IR2153 SELF-OSCILLATING HALF-BRIDGE DRIVER. Features. Product Summary. Packages. Description. Typical Connection

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Features n Floating channel designed for bootstrap operation Fully operational to +600V Tolerant to negative transient voltage dv/dt immune n Undervoltage lockout n Programmable oscillator frequency 1 f = 1.4 (RT + 75 Ω) CT n Matched propagation delay for both channels n Micropower supply startup current of 90 µa. n Shutdown function turns off both channels n Low side output in phase with Data Sheet No. PD-6.062A IR2153 SELF-OSCILLATING HALF-BRIDGE DRIVER Product Summary V OFFSET 600V max. Duty Cycle 50% I O +/- 200 ma / 400 ma V clamp 15.6V Deadtime (typ.) 1.2 µs Packages Description The IR2153 is a high voltage, high speed, self-oscillating power MOSFET and IGBT driver with both high and low side referenced output channels. Proprietary HVIC and latch immune CMOS technologies enable ruggedized monolithic construction. The front end features a programmable oscillator which is similar to the 555 timer. The output drivers feature a high pulse current buffer stage and an internal deadtime designed for minimum driver cross-conduction. Propagation delays for the two channels are matched to simplify use in 50% duty cycle applications. The floating channel can Typical Connection be used to drive an N-channel power MOSFET or IGBT in the high side configuration that operates off a high voltage rail up to 600 volts. up to 600V V CC C T COM V B V S TO AD 1 1/6/97

Absolute Maximum Ratings Absolute Maximum Ratings indicate sustained limits beyond which damage to the device may occur. All voltage parameters are absolute voltages referenced to COM. The Thermal Resistance and Power Dissipation ratings are measured under board mounted and still air conditions. Parameter Value Symbol Definition Min. Max. Units V B High Side Floating Supply Voltage -0.3 625 V S High Side Floating Supply Offset Voltage V B - 25 V B + 0.3 V High Side Floating Output Voltage V S - 0.3 V B + 0.3 V Low Side Output Voltage -0.3 V CC + 0.3 V RT Voltage -0.3 V CC + 0.3 V CT C T Voltage -0.3 V CC + 0.3 I CC Supply Current (Note 1) 25 I RT Output Current -5 5 dv s /dt Allowable Offset Supply Voltage Transient 50 V/ns P D Package Power Dissipation @ T A +25 C (8 Lead DIP) 1.0 (8 Lead SOIC) 0.625 R θja Thermal Resistance, Junction to Ambient (8 Lead DIP) 125 (8 Lead SOIC) 200 T J Junction Temperature 150 T S Storage Temperature -55 150 C T L Lead Temperature (Soldering, 10 seconds) 300 Recommended Operating Conditions The Input/Output logic timing diagram is shown in Figure 1. For proper operation the device should be used within the recommended conditions. The V S offset rating is tested with all supplies biased at 15V differential. Parameter Value Symbol Definition Min. Max. Units V B High Side Floating Supply Absolute Voltage V S + 10 V S + 20 V S High Side Floating Supply Offset Voltage 600 V High Side Floating Output Voltage V S V B V Low Side Output Voltage 0 V CC I CC Supply Current (Note 1) 5 ma T A Ambient Temperature -40 125 C V ma W C/W V Note 1: Because of the IR2153 s application specificity toward off-line supply systems, this IC contains a zener clamp structure between the chip V CC and COM which has a nominal breakdown voltage of 15.6V. Therefore, the IC supply voltage is normally derived by forcing current into the supply lead (typically by means of a high value resistor connected between the chip V CC and the rectified line voltage and a local decoupling capacitor from V CC to COM) and allowing the internal zener clamp circuit to determine the nominal supply voltage. Therefore, this circuit should not be driven by a DC, low impedance power source of greater than V CLAMP. 2

Dynamic Electrical Characteristics V BIAS (V CC, V BS ) = 12V, C L = 1000 pf and T A = 25 C unless otherwise specified. Parameter Value Symbol Definition Min. Typ. Max. Units Test Conditions t r Turn-On Rise Time 80 t f Turn-Off Fall Time 35 ns t sd Shutdown Propagation Delay 660 DT Deadtime 1.2 µs D Duty Cycle 50 % Static Electrical Characteristics V BIAS (V CC, V BS ) = 12V, C L = 1000 pf, C T = 1 nf and T A = 25 C unless otherwise specified. The V IN, V TH and I IN parameters are referenced to COM. The V O and I O parameters are referenced to COM and are applicable to the respective output leads: or. Parameter Value Symbol Definition Min. Typ. Max. Units Test Conditions f OSC Oscillator Frequency 20.0 = 35.7 kω khz 100 = 7.04 kω V CLAMP V CC Zener Shunt Clamp Voltage 15.6 I CC = 5 ma V CT+ 2/3 V CC Threshold 8.0 V CT- 1/3 V CC Threshold 4.0 V V CTSD C T shutdown Input Threshold 2.2 V RT+ High Level Output Voltage, V CC - 0 100 I RT = -100 µa 200 300 I RT = -1 ma V RT- Low Level Output Voltage 20 50 I RT = 100 µa 200 300 I RT = 1 ma mv V OH High Level Output Voltage, V BIAS - V O 100 I O = 0A V OL Low Level Output Voltage, V O 100 I O = 0A I LK Offset Supply Leakage Current 50 V B = V S = 600V I QBS Quiescent V BS Supply Current 10 I QCCUV Micropower V CC Supply Startup Current 90 µa V CC < V CCUV I QCC Quiescent V CC Supply Current 400 V CC > V CCUV I CT C T Input Current 0.001 1.0 V CCUV+ V CC Supply Undervoltage Positive Going 9.0 Threshold V V CCUV- V CC Supply Undervoltage Negative Going 8.0 Threshold V CCUVH V CC Supply Undervoltage Lockout Hysteresis 1.0 V I O+ Output High Short Circuit Pulsed Current 200 ma V O = 0V I O- Output Low Short Circuit Pulsed Current 400 V O = 15V 3

Functional Block Diagram V B R R + - HV LEVEL SHIFT PULSE FILTER R S Q R/2 + - R S Q Q DEAD TIME PULSE GEN V S V CC C T R/2 + - GIC DEAD TIME DELAY 15.6V UV DETECT COM Lead Definitions Lead Symbol Description C T V B V S V CC COM Oscillator timing resistor input,in phase with for normal IC operation Oscillator timing capacitor input, the oscillator frequency according to the following equation: 1 f = 1.4 (RT + 75 Ω) CT where 75Ω is the effective impedance of the output stage High side floating supply High side gate drive output High side floating supply return Low side and logic fixed supply Low side gate drive output Low side return Lead Assignments 4 8 Lead DIP SO-8 IR2153 IR2153S

Device Information Process & Design Rule HVDCMOS 4.0 µm Transistor Count 231 Die Size 68 X 101 X 26 (mil) Die Outline Thickness of Gate Oxide 800Å Connections Material Poly Silicon First Width 5 µm Layer Spacing 6 µm Thickness 5000Å Material Al - Si - Cu (Si: 1.0%, Cu: 0.5%) Second Width 6 µm Layer Spacing 9 µm Thickness 20,000Å Contact Hole Dimension 5 µm X 5 µm Insulation Layer Material PSG (SiO 2 ) Thickness 1.7 µm Passivation Material PSG (SiO 2 ) Thickness 1.7 µm Method of Saw Full Cut Method of Die Bond Ablebond 84-1 Wire Bond Method Thermo Sonic Material Au (1.0 mil / 1.3 mil) Leadframe Material Cu Die Area Ag Lead Plating Pb : Sn (37 : 63) Package Types 8 Lead PDIP / SO-8 Materials EME6300 / MP150 / MP190 Remarks: 5

VCCUV+ VCLAMP V CC C T () () 50% 50% t r t f Figure 1. Input/Output Timing Diagram 90% 90% 10% 10% Figure 2. Switching Time Waveform Definitions 50% 50% 90% 90% 10% DT 10% Figure 3. Deadtime Waveform Definitions 6

8 Lead DIP INCHES MILLIMETERS DIM MIN MAX MIN MAX A.0532.0688 1.35 1.75 A1.0040.0098 0.10 0.25 B.014.018 0.36 0.46 C.0075.0098 0.19 0.25 D.189.196 4.80 4.98 E.150.157 3.81 3.99 e.050 BASIC 1.27 BASIC e1.025 BASIC 0.635 BASIC H.2284.2440 5.80 6.20 K.011.019 0.28 0.48 L.016.050 0.41 1.27 θ 0 8 0 8 SO-8 7

8 WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 90245, Tel: (310) 322 3331 EUROPEAN HEADQUARTERS: Hurst Green, Oxted, Surrey RH8 9BB, UK Tel: ++ 44 1883 732020 IR CANADA: 7321 Victoria Park Ave., Suite 201, Markham, Ontario L3R 2Z8, Tel: (905) 475 1897 IR GERMANY: Saalburgstrasse 157, 61350 Bad Homburg Tel: ++ 49 6172 96590 IR ITALY: Via Liguria 49, 10071 Borgaro, Torino Tel: ++ 39 11 451 0111 IR FAR EAST: 171 (K&H Bldg.), 30-4 Nishi-ikebukuro 3-Chome, Toshima-ku, Tokyo Japan Tel: 81 3 3983 0086 IR SOUTHEAST ASIA: 315 Outram Road, #10-02 Tan Boon Liat Building, Singapore 0316 Tel: 65 221 8371 http://www.irf.com/ Data and specifications subject to change without notice. 1/97