M81707FP MITSUBISHI | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 5
Technical content
Mar. 2006
APPLICATIONS
FEATURES
¡UNDERVOLTAGE LOCKOUT ¡SOP-16 PACKAGE
DESCRIPTION
M81707FP is high voltage Power MOSFET and IGBT mod- ule driver for half bridge applications. BLOCK DIAGRAM PIN CONFIGURATION (TOP VIEW) Outline:16P2N NC:NO CONNECTION MITSUBISHI SEMICONDUCTORS <HVIC> M81707FP HIGH VOLTAGE HALF BRIDGE DRIVER LO 1 Vcom VCC2 NC NC VS VB HO NC GND LIN NC HIN V CC NC NC 7 VB 8 HO 6 VS VCC2 1 LO
2 Vcom
S INTER LOCK
14 PULSE
S INTER LOCK
Mar. 2006 V V V V V V V V V V V/ns W mW/°C °C/W V V V V V V V V V V V S+10 V S Vcom+10 V com V S+20 500 VB Vcom+20 500 V CC2 VCC ABSOLUTE MAXIMUM RATINGS (Ta = 25°C unless otherwise specified) High Side Floating Supply Absolute Voltage High Side Floating Supply Offset Voltage High Side Floating Supply Voltage High Side Output Voltage Low Side Floating Supply Absolute Voltage Output Standard Voltage Low Side Floating Supply Voltage Low Side Fixed Supply Voltage Low Side Output Voltage Logic Input Voltage Symbol UnitParameter T est conditions Limits Min. Typ. Max. V B > 10V VBS = VB–VS VCC2 > 10V VCC2com = VCC2–Vcom HIN, LIN VB VS VBS VHO VCC2 Vcom VCC2com VCC VLO VIN –0.5 ~ 624 VB–24 ~ VB+0.5 –0.5 ~ 24 VS–0.5 ~ VB+0.5 –0.5 ~ 624 VCC2–24 ~ VCC2+0.5 –0.5 ~ 24 –0.5 ~ 24 V com–0.5 ~ VCC2+0.5 –0.5 ~ VCC+0.5 ±50 0.89 8.9 –40 ~ 125 –40 ~ 100 –55 ~ 125 255:10s, max 260 V BS = VB–VS VCC2com = VCC2–Vcom HIN, LIN Ta = 25°C, On Board Ta > 25°C, On Board Pb Free High Side Floating Supply Absolute Voltage High Side Floating Supply Offset Voltage High Side Floating Supply Voltage High Side Output Voltage Low Side Floating Supply Absolute Voltage Output Standard Voltage Low Side Floating Supply Voltage Low Side Fixed Supply Voltage Low Side Output Voltage Logic Input Voltage Allowable Offset Voltage Transient Package Power Dissipation Linear Derating Factor Junction-Case Thermal Resistance Junction Temperature Operation Temperature Storage Temperature Solder Heat Resistance V B VS VBS VHO VCC2 Vcom VCC2com VCC VLO VIN dVS/dt Pd K q Rth(j-c) Tj Topr Tstg TL Symbol Parameter Test conditions Ratings Unit RECOMMENDED OPERATING CONDITIONS MITSUBISHI SEMICONDUCTORS <HVIC> M81707FP HIGH VOLTAGE HALF BRIDGE DRIVER THERMAL DERATING FACTOR CHARACTERISTIC (MAXIMUM RATING) 2.0 1.5 1.0 0.5 0 1251007550250 Temperature Ta (°C) Package Power Dissipation Pd (W) * For proper operation, the device should be used within the recommended conditions.
Mar. 2006 MITSUBISHI SEMICONDUCTORS <HVIC> M81707FP HIGH VOLTAGE HALF BRIDGE DRIVER ELECTRICAL CHARACTERISTICS (Ta = 25°C, VCC = VCC2com ( = VCC2–Vcom) = VBS ( = VB–VS) = 15V, VS = Vcom = 0V, unless otherwise specified) µA µA mA mA mA mA mA mA mA mA mA V V V V V µA µA µA V V µs V V µs mA mA Ω Ω ns ns ns ns ns ns ns ns ns ns ns 14.9 2.0 0.6 1.0 7.5 0.1 7.5 0.1 –60 100 100 200 0.18 0.30 0.18 0.25 0.37 0.18 0.18 0.37 0.25 3.0 1.5 1.5 8.6 0.4 7.5 8.6 0.4 7.5 –100 100 110 130 110 130 220 1.0 1.0 0.4 0.6 0.4 0.5 0.75 0.4 0.4 0.75 0.5 0.1 4.0 2.5 2.0 150 1.0 9.7 0.7 9.7 0.7 –140 140 100 135 160 135 160 240 Floating Supply Leakage Current Vcom Floating Supply Leakage Current VBS Standby Current VCC Standby Current VCC2 Standby Current VBS Standby Current H VCC Standby Current H VCC2 Standby Current H VBS Standby Current L VCC Standby Current L VCC2 Standby Current L High Level Output Voltage Low Level Output Voltage High Level Input Threshold Voltage Low Level Input Threshold Voltage Input Hysteresis Voltage High Level Input Bias Current 5 High Level Input Bias Current 15 Low Level Input Bias Current V BS Supply UV Reset Voltage VBS Supply UV Hysteresis Voltage VBS Supply UV Filter Time VCC Supply UV Reset Voltage VCC Supply UV Hysteresis Voltage VCC Supply UV Filter Time Output High Level Short Circuit Pulsed Current Output Low Level Short Circuit Pulsed Current Output High Level On Resistance Output Low Level On Resistance High Side Turn-On Propagation Delay High Side Turn-Off Propagation Delay High Side Turn-On Rise Time High Side Turn-Off Fall Time Low Side Turn-On Propagation Delay Low Side Turn-Off Propagation Delay Low Side Turn-On Rise Time Low Side Turn-Off Fall Time Delay Matching, High Side and Low Side Turn-On Delay Matching, High Side and Low Side Turn-Off Output Pulse Width Symbol UnitParameter T est conditions Limits Min. Typ.* Max. VB = VS = 600V VCC2 = Vcom = 600V HIN = LIN = 0V HIN = LIN = 0V HIN = LIN = 0V HIN = 5V HIN = 5V HIN = 5V LIN = 5V LIN = 5V LIN = 5V I O = 0A, LO, HO IO = 0A, LO, HO HIN, LIN HIN, LIN V INh = VIH–VIL VIN = 5V VIN = 15V VIN = 0V VO = 0V, VIN = 5V, PW < 10µs VO = 15V, VIN = 0V, PW < 10µs IO = –20mA, ROH = (VOH–VO)/IO IO = 20mA, ROL = VO/IO CL = 200pF between HO-VS CL = 200pF between HO-VS CL = 200pF between HO-VS CL = 200pF between HO-VS CL = 200pF between LO-Vcom CL = 200pF between LO-Vcom CL = 200pF between LO-Vcom CL = 200pF between LO-Vcom |tdLH(HO)–tdLH(LO)| |tdHL(HO)–tdHL(LO)| VIN : PW = 200ns IFS IFcom IBS ICC ICC2 IBSH ICCH ICC2H IBSL ICCL ICC2L VOH VOL VIH VIL VINh IIH5 IIH15 IIL VBSuvr VBSuvh tVBSuv VCCuvr VCCuvh tVCCuv IOH IOL ROH ROL tdLH(HO) tdHL(HO) trH tfH tdLH(LO) tdHL(LO) trL tfL ∆tdLH ∆tdHL VOPW * Typ. is not specified.
Mar. 2006 MITSUBISHI SEMICONDUCTORS <HVIC> M81707FP HIGH VOLTAGE HALF BRIDGE DRIVER TIMING DIAGRAM FUNCTION TABLE (X: H or L) LO = HO = Low LO = High HO = High LO = HO = High HO = Low, V BS UV tripped LO = High, VBS UV tripped LO = Low, VCC2com UV tripped HO = High, VCC2com UV tripped L L H H X X L H HIN Behavioral stateLIN V BS UV VCC2com UV HO LO L H L H L H X X H H H H L L H H H H H H H H L L L L H H L L L H L H L H L H L L Note : “L” state of VBS UV, VCC2com UV means that UV trip voltage. In the case of both input signals (HIN and LIN) are “H”, output signals (HO and LO) become “H”. 1.Input/Output Timing Diagram HIGH ACTIVE (When input signal (HIN or LIN) is “H”, then output signal (HO or LO) is “H”.) In the case of both input signals (HIN and LIN) are “H”, output signals (HO and LO) become “H”. HIN LIN HO LO 2.VCC2com (VBS) Supply Under Voltage Lockout Timing Diagram When Supply Voltage keeps lower UV Trip Voltage( ✽✽✽uvt = ✽✽✽uvr–✽✽✽uvh) for Supply UV Filter Time, output signal becomes “L”. And then, when Supply Voltage is higher than UV Reset Voltage, output becomes normal. VCC2com (VBS) LO (HO) LIN (HIN) tVCC2comuv (tVBSuv) VCC2comuvr (VBSuvr) VCC2comuvh (VBSuvh) VCC2comuvt (VBSuvt)
Mar. 2006 MITSUBISHI SEMICONDUCTORS <HVIC> M81707FP HIGH VOLTAGE HALF BRIDGE DRIVER 3.Allowable Supply Voltage Transient It is recommended that supplying V CC firstly and supplying V CC2com secondly and supplying V BS at last. In the case of shutting off supply voltage, shutting off V BS Supply Voltage firstly. Secondly, shutting off V CC2com Supply Voltage. And last, shutting off V CC Supply Voltage. At the time of starting V CC2com and VBS, power supply should be increased slowly. If it is increased rapidly, output signal (HO or LO) may be “H”. PACKAGE OUTLINE SOP16-P-300-1.27 Weight(g) JEDEC Code 0.2 Cu Alloy 16P2N-A Plastic 16pin 300mil SOP Symbol Min Nom Max A b c D E L y Dimension in Millimeters HE .350 .180 .010 .25 .57 .40 .271 .10 .81 .40 .20 .110 .35 .271 .87 .60 .251 .627 .20 .12 .50 .250 .210 .45 .18 .80 .10 b2 –. 7 6 0– 0° –8 ° e 16 9 HE E D e y F A A2 A1 L c e b2 Recommended Mount Pad Detail FDetail G z x –Z1 0.605 0.755 0.25 z b x M G