7 тысяч подписчиков
254 видео
W12_L8_Asynchronous sequential circuits
Signals and Systems live session 15
Electronics Lab - Live Session Aug 12
Signals and Systems live session 18
Es Foundation term 2 orientation
Signals and Systems live session 17
Electronics Lab - Live Session Aug 05
W4L1 - Introduction: Simulation vs. Emulation
Signals and Systems live session 16
Signals and Systems live session 13
Electronics Lab - Live Session July 23
ES Diploma term 1 - orientation
ES Foundation term 2 - orientation
Es Qualifier & Foundation term 1 - orientation
Signals and Systems live session 22
Signals and Systems live session 12
Electronics Lab - Live Session Sep 02
Signals and Systems live session 21
Electronics Lab - Live Session Aug 19
Electronics Lab - Live Session Aug 27
Electronics Lab - Live Session Aug 06
Signals and Systems live session 20
Signals and Systems live session 19
Signals and Systems live session 14
W2_L4: Linear transformations: scaling, rotation
Row rank = column rank, Four fundamental subspaces
W1_L3: Continuous-time & discrete-time signals
Electronics Lab - Live Session July 29
W7_L4: Implementing multiplexers using decoders & tri-state logic
L9: Embedded C programming | three ways to blink an led & control hardware on microcontrollers
W2_L2: ARM UART summary of registers
6.5 : Compiler Optimizations
L15: Flip-flops and register | shift, load & reset modeling
1.5 : Basic Operations on Signals
L1: Introduction to embedded systems & embedded c programming
11.5 : Multifile Projects in C
W3_L5: Examples of convergent & divergent sequences
W8L55 - Path Delay Faults & Transition Delay Faults: Modeling
W12_L8: Asynchronous sequential circuits
W8L56 - Path Delay Faults & Transition Delay Faults: Testing
W8L57 - Transition Delay Models: Launch Strategies
L32: Error handling & debugging strategies in embedded systems
5.1 : Discrete Time Fourier Transform and Inverse Discrete Time Fourier Transform
W4_L2: Execution flow and stack
L4: Hardware description language | introduction to verilog
2.4 : Character Representation and Encoding
W7_L1: 2:4 Decoder using 3:8 Decoder | reuse logic to build smaller decoders efficiently