E-L6561D STMicroelectronics, E-L6561D Datasheet
E-L6561D
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E-L6561D Summary of contents
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... Soft Output Over Voltage Protection – no need for external low pass filter on the cur- – very low operating quiescent current minimis- The totem pole output stage is capable of driving a Power MOS or IGBT with source and sink cur- rents of ± ...
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... Zero current detection input connected to GND, the device is disabled. 6 GND Current return for driver and control circuits Gate driver output. A push pull output stage is able to drive the Power MOS with peak current of 400mA (source and sink Supply voltage of driver and control circuits. CC (1) Parameter guaranteed by design, not tested in production ...
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... Table 5. Electrical Characteristics (V = 14.5V -25°C to 125°C;unless otherwise specified) CC amb Symbol Pin Parameter SUPPLY VOLTAGE SECTION V 8 Operating Range Turn-on Threshold Turn-off Threshold CC OFF Hys 8 Hysteresis SUPPLY CURRENT SECTION I 8 Start-up Current START Quiescent Current Operating Supply Current Quiescent Current Zener Voltage ...
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... The output voltage is expected to be kept by the operation of the PFC circuit close to its nominal value. This is set by the ratio of the two external resistors R1 and R2 (see fig. 5), taking into consideration that the non inverting input of the error amplifier is biased inside the L6561 at 2.5V. ...
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... V = 60V ± 4.2V). 3.1 Disable function The zero current detector (ZCD) pin can be used for device disabling as well. By grounding the ZCD volt- age the device is disabled reducing the supply current consumption at 1.4mA typical (@ 14.5V supply volt- age). ...
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... Vac (85V to 135V) NTC (*) 120K TRANSFORMER R6 = 0.619 /2 T: core THOMSON-CSF B1ET2910A (ETD 10mm) OR EQUIVALENT (OREGA 473201A7 475K , 1% primary 90T of Litz wire 10 x 0.2mm 475K secondary 11T of #27 AWG (0.15mm) gap 1.8mm for a total primary inductance of 0.7mH Figure 7. Typical Application Circuit (120W, 220VAC) ...
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... Boost Inductor Spec (ITACOIL E2543/E) E25x13x7 core, 3C85 ferrite 1.5 mm gap for 0.7 mH primary inductance Primary: 105 turns 20x0.1 mm Secondary: 11 turns 0.1mm Figure 10. EVAL6561-80: PCB and Component Layout (Top view, real size 57x108mm) Table 6. EVAL6561-80: Evaluation Results. V (Vac) V (Vdc) Pin (W) ...
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... V CC-OFF ( - (˚C) 8/13 Figure 13. Supply Current vs. Supply D94IN047A I CC (mA 0.5 0.1 0.05 0.01 0.005 0 75 100 125 T (˚C) Figure 14. Voltage Feedback Input Threshold D94IN044A 75 100 125 Voltage 1nF f = 70KHz 25˚ vs. Temperature V REF (V) 2.50 2.48 2.46 - 100 D97IN548A 20 V (V) CC D94IN048A T (˚C) ...
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... Figure 15. Output Saturation Voltage vs. Sink Current V PIN7 ( 14.5V 2.0 1.5 1.0 0 100 200 300 Figure 16. Output Saturation Voltage vs. Source Current V PIN7 ( 14 100 200 300 Figure 17. Multiplier Characteristics V (pin4) D94IN046 CS (V) upper voltage clamp 1.6 SINK 1.4 1.2 1.0 0.8 ...
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... L6561 Figure 18. DIP-8 Mechanical Data & Package Dimensions mm DIM. MIN. TYP. MAX. A 3.32 a1 0.51 B 1.15 1.65 b 0.356 0.55 b1 0.204 0.304 D 10.92 E 7.95 9.75 e 2.54 e3 7.62 e4 7.62 F 6.6 I 5.08 L 3.18 3.81 Z 1.52 10/13 inch MIN. TYP. MAX. 0.131 0.020 0.045 0.065 0.014 ...
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... L 0.40 1.27 k 0˚ (min.), 8˚ (max.) ddd 0.10 Note: (1) Dimensions D does not include mold flash, protru- sions or gate burrs. Mold flash, potrusions or gate burrs shall not exceed 0.15mm (.006inch) in total (both side). inch MIN. TYP. MAX. 0.053 0.069 ...
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... L6561 Table 7. Revision History Date Revision January 2004 June 2004 12/13 15 First Issue 16 Modified the Style-look in compliance with the “Corporate Technical Publications Design Guide”. Changed input of the power amplifier connected to Multiplier (Fig. 2). Description of Changes ...
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