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(Solved): Assuming NMOS transistor Q1 output resistance to be \( \mathrm{r}_{\mathrm{o} 1} \) and transconduc ...




Assuming NMOS transistor Q1 output resistance to be \( \mathrm{r}_{\mathrm{o} 1} \) and transconductance to be \( \mathrm{g}_
Assuming NMOS transistor Q1 output resistance to be \( \mathrm{r}_{\mathrm{o} 1} \) and transconductance to be \( \mathrm{g}_{\mathrm{m} 1} \) and NMOS transistor \( \mathrm{Q} 2 \) output resistance to be \( \mathrm{r}_{02} \) and transconductance to be \( \mathrm{g}_{\mathrm{m} 2} \) the \( \mathrm{R}_{0} \) of the following circuit is approximately: \( \left(r_{01} \| r_{02}\right) \) \( g_{m} r_{01} r_{02} \) \( \left(1 / g_{m 1}\right) \| r_{02} \) \( r_{01}+r_{02} \)


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