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Sam Ben-Yaakov @UCvblt729tnRzoQqhAinlx8A@youtube.com

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27:14
Examination of the inner works of a transformer by simulation
10:13
Intuitive answer to riddle and simulation
01:33
A riddle for the magnetics-philes but open to all
17:33
A comprehensive user-friendly simulation model of ceramic capacitors
25:00
Common mode chokes: There is more than meets the eye
13:35
Improved intuitive average model of PCM converters
23:03
Practical circuits tutorials : Flyback, power
17:19
Transformer saturation and gapped core current transformer
22:01
Gain margin in PWM converters
27:16
Testing the transient response of PWM converters by LTspice
14:33
Illustration of sampling delay in PWM convertersSamp delay final
28:51
Current sharing of parallel connected power supplies by the droop method
13:44
Power flow considerations in power filters
19:51
BJT filters and capacitance multipliers
22:34
DC regulation of PWM converters
16:53
Absolute maximum ratings: II. Power MOSFET
19:14
Absolute maximum ratings: I. Op. Amp.
22:00
Ripple control of PWM converters
24:50
The inner works of Peak Current Mode (PCM) control
10:41
Estimating by time domain simulation the LoopGain transfer function
03:30
How to get equally spaced data in LTspice?
28:00
Study of thermoelectric coolers by an LTspice model
16:52
A behavioral LTspice model of phase change materials (PCM)
10:48
Back to basics #2: Practical capacitor charging losses
10:25
Back to basics: Practical capacitor charging currents by LTspice demonstration
16:00
I2t. What? Why? When?: The electric fuse case
17:14
Synchronous sampling and anti aliasing filter: a demonstration by LTspice simulation
11:13
Inductor discharge: answer to riddle
04:00
Inductor discharge riddle
12:10
Correction of thermistor temperature sensors response time: the passive analog solution
10:01
Modeling the time response of thermistors (NTC) temperature sensors
15:54
Pros and cons of an interesting transformer-based gate driver
05:59
The generalized linear capacitor charging/discharging process: Corrected
17:27
DC restorers: circuits and applications
14:12
How to choose a heatsink to sustain MOSFETs peak currents
09:01
Why simulation is better for estimating Si MOSFET switching losses
15:15
A new look at MOSFET turn off loss
02:00
Dubious Power Electronics: EPC’s simulation schematics
01:40
Busting the traditional explanation of MOSFET turn off losses
01:37
Ingenious engineering ideas: Weller’s Magnastat
15:36
The effect of gate turn-on resistor on EM emission: An intuitive explanation
22:38
Basics of DESAT over-current protection
22:18
LTspice-SPICE inner working and the simplest way to import SUBCKT models
34:47
Revisiting stability criterion misconception
19:43
Step by step feedback design of a makeshift Buffer-Amplifier/LDO: A tutorial
01:36
Error correction of : MOSFETs in parallel: and a comment on an TI application note
20:31
Loss reduction when connecting MOSFETs in parallel: And a comment on an TI application note
23:25
Illustrative explanation of charging/discharging of linear/nonlinear capacitors - Don't miss
07:37
Addendum to: Why use an insulated power supply for a HS gate driver?
18:46
Why use an insulated power supply for a HS gate driver?
16:17
An intuitive explanation of ZVS, ZCS and pseudo ZVS
21:29
Deciphering the origin and models of ferrite beads
14:22
An intuitive introduction to Phase Shift Full Bridge (PSFB) converters
30:24
Back to capacitors basics. Part I: decoupling
19:37
Amazing FEMM simulation of closed loop current sensors
10:30
Simulating ferromagnetic major and minor hysteresis loops by LTspice
17:24
High frequency model of the physical inductor: Part II The Cauer model
14:26
The Qgate and possible applications
15:49
An intuitive explanation of fluxgate current sensing Part III: Multiple rings, closed loop
13:18
High frequency model of the physical inductor: Part I the basic lumped model