subbu2
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I will now look into power mosfet details..if possible pls explain the d difference betn usual mosfet and power mosfet and how its used in LDO..
and how much gain is expected from the error amplr, do i need two stage amplifier..?
Try to observe the Vsg voltage variation when load shifts from 0 to 50mV. This Vsg variation will give you the required swing at the output of the error amplifier. Then you can go ahead and choose your amplifier architecture.
Can u pls elaborate on tis..and how to do it on cadence..
Hi subbu2
Are you interesting in design capacitorless LDO? I am designing it now. If you do I will give you paper about it
Hi Subbu,
My design is essentially a two stage folded cascode rail-to-rail opamp with 2nd stage M13 transistor acting as pass transistor for the output current. Rst_ldo and Cst_ldo are there to make the system stable using miller compensation technique. Transistors MN0, M19,M15, M20 and M10 constitute bias circuit for opamp. MN10 and MN11 are main trans-conductance amplifiers for the folded cascode opamp. I designed the LDO for the following specs:
Vdd= 3.5-4.2V, Iload = 10mA, Vout =3.3V, Cl= 100f.
LDO, output stage transistor M13 W/L was chosen such that it can sustain 10mA current with small overdrive voltage. If you are unsure how to design a folded cascode opamp, you can take help from video lectures from this link or read Razavi CMOS.
https://www.satishkashyap.com/2012/02/iit-video-lectures-on-analog-integrated.html
yes i wanted to ask dat too how much max i can take the width to.?subbu2, you have to increase the size of the pmos transistor VERY much in order to support 50mA of current.
You cannot expect this circuit to work correctly using a 10u/0.18u mosfet.
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