Saturday, April 19, 2025

1 A, 20V PWM DAC present supply with monitoring preregulator



1 A, 20V PWM DAC present supply with monitoring preregulator

This design concept reprises one other “1A, 20V, PWM managed present supply.” Like the sooner circuit, this design integrates an LM3x7 adjustable regulator with a PWM DAC to make a programmable 20 V, 1 A present supply. It earnings from the correct inside voltage reference and overload and thermal safety options of this time confirmed Bob Pease masterpiece! 

Nonetheless, in contrast to the sooner design concept that requires a floating, mounted output 24-VDC energy adapter, this sequel incorporates a ground-referred enhance preregulator that may run from a 5-V regulated or unregulated provide rail. The earlier linear design has restricted energy effectivity that really drops beneath single-digit percentages when driving low voltage masses. The preregulator on this model fixes that by monitoring the input-output voltage differential throughout the LM3x7, sustaining it at a relentless 3 V. This offers enough dropout-suppressing headroom for the LM3x7 whereas minimizing wasted energy and pointless warmth.

Wow the engineering world together with your distinctive design: Design Concepts Submission Information

Right here’s the way it works. LM317 followers will acknowledge Determine 1 as the standard LM317 fixed present supply topology that maintains Iout = Vadj/Rs by forcing the ADJ pin to be 1.25 V extra unfavorable (a.ok.a. much less optimistic) than the OUT pin. It has labored nice for 50 years, however in fact the one method you possibly can fluctuate Iout is by altering R. 

Determine 1 A basic LM317 fixed present supply the place: Iout = Vadj/R = 1.25v/Rs.

Determine 2 exhibits one other (simpler) solution to make Iout programmable. The circuit allows management of ampere-scale Iout with solely milliamps of Ic management present. 

Determine 2 A modification that makes the present supply variable the place: Iout = (Vadj – IcRc)/Rs – Ic.

Determine 3 exhibits this concept fleshed out and put to sensible use. Observe that Rs = R4 and Rc = R5.

Determine 3 U2 present supply programmed by U1 PWM DAC and powered by U3 monitoring preregulator.

Determine 2’s Ic management present is supplied by the Q2 Q3 complementary pair. Since Q3 offers tempco compensation for Q2, it ought to be intently thermally coupled with its companion. This autumn does some nonlinearity compensation by offering curvature correction to Q2’s Ic management present technology. The daisy chain of three 1N4001 diodes offers bias for Q2 and This autumn.

The PWM enter frequency is assumed to be 10 kHz or thereabouts. Ripple filtering is the aim of C1 and C2 and will get some assist from an analog subtraction cancellation trick first described in “Cancel PWM DAC ripple with analog subtraction.”

About that monitoring preregulator factor: Management of U3 to take care of the three V of headroom required to carry U2 secure from dropout depends on Q1 appearing as a easy differential amplifier. Q1 drives U3’s Vfb voltage suggestions pin to take care of Vfb = 1.245 V. Subsequently (if Vbe = Q1’s base-emitter bias, usually ~0.6 V for Ie = ~500 µA)

Vfb/R7 = ((U2in – U2out) – Vbe)/R6
1.245v = (U2in – U2out – 0.6v)/(5100/2700)
U2in – U2out = 1.89 * 1.245v + 0.6v = 3v

 Observe, if you wish to use this circuit with a special preregulator with a special Vfb, simply regulate:

R7 = R6 Vfb/2.4v

Lastly, a be aware about overvoltage. Present sources have the potential (no pun!) for output voltage to soar to damaging ranges (harmful of U3’s inside change and downstream circuitry too) if disadvantaged of a correct load. R11 and R12 defend in opposition to this by using U3’s inbuilt OVP function to restrict max open circuit voltage to about 30 V if the load is misplaced.

Stephen Woodward’s relationship with EDN’s DI column goes again fairly a great distance. Over 100 submissions have been accepted since his first contribution again in 1974.

 Associated Content material

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