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  ZXGD3006E6 document number ds35229 rev. 1 ? 2 1 of 8 www.diodes.com june 2011 ? diodes incorporated a product line o f diodes incorporated ZXGD3006E6 40v 10a gate driver in sot26 description ZXGD3006E6 is a 40v gate driver for switching igbts and sic mosfets. it can transfer up to 10a peak source/sink current into the gate for effective charging and dischar ging of a large capacitive load. the ZXGD3006E6 can drive typically 4a into the low gate impedance of an igbt, with just 1ma input from a controller. also, the turn-on and turn-off switching behavior of the igbt can be individually tailored to suit an application. in particular, by defining the switching characteristics appropriately, em i and cross conduction problems can be reduced. applications gate driving igbts and sic mosfets in: ? solar inverters ? power supplies ? plasma display panel power modules features and benefits ? high-gain buffer with typically 4a output from 1ma input ? 40v supply for +20v to -18v gate driving to prevent dv/dt induced false triggering ? emitter-follower that is rugged to latch-up / shoot-through issues, and delivers <10ns propagation delay time ? separate source and sink outputs for independent control of igbt turn-on and turn-off times ? optimized pin-out to simplify pcb layout and reduce parasitic trace inductances ? near-zero quiescent supply current ? ?lead-free?, rohs compliant (note 1) ? halogen and antimony free. ?green? device (note 2) ? qualified to aec-q101 standards for high reliability mechanical data ? case: sot26 ? case material: molded plasti c. ?green? molding compound. ? ul flammability rating 94v-0 ? moisture sensitivity: level 1 per j-std-020 ? terminals: matte tin finish ? weight: 0.018 grams (approximate) 1 ordering information (note 3) product marking reel size (inches) tape width (mm) quantity per reel ZXGD3006E6ta 3006 7 8 3000 notes: 1. no purposefully added lead 2. diodes inc?s ?green? policy can be found on our website at http://www.diodes.com 3. for packaging details, go to our website at http://www.diodes.com marking information pin name pin function v cc supply voltage high in driver input pin v ee supply voltage low source source current output sink sink current output 3006 = product type marking code sot26 top view pin-out v cc in v ee source do not connect sink 3006
ZXGD3006E6 document number ds35229 rev. 1 ? 2 2 of 8 www.diodes.com june 2011 ? diodes incorporated a product line o f diodes incorporated ZXGD3006E6 typical application circuit maximum ratings @t a = 25c unless otherwise specified characteristic symbol value unit supply voltage, with respect to v ee v cc 40 v input voltage, with respect to v ee v in 40 v output difference voltage (source ? sink) v ( source-sink ) 7.5 v peak output current i pk 10 a input current i in 100 ma thermal characteristics @t a = 25c unless otherwise specified characteristic symbol value unit power dissipation (notes 4 & 5) linear derating factor p d 1.1 8.8 w mw/ c thermal resistance, junction to ambient (notes 4 & 5) r ja 113 c/w thermal resistance, junction to lead (note 6) r jl 105 operating and storage temperature range t j, t stg -55 to +150 c notes: 4. for a device surface mounted on 25mm x 25mm x 0.6mm fr4 pcb with high coverage of single sided 1oz copper, in still a ir conditions; the device is measured when operating in a steady-state condition. the heatsink is split in half with the pin 1 (v cc ) and pin 3 (v ee ) connected separately to each half. 5. for device with two active die running at equal power. 6. thermal resistance from junction to solder-point at the end of each lead on pin 1 (v cc ) and pin 3 (v ee ). in v cc + supply zxgd3006 v s v cc source sink r source r sink controller v ee igbt (or sic mosfet) v ee - supply
ZXGD3006E6 document number ds35229 rev. 1 ? 2 3 of 8 www.diodes.com june 2011 ? diodes incorporated a product line o f diodes incorporated ZXGD3006E6 electrical characteristics @t a = 25c unless otherwise specified characteristic symbol min typ max unit test condition output voltage, high v out ( hi ) v cc - 1.0 v cc - 0.8 - v v in = v cc c l = 1nf r source = 0 ? , r sink = 0 ? output voltage, low v out ( low ) - v ee + 0.12 v ee + 0.3 v in = v ee supply breakdown voltage bv cc 40 - - v i q = 100 a, v in = v cc 40 - - i q = 100 a, v in = v ee = 0v quiescent supply current i q - - 50 na v cc = 30v, v in = v cc - - 50 v cc = 30v, v in = v ee = 0v source current i ( source ) - 4.0 - a v cc = 5v, i in = 1ma, v out = 0v sink current i ( sink ) - 3.8 - v cc = 5v, i in =-1ma, v out = 5v source current with varying input resistances i (source) - 6.4 5.5 3.9 2.2 0.44 - a r in = 200 ? r in = 1k ? r in = 10k ? r in = 100k ? r in = 1000k ? v cc = 15v, v ee = 0v v in = 15v c l = 100nf, r l = 0.18 ? r source = 0 ? , r sink = 0 ? sink current with varying input resistances i (sink) - 7.7 6.5 4.4 2.3 0.46 - a r in = 200 ? r in = 1k ? r in = 10k ? r in = 100k ? r in = 1000k ? v cc = 15v, v ee = 0v v in = 15v c l = 100nf, r l = 0.18 ? r source = 0 ? , r sink = 0 ? switching times with low load capacitance c l = 10nf t d(rise) t r t d(fall) t f - 8 48 16 35 - ns v cc = 15v, v ee = 0v v in = 0 to 15v r in = 1k ? c l = 10nf, r l = 0.18 ? r source = 0 ? , r sink = 0 ? switching times with high load capacitance c l = 100nf t d(rise) t r t d(fall) t f - 46 419 47 467 - ns v cc = 15v, v ee = 0v v in = 0 to15v r in = 1k ? c l = 100nf, r l = 0.18 ? r source = 0 ? , r sink = 0 ? switching times with asymmetric source and sink resistors t d(rise) t r t d(fall) t f - 27 208 11 53 - ns v cc = 20v, v ee = -18v v in = -18 to 20v r in = 1k ? c l = 10nf, r l = 0.18 ? r source = 4.7 ? , r sink = 0 ? switching test circuit and timing diagram 10% 90% 90% t r t d(rise) t d(fall) t f v in v out v cc v ee v cc in zxgd3006 source sink r source r sink r in 50? 50? r l c l v in v out 10% 90% 10% v
ZXGD3006E6 document number ds35229 rev. 1 ? 2 4 of 8 www.diodes.com june 2011 ? diodes incorporated a product line o f diodes incorporated ZXGD3006E6 typical switching characteristics @t a = 25c unless otherwise specified 0.0 0.2 0.4 0.6 0.8 1.0 1.2 -20 -15 -10 -5 0 5 10 15 20 10 100 1k 10k 100k 1m 1e-4 1e-3 0.01 0.1 1 10 0 100 200 300 400 500 600 700 800 0 5 10 15 0.00.51.01.52.02.53.03.5 0 5 10 15 v in = -18 to 20v v cc = 20v v ee = -18v r in = 1k c l = 10nf r l = 0.18 r source = 4.7 r sink = 0 switching speed asymmetric source and sink resistors v in v out voltage (v) time ( s) v in = 0 to 15v v cc = 15v v ee = 0v square wave c l = 1 f c l = 100nf c l = 10nf supply current supply current (a) frequency (hz) c l = 1nf v in = 0 to 15v v cc = 15v v ee = 0v r in = 1k c l = 10nf r l = 0.18 r source = 0 r sink = 0 v out switching speed low load capacitance c l = 10nf voltage (v) time (ns) v in v in = 0 to 15v v cc = 15v v ee = 0v r in = 1k c l = 100nf r l = 0.18 r source = 0 r sink = 0 v out v in switching speed high load capacitance c l = 100nf time ( s) voltage (v)
ZXGD3006E6 document number ds35229 rev. 1 ? 2 5 of 8 www.diodes.com june 2011 ? diodes incorporated a product line o f diodes incorporated ZXGD3006E6 typical switching characteristics @t a = 25c unless otherwise specified 1 10 100 1k 1 10 100 1000 1 10 100 1k 1 10 100 1000 1k 10k 100k 1m 10m 0.01 0.1 1 10 1k 10k 100k 1m 10m 0.01 0.1 1 10 1 10 100 1k 10 100 1000 10000 1 10 100 1k 10 100 1000 10000 v in = 15v v cc = 15v v ee = 0v r l = 0.18 v in = 15v v cc = 15v v ee = 0v r l = 0.18 r in =200 r in =1k r in =10k r in =100k r in =1m turn-on delay time t d(rise) (ns) c l load capacitance (nf) v in = 15v v cc = 15v v ee = 0v r l = 0.18 r in =200 r in =1k r in =10k r in =100k turn-off delay time t d(fall) (ns) c l load capacitance (nf) r in =1m v in = 15v v cc = 15v v ee = 0v r l = 0.18 c l =10nf c l =100nf c l =1nf c l =1uf source current vs. input resistance peak source current (a) r in input resistance ( ) v in = 15v v cc = 15v v ee = 0v r l = 0.18 c l =1nf c l =10nf c l =100nf c l =1uf sink current vs. input resistance peak sink current (a) r in input resistance ( ) v in = 15v v cc = 15v v ee = 0v r l = 0.18 r in =200 r in =1k r in =10k r in =1m r in =100k turn-on rise time t r (ns) c l load capacitance (nf) v in = 15v v cc = 15v v ee = 0v r l = 0.18 r in =1k r in =200 r in =10k r in =100k r in =1m turn-off fall time c l load capacitance (nf) t f (ns)
ZXGD3006E6 document number ds35229 rev. 1 ? 2 6 of 8 www.diodes.com june 2011 ? diodes incorporated a product line o f diodes incorporated ZXGD3006E6 0 100 200 300 400 500 600 700 800 0 5 10 15 v in = 0 to 15v v cc = 15v v ee = 0v r in = 1k c l = 10nf r l = 0.18 r source = 0 r sink = 0 v out symmetric source and sink resistors voltage (v) time (ns) v in 0.0 0.2 0.4 0.6 0.8 1.0 1.2 -20 -15 -10 -5 0 5 10 15 20 v in = -18 to 20v v cc = 20v v ee = -18v r in = 1k c l = 10nf r l = 0.18 r source = 4.7 r sink = 0 asymmetric source and sink resistors v in v out voltage (v) time ( s) circuit examples zxgd3006 driving a mosfet application example of the zxgd3006 driving the gate of a mosfet from 0 to +15v with r source = r sink = 0 ? switching time characteristic zxgd3006 driving an igbt application example of zxgd3006 driving the gate of an igbt with independent t on and t off using asymmetric r source and r sink in addition, the gate is driven negative to -18v to prevent dv/dt induced false triggering. switching time characteristic
ZXGD3006E6 document number ds35229 rev. 1 ? 2 7 of 8 www.diodes.com june 2011 ? diodes incorporated a product line o f diodes incorporated ZXGD3006E6 package outline dimensions suggested pad layout sot26 dim min max typ a 0.35 0.50 0.38 b 1.50 1.70 1.60 c 2.70 3.00 2.80 d ? ? 0.95 h 2.90 3.10 3.00 j 0.013 0.10 0.05 k 1.00 1.30 1.10 l 0.35 0.55 0.40 m 0.10 0.20 0.15 0 8 ? all dimensions in mm dimensions value (in mm) z 3.20 g 1.60 x 0.55 y 0.80 c1 2.40 c2 0.95 a m j l d b c h k x z y c1 c2 c2 g
ZXGD3006E6 document number ds35229 rev. 1 ? 2 8 of 8 www.diodes.com june 2011 ? diodes incorporated a product line o f diodes incorporated ZXGD3006E6 important notice diodes incorporated makes no warranty of any kind, express or implied, with regards to this document, including, but not limited to, the implied warranties of merchantability and fitness for a particular purpose (and their equivalents under the laws of any jurisdiction). diodes incorporated and its subsidiaries rese rve the right to make modifications, enhancements, improvements, corrections or ot her changes without further notice to this document and any product descri bed herein. diodes incorporated does not assume any liability arising out of the application or use of this document or any product described herein; neither does diodes incorporated convey any license under its patent or trademark rights, nor the rights of others. any customer or user of this document or products described herein in such applica tions shall assume all risks of such use and will agree to hold diodes incorporated and all the companies whose products are represented on diodes incorporated website, harmless against all damages. diodes incorporated does not warrant or accept any liability whatsoever in respect of any products purchased through unauthoriz ed sales channel. should customers purchase or use diodes inco rporated products for any unintended or una uthorized application, customers shall i ndemnify and hold diodes incorporated and its representativ es harmless against all claims, damages, expenses, and attorney fees arising out of, directly or indirectly, any claim of personal injury or death a ssociated with such unintended or unauthorized application. products described herein may be covered by one or more united states, international or foreign patents pending. product names and markings noted herein may also be covered by one or more united states, international or foreign trademarks. life support diodes incorporated products are specifically not authorized for use as critical com ponents in life support devices or systems without the express written approval of the chief executive offi cer of diodes incorporated. as used herein: a. life support devices or syst ems are devices or systems which: 1. are intended to implant into the body, or 2. support or sustain life and whose failure to perform when proper ly used in accordance with instructions for use provided in the labeling can be reasonably expected to result in significant injury to the user. b. a critical component is any component in a life support devic e or system whose failure to perform can be reasonably expect ed to cause the failure of the life support device or to affect its safety or effectiveness. customers represent that they have all necessary expertise in the safety and regulatory ramifi cations of their life support dev ices or systems, and acknowledge and agree that they are solely responsible for all legal, regulatory and safety-rel ated requirements concerning the ir products and any use of diodes incorporated products in such safety-critical, life support devices or systems, notwithstanding any devices- or s ystems-related information or support that may be provided by diodes incorporated. further, customers must fully indemnify diodes incorporate d and its representatives against any damages arisi ng out of the use of diodes incorporated pr oducts in such safety-critical, life suppor t devices or systems. copyright ? 2011, diodes incorporated www.diodes.com


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