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  1 sd 210 fi igbt-driver.com page 1 data sheet scale high voltage igbt driver 1SD210FI-FZ600R65KF1 plug-and-play, compact, high performance, single channel driver for two-level converters abstract the scale hvi 1SD210FI-FZ600R65KF1 is a compact single-channel intelligent gate driver designed for eupec?s high-voltage igbts type fz600r65kf1. the driver features a fiber optic interface and a short-circuit protection. for drivers adapted to other types of high-power and high-voltage igbt modules refer to www.igbt-driver.com/hvi product highlights applications ? plug-and play solution ? two-level converters ? protects the igbt from short-circuit failure ? medium-voltage converters ? active clamping of vce at turn-off ? high-voltage applications ? extremely reliable; long service life ? industrial drives ? no electrolytic capacitors ? traction ? gate current up to ?6a/+10a ? railroad power supplies ? fiber-optic links ? wind-power converters ? monitoring of supply voltage and fiber optics ? radiology and laser technology ? switching frequency dc to max. 2khz ? research ? duty cycle 0... 100% ? suitable dc/dc power supply as separate unit ? almost all other conceivable ? shorten application?s development time
1 sd 210 fi data sheet 1SD210FI-FZ600R65KF1 page 2 ct-concept.com important: please refer to the related manuals! 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 ?description and application manual for 1sd210 fi scale high voltage igbt drivers?. quality standard manufacturing iso9001 certified. mechanical and electrical interfaces dimensions: 150 x 74 mm. mounting principle: direct screw mount on igbt.  
  drive signal input fiber optic receiver (notes 14, 16) hfbr-2522 status output fiber optic transmitter (notes 14, 17) hfbr-1522 power supply connector on board connector (note 15) 77315-101-05     
 ground gnd (note 19) 1, 2, 4, 5 supply voltage v dc 3 absolute maximum ratings 
 


  supply voltage v dc vdc to gnd (note 1) 0 17.3 v gate peak current i out note 8 -6 +10 a average supply current i dc note 3 190 ma output power gate driver notes 3, 11 2 w switching frequency note 11 2 khz dc link voltage note 5 4400 v operating temperature note 11 -40 +85 c storage temperature -40 +90 c
1 sd 210 fi data sheet 1SD210FI-FZ600R65KF1 igbt-driver.com page 3 electrical characteristics all data refer to +25c and v dc = 16.4v unless otherwise specified   

 
  nominal supply voltage v dc vdc to gnd (note 1) 15.5 16.4 16.8 v supply current i dc without load (note 2) 80 ma turn-on threshold v th note 4 13.7 v hysteresis on-/off note 4 1.0 v  

 
  vce-monitoring threshold between aux. terminals 750 v response time notes 6, 18 10.0 11.0  s blocking time note 7 1 s 
  

 
  turn-on delay t pd(on) note 12 430 ns turn-off delay t pd(off) note 12 520 ns output rise time t r(out) note 9 100 ns output fall time t f(out) note 9 100 ns acknowledge delay time at status output (note 13) 450 ns acknowledge pulse width at status output 0.7 1.8  s ! 

 
  turn-on gate resistor r g(on) note 8 4.5  turn-off gate resistor r g(off) note 8 22  aux. gate capacitor c ge 68 nf
1 sd 210 fi data sheet 1SD210FI-FZ600R65KF1 page 4 ct-concept.com "  # 1) supply voltages higher than specified can lead to the destruction of the driver and protection circuits on the output side. the gate-emitter voltage tracks with the supply voltage. (not regulated by the gate drive unit.) the recommended dc/dc power supply iso3116i with high voltage isolation capability is a suitable separate unit. 2) static power consumption of the gate driver. 3) if the specified power consumption of the gate driver is exceeded at average, this indicates an overload of the gate driver and the external dc/dc power supply iso3116i. 4) under-voltage monitoring of supply voltage of the gate driver. for a voltage lower than that limit, the power modules are switched off. 5) this limit is due to active clamping. refer to ?description and application manual for 1sd210fi scale high voltage igbt drivers?. 6) pulswidth of the direct output of the gate drive unit. (not covering the delay of the gate resistors.) 7) duration of blocking the command input (keeping the gate driver and the igbt in off-state) after fault detection, i.e. short circuit detection or power supply undervoltage lock out. 8) the gate current is limited by on-board gate resistors. 9) refers to the direct output of the gate drive unit. (not covering the delay of the gate resistors.) 10) 11) application-specific self-heating of gate drivers and igbt modules, especially at high switching frequency, must be taken into account. commonly, the switching frequency is limited due to 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. so, it is recommended to check the gate driver?s ambient temperature within the system. 12) including the delay of external fiber optic links. measured from the transition of turn-on or turn-off command at the host controller side optical transmitter to direct output of the gate drive unit. (not covering the delay of the gate resistors.) 13) including the delay of external fiber optic links. measured from the transition of turn-on or turn-off command at the host controller side optical transmitter to the transition of acknowledge signal at the host controller side optical receiver. 14) 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.semiconductor.agilent.com 15) connector and cable to the dc/dc power supply are not delivered with the gate driver, but via fci inc. recommended crimp contact housing: order code 65039-032; recommended crimp contacts: 5 pcs, order code 48236-002. refer to www.fciconnect.com 16) the recommended transmitter current at the host controller is 30-35ma, suitable for plastic optic fiber with a length of less than 2.5 meters. higher current may increase jitter or delay at turn-off. 17) the transmitter current at the gate driver is 30-35ma. 18) the delay from turn-on transition at direct output of the gate drive unit to the turn-on of the igbt amounts to about 2  s (due to gate resistors). but turn-off at short-circuit happens without delay; so the real short-circuit time is 2  s less than the response time. 19) gnd of power supply is not the same electrical potential as the aux. emitter terminal of the igbt and they must never be connected together.
1 sd 210 fi data sheet 1SD210FI-FZ600R65KF1 igbt-driver.com page 5 exclusion clause concept 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 technology ltd. apply. technical support concept offers you expert help for your questions and problems: www.igbt-driver.com/support e-mail: support@ct-concept.com fax international +41 32 341 71 21 quite special: customized scale hvi drivers if you need an igbt driver that is not included in the delivery range, don?t hesitate to contact concept or your concept sales partner. concept engineers have more than 15 years experience in the development and manufacture of intelligent drivers for power mosfets and igbts and have already implemented a large number of customized solutions.
1 sd 210 fi data sheet 1SD210FI-FZ600R65KF1 page 6 ct-concept.com ordering information # $ %!&%' ( eupec fz600r65kf1 1sd210fi- fz600r65kf1 information about other products "#( ##( $
# direct link: www.igbt-driver.com/hvi !#( #(# please click: www.igbt-driver.com manufacturer your distribution partner ct-concept technology ltd. intelligent power electronics renferstrasse 15 ch-2504 biel-bienne switzerland phone +41 ? 32 341 41 01 fax +41 ? 32 341 71 21 e-mail info@igbt-driver.com internet www.igbt-driver.com  copyright 1999...2002 by ct-concept technology ltd. - switzerland. all rights reserved. we reserve the right to make any technical modifications without prior notice. version from 2002-09-16


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