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In this video, we will discuss the topology of a MOSFET current source to design a larger load current from a reference transistor. This is called scaling of currents. The scaling factor depends on the ratio of the (W/L) [channel width and length] of the reference transistor and the (W/L) of the transistor(s) parallel to it. Given the requirement for the total dissipated power and the required load currents, we will calculate the required reference current and W/L ratios. We also verify our calculations using simulations in TINA-TI SPICE. We follow a logical procedure and provide the solutions step by step such that it clear for you what and why we carry out a specific action. 👉 Playlist Transistor Circuits: • Transistor Circuits 👉 Playlist Analog Electronics: • Analog Electronics ⭐ If you have questions or comments, please let me know. Help us to reach more people. Like and share this video. Subscribe to our channel: https://www.youtube.com/canbijles/?su... ⚡ CAN Education - Tutoring in Electrical Engineering, Analog Electronics, Power Electronics, Electric Circuits, Control Systems, and Math Courses ⭐ For questions, collaboration or consulting 👇 📧 can.mehmet.tr@gmail.com ☎️ +31616179479 🔗 https://whatsapp.com/channel/0029VajY... 🌐 www.canbijles.nl #Current #Mirror #Source #Transistor #IC #Biasing #Design #mosfet #transistor #circuits #electronics #analog #bipolarjunctiontransistor #kirchhoff #voltage #current #linear #active #saturation #region #model #electriccircuits #electricalengineering #transistor #circuits #emitterfollower #amplifier #electronics #analog #bjt #bipolarjunctiontransistor #kirchhoff #voltage #current #linear #active #saturation #region #model #common-emitter #follower #Multiple #Current #Source #Scaling #Transistor #IC #Biasing #Design #Channel #Width #Length #W/L