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HIP6602BCR Datasheet(PDF) 5 Page - Intersil Corporation |
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HIP6602BCR Datasheet(HTML) 5 Page - Intersil Corporation |
5 / 12 page 5 FN9076.5 July 22, 2005 Absolute Maximum Ratings Supply Voltage (VCC) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .15V Supply Voltage (PVCC) . . . . . . . . . . . . . . . . . . . . . . . . . VCC + 0.3V BOOT Voltage (VBOOT - VPHASE) . . . . . . . . . . . . . . . . . . . . . . .15V Input Voltage (VPWM) . . . . . . . . . . . . . . . . . . . . . . GND - 0.3V to 7V UGATE. . . . . . .VPHASE - 5V(<400ns pulse width) to VBOOT + 0.3V VPHASE -0.3V(>400ns pulse width) to VBOOT + 0.3V LGATE . . . . . . . . . GND - 5V(<400ns pulse width) to VPVCC + 0.3V GND -0.3V(>400ns pulse width) to VPVCC + 0.3V PHASE. . . . . . . . . . . . . . . . . . GND -5V(<400ns pulse width) to 15V GND -0.3V(>400ns pulse width) to 15V ESD Rating Human Body Model (Per MIL-STD-883 Method 3015.7) . . . . . 3kV Machine Model (Per EIAJ ED-4701 Method C-111) . . . . . . .200V Operating Conditions Ambient Temperature Range . . . . . . . . . . . . . . . . . . . . 0°C to 85°C Maximum Operating Junction Temperature . . . . . . . . . . . . . . 125°C Supply Voltage, VCC . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12V ±10% Supply Voltage Range PVCC . . . . . . . . . . . . . . . . . . . . . 5V to 12V Thermal Information Thermal Resistance θJA (°C/W) θJC (°C/W) SOIC Package (Note 2) . . . . . . . . . . . . 68 N/A QFN Package (Note 3). . . . . . . . . . . . . 36 6 Maximum Junction Temperature (Plastic Package) . . . . . . . . 150°C Maximum Storage Temperature Range . . . . . . . . . . -65°C to 150°C Maximum Lead Temperature (Soldering 10s) . . . . . . . . . . . . . 300°C (SOIC - Lead Tips Only) For Recommended soldering conditions see Tech Brief TB389. CAUTION: Stresses above those listed in “Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress only rating and operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied. NOTES: 2. θJA is measured with the component mounted on a high effective thermal conductivity test board in free air. See Tech Brief TB379 for details. 3. θJA is measured in free air with the component mounted on a high effective thermal conductivity test board with “direct attach” features. θJC, the “case temp” is measured at the center of the exposed metal pad on the package underside. See Tech Brief TB379. Electrical Specifications Recommended Operating Conditions, unless otherwise specified. PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX UNITS VCC SUPPLY CURRENT Bias Supply Current IVCC fPWM = 500kHz, VPVCC = 12V - 3.7 5.0 mA Power Supply Current IPVCC fPWM = 500kHz, VPVCC = 12V - 2.0 4.0 mA POWER-ON RESET VCC Rising Threshold 9.7 9.95 10.4 V VCC Falling Threshold 7.3 7.6 8.0 V PWM INPUT Input Current IPWM VPWM = 0 or 5V (See Block Diagram) - 500 - µA PWM Rising Threshold VPVCC = 12V - 3.6 - V PWM Falling Threshold VPVCC = 12V - 1.45 - V UGATE Rise Time TRUGATE VPVCC = VVCC = 12V, 3nF Load - 20 - ns LGATE Rise Time TRLGATE VPVCC = VVCC = 12V, 3nF Load - 50 - ns UGATE Fall Time TFUGATE VPVCC = VVCC = 12V, 3nF Load - 20 - ns LGATE Fall Time TFLGATE VPVCC = VVCC = 12V, 3nF Load - 20 - ns UGATE Turn-Off Propagation Delay TPDLUGATE VPVCC = VVCC = 12V, 3nF Load - 30 - ns LGATE Turn-Off Propagation Delay TPDLLGATE VPVCC = VVCC = 12V, 3nF Load - 20 - ns Shutdown Window 1.4 - 3.6 V Shutdown Holdoff Time - 230 - ns OUTPUT Upper Drive Source Impedance RUGATE VVCC = 12V, VPVCC = 5V - 1.7 3.0 Ω VVCC = VPVCC = 12V - 3.0 5.0 Ω Upper Drive Sink Impedance RUGATE VVCC = 12V, VPVCC = 5V - 2.3 4.0 Ω VVCC = VPVCC = 12V - 1.1 2.0 Ω Lower Drive Source Current ILGATE VVCC = 12V, VPVCC = 5V 400 580 - mA VVCC = VPVCC = 12V 500 730 - mA Lower Drive Sink Impedance RLGATE VVCC = 12V, VPVCC = 5V or 12V - 1.6 4.0 Ω HIP6602B |
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