<IGBT Modules> CM150TX-24S HIGH POWER SWITCHING USE INSULATED TYPE

Similar documents
< IGBT MODULES > CM100DY-34A HIGH POWER SWITCHING USE INSULATED TYPE APPLICATION

< IGBT MODULES > CM450DY-24S HIGH POWER SWITCHING USE INSULATED TYPE APPLICATION

<IGBT Modules> CM450DXL-34SA HIGH POWER SWITCHING USE INSULATED TYPE

< IGBT MODULES > CM450DX-24S HIGH POWER SWITCHING USE INSULATED TYPE APPLICATION

<Diode Modules> RM200CY-24S HIGH POWER SWITCHING USE INSULATED TYPE

RoHS Directive compliant Recognized under UL1557, File E APPLICATION. dual switch (Half-Bridge) OUTLINE DRAWING & INTERNAL CONNECTION

<IGBT Modules> CM450DY-24S HIGH POWER SWITCHING USE INSULATED TYPE

APPLICATION. CM150DUS-12F - 4 th generation Fast switching IGBT module - MITSUBISHI IGBT MODULES CM150DUS-12F HIGH POWER SWITCHING USE INSULATED TYPE

Wind power, Photovoltaic (Solar) power, AC Motor Control, Motion/Servo Control, Power supply, etc. OUTLINE DRAWING & INTERNAL CONNECTION

< IGBT MODULES > CM600DU-12NFH HIGH POWER HIGH FREQUENTLY SWITCHING USE INSULATED TYPE

Not Recommend. for New Design < IGBT MODULES > CM1400DUC-24NF HIGH POWER SWITCHING USE INSULATED TYPE APPLICATION


Wind power, Photovoltaic (Solar) power, AC Motor Control, Motion/Servo Control, Power supply, etc. OUTLINE DRAWING & INTERNAL CONNECTION

<IGBT Modules> CM900DUC-24S HIGH POWER SWITCHING USE INSULATED TYPE

Wind power, Photovoltaic (Solar) power, AC Motor Control, Motion/Servo Control, Power supply, etc. OUTLINE DRAWING & INTERNAL CONNECTION

RoHS Directive compliant UL Recognized under UL1557, File E APPLICATION

RoHS Directive compliant UL Recognized under UL1557, File E APPLICATION

<IGBT Modules> CM75DY-34T HIGH POWER SWITCHING USE INSULATED TYPE

<IGBT Modules> CM500C2Y-24S HIGH POWER SWITCHING USE INSULATED TYPE

<IGBT Modules> CM450C1Y-24T HIGH POWER SWITCHING USE INSULATED TYPE

<IGBT Modules> CM400DY-13T HIGH POWER SWITCHING USE INSULATED TYPE

<IGBT Modules> CM450DX-24S1 HIGH POWER SWITCHING USE INSULATED TYPE

<IGBT Modules> CM600DX-24T/CM600DXP-24T HIGH POWER SWITCHING USE INSULATED TYPE

<IGBT Modules> CM600DX-13T/CM600DXP-13T HIGH POWER SWITCHING USE INSULATED TYPE

<Full SiC Modules> FMF600DX2-24A HIGH POWER SWITCHING USE INSULATED TYPE

< IGBT MODULES > CM50MXA-24S HIGH POWER SWITCHING USE INSULATED TYPE APPLICATION

< IGBT MODULES > CM75MXA-24S HIGH POWER SWITCHING USE INSULATED TYPE APPLICATION

MBM200H45E2-H Silicon N-channel IGBT 4500V E2 version

DATA SHEET. 1N914; 1N916 High-speed diodes DISCRETE SEMICONDUCTORS Sep 03

Diode RapidSwitchingEmitterControlledDiode. IDV30E65D2 EmitterControlledDiode. Datasheet. IndustrialPowerControl

IXBN42N170A V CES = 1700V. = 21A V CE(sat) 6.0V t fi. = 20ns. High Voltage, High Gain BIMOSFET TM Monolithic Bipolar MOS Transistor

Three phase full Bridge with Trench MOSFETs in DCB-isolated high-current package

Diode RapidSwitchingEmitterControlledDiode. IDP20C65D2 EmitterControlledDiodeRapid2CommonCathodeSeries. Datasheet. IndustrialPowerControl

Diode FastSwitchingEmitterControlledDiode. IDW50E60 EmitterControlledDiodeseries. Datasheet. IndustrialPowerControl

Three phase full Bridge with Trench MOSFETs in DCB isolated high current package

AK8777B. Overview. Features

Diode RapidSwitchingEmitterControlledDiode. IDW40E65D2 EmitterControlledDiode. Datasheet. IndustrialPowerControl

Diode RapidSwitchingEmitterControlledDiode. IDW15E65D2 EmitterControlledDiode. Datasheet. IndustrialPowerControl

Diode RapidSwitchingEmitterControlledDiode. IDP08E65D1 EmitterControlledDiodeRapid1Series. Datasheet. IndustrialPowerControl

Diode RapidSwitchingEmitterControlledDiode. IDP20E65D2 EmitterControlledDiode. Datasheet. IndustrialPowerControl

ORDER INFORMATION TO pin 320 ~ 340mV AMC7150DLF

MX6895BETR. -550V Full Bridge Gate Driver INTEGRATED CIRCUITS DIVISION. Features. Description. Applications. Ordering Information

Diode RapidSwitchingEmitterControlledDiode. IDP30E65D1 EmitterControlledDiodeRapid1Series. Datasheet. IndustrialPowerControl

BAV70WT1G SBAV70WT1G Dual Switching Diode Common Cathode

D44VH10 (NPN), D45VH10 (PNP) Complementary Silicon Power Transistors 15 A COMPLEMENTARY SILICON POWER TRANSISTORS 80 V, 83 W

CM1800HCB-34N. <High Voltage Insulated Gate Bipolar Transistor:HVIGBT >

PRELIMINARY N-CHANNEL MOSFET 1 P-CHANNEL MOSFET. Top View

IXFN64N50PD2 IXFN64N50PD3

HRF32. Silicon Schottky Barrier Diode for Rectifying. ADE D(Z) Rev 4 Jul Features. Ordering Information. Outline

CM200DY-24A. APPLICATION AC drive inverters & Servo controls, etc CM200DY-24A. IC...200A VCES V Insulated Type 2-elements in a pack

CoolMOS 1) Power MOSFET ISOPLUS - electrically isolated surface to heatsink Surface Mount Power Device

Impacts of the dv/dt Rate on MOSFETs Outline:

Obsolete Product(s) - Obsolete Product(s)

Solid-state Timer H3CT

Obsolete Product(s) - Obsolete Product(s)

Primary Side Control SMPS with Integrated MOSFET

IR Receiver Module for Light Barrier Systems

IR Receiver Module for Light Barrier Systems

Power losses in pulsed voltage source inverters/rectifiers with sinusoidal currents

functional operation of the device at these or any other condition beyond those indicated in the specifications is not implied.

IR Receiver Modules for Remote Control Systems

1N Amp SCHOTTKY RECTIFIER. Bulletin PD rev. C 11/02. Description/ Features. Major Ratings and Characteristics

AK8779B Hall Effect IC for Pulse Encoders

IR Receiver Modules for Remote Control Systems

Series SHDC Output: 40A,100 Vdc and 20A,200 Vdc High Industrial Performance (HIPpak) DC Solid-State Relays

IR Receiver Module for Light Barrier Systems

PI90LV9637. LVDS High-Speed Differential Line Receivers. Features. Description. Applications PI90LV9637

GG6005. General Description. Features. Applications DIP-8A Primary Side Control SMPS with Integrated MOSFET

AK8779A Hall Effect IC for Pulse Encoders

Dimensions. Model Number. Electrical connection emitter. Features. Electrical connection receiver. Product information. Indicators/operating means

Solid-state Multi-functional Timer

Control circuit for a Self-Oscillating Power Supply (SOPS) TDA8385

S R V U T DETAIL "A" AF AE E1C2 (33) E1C2 (32) Dimensions Inches Millimeters

IR Sensor Module for Reflective Sensor, Light Barrier, and Fast Proximity Applications

PROFET BTS 736 L2. Smart High-Side Power Switch Two Channels: 2 x 40mΩ Status Feedback

CURRENT MODE PWM+PFM CONTROLLER WITH BUILT-IN HIGH VOLTAGE MOSFET

IR Sensor Module for Reflective Sensor, Light Barrier, and Fast Proximity Applications

HI-8585, HI ARINC 429 Line Driver PIN CONFIGURATION DESCRIPTION SUPPLY VOLTAGES FUNCTION TABLE FEATURES PIN DESCRIPTION TABLE

90SQ... SERIES. 9 Amp SCHOTTKY RECTIFIER. Bulletin PD rev. E 06/05. Description/ Features. Major Ratings and Characteristics

Special Features. Mechanical Data. Transmitte r with TSHFxxxx 1 OUT

TEA2019 CURRENT MODE SWITCHING POWER SUPPLY CONTROL CIRCUIT DIRECT DRIVE OF THE EXTERNAL SWITCHING TRANSISTOR POSITIVE AND NEGATIVE OUTPUT CUR-

Dimensions. Transmitter Receiver ø2.6. Electrical connection. Transmitter +UB 0 V. Emitter selection. = Light on = Dark on

Dimensions. Transmitter Receiver ø2.6. Electrical connection. Transmitter +UB 0 V. Emitter selection. = Light on = Dark on


Maintenance/ Discontinued

CP15TD1-24A. DIP-CIB 3Ø Converter + 3Ø Inverter + Brake 15 Amperes/1200 Volts

IR Receiver Modules for Remote Control Systems

Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. These are stress ratings only;and

Explanation of Maximum Ratings and Characteristics for Thyristors

AN303 APPLICATION NOTE

Electronic timer CT-MVS.12 Multifunctional with 1 c/o contact Data sheet

Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. These are stress ratings only;and

PRM and VTM Parallel Array Operation

IR Receiver Modules for Remote Control Systems

Smart High-Side Power Switch Two Channels: 2 x 30mΩ Current Sense

Time Control Technique

Preliminary AK8776. Overview. Features

IR Receiver Modules for Remote Control Systems

General data 8/91. Overview

COMBITRON Program Schedule

Transcription:

sixpack (3φ Inverer) Collecor curren...... 5 A Collecor-emier volage CES... Maximum juncion emperaure T jmax... 7 5 C Fla base Type APPLICATION AC Moor Conrol, Moion/Servo Conrol, Power supply, ec. OUTLINE DRAWING & INTERNAL CONNECTION Copper base plae (non-plaing) Tin plaing pin erminals RoHS Direcive complian Recognized under UL557, File E33585 Dimension in mm TERMINAL =.8 SECTION A INTERNAL CONNECTION Tolerance oherwise specified P() P() Division of Dimension.5 o 3 ±. Tolerance GUP() GP(9) GWP(7) over 3 o 6 ±.3 over 6 o 3 ±.5 EUP() EP() EWP(8) over 3 o ±.8 over o 4 ±. GUN(5) EUN(6) U(48~5) GP(3) EP(4) (4~44) GWN() EWN() W(36~38) NTC TH(3) TH(3) The olerance of size beween erminals is assumed o be ±.4. N() N() Cauion: Each (hree) pin erminal of P/N/P/N/U//W is conneced in he module, bu should use all each hree pins for he exernal wiring. Publicaion Dae : April 4

MAXIMUM RATINGS (T j=5 C, unless oherwise specified) INERTER PART IGBT/DIODE Symbol Iem Condiions Raing Uni CES Collecor-emier volage G-E shor-circuied GES Gae-emier volage C-E shor-circuied ± DC, T C = C (Noe, 4) 5 Collecor curren RM Pulse, Repeiive (Noe3) 3 P o Toal power dissipaion T C =5 C (Noe, 4) 5 W (Noe) (Noe) DC 5 Emier curren I (Noe) ERM Pulse, Repeiive (Noe3) 3 MODULE Symbol Iem Condiions Raing Uni isol Isolaion volage Terminals o base plae, RMS, f=6 Hz, AC min 5 T j max Maximum juncion emperaure Insananeous even (overload) 75 C T Cmax Maximum case emperaure (Noe4) T j op Operaing juncion emperaure Coninuous operaion (under swiching) -4 ~ +5 T sg Sorage emperaure - -4 ~ +5 ELECTRICAL CHARACTERISTICS (T j=5 C, unless oherwise specified) INERTER PART IGBT/DIODE Symbol Iem Condiions Limis A A 5 C Min. Typ. Max. ES Collecor-emier cu-off curren CE = CES, G-E shor-circuied - -. ma I GES Gae-emier leakage curren GE = GES, C-E shor-circuied - -.5 μa GE(h) Gae-emier hreshold volage =5 ma, CE = 5.4 6. 6.6 Cesa (Terminal) Cesa (Chip) C ies Collecor-emier sauraion volage Inpu capaciance =5 A, GE =5, T j =5 C -.8.5 Refer o he figure of es circui. T j =5 C -. - (Noe6) T j =5 C -.5 - =5 A, T j =5 C -.7.5 GE =5, T j =5 C -.9 - (Noe6) T j =5 C -.95 - - - 5 C oes Oupu capaciance CE =, G-E shor-circuied - - 3. C res Reverse ransfer capaciance - -.5 Q G Gae charge CC =6, =5 A, GE =5-35 - nc d(on) Turn-on delay ime - - 8 CC =6, =5 A, GE =±5, r Rise ime - - d(off) Turn-off delay ime - - 6 R G = Ω, Inducive load f Fall ime - - 3 EC (Noe) (Terminal) EC (Noe) (Chip) rr (Noe) Emier-collecor volage =5 A, G-E shor-circuied, T j =5 C -.8.5 Refer o he figure of es circui. T j =5 C -.8 - (Noe6) T j =5 C -.8 - =5 A, T j =5 C -.7.5 G-E shor-circuied, T j =5 C -.7 - (Noe6) T j =5 C -.7 - Reverse recovery ime CC =6, =5 A, GE =±5, - - 3 ns Q rr (Noe) Reverse recovery charge R G= Ω, Inducive load - 8. - μc E on Turn-on swiching energy per pulse CC=6, ==5 A, - 4. - E off Turn-off swiching energy per pulse GE=±5, R G= Ω, T j =5 C, - 6 - E rr (Noe) Reverse recovery energy per pulse Inducive load -. - mj R CC'+EE' Inernal lead resisance Main erminals-chip, per swich, T C =5 C (Noe4) C Uni nf ns mj - -.8 mω r g Inernal gae resisance Per swich - 3 - Ω Publicaion Dae : April 4

ELECTRICAL CHARACTERISTICS (con.; T j=5 C, unless oherwise specified) NTC THERMISTOR PART Symbol Iem Condiions Limis Min. Typ. Max. R 5 Zero-power resisance T C =5 C (Noe4) 4.85 5. 5.5 kω ΔR/R Deviaion of resisance R =493 Ω, T C = C (Noe4) -7.3 - +7.8 % B (5/5) B-consan Approximae by equaion (Noe6) Uni - 3375 - K P 5 Power dissipaion T C =5 C (Noe4) - - mw THERMAL RESISTANCE CHARACTERISTICS Symbol Iem Condiions Limis Min. Typ. Max. R h(j-c)q Juncion o case, per Inverer IGBT (Noe4) - -.3 Thermal resisance R h(j-c)d Juncion o case, per Inverer DIODE (Noe4) - -.3 R h(c- s ) Conac hermal resisance MECHANICAL CHARACTERISTICS Case o hea sink, per module, (Noe4, 7) Thermal grease applied Symbol Iem Condiions Uni K/W - 5 - K/kW Limis Min. Typ. Max. M s Mouning orque Mouning o hea sink M 5 screw.5 3. 3.5 N m d s d a Creepage disance Clearance Terminal o erminal.8 - - Terminal o base plae.4 - - Terminal o erminal 9.88 - - Terminal o base plae.4 - - m mass - - 3 - g e c Flaness of base plae On he cenerline X, Y (Noe8) Uni mm mm ± - + μm Noe. Represen raings and characerisics of he ani-parallel, emier-collecor free wheeling diode (DIODE).. Juncion emperaure (T j ) should no increase beyond T jmax raing. 3. Pulse widh and repeiion rae should be such ha he device juncion emperaure (T j ) dose no exceed T jmax raing. 4. Case emperaure (T C) and hea sink emperaure (T s) are defined on he each surface (mouning side) of base plae and hea sink jus under he chips. Refer o he figure of chip locaion. 5. Pulse widh and repeiion rae should be such as o cause negligible emperaure rise. R 6. B ln( 5 ( 5 / 5) = )/( ), R5 T5 T5 R 5: resisance a absolue emperaure T 5 [K]; T 5=5 [ C]+73.5=98.5 [K] R 5: resisance a absolue emperaure T 5 [K]; T 5=5 [ C]+73.5=33.5 [K] 7. Typical value is measured by using hermally conducive grease of λ=.9 W/(m K). 8. The base plae (mouning side) flaness measuremen poins (X, Y) are as follows of he following figure. +:Convex -:Concave X Y mouning side mouning side -:Concave mouning side +:Convex 9. Use he following screws when mouning he prined circui board (PCB) on he sand offs. "φ.6 or φ.6 self apping screw" The lengh of he screw depends on he hickness (.6~.) of he PCB. Publicaion Dae : April 4 3

RECOMMENDED OPERATING CONDITIONS Symbol Iem Condiions Limis Min. Typ. Max. CC (DC) Supply volage Applied across P-N/P-N erminals - 6 85 GEon Gae (-emier drive) volage Applied across G*P-E*P/G*N-E*N (*=U,, W) erminals Uni 3.5 5. 6.5 R G Exernal gae resisance Per swich - 3 Ω CHIP LOCATION (Top view) Dimension in mm, olerance: ± mm Tr*P/Tr*N: IGBT, Di*P/Di*N: DIODE (*=U//W), Th: NTC hermisor TEST CIRCUIT AND WAEFORMS *: U,, W P P i E v GE ~ 9 % G*P Load i E Q rr =.5 I rr rr - GE E*P * + CC i C ~ 9 % A rr + GE R G G*N vce I rr - GE vge E*N N N i C A d(on) r d(off) f %.5 I rr Swiching characerisics es circui and waveforms rr, Q rr es waveform M i E v EC M i C i C M CC v CE CC CC v CE A. M. CC. CC. M i i i IGBT Turn-on swiching energy IGBT Turn-off swiching energy DIODE Reverse recovery energy Turn-on / Turn-off swiching energy and Reverse recovery energy es waveforms (Inegral ime insrucion drawing) Publicaion Dae : April 4 4

TEST CIRCUIT GE=5 GE=5 9 GE=5 7 48~5 4~44 8 36~38 5 3 6 4 9 7 8 48~5 4~44 36~38 GE=5 5 GE=5 3 GE=5 6 4 Gae-emier GP-EP, GN-EP, shor-circuied GWP-EWN, GWN-EWN Gae-emier GUP-EUP, GUN-EUN, shor-circuied GWP-EWP, GWN-EWN Gae-emier GUP-EUP, GUN-EUN, shor-circuied GP-EP, GN-EN UP / UN IGBT P / N IGBT WP / WN IGBT CEsa es circui 9 7 48~5 4~44 8 36~38 5 3 6 4 9 7 8 48~5 4~44 36~38 5 3 6 4 Gae-emier GP-EP, GN-EP, shor-circuied GWP-EWN, GWN-EWN Gae-emier GUP-EUP, GUN-EUN, shor-circuied GWP-EWP, GWN-EWN Gae-emier GUP-EUP, GUN-EUN, shor-circuied GP-EP, GN-EN UP / UN DIODE P / N DIODE WP / WN DIODE EC es circui Publicaion Dae : April 4 5

PERFORMANCE CURES INERTER PART OUTPUT CHARACTERISTICS COLLECTOR-EMITTER SATURATION OLTAGE CHARACTERISTICS T j=5 C (Chip) GE=5 (Chip) 3 3.5 GE= 3.5 5 5 3 T j=5 C COLLECTOR CURRENT IC (A) 5 5 9 COLLECTOR-EMITTER SATURATION OLTAGE CEsa ().5.5.5 T j=5 C T j=5 C 4 6 8 COLLECTOR-EMITTER OLTAGE CE () 5 5 5 3 COLLECTOR CURRENT (A) COLLECTOR-EMITTER SATURATION OLTAGE CHARACTERISTICS FREE WHEELING DIODE FORWARD CHARACTERISTICS T j=5 C (Chip) G-E shor-circuied (Chip) COLLECTOR-EMITTER SATURATION OLTAGE CEsa () 8 6 4 =3 A =5 A =6 A EMITTER CURRENT IE (A) T j=5 C T j=5 C T j=5 C 6 8 4 6 8 GATE-EMITTER OLTAGE GE () 3 EMITTER-COLLECTOR OLTAGE EC () Publicaion Dae : April 4 6

PERFORMANCE CURES INERTER PART HALF-BRIDGE SWITCHING CHARACTERISTICS HALF-BRIDGE SWITCHING CHARACTERISTICS CC=6, GE=±5, R G= Ω, INDUCTIE LOAD CC=6, GE=±5, =5 A, INDUCTIE LOAD ---------------: T j=5 C, - - - - -: T j=5 C ---------------: T j=5 C, - - - - -: T j=5 C d(off) d(off) d(on ) d(on ) r SWITCHING TIME (ns) f r SWITCHING TIME (ns) f COLLECTOR CURRENT IC (A) EXTERNAL GATE RESISTANCE RG (Ω) HALF-BRIDGE HALF-BRIDGE SWITCHING CHARACTERISTICS SWITCHING CHARACTERISTICS CC=6, GE=±5, R G= Ω, CC=6, GE=±5, /=5 A, INDUCTIE LOAD, PER PULSE INDUCTIE LOAD, PER PULSE ---------------: T j=5 C, - - - - -: T j=5 C ---------------: T j=5 C, - - - - -: T j=5 C E on SWITCHING ENERGY (mj) REERSE RECOERY ENERGY (mj) E on E off E rr SWITCHING ENERGY (mj) REERSE RECOERY ENERGY (mj) E off E rr COLLECTOR CURRENT IC (A) EMITTER CURRENT IE (A). EXTERNAL GATE RESISTANCE RG (Ω) Publicaion Dae : April 4 7

PERFORMANCE CURES INERTER PART CAPACITANCE CHARACTERISTICS FREE WHEELING DIODE REERSE RECOERY CHARACTERISTICS CC=6, GE=±5, R G= Ω, INDUCTIE LOAD G-E shor-circuied, T j=5 C ---------------: T j=5 C, - - - - -: T j=5 C C ies rr CAPACITANCE (nf) C oes rr (ns), Irr (A) I rr. C res.. COLLECTOR-EMITTER OLTAGE CE () EMITTER CURRENT IE (A) GATE CHARGE CHARACTERISTICS TRANSIENT THERMAL IMPEDANCE CHARACTERISTICS (MAXIMUM) CC=6, =5 A, T j=5 C Single pulse, T C=5 C R h(j-c)q=.3 K/W, R h(j-c)d=.3 K/W GATE-EMITTER OLTAGE GE () 5 5 3 4 5 NORMALIZED TRANSIENT THERMAL RESISTANCE Zh(j-c)........ GATE CHARGE QG (nc) TIME (S) Publicaion Dae : April 4 8

PERFORMANCE CURES NTC hermisor par TEMPERATURE CHARACTERISTICS RESISTANCE R (kω). -5-5 5 5 75 5 TEMPERATURE T ( C) Publicaion Dae : April 4 9

Keep safey firs in your circui designs! Misubishi Elecric Corporaion pus he maximum effor ino making semiconducor producs beer and more reliable, bu here is always he possibiliy ha rouble may occur wih hem. Trouble wih semiconducors may lead o personal injury, fire or propery damage. Remember o give due consideraion o safey when making your circui designs, wih appropriae measures such as (i) placemen of subsiuive, auxiliary circuis, (ii) use of non-flammable maerial or (iii) prevenion agains any malfuncion or mishap. Noes regarding hese maerials These maerials are inended as a reference o assis our cusomers in he selecion of he Misubishi semiconducor produc bes suied o he cusomer's applicaion; hey do no convey any license under any inellecual propery righs, or any oher righs, belonging o Misubishi Elecric Corporaion or a hird pary. Misubishi Elecric Corporaion assumes no responsibiliy for any damage, or infringemen of any hird-pary's righs, originaing in he use of any produc daa, diagrams, chars, programs, algorihms, or circui applicaion examples conained in hese maerials. All informaion conained in hese maerials, including produc daa, diagrams, chars, programs and algorihms represens informaion on producs a he ime of publicaion of hese maerials, and are subjec o change by Misubishi Elecric Corporaion wihou noice due o produc improvemens or oher reasons. I is herefore recommended ha cusomers conac Misubishi Elecric Corporaion or an auhorized Misubishi Semiconducor produc disribuor for he laes produc informaion before purchasing a produc lised herein. The informaion described here may conain echnical inaccuracies or ypographical errors. Misubishi Elecric Corporaion assumes no responsibiliy for any damage, liabiliy, or oher loss rising from hese inaccuracies or errors. Please also pay aenion o informaion published by Misubishi Elecric Corporaion by various means, including he Misubishi Semiconducor home page (www.misubishielecric.com/semiconducors/). When using any or all of he informaion conained in hese maerials, including produc daa, diagrams, chars, programs, and algorihms, please be sure o evaluae all informaion as a oal sysem before making a final decision on he applicabiliy of he informaion and producs. Misubishi Elecric Corporaion assumes no responsibiliy for any damage, liabiliy or oher loss resuling from he informaion conainedherein. Misubishi Elecric Corporaion semiconducors are no designed or manufacured for use in a device or sysem ha is used under circumsances in which human life is poenially a sake. Please conac Misubishi Elecric Corporaion or an auhorized Misubishi Semiconducor produc disribuor when considering he use of a produc conained herein for any specific purposes, such as apparaus or sysems for ransporaion, vehicular, medical, aerospace, nuclear, or undersea repeaer use. The prior wrien approval of Misubishi Elecric Corporaion is necessary o reprin or reproduce in whole or in par hese maerials. If hese producs or echnologies are subjec o he Japanese expor conrol resricions, hey mus be expored under a license from he Japanese governmen and canno be impored ino a counry oher han he approved desinaion. Any diversion or reexpor conrary o he expor conrol laws and regulaions of Japan and/or he counry of desinaion is prohibied. Please conac Misubishi Elecric Corporaion or an auhorized Misubishi Semiconducor produc disribuor for furher deails on hese maerials or he producs conained herein. 3-4 MITSUBISHLECTRIC CORPORATION. ALL RIGHTS RESERED. Publicaion Dae : April 4