2SB315B Data Sheet 2SB315B-FF800R17KP4_B2 SCALE Dual-Channel Plug-and-Play Driver Driver solution for 130mm x 140mm dual IGBT modules with fiber-optic interface for 2-level topologies Abstract The 2SB315B-FF800R17KP4_B2 is a dual-channel driver with a fiber-optic interface based on CONCEPT's dual SCALE driver 2SD315AI, a proven technology for reliable driving and safe operation of IGBTs. The driver is matched to the 1700V module FF800R17KP4_B2 from Infineon. Its plugand-play capability makes it ready to operate immediately after mounting. The user needs invest no effort in designing or adjusting it to a specific application. For drivers adapted to other types of high-power and high-voltage IGBT modules, refer to www.IGBT-Driver.com/go/plug-and-play Product Highlights [ Suitable for FF800R17KP4_B2 [ Plug-and-play solution [ Active clamping of V at turn-off [ IGBT short-circuit and overcurrent protection [ No electrolytic capacitors [ Fiber-optic interface [ Monitoring of power supply voltage [ Duty cycle 0... 100% [ Extremely reliable; long service life [ Shortens application development time ce IGBT-Driver.com Applications [ Inverters [ Motor drives [ UPS [ Power-factor correctors [ Wind-power converters [ Welding [ SMPS [ and many others Page 1 2SB315B Data Sheet 2SB315B-FF800R17KP4_B2 Important: Please refer to the relevant manuals! This data sheet contains only product-specific data. A detailed description, must-read application notes and general data applicable to this driver family are found in: "Description and Application Manual for 2SB315B SCALE Plug-and-play IGBT Driver". See www.IGBT-Driver.com/go/2SB315B Dimensions Dimensions: 130 x 145 mm, 21 mm height (30 mm with connector X1 and flat cable). Mounting principle: Connected to IGBT module with screws. Fiber Optics Interfaces Interface Remarks Drive signal input (Standard) Drive signal input (Opt. 01) Status output (Standard) Status output (Opt. 01) Fiber-optic Fiber-optic Fiber-optic Fiber-optic Part type # receiver (Notes 14,15) receiver (Notes 14,17) transmitter (Notes 14,16) transmitter (Notes 14,18) HFBR-2522Z HFBR-2412Z HFBR-1522Z HFBR-1412Z Absolute Maximum Ratings Parameter Remarks Supply voltage VDC Supply voltage VDD Gate peak current Iout Average supply current IDC Output power per gate Switching frequency DC-link voltage Operating temperature Storage temperature VDC to GND (Note 1) VDD to GND Note 6 Notes 2,3 Note 3 Note 3 Note 4 Note 3 Min Max Units 0 16 0 16 -15 +15 500 3 12 1200 -40 +85 -40 +90 V V A mA W kHz V C C All data refer to +25C and VDC = 15V unless otherwise specified Page 2 INTELLIGENT POWER ELECTRONICS 2SB315B Data Sheet 2SB315B-FF800R17KP4_B2 Electrical Characteristics Power supply Nominal supply Supply current Supply current Efficiency Nominal supply Supply current Remarks voltage VDC IDC IDC voltage VDD IDD Supply current IDD Min Typ. Max To GND (Note 1) Without load At 12 kHz switching frequency Internal DC/DC converter To GND Without load Standard Opt. 1 At 12 kHz switching frequency Standard Opt. 1 Units 15 80 500 85 15 Vdc mA mA % Vdc 90 130 mA mA 96 136 mA mA Min Typ. Max Units 10.6 0.6 Vdc Vdc Min Typ. Max units 4.3 9.5 1 V s s Min Typ. Max Units ns ns ns ns s Power supply monitoring Test conditions Turn-on threshold Vth Hysteresis on/off Note 5 Note 5 Short circuit protection Remarks Vce-monitoring threshold Response time Blocking time Betw. aux. terminals Timing characteristics Test conditions Turn-on delay tpd(on) Turn-off delay tpd(off) Output rise time tr(out) Output fall time tf(out) Dead time between outputs Note 9 Note 9 Gx to Ex (Note 10) Gx to Ex (Note 10) Half-bridge mode 420 550 150 80 2.5 Gate outputs Test conditions Min Typ. Max Units 2.4 4.7 Turn-on gate resistor Rg(on) Turn-off gate resistor Rg(off) IGBT-Driver.com Note 7 After failure (Note 8) Page 3 2SB315B Data Sheet 2SB315B-FF800R17KP4_B2 Electrical insulation Test conditions Min Typ. Max Operating voltage Test voltage Partial discharge extinction volt. Creep path input-output Creep path output-output Maximum dV/dt at dV=1000 V Continuous or repeated (Note 4) 1200 50 Hz/1 min (Note 11) 4000 IEC270 (Note 12) >1700 20 25 Note 13 100 Units Vdc VAC(eff) VAC(pk) mm mm kV/s All data refer to +25C and VDC = 15 V unless otherwise specified Footnotes to the key data 1) 2) 3) 4) 5) 6) 7) 8) 9) 10) 11) 12) 13) 14) 15) 16) The drivers have a zener diode on each channel for over-voltage protection. When the feed voltage exceeds 16V, this protection may be exposed to thermal overload. If the specified power consumption is exceeded, this indicates an overload of the DC/DC converter. It should be noted that these DC/DC converters are not protected against overload. Application-specific self-heating of gate drivers and IGBT modules, especially at high switching frequency, must be taken into account. As a rule, the switching frequency is limited due to the switching losses of the IGBT modules. Because CONCEPT cannot predict how the drivers will be incorporated in the user's application, no binding recommended value for self-heating and thus for the maximum useable output power can be made. Users are therefore recommended to check the gate driver's ambient temperature within the system. This limit is due to active clamping. Refer to the "Description and Application Manual for 2SB315B SCALE Dual-Channel Plug-and-play IGBT Driver". Under-voltage monitoring of the supply voltage to the gate driver. If the voltage drops below this limit, the power modules are switched off. The gate current is limited by the gate resistors located on the driver. Pulse width of the direct output of the gate drive unit (excluding the delay of the gate resistors). The typical blocking time after an error is 1 second. Versions with other blocking times may also be supplied if required. Measured from the transition of the turn-on or turn-off command at the host controller to direct output of the gate drive unit (excluding the delay of the gate resistors). Refers to the direct output of the gate drive unit (excluding the delay of the gate resistors). The test voltage of 4000 Vac(rms)/50Hz may be applied only once during one minute. It should be noted that with this (strictly speaking obsolete) test method, some (minor) damage occurs to the insulation layers due to the partial discharge. Consequently, this test is not performed at CONCEPT as a series test. In the case of repeated insulation tests (e.g. module test, equipment test, system test), the subsequent tests should be performed with a lower test voltage: the test voltage is reduced by 400V for each additional test. The more modern if more elaborate partial-discharge measurement is preferable to such test methods as it is almost entirely non-destructive. The partial discharge is not measured for the standard types. Tested and selected types with guaranteed partial-discharge immunity can be supplied for applications with maximum requirements and higher operating voltages (such as railroad applications). This specification guarantees that the drive information will be transferred reliably even at a high DC-link voltage and with ultra-fast switching operations. The transceivers required at the host controller side are not delivered with the gate driver. It is recommended to use the same types as used in the gate driver. For product information refer to www.IGBT-Driver.com/go/fiberoptics The recommended transmitter current at the host controller is 30-35mA, suitable for plastic optic fibers with a length of less than 2.5 meters. Higher current may increase jitter or delay at turn-off. The transmitter current at the gate driver is about 29mA. Page 4 INTELLIGENT POWER ELECTRONICS 2SB315B Data Sheet 2SB315B-FF800R17KP4_B2 17) 18) The recommended transmitter current at the host controller is 60mA. The transmitter current at the gate driver is about 53mA. Important Notice The data contained in this product 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 747-1, Chapter IX or European standard EN 100015 (i.e. the workplace, tools, etc. must comply with these standards). Otherwise, this product may be damaged. Legal Disclaimer This data sheet specifies devices but cannot promise to deliver any specific characteristics. No warranty or guarantee is given - either expressly or implicitly - regarding delivery, performance or suitability. CT-Concept Technologie AG reserves the right to make modifications to its technical data and product specifications at any time without prior notice. The general terms and conditions of delivery of CT-Concept Technologie AG apply. Quality The obligation to high quality is one of the central features laid down in the mission statement of CT-Concept Technologie AG. The quality management system covers all stages of product development and production up to delivery. The drivers of the SCALE series are manufactured to the ISO 9001 standard. IGBT-Driver.com Page 5 2SB315B Data Sheet 2SB315B-FF800R17KP4_B2 Ordering Information The general terms and conditions of delivery of CT-Concept Technologie AG apply. Related IGBT CONCEPT Driver Type # Infineon FF800R17KP4_B2 Infineon FF800R17KP4_B2 2SB315B-FF800R17KP4_B2 2SB315B-FF800R17KP4_B2 Opt. 01 Opt. 01: ST Fiber-optic interface (HFBR-2412Z and HFBR-1412Z), see "Description Manual for 2SB315B SCALE Dual-Channel Plug-and-Play IGBT Drivers". and Application Information about Other Products For drivers adapted to other high-voltage or high-power IGBT modules Direct link: www.IGBT-Driver.com/go/plug-and-play For other drivers and evaluation systems Please click: www.IGBT-Driver.com (c) Manufacturer CT-Concept Technologie AG A Power Integrations Company Johann-Renfer-Strasse 15 2504 Biel-Bienne Switzerland Phone Fax +41 - 32 - 344 47 47 +41 - 32 - 344 47 40 E-mail Internet Info@IGBT-Driver.com www.IGBT-Driver.com Copyright 2003...2013 by CT-Concept Technologie AG - Switzerland. We reserve the right to make any technical modifications without prior notice. Page 6 All rights reserved. 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