Preliminary TLP350. Industrial Inverter Inverter for Air Conditioner IGBT/Power MOSFET Gate Drive IH(Induction Heating) Pin Configuration (top view)
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1 Preliminary Industrial Inverter Inverter for ir Conditioner IGBT/Power MOSFET Gate Drive IH(Induction Heating) TOSHIB Photocoupler Gals IRED + Photo IC TLP TLP Unit: mm The TOSHIB TLP consists of a Gals light-emitting diode and an integrated photodetector. This unit is an -lead DIP package. The TLP is suitable for gate driving IGBTs or power MOSFETs. Peak output current: IO = ±. (max) Guaranteed performance over temperature: to C Supply current:icc = m (max) Power supply voltage: VCC = to V Threshold input current : IFLH = m (max) Switching time (tplh/tphl) : ns (max) Common mode transient immunity: kv/μs Isolation voltage: 7 Vrms UL Recognized : UL77,File No.E679 Option(D) VDE pproved : DIN EN677-- Maximum Operating Insulation Voltage : 9VPK Highest Permissible Over Voltage : VPK TOSHIB -C Weight:. g (typ.) (Note):When a EN677-- approved type is needed, Please designate Option(D) Truth Table Pin Configuration (top view) Input LED Tr Tr Output H ON ON OFF H L OFF OFF ON L 7 6 : NC : node : Cathode : NC : GND 6: (output) 7: NC : Schematic V F (Tr) (Tr) I CC I O 6 GND. F bypass capacitor must be connected between pins and. (See Note 6) --
2 TLP Maximum Ratings (Ta C) Characteristic Symbol Rating Unit Forward current m Forward current de-rating (Ta C) / Ta. m/ C LED Peak transient forward current (Note ) P Reverse voltage V R V Junction temperature T j C Detector H peak output current Ta to C I OPH. L peak output current (Note ) I OPL. Supply voltage Ta < 9 C V Supply voltage Derating Ta 9 C Δ /ΔTa -. V / Junction temperature T j C Operating frequency (Note ) f khz Storage temperature range T stg to C Operating temperature range T opr to C Lead soldering temperature ( s) (Note ) T sol 6 C Isolation voltage (C, minute, R.H. 6%) (Note ) BV S 7 Vrms Note : Pulse width P W s, pps Note : Exponential waveform pulse width P W. s, f khz Note : Exponential waveform I OPH -. (. s), I OPL. (. s) Note : t mm or more from the lead root. Note : This device is regarded as a two terminal device: pins,, and are shorted together, as are pins, 6, 7 and. Note 6: ceramic capacitor(. F) should be connected from pin to pin to stabilize the operation of the high gain linear amplifier. Failure to provide the bypass may impair the switching property. The total lead length between capacitor and coupler should not exceed cm. Recommended Operating Conditions Characteristic Symbol Min Typ. Max Unit Input current, ON (Note 7) (ON) 7. m Input voltage, OFF V F (OFF). V Supply voltage V Peak output current I OPH /I OPL. Operating temperature T opr C Note 7: Input signal rise time (fall time). s. --
3 TLP Electrical Characteristics (Ta to C, unless otherwise specified) Characteristic Symbol Test Circuit Test Conditions Min Typ.* Max Unit Forward voltage V F m, Ta C.6. V Temperature coefficient of forward voltage V F / Ta m. mv/ C Input reverse current I R V R V, Ta C Input capacitance C T V, f MHz,Ta C pf Output current (Note ) H Level I OPH L Level I OPL V, m V V V, m V V V, m V 6-.V V, m V 6-7.V Output voltage Supply current H Level H + V m.7 V EE - V L Level L R L = Ω V F. V H Level I CCH V m.. L Level I CCL 6 open m.. V m Threshold input current L H LH = V, > V, Io = m. m Threshold input voltage H L V FHL = V, < V, Io = m. V Supply voltage V UVLO threshhold V UVLO+ >. V, = m... V V UVLO V UVLO hysteresis UVLO HYS. V *: ll typical values are at Ta C Note : Duration of I O : s(pulse) Note 9: This product is more sensitive to static electricity (ESD) than the conventional product because of its minimal power consumption design. General static electricity precautions are necessary for handling this component. Isolation Characteristics (Ta = C) Characteristic Symbol Test Conditions Min. Typ. Max. Unit Capacitance input to output C S V =,f = MHz (Note6). pf Isolation resistance R S V S V, Ta C, R.H. 6% (Note6) Ω Isolation voltage BV S C, minute 7 C, second,in oil V rms DC, minute,in oil Vdc --
4 TLP Switching Characteristics (Ta to C, unless otherwise specified) Characteristic Propagation delay time Switching Time Dispersion between ON and OFF Symbol Test Circuit Test Conditions Min Typ.* Max Unit L H t plh V m 6 R g H L t phl C g nf m 6 t phl -t plh 7 V R g, C g nf Output rise time (-9%) t r V m R g Output fall time (9-%) t f C g nf m ns Common mode transient immunity at high level output Common mode transient immunity at low level output CM H CM L V CM Vp-p Ta C V m (min) 6V m (max) V V/ s *: ll typical values are at Ta C Test Circuit : I OPH Test Circuit : I OPL V-6 I OPH I OPL V 6- Test Circuit : H Test Circuit : L R L V F R L V H V EE V L V EE Test Circuit : I CCH Test Circuit 6: I CCL I CCH I CCL --
5 TLP Test Circuit 7: t plh, t phl, t r, t f, PDD. F Vo Cg nf Rg t plh t r t phl t f H 9% % % L Test Circuit : CM H, CM L I SW F B. F VCC V CM % 9% t r V t f V CM SW : m SW B: m V 6V CM H CM L ( V) CM L tr ( s) CM H ( V) t f ( s) CML (CMH) is the maximum rate of rise (fall) of the common mode voltage that can be sustained with the output voltage in the low (high) state. --
6 TLP IF VF VF/ Ta-IF F o r w a r d C u r r e n t (m)..... Ta = C C o e ff ic ie n t V F / Ta ( m V / C) F o r w a r d Vo l t a g e VF(V) F o r w a r d C u r r e n t (m) IF -Ta VCC -Ta F o r w a r d C u r r e n t (m) Supply Voltage VCC (V) Low Level Output Voltage VOL[V] VF =.V RL=Ω VOL -Ta VCC=V,VEE=-V VCC=7.V,VEE=-7.V High Level Output Voltage VOH[V] IF = m RL=Ω VOH -Ta VCC=V,VEE=-V VCC=7.V,VEE=-7.V *: The above graphs show typical characteristics. 6 --
7 TLP Low level supply current ICCL (m) VCC=V ICC L-Ta Low level supply current ICCH (m) IF=m VCC=V ICCH-Ta Propagation delay time tplh, tphl (ns) IF=m,VCC=V, Rg=Ω,Cg=nF tplh tphl tph L, t pl H -Ta Propagation delay time tplh, tphl (ns) tph L, t pl H -VC C IF=m,Rg=Ω,Cg=nF tplh tphl Supply Voltage VCC (V) Propagation delay time tplh, tphl (ns) VCC=V, Rg=Ω,Cg=nF tplh tphl tph L, t pl H Forward current IF (m) Threshold input current IFLH (m) VCC=V,VO>V, IO=m IFLH-Ta *: The above graphs show typical characteristics. 7 --
8 TLP IOPL-Ta IOPH-Ta Low Level Peak Output Current IOPL() IF=m,VCC=V (Note:) V6-=7.V V6-=.V IOPL MX High Level Peak Output Current IOPH() IF=m,VCC=V (Note:) V-6=-.V V-6=7.V IOPH MX IOPL-VOL IOPH-VOH Low Level Output Voltage VOL[V]..... IF=m,VCC=V (Note:) Ta=- C Ta= C Ta= C High Level Output Voltage VOH[V] Ta=- C IF=m,VCC=V (Note:) Ta= C Ta= C Low Level Output Peak Current IOPL() High Level Output Peak Current IOPH() VCC-VO(VUVLO)** Output Voltage VO[V] 6 IF = m, Vo >.V -VUVLO UVLOHYS +VUVLO **Test Circuit : VCC-VO(VUVLO) IF Supply Voltage VCC (V) *: The above graphs show typical characteristics. --
9 TLP 9 --
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