M63954P. HVIC Half-Bridge Driver

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1 M9P Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 97- (7) 9-77 HVIC Half-Bridge Driver 9 E e c Description: M9P is a high voltage integrated circuit designed for electronic ballast, Power MOSFET and IGBT module driver for half-bridge applications. Features: V Floating Supply Voltage ±ma Output Current D Half-Bridge Driver A A Built-In Oscillator SEATING PLANE L A DIP Package e b VREG VCO b b CNT OV Built-In Regulator Application: The M9P is designed for use in electronic ballasts for fluorescent lamps. CVCO RVCO AB M9P GND LO VCC ABTH HVCC LNTH 7 HO LN 9 HGND Outline Drawing and Pin Diagram Dimensions Inches Millimeters A. Max.. Max. A. Min.. Min. A.. b.±..±. b../-.../-. b../-.../-. c..7.7/-. Dimensions Inches Millimeters D.7±. 9.±. E.±..±. e.. e. 7. L. Min.. Min.

2 Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 97- (7) 9-77 M9P Absolute Maximum Ratings, T a = C unless otherwise specified Ratings Symbol Test Conditions M9P Units High Side Floating Supply Offset Voltage H GND Volts High Side Floating Supply Voltage H VCC H GND = GND -. ~ Volts Low Side Fixed Supply Voltage V CC -. ~ Volts OV Input Voltage V OV -. ~ V CC. Volts AB Input Voltage V AB -. ~ V CC. Volts AB Input Current I AB ma ABTH Input Voltage V ABTH -. ~ V CC. Volts LN Input Voltage V LN -. ~ V CC. Volts LN Input Current I LN ma LNTH Input Voltage V LNTH -. ~ V CC. Volts V CO Input Voltage V VCO -. ~ V CC. Volts High Side Output Current I HO ± ma Low Side Output Current I LO ± ma Package Power Dissipation P t T a = C, On Board.7 W Linear Derating Factor K T a > C, On Board. mw/ C Junction Temperature T j C Operation Temperature T opr - ~ C Storage Temperature T stg - ~ C Output Frequency, R VCO = kω, R VCO = 9kΩ, C VCO = pf Oscillation Frequency V CO Input Voltage Min. Typ. Max. Units khz.v REG khz khz.v REG khz

3 Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 97- (7) 9-77 M9P Electrical Characteristics, H GND = GND, H VCC = V CC = V, T a = C, unless otherwise specified Characteristics Symbol Test Conditions Min. Typ. Max. Units General High Side Floating Supply Voltage H VCC H VCC H GND 7 Volts Low Side Fixed Supply Voltage V CC 7 Volts Internal Supply Voltage V REG V CC = V, No Load Volts Standby Current I CC V CC = V, C NT = V, OV = V.7 ma ON Suspension Oscillate Current I CC V CC = V, CNT = V ma ON Oscillation Current (khz) I CC V CC = V, R VCO = kω, ma V VCO =. V REG ON Oscillation Current (khz) I CC R VCO = 9kΩ C VCO = pf, ma V VCO =. V REG UV Voltage V CC UV Reset Voltage V UVr 9... Volts V CC UV Trip Voltage V UVt.. 7. Volts UV Response Delay Time t UV µs OV Voltage OV Protection V th V OV... Volts OV Response Delay Time t OV µs OV Input Leak Current I OV V OV = V µa V CO Voltage V CO Frequency Set Up Limit f VCO khz Output Frequency Set Up Limit f O LO, HO khz V CO Input Voltage Limit V VCO. V REG -. Volts V CO Input Leak Current I VCO V VCO = V - -. µa C VCO Input Voltage V CVCO V REG = 7.V... Volts C VCO Input Leak Current I CVCO V CVCO = V, V VCO > V CVCO - -. µa R VCO Leak Current I rrvco V CVCO = V, V REG = 7.V, V RVCO = V. µa R VCO Saturation Voltage V SRVCO V CVCO = V, V REG = 7.V, I RVCO = ma mv

4 Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 97- (7) 9-77 M9P Electrical Characteristics, H GND = GND, H VCC = V CC = V, T a = C, unless otherwise specified Characteristics Symbol Test Conditions Min. Typ. Max. Units Connection Detect LN Input Voltage Limit V LN V CC -. Volts LNTH Input Voltage Limit V LNTH V CC -. Volts LN Offset Voltage V LNIO - mv LN Input Leak Current I LN V LN < V LNTH µa LNTH Input Leak Current I LNTH V LN > V LNTH, V CC < V UVr µa LNTH Input Hysteresis Current I LNTHh V LN > V LNTH, V LNTH = V µa LN Response Delay Time t LN µs Abnormal Detect AB Input Voltage Limit V AB V REG -. Volts ABTH Input Voltage Limit V ABTH V REG -. Volts AB Offset Voltage V ABIO - mv AB Input Leak Current I AB V AB < V ABTH µa ABTH Input Leak Current I ABTH V AB > V ABTH µa AB Response Delay Time t AB µs External CNT CNT Input Threshold Voltage V CNT... Volts CNT Input Hysteresis Voltage VCNTh... Volts CNT Input Leak Current I CNT V CNT = V µa CNT Response Delay Time t CNT µs Driver Floating Supply Leak Current I RFC V HGND = V. µa Dead Time t DEAD C = pf..9 µs HO Output Voltage V HOH I HO = ma.. Volts V HOH I HO = -ma Volts V HOH I HO = -ma.. Volts V HOL I HO = ma mv V HOL I HO = ma.. Volts V HOL I HO = ma Volts LO Output Voltage V LOH I LO = ma.. Volts V LOH I LO = -ma Volts V LOH I LO = -ma.. Volts V LOL I LO = ma mv V LOL I LO = ma.. Volts V LOL I LO = ma Volts Output Rise Time t r Amplitude % 9%, C = pf ns Output Fall Time t f Amplitude 9% %, C = pf ns

5 Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 97- (7) 9-77 M9P POWER DISSIPATION, P t, (WATTS) THERMAL DERATING FACTOR CHARACTERISTICS (TYPICAL) On Circuit Board No Circuit Board OSCILLATION CURRENT, I CC, (ma) I CC VS. V CC CHARACTERISTIC khz khz Oscillation Suspension Standby INTERNAL SUPPLY VOLTAGE, V REG, (VOLTS) V REG VS. V CC CHARACTERISTIC Oscillation Suspension khz 7. DEAD TIME, t DEAD, (µs)..... t DEAD VS. V CC CHARACTERISTIC t DEAD t DEAD "LO" OUTPUT VOLTAGE, V LOH, (VOLTS) V LOH VS. V CC CHARACTERISTIC Low Side Output Current ma - ma - ma "LO" OUTPUT VOLTAGE, V LOL, (VOLTS) V LOL VS. V CC CHARACTERISTIC Low Side Output Current ma ma ma. I CC VS. T a CHARACTERISTIC 7. V REG VS. T a CHARACTERISTIC V UV VS. T a CHARACTERISTIC OSCILLATION CURRENT,I CC, (ma) I CC I CC I CC I CC INTERNAL SUPPLY VOLTAGE, V REG, (VOLTS) Oscillation Suspension khz UNDER VOLTAGE, V UV, (VOLTS) V UVr V UVt

6 Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 97- (7) 9-77 M9P.9 t DEAD VS. T a CHARACTERISTIC V LOH VS. T a CHARACTERISTIC V LOL VS. T a CHARACTERISTIC DEAD TIME, t DEAD, (µs) t DEAD t DEAD LOH OUTPUT VOLTAGE, V LOH, (VOLTS) - ma - ma - ma LOL OUTPUT VOLTAGE, V LOL, (VOLTS) ma ma ma DEAD TIME OUTPUT RISE TIME 9% FALL TIME 9% 9% HO HO, LO % % t DEAD t DEAD tr t f % LO 9% % BLOCK DIAGRAM C VCO R VCO R VCO R VCO C VCO HV CC V CO S Q RQ DEAD TIME LEVEL SHIFT S Q R H O 9 H GND. V REG.77 V REG L O V REG V REG V REG START LN LN TH 7 Q S R AB AB TH V CC UV QS R / V REG OV GND CNT

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