321396776-informe-pasdaso-1asd.docx

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𝑉𝐢𝐢 = 𝑅3 𝐼𝐢 + 𝑉𝐢𝐸 + 𝑅4 𝐼𝐸 𝐼𝐸 β‰… 𝐼𝐢 20 = 𝑉𝐢𝐸 + 5,9𝐾𝐼𝐢 𝑉𝐢𝐸 = 20 βˆ’ 5,9𝐾 1,44π‘š 𝑉𝐢𝐸 = 11,6𝑉

AnΓ‘lisis en AC Los capacitores tienen un circuito cerrado por equivalente

πœ‹=𝛽

πœ‹ = 161

26π‘šπ‘‰ 𝐼𝐸 𝑐𝑑 26π‘šπ‘‰ 1,44π‘šπ΄

πœ‹ = 2,8𝐾 𝑉𝑖 = 2,8𝐾 𝑖𝑏 π‘‰π‘œ = βˆ’4,7𝐾. 161. 𝑖𝑏 π‘‰π‘œ = βˆ’4,7𝐾. 161.

𝑉𝑖 2,8𝐾

π‘‰π‘œ 4,7𝐾. 161 =βˆ’ 𝑉𝑖 2,8𝐾 𝐴𝑉 = βˆ’268,57

Ganancia de corriente 𝑉𝑖 = (150𝐾 βˆ₯ 22𝐾 βˆ₯ 2,8𝐾)𝑖𝑖 π‘‰π‘œ = βˆ’4,7𝐾 π‘–π‘œ

𝑉𝑖 (150𝐾 βˆ₯ 22𝐾 βˆ₯ 2,8𝐾) 𝑖𝑖 =βˆ’ π‘‰π‘œ 4,7𝐾 π‘–π‘œ 𝐴𝑖 = 139,62 Ganancia total de voltaje y corriente 𝐴𝑉 π‘‡π‘œπ‘‘π‘Žπ‘™ = (𝐴𝑉 )2 𝐴𝑉 π‘‡π‘œπ‘‘π‘Žπ‘™ = 72129,84

𝐴𝑖 π‘‡π‘œπ‘‘π‘Žπ‘™ = (𝐴𝑖 )2 𝐴𝑖 π‘‡π‘œπ‘‘π‘Žπ‘™ = 19494 Impedancia de entrada 𝑍𝑖 = 150𝐾 βˆ₯ 22𝐾 βˆ₯ 2,8𝐾 𝑍𝑖 = 2,44𝐾 Impedancia de salida π‘π‘œ = 4,7𝐾

BibliografΓ­a ElectrΓ³nica TeorΓ­a de Circuitos

Boylestad /Nashelsky

DiseΓ±o electrΓ³nico

Savant / Roden / Carpenter

Manual de componentes ECG

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