfaces (1SP0635x2M1(C)) Interface Remarks Part type # Drive signal input 1SP0635V, fiber-optic receiver (Notes 1, 2) HFBR-2522 ETZ Drive signal input 1SP0635S, fiber-optic receiver (Notes 1, 2) HFBR-2412Z Status output 1SP0635V, fiber-optic transmitter (Notes 1, 3) HFBR-1522 ETZ Status output 1SP0635S, fiber-optic transmitter (Notes 1, 3) HFBR-1412Z Electrical Connectors Interface Remarks Part type # Power supply connector X1 1SP0635x2M1(C), on-board connector (Note 4) 214012 Bus connectors X2 and X3 On-board connectors (Note 5) 214013
SCALE™-2 1SP0635x2x1(C)-DIM800NSM33-F000 Data Sheet www.power.com/gate-driver Page 3 Absolute Maximum Ratings Parameter Remarks Min Max Unit Supply voltage VDC VDC to GND (1SP0635x2M1(C)) 0 16 V Average supply current IDC 1SP0635x2M1(C) only (N ote 6) 400 mA Average supply current IDC 1SP0635x2M1( C) with three 1SP0635D2S1(C) (Note 6) 1130 mA Gate output power 1SP0635x2M1(C), Ta < 70°C (Note 7) 3 W 1SP0635x2M1(C), Ta = 85°C (Note 7) 2.2 W Gate output power 1SP0635D2S1(C), Ta < 70°C (Note 8) 2.6 W 1SP0635D2S1(C), Ta = 85°C (Note 8) 2 W Switching frequency f 1SP0635x2M1(C), Ta < 70°C 6.9 kHz 1SP0635x2M1(C), Ta = 85°C 5.0 kHz Switching frequency f 1SP0635D2S1(C), Ta < 70°C 6.0 kHz 1SP0635D2S1(C), Ta = 85°C 4.6 kHz Gate peak current Iout Note 9 - 35 +35 A Test voltage (50Hz/1min.) 1SP0635x2M1(C) , primary to secondary (Note 10) 6000 V AC(eff) DC-link voltage Switching operation (Note 11) 2200 V Off state (Note 12) 2700 V Operating voltage Primary to secondary side 3300 V peak Max. emitter-emitter voltage Between parallel connected drivers (Note 13) 200 V peak |dV/dt| Between parallel connected drivers (Note 14) 50 kV/μs Max. interface current X2 and X3, total RMS value (Note 15) 4 A rms X2 and X3, total peak value (Note 15) 20 A peak Operating temperature - 40 85 °C Storage temperature Note 31 - 40 50 °C dynex temperature Only 1SP0635x2x1C-DIM800NSM33-F000 (Note 32) 125 °C Recommended Operating Conditions Power Supply Remarks Min Typ Max Unit Supply voltage VDC To GND 14.5 15 15.5 V
SCALE™-2 1SP0635x2x1(C)-DIM800NSM33-F000 Data Sheet www.power.com/gate-driver Page 4
Electrical Characteristics
All data refer to +25°C and VDC = 15V unless otherwise specified Power Supply Remarks Min Typ Max Unit Supply current IDC Without load, only 1SP0635x2M1(C) 120 mA Without load, per additional 1SP0635D2S1(C) 35 mA Coupling capacitance Cio 1SP0635x2M1(C), DC/DC converter 15 pF Power Supply Monitoring Remarks Min Typ Max Unit Supply threshold Viso-Vee Secondary side, clear fault 12.1 12.6 13.1 V Secondary side, set fault (Note 16) 11.5 12.0 12.5 V Monitoring hysteresis Secondary side, set/clear fault 0.35 V Supply threshold Vee-VCOM Secondary side, clear fault 5 5.15 5.3 V Secondary side, set fault (Note 16) 4.7 4.85 5 V Monitoring hysteresis Secondary side, set/clear fault 0.15 V Bus to 1SP0635D2S1(C) Remarks Min T yp Max Unit Supply voltage Without load 25 V With three slaves, full load 24 V Turn-off command To COM 0 V Turn-on command To COM 15 V Gate Monitoring Remarks Min Typ Max Unit Turn-on threshold VGE,on,min G mean to E, set fault (Note 17) 12.9 V Turn-off threshold VGE,off,max G mean to E, set fault (Note 17) -7.6 V Filter delay Note 17 28 μs Short-circuit Protection Remarks Min Typ Max Unit Static Vce-monitoring threshold Between auxiliary terminals (Note 18) 1 43 V Response time DC-link voltage = 2200V (Note 19) 5.9 μs DC-link voltage = 1500V (Note 19) 6.0 μs DC-link voltage = 1100V (Note 19) 6.2 μs DC-link voltage = 800V (Note 19) 8.3 μs Delay to IGBT turn-off After the response time (Note 20) 0.3 μs Timing Characteristics Remarks Min Typ Max Unit Turn-on delay td(on) Note 21 190 ns Turn-off delay td(off) Note 21 185 ns Output rise time tr(out) G to E (Note 22) 9 ns Output fall time tf(out) G to E (Note 22) 30 ns
SCALE™-2 1SP0635x2x1(C)-DIM800NSM33-F000 Data Sheet www.power.com/gate-driver Page 5 Timing Characteristics Remarks Min Typ Max Unit Transmission delay of fault state Note 23 90 ns Delay to clear fault state After IGBT short circuit (Note 24) 9 μs After gate-monitoring fault (Notes 24, 30) 1 μs Acknowledge delay time Note 25 250 ns Acknowledge pulse width On host side 400 700 1050 ns Gate Output Remarks Min Typ Max Unit Turn-on gate resistor Rg(on) Note 26 2.8 Ω Turn-off gate resistor Rg(off) Note 26 9.2 Ω Auxiliary gate capacitor Cge 220 nF Gate voltage at turn-on Note 27 15 V Gate-voltage at turn-off Without load (Note 27) -10.1 V PDC/DC = 3W (Note 27) -9.8 V PDC/DC = 6W (Note 27) -9.5 V PDC/DC = 12W (Note 27) -9 V Electrical Isolation Remarks Min Typ Max Unit Test voltage (50Hz/1s) Primary to secondary side (Note 10) 6000 6050 6100 V AC(eff) Partial discharge extinction volt. Primary to secondary side (Note 28) 3630 V peak Creepage distance Primary to secondary side (Note 29) 21 mm Primary to IGBT main emitter terminal 20 mm Clearance distance Primary to secondary side (Note 29) 21 mm Primary to IGBT main emitter terminal 13 mm Footnotes to the Key Data 1) The transceivers required on the host controller side are not supplied with the gate driver. It is recommended to use the same types as used in the gate driver. For product information refer to www.power.com/gate-driver/go/fiberoptics. 2) The recommended transmitter current at the host controller is 20mA. A higher current may increase jitter or delay at turn-off. 3) The typical transmitter current at the gate driver is 18mA. In case of supply undervoltage, the minimum transmitter current at the gate driver is 12mA: this is suitable for adequate plastic optical fibers with a length of up to 10 meters. 4) This refers to the manufacturer ordering number, see www.power.com/gate-driver/go/ext_erni. The customer-side connector as well as cables with different lengths can be supplied by Power Integrations. Refer to the “Description & Application Manual for 1SP0635 SCALE- 2 IGBT Drivers” for more information. 5) This refers to the manufacturer ordering number, see www.power.com/gate-driver/go/ext_erni. These connectors are to be used to connect 1SP0635x2M1(C) (master) or 1SP0635 D2S1(C) (slave) to 1SP0635D2S1(C) (slave) if parallel connection of IGBT modules is required. Cables with different lengths can be supplied by Power Integrations. Refer to the “Description & Application Manual for 1SP0635 SCALE-2 IGBT Drivers” for more information. 6) If the specified value is exceeded, this indicates a driver overload. It should be noted that the driver is not protected against overload. 7) The given power can only be fully exploited without slaves 1SP0635 D2S1(C) (no parallel connection of IGBT modules). If the specified value is exceeded, this indicates a driver overload. It should be noted
SCALE™-2 1SP0635x2x1(C)-DIM800NSM33-F000 Data Sheet www.power.com/gate-driver Page 6 that the driver is not protected against overload. From 70°C to 85°C, the maximum permissible output power can be linearly interpolated from the given data. 8) The given power can be fully exploited with slaves 1SP0635D2 S1(C) (parallel connection of IGBT modules). If the specified value is exceeded, this indicates a driver overload. It should be noted that the driver is not protected against overload. From 70°C to 85°C, the maximum permissible output power can be linearly interpolated from the given data. Note that the DC/DC converter on the master 1SP0635x2M1(C) is dimensioned to supply the master as well as three connected slaves 1SP0635D2S1(C) at full load. 9) The gate current is limited by the gate resistors located on the driver. 10) HiPot testing (= dielectric testing) must generally be restricted to suitable components. This gate driver is suited for HiPot testing. Nevertheless, it is strongly recommended to limit the testing time to 1s slots. Excessive HiPot testing may lead to insulation degradation. 11) This limit is due to active clamping under switching conditions. Refer to the “Description & Application Manual for 1SP0635 SCALE-2 IGBT Drivers”. 12) Due to the Dynamic Active Advanced Clamping Function (DA 2C) implemented on the driver, the DC- link voltage can be increased in the off-state condition (e.g. after emergency shut-down). This value is only valid when the IGBTs are in the off state (not switching). The time during which the voltage can be applied should be limited to short periods (< 60 seconds). Refer to the “Description & Application Manual for 1SP0635 SCALE-2 IGBT Drivers”. 13) The maximum dynamic voltage between auxiliary emitters of parallel-connected drivers due to asymmetrical operation at turn-on and turn-off must be limited to the given value. 14) Maximum allowed rate of change of auxiliary emitter voltage of parallel connected drivers. 15) Dynamic voltages between auxiliary emitters of parallel connected drivers at turn-on and turn-off lead to equalizing currents over the X2 or X3 bus. The peak and RMS values of the resulting current must be limited to the given value. 16) Undervoltage monitoring of the secondary-side supply voltage (Viso to Vee and Vee to COM which correspond with the approximate turn-on and turn-off gate-emitter voltages). If the corresponding voltage drops below this limit on 1SP0635x2M1(C) (masters), all paralleled IGBTs (master and slaves) are switched off and a fault is transmitted to the status output. If the corresponding voltage drops below this limit on 1SP0635D2S1(C) (slaves), the corresponding IGBT is switched off. If the IGBT was turned on, a fault will be generated by the gate-monitoring function on the master which will turn off all paralleled IGBTs after the corresponding delay. 17) The mean value V GE,mean of all gate voltages (master and all slaves) is filtered and compared to the given values at turn-on and turn-off. If the specified values are exceeded (V GE,mean<VGE,on,min at turn-on resp. V GE,mean>VGE,off,max at turn-off) after the given filter delay, the driver turns off all parallel- connected IGBTs and a fault is transmitted to the status output. 18) A dynamic Vce protection is implemented on the driver. The maximum allowed Vce voltage at turn-on is dynamically adjusted in order to better fit to the IGBT characteristics at turn-on. At the end of the turn-on process the given static value applies. 19) The resulting pulse width of the direct output of the gate drive unit for short-circuit type I (excluding the delay of the gate resistors) is the sum of the response time plus the delay to IGBT turn-off. 20) The turn-off event of the IGBT is delayed by the specified time after the response time. 21) Including the delay of the external fiber-optic links (cable length: 1m). Measured from the transition of the turn-on or turn-off command at the optical transmitter on the host controller side to the direct output of the gate drive unit (excluding the delay of the gate resistors). 22) Output rise and fall times are measured between 10% and 90% of the nominal output swing. The values are given for the driver side of the gate resistors with 2 Ω/1uF load. The time constant of the output load in conjunction with the present gate resistors leads to an additional delay at their load side. 23) Delay of external fiber-optic links. Measured from the driver secondary side (ASIC output) to the optical receiver on the host controller (cable length: 1m). 24) Measured on the host side. The fault status on the secondary side is automatically reset after the specified time.
SCALE™-2 1SP0635x2x1(C)-DIM800NSM33-F000 Data Sheet www.power.com/gate-driver Page 7 25) Including the delay of the external fiber-optic links (cable length: 1m). Measured from the transition of the turn-on or turn-off command at the optical transmitter on the host controller side to the transition of the acknowledge signal at the optical receiver on the host controller side. 26) The gate resistors can be leaded or surface mounted. Power Integrations reserves the right to determine which type will be used. Typically, higher quantities will be produced with SMD resistors and small quantities with leaded resistors. 27) The driver secondary side voltage is split into two distinct voltages on the driver. The first one is the turn-on voltage which is regulated at about 15V. The difference between the total secondary side voltage and the turn-on voltage is the turn-off voltage which is not regulated and mainly dependent on the driver input voltage VDC and the DC/DC converter power. 28) Partial discharge measurement is performed in accordance with IEC 60270. 29) Clearance and creepage distances are designed according to IEC 60077- 1. Refer to the “Description & Application Manual for 1SP0635 SCALE-2 IGBT Drivers” for more information. 30) The fault status is set as long as the gate monitoring fault is present. The given value applies if the driver goes from the “off state” to the “on state” and the gate -emitter voltage of one or more parallel connected drivers does not turn on. If the driver goes from the “on state” to the “off state” and the gate-emitter voltage of one or more parallel connected drivers does not turn off, the fault status is applied as long as the gate monitoring fault is present. 31) The storage temperature inside the original package (1) or in case the coating material of coated products may touch external parts (2) must be limited to the given value. Otherwise, it is limited to 90°C. 32) The component surface temperature, which may strongly vary depending on the operating condition, must be limited to the given value for coated driver versions to ensure long-term reliability of the coating material. Legal Disclaimer The statements, technical information and recommendations contained herein are believed to be accurate as of the date hereof. All parameters, numbers, values and other technical data included in the technical information were calculated and determined to our best knowledge in accordance with the relevant technical norms (if any). They may base on assumptions or operational conditions that do not necessarily apply in general. We exclude any representation or warranty, express or implied, in relation to the accuracy or completeness of the statements, technical information and recommendations contained herein. No responsibility is accepted for the accuracy or sufficiency of any of the statements, technical information, recommendations or opinions communicated and any liability for any direct, indirect or consequential loss or damage suffered by any person arising therefrom is expressly disclaimed.
SCALE™-2 1SP0635x2x1(C)-DIM800NSM33-F000 Data Sheet www.power.com/gate-driver Page 8
Ordering Information
Our international terms and conditions of sale apply. Interface Power Integrations Driver Type # Related IGBT Master, Fiber-Optic Interface 1) 1SP0635V2M1-DIM800NSM33-F000 DIM800NSM33-F000 Master, Fiber-Optic Interface 1), 3) 1SP0635V2M1C-DIM800NSM33-F000 DIM800NSM33-F000 Master, Fiber-Optic Interface 2) 1SP0635S2M1-DIM800NSM33-F000 DIM800NSM33-F000 Master, Fiber-Optic Interface 2), 3) 1SP0635S2M1C-DIM800NSM33-F000 DIM800NSM33-F000 Slave, Electrical Interface 1SP0635D2S1-DIM800NSM33-F000 DIM800NSM33-F000 Slave, Electrical Interface 3) 1SP0635D2S1C-DIM800NSM33-F000 DIM800NSM33-F000 Master, Fiber-Optic Interface 1) 1SP0635V2M1-DIM800NSM33-F000 TIM800NSM33 Master, Fiber-Optic Interface 1), 3) 1SP0635V2M1C-DIM800NSM33-F000 TIM800NSM33 Master, Fiber-Optic Interface 2) 1SP0635S2M1-DIM800NSM33-F000 TIM800NSM33 Master, Fiber-Optic Interface 2), 3) 1SP0635S2M1C-DIM800NSM33-F000 TIM800NSM33 Slave, Electrical Interface 1SP0635D2S1-DIM800NSM33-F000 TIM800NSM33 Slave, Electrical Interface 3) 1SP0635D2S1C-DIM800NSM33-F000 TIM800NSM33 1) Fiber-optic interface with versatile link (HFBR-2522 ETZ and HFBR-1522ETZ) 2) Fiber-optic interface with ST (HFBR-2412Z and HFBR-1412Z) See “Description & Application Manual for 1SP0635 SCALE-2 IGBT Drivers” 3) Conformal coated version Product home page: www.power.com/gate-driver/go/1SP0635 Refer to www.power.com/gate-driver/go/nomenclature for information on driver nomenclature Information about Other Products For other drivers, evaluation systems, product documentation and application support Please click onto: www.power.com/gate-driver © 2010…2019 Power Integrations Switzerland GmbH. All rights reserved. We reserve the right to make any technical modifications without prior notice. Version 2 .0 from 2019-03-28
SCALE™-2 1SP0635x2x1(C)-DIM800NSM33-F000 Data Sheet www.power.com/gate-driver Page 9 Power Integrations Sales Offices WORLD HEADQUARTERS
5245 Hellyer Avenue
San Jose, CA 95138 USA Tel: +1-408-414-9200 Fax: +1-408-414-9765 Email: usasales@power.com AMERICAS EAST
7360 McGinnis Ferry Road
Suwannee, GA 30024 USA Tel: +1-678-957-0724 Fax: +1-678-957-0784 Email: usasales@power.com AMERICAS CENTRAL
333 Sheridan Road
Winnetka, IL 60093 USA Tel: +1-847-721-6293 Email: usasales@power.com AMERICAS WEST San Jose, CA 95138 USA Tel: +1-408-414-8778 Fax: +1-408-414-3760 Email: usasales@power.com CHINA (Shanghai) Room 2410, Charity Plaza No. 88 North Caoxi Road Shanghai, 200030 China Tel: +86-21-6354-6323 Fax: +86-21-6354-6325 Email: chinasales@power.com CHINA (Shenzhen) 17/F, Hivac Building, No 2 Keji South 8th Road, Nanshan District Shenzhen, 518057 China Tel: +86-755-8672-8689 Fax: +86-755-8672-8690 Email: chinasales@power.com GERMANY (AC-DC/LED Sales) Einsteinring 24
85609 Aschheim, Germany
Tel: +49-89-5527-39100 Fax: +49-89-1228-5374 Email: eurosales@power.com GERMANY (Gate Driver Sales) HellwegForum 1
59469 Ense, Germany
Tel: +49-2938-64-39990 Email: gate-drivers.sales@power.com INDIA (Bangalore) #1, 14th Main Road Vasanthangar Bangalore, 560052 India Tel 1: +91-80-4113-8020 Tel 2: +91-80-4113-8028 Fax: +91-80-4113-8023 Email: indiasales@power.com INDIA (Mumbai) Unit: 106-107, Sagar Tech Plaza-B Sakinaka, Andheri Kurla Road Mumbai, Maharashtra 400072 India Tel 1: +91-22-4003-3700 Tel 2: +91-22-4003-3600 Email: indiasales@power.com INDIA (New Dehli) #45, Top Floor Okhla Industrial Area, Phase - III New Dehli, 110020 India Tel 1: +91-11-4055-2351 Tel 2: +91-11-4055-2353 Email: indiasales@power.com ITALY Via Milanese 20
20099 Sesto San Giovanni (MI), Italy
Tel: +39-02-4550-8708 Email: eurosales@power.com JAPAN Kosei Dai-3 Bldg. 2-12-11, Shin-Yokohama, Kohoku-ku Yokohama-shi, Kanagawa Japan 222-0033 Tel: +81-45-471-1021 Fax: +81-45-471-3717 Email: japansales@power.com KOREA RM602, 6FL, 22 Teheran-ro 87-gil, Gangnam-gu Seoul, 06164 Korea Tel: +82-2-2016-6610 Fax: +82-2-2016-6630 Email: koreasales@power.com SINGAPORE
51 Newton Road
#19-01/05 Goldhill Plaza Singapore, 308900 Tel 1: +65-6358-2160 Tel 2: +65-6358-4480 Fax: +65-6358-2015 Email: singaporesales@power.com TAIWAN 5F, No. 318, Nei Hu Rd., Sec. 1 Nei Hu Dist. Taipei, 114 Taiwan Tel: +886-2-2659-4570 Fax: +886-2-2659-4550 Email: taiwansales@power.com UNITED KINGDOM Bulding 5, Suite 21 The Westbrook Centre Milton Road Cambridge, CB4 1YG United Kingdom Tel: +44-7823-557-484 Email: eurosales@power.com