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source: nptelhrd 2008年12月28日
Electronics - Solid State Devices by Prof. S. Karmalkar. Department of Electrical Engineering. IIT Madras.
1 Introduction on Solid State Devices 59:12
2 Evolution and Uniqueness of Semiconductor 58:12
3 Equilibrium Carrier Concentration 55:45
4 Equilibrium Carrier Concentration 57:23
5 Equilibrium Carrier Concentration 58:43
6 Equilibrium Carrier Concentration 58:17
7 Equilibrium Carrier Concentration 57:55
8 Equilibrium Carrier Concentration 58:43
9 Equilibrium Carrier Concentration 57:50
10 Equilibrium Carrier Concentration 58:46
11 Equilibrium Carrier Concentration 58:10
12 Carrier Transport 59:02
13-Carrier Transport (Contd) 58:03
14 -Carrier Transport (contd) 58:31
15-Excess Carriers 57:53
16-Excess Carries(Contd) 1:00:41
17-Procedure for Device Analysis 1:00:24
18-Procedure for Device Analysis(Contd) 1:00:58
19-PN Junction 58:57
20-PN Junction(Contd) 58:41
21-PN Junction(Contd) 58:01
22-PN Junction(Contd) 57:52
23-PN Junction(Contd) 59:51
24-PN Junction(Contd) 59:45
25-PN Junction(Contd) 1:00:25
26-Bipolar Junction Transistor 57:26
27-Bipolar Junction Transistor (Contd) 58:12
28-Bipolar Junction Transistor(Contd) 58:19
29-Bipolar Junction Transistor(Contd) 1:00:26
30-Bipolar Junction Transistor(Contd) 59:47
31-Bipolar Junction Transistor(Contd) 59:32
32-Bipolar Junction Transistor(Contd) 1:02:17
33-Metal-Oxide-Semiconductor(MOS)Junction 59:21
34-Metal-Oxide-Semiconductor(MOS)Junction(Contd) :00:28
35-Metal-Oxide-Semiconductor(MOS)Junction(Contd) 59:40
36-Metal-Oxide-Semiconductor(MOS)Junction(Contd) 59:40
37-Metal-Oxide-Semiconductor(MOS)Junction(Contd) 1:01:25
38-MOS Field Effect Transistor 58:35
39-MOS Field Effect Transistor(Contd) 59:19
40-MOS Field Effect Transistor(Contd) 59:53
41-MOS Field Effect Transistor(Contd) 1:01:53
42 The Final Lecture 1:01:14
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Showing posts with label B. (figures)-K-S. Karmalkar. Show all posts
Showing posts with label B. (figures)-K-S. Karmalkar. Show all posts
2016-12-15
2016-12-01
Semiconductor Device Modeling by S. Karmalkar (IIT Madras)
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source: nptelhrd 2013年11月11日
Electronics - Semiconductor Device Modeling by Prof. S. Karmalkar, Department of Electronics & Communication Engineering, IIT Madras. For more details on NPTEL visit http://nptel.iitm.ac.in
Mod-01 Lec-01 Introduction 49:29
Mod-0 Lec-01 Motivation, Contents and Learning outcomes 51:17
Mod-02 Lec-01 Qualitative model of transport 49:27
Mod-02 Lec-02 Qualitative model of transport 49:52
Mod-02 Lec-03 Qualitative model of transport 56:26
Mod-02 Lec-04 Qualitative model of transport 54:55
Mod-02 Lec-05 Qualitative model of transport 57:57
Mod-03 Lec-01 EM field and transport equations 51:36
Mod-03 Lec-02 EM field and transport equations 53:57
Mod-03 Lec-03 EM field and transport equations 54:49
Mod-03 Lec-04 EM field and transport equations 53:13
Mod03 Lec-05 EM field and transport equations 52:32
Mod-03 Lec-06 EM field and transport equations 50:03
Mod-03 Lec-07 EM field and transport equations 56:22
Mod-03 Lec-08 Semi-classical Bulk Transport -- EM field and Transport Equations 57:01
Mod-04 Lec-01 Drift-diffusion transport model 55:18
Mod-04 Lec-02 Drift-diffusion transport model 50:12
Mod-04 Lec-03 Drift-diffusion transport model 57:51
Mod04 Lec-04 Drift-diffusion transport model 54:30
Mod-04 Lec-05 Drift-diffusion transport model 40:46
Mod-05 Lec-01 Characteristic times and lengths 54:32
Mod-05 Lec-02 Characteristic times and lengths 54:00
Mod-05 Lec-03 Characteristic times and lengths 54:43
Mod-05 Lec-04 Characteristic times and lengths 55:42
Mod 05 Lec-05 Characteristic times and lengths 51:58
Mod-05 Lec-06 Characteristic times and lengths 51:41
Mod-06 Lec-01 Energy band diagrams 55:39
Mod-06 Lec-02 Energy band diagrams 48:11
Mod-06 Lec-03 Energy band diagrams 53:42
Mod-06 Lec-04 Energy band diagrams 55:55
Mod-06 Lec-05 Energy band diagrams 50:34
Mod-06 Lec-06 Energy band diagrams 59:13
Mod-06 Lec-07 Energy band diagrams 52:01
Mod-07 Lec-01 SQEBASTIP -- nine steps of model derivation 53:42
Mod-07 Lec-02 SQEBASTIP -- nine steps of model derivation 53:33
Mod-07 Lec-03 SQEBASTIP -- nine steps of model derivation 56:27
Mod08 Lec-01 Types of device models 56:44
Mod-08 Lec-02 Types of device models 52:09
Mod-09 Lec-01 MOSFET : Device Structures and Characteristics 51:56
Mod-09 Lec-02 MOSFET : Device Structures and Characteristics 49:08
Mod-10 Lec-01 DC Model of a Large Uniformly Doped Bulk MOSFET: Qualitative Theory 52:12
Mod-10 Lec-02 DC Model of a Large Uniformly Doped Bulk MOSFET: Qualitative Theory 56:23
Mod-10 Lec-03 DC Model of a Large Uniformly Doped Bulk MOSFET: Qualitative Theory 50:12
Mod-10 Lec-04 DC Model of a Large Uniformly Doped Bulk MOSFET: Qualitative Theory 43:11
Mod-10 Lec-05 DC Model of a Large Uniformly Doped Bulk MOSFET: Qualitative Theory 44:05
Mod-10 Lec-06 DC Model of a Large Uniformly Doped Bulk MOSFET: Qualitative Theory 51:08
source: nptelhrd 2013年11月11日
Electronics - Semiconductor Device Modeling by Prof. S. Karmalkar, Department of Electronics & Communication Engineering, IIT Madras. For more details on NPTEL visit http://nptel.iitm.ac.in
Mod-01 Lec-01 Introduction 49:29
Mod-0 Lec-01 Motivation, Contents and Learning outcomes 51:17
Mod-02 Lec-01 Qualitative model of transport 49:27
Mod-02 Lec-02 Qualitative model of transport 49:52
Mod-02 Lec-03 Qualitative model of transport 56:26
Mod-02 Lec-04 Qualitative model of transport 54:55
Mod-02 Lec-05 Qualitative model of transport 57:57
Mod-03 Lec-01 EM field and transport equations 51:36
Mod-03 Lec-02 EM field and transport equations 53:57
Mod-03 Lec-03 EM field and transport equations 54:49
Mod-03 Lec-04 EM field and transport equations 53:13
Mod03 Lec-05 EM field and transport equations 52:32
Mod-03 Lec-06 EM field and transport equations 50:03
Mod-03 Lec-07 EM field and transport equations 56:22
Mod-03 Lec-08 Semi-classical Bulk Transport -- EM field and Transport Equations 57:01
Mod-04 Lec-01 Drift-diffusion transport model 55:18
Mod-04 Lec-02 Drift-diffusion transport model 50:12
Mod-04 Lec-03 Drift-diffusion transport model 57:51
Mod04 Lec-04 Drift-diffusion transport model 54:30
Mod-04 Lec-05 Drift-diffusion transport model 40:46
Mod-05 Lec-01 Characteristic times and lengths 54:32
Mod-05 Lec-02 Characteristic times and lengths 54:00
Mod-05 Lec-03 Characteristic times and lengths 54:43
Mod-05 Lec-04 Characteristic times and lengths 55:42
Mod 05 Lec-05 Characteristic times and lengths 51:58
Mod-05 Lec-06 Characteristic times and lengths 51:41
Mod-06 Lec-01 Energy band diagrams 55:39
Mod-06 Lec-02 Energy band diagrams 48:11
Mod-06 Lec-03 Energy band diagrams 53:42
Mod-06 Lec-04 Energy band diagrams 55:55
Mod-06 Lec-05 Energy band diagrams 50:34
Mod-06 Lec-06 Energy band diagrams 59:13
Mod-06 Lec-07 Energy band diagrams 52:01
Mod-07 Lec-01 SQEBASTIP -- nine steps of model derivation 53:42
Mod-07 Lec-02 SQEBASTIP -- nine steps of model derivation 53:33
Mod-07 Lec-03 SQEBASTIP -- nine steps of model derivation 56:27
Mod08 Lec-01 Types of device models 56:44
Mod-08 Lec-02 Types of device models 52:09
Mod-09 Lec-01 MOSFET : Device Structures and Characteristics 51:56
Mod-09 Lec-02 MOSFET : Device Structures and Characteristics 49:08
Mod-10 Lec-01 DC Model of a Large Uniformly Doped Bulk MOSFET: Qualitative Theory 52:12
Mod-10 Lec-02 DC Model of a Large Uniformly Doped Bulk MOSFET: Qualitative Theory 56:23
Mod-10 Lec-03 DC Model of a Large Uniformly Doped Bulk MOSFET: Qualitative Theory 50:12
Mod-10 Lec-04 DC Model of a Large Uniformly Doped Bulk MOSFET: Qualitative Theory 43:11
Mod-10 Lec-05 DC Model of a Large Uniformly Doped Bulk MOSFET: Qualitative Theory 44:05
Mod-10 Lec-06 DC Model of a Large Uniformly Doped Bulk MOSFET: Qualitative Theory 51:08
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