FAN3217 FAIRCHILD [Fairchild Semiconductor], FAN3217 Datasheet
FAN3217
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FAN3217 Summary of contents
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... FAN3216TMX Dual Inverting Channels FAN3217TMX Dual Non-Inverting Channels © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 Description The FAN3216 and FAN3217 dual 2A gate drivers are designed = 12V MOSFETs providing high peak current pulses during the short = 6V OUT switching intervals. They are both available with TTL input thresholds ...
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... PCB copper adjacent to pin 6. 6. Psi_JT ( ): Thermal characterization parameter providing correlation between the semiconductor junction temperature and JT the center of the top of the package for the thermal environment defined in Note 4. © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 Figure 2. SOIC-8 (Top View) (1) ( ...
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... FAN3216 (x INx 0 ( (7) 1 Note: 7. Default input signal if no external connection is made. © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 FAN3216 Figure 3. Pin Configurations (Repeated) Pin Description is above UVLO threshold above UVLO threshold. DD FAN3217 (x INx OUTx (7) ...
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... Block Diagrams © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 Figure 4. FAN3216 Block Diagram Figure 5. FAN3217 Block Diagram 4 www.fairchildsemi.com ...
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... Supply Voltage Range DD V Input Voltage INA, INA+, INA–, INB, INB+ and INB– Operating Ambient Temperature A © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 Parameter Human Body Model, JEDEC JESD22-A114 Charged Device Model, JEDEC JESD22-C101 Parameter 5 Min. Max. Unit -0 ...
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... RVS Notes: 8. Not tested in production. 9. See Timing Diagrams of Figure 6 and Figure 7. Figure 6. Non-Inverting Timing Diagram © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 =-40°C to +125°C. Currents are defined as positive into the device and negative J Conditions INA = V , INB = 0V DD INA = V ...
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... Typical characteristics are provided at T Figure 8. I (Static) vs. Supply Voltage DD Figure 10. I (No-Load) vs. Frequency DD Figure 12. Input Thresholds vs. Supply Voltage © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 =25°C and V =12V unless otherwise noted (10) Figure 9. I Figure 11. I Figure 13. Input Thresholds vs. Temperature ...
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... Typical Performance Characteristics Typical characteristics are provided at T Figure 15. Propagation Delay vs. Supply Voltage Figure 17. Propagation Delays vs. Temperature © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 =25°C and V =12V unless otherwise noted Figure 14. UVLO Threshold vs. Temperature Figure 16. Propagation Delay vs. Supply Voltage Figure 18 ...
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... Typical Performance Characteristics Typical characteristics are provided at T Figure 19. Fall Time vs. Supply Voltage Figure 22. Rise/Fall Waveforms with 2.2nF Load © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 =25°C and V =12V unless otherwise noted Figure 20. Rise Time vs. Supply Voltage Figure 21. Rise and Fall Times vs. Temperature Figure 23 ...
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... Figure 4 and Figure 5. 11. The initial spike in each current waveform is a measurement artifact caused by the stray inductance of the current- measurement loop. Test Circuit © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 =25°C and V =12V unless otherwise noted Figure 25 ...
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... Applications Information Input Thresholds The FAN3216 and the FAN3217 drivers consist of two identical channels that may be used independently at rated current or connected in parallel to double the individual current capacity. The input thresholds meet industry-standard TTL-logic thresholds independent of the V a hysteresis voltage of approximately 0.4V. These levels ...
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... Layout and Connection Guidelines The FAN3216 and FAN3217 gate drivers incorporate fast-reacting input circuits, short propagation delays, and powerful output stages capable of delivering current peaks over 2A to facilitate voltage transition times from under 10ns to over 150ns. The following layout and connection guidelines are strongly recommended: ...
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... LOW until the UVLO threshold is reached, then the output is in-phase with the input. Figure 32. Non-Inverting Startup Waveforms © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 The inverting configuration of startup waveforms are shown in Figure 33. With IN+ tied to VDD and the input until steady- signal applied to IN– ...
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... T = board temperature in location as defined in B the Thermal Characteristics table. © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 In the forward converter with synchronous rectifier shown in FDMS8660S is a reasonable MOSFET selection. The gate charge for each SR MOSFET would be 60nC with ...
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... Typical Application Diagrams Figure 34. Forward Converter with Synchronous Rectification Figure 36. Phase-shifted Full-bridge with Two Gate Drive Transformers (Simplified) © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 Figure 35. Primary-side Dual Driver in a Push-pull Converter 15 www.fairchildsemi.com ...
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... Single 9A FAN3122C +9.7A / -7.1A Notes: 12. Typical currents with OUTx at 6V and V 13. Thresholds proportional to an externally supplied reference voltage. © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 (12) Input Threshold CMOS Single Channel of Dual-Input/Single-Output (13) External Single Non-Inverting Channel with External Reference SOT23-5, MLP6 ...
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... Package specifications do not expand the terms of Fairchild’s worldwide terms and conditions, specifically the warranty therein, which covers Fairchild products. Always visit Fairchild Semiconductor’s online packaging area for the most recent package drawings: http://www.fairchildsemi.com/packaging/. © 2009 Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0 1.75 4 ...
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... Fairchild Semiconductor Corporation FAN3216 / FAN3217 • Rev. 1.0.1 18 www.fairchildsemi.com ...