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Novel approach to design low power low noise CMOS Amplifier - Design of Analog VLSI/Low noise Amplifier Circuit - Khan, Muhammad Zamin Ali
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Khan, Muhammad Zamin Ali:
Novel approach to design low power low noise CMOS Amplifier - Design of Analog VLSI/Low noise Amplifier Circuit - Taschenbuch

2012, ISBN: 9783659265778

[ED: Taschenbuch / Paperback], [PU: LAP Lambert Academic Publishing], In recent years, there have been growing demands for bandwidth, for both voice and data communications. This has increased the need for high speed systems. The Radio Frequency integrated circuit (RFIC) and wireless market has suddenly expanded to unimaginable dimensions. Devices such as pagers, cellular and cordless phones, cable modems, and RF identification tags are rapidly penetrating all aspects of our lives, evolving from luxury items to indispensable tools. Historically, RFIC s are implemented in III-V compounded semiconductors or in bipolar technologies. The DSP circuits, on the other hand, require small feature sizes to guarantee high speed of operation with low power consumption, hence the use of Complementary Metal-Oxide Semiconductor (CMOS) technologies. CMOS technologies are beginning to satisfy the needs of high-speed analog design, providing the drive for the quest for a complete commercial CMOS transceiver. Driven by the needs for low power, small size and low cost, CMOS RFIC design becomes main stream in modern wireless communication.The challenges are not only to design RF transceivers in CMOS processes, but also to establish design methodologies., DE, [SC: 0.00], Neuware, gewerbliches Angebot, H: 220mm, B: 150mm, 112, Selbstabholung und Barzahlung, PayPal, offene Rechnung, Banküberweisung, Internationaler Versand

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Novel approach to design  low power low noise CMOS Amplifier - Muhammad Zamin Ali Khan
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Muhammad Zamin Ali Khan:
Novel approach to design low power low noise CMOS Amplifier - Taschenbuch

ISBN: 9783659265778

[ED: Taschenbuch], [PU: LAP Lambert Academic Publishing], Neuware - In recent years, there have been growing demands for bandwidth, for both voice and data communications. This has increased the need for high speed systems. The Radio Frequency integrated circuit (RFIC) and wireless market has suddenly expanded to unimaginable dimensions. Devices such as pagers, cellular and cordless phones, cable modems, and RF identification tags are rapidly penetrating all aspects of our lives, evolving from luxury items to indispensable tools. Historically, RFIC s are implemented in III-V compounded semiconductors or in bipolar technologies. The DSP circuits, on the other hand, require small feature sizes to guarantee high speed of operation with low power consumption, hence the use of Complementary Metal-Oxide Semiconductor (CMOS) technologies. CMOS technologies are beginning to satisfy the needs of high-speed analog design, providing the drive for the quest for a complete commercial CMOS transceiver. Driven by the needs for low power, small size and low cost, CMOS RFIC design becomes main stream in modern wireless communication.The challenges are not only to design RF transceivers in CMOS processes, but also to establish design methodologies., DE, [SC: 2.00], Neuware, gewerbliches Angebot, 220x150x7 mm, 112, [GW: 183g], PayPal, offene Rechnung, Banküberweisung, sofortueberweisung.de, Internationaler Versand

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Novel approach to design low power low noise CMOS Amplifier - Khan, Muhammad Zamin Ali
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Khan, Muhammad Zamin Ali:
Novel approach to design low power low noise CMOS Amplifier - Taschenbuch

ISBN: 3659265772

ID: 22517553471

[EAN: 9783659265778], Neubuch, Publisher/Verlag: LAP Lambert Academic Publishing | Design of Analog VLSI/Low noise Amplifier Circuit | In recent years, there have been growing demands for bandwidth, for both voice and data communications. This has increased the need for high speed systems. The Radio Frequency integrated circuit (RFIC) and wireless market has suddenly expanded to unimaginable dimensions. Devices such as pagers, cellular and cordless phones, cable modems, and RF identification tags are rapidly penetrating all aspects of our lives, evolving from luxury items to indispensable tools. Historically, RFIC s are implemented in III-V compounded semiconductors or in bipolar technologies. The DSP circuits, on the other hand, require small feature sizes to guarantee high speed of operation with low power consumption, hence the use of Complementary Metal-Oxide Semiconductor (CMOS) technologies. CMOS technologies are beginning to satisfy the needs of high-speed analog design, providing the drive for the quest for a complete commercial CMOS transceiver. Driven by the needs for low power, small size and low cost, CMOS RFIC design becomes main stream in modern wireless communication.The challenges are not only to design RF transceivers in CMOS processes, but also to establish design methodologies. | Format: Paperback | Language/Sprache: english | 112 pp

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Novel approach to design low power low noise CMOS Amplifier
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Novel approach to design low power low noise CMOS Amplifier - neues Buch

ISBN: 9783659265778

ID: 31828a629b09c7955d61f1f978fab68f

In recent years, there have been growing demands for bandwidth, for both voice and data communications. This has increased the need for high speed systems. The Radio Frequency integrated circuit (RFIC) and wireless market has suddenly expanded to unimaginable dimensions. Devices such as pagers, cellular and cordless phones, cable modems, and RF identification tags are rapidly penetrating all aspects of our lives, evolving from luxury items to indispensable tools. Historically, RFIC s are implemented in III-V compounded semiconductors or in bipolar technologies. The DSP circuits, on the other hand, require small feature sizes to guarantee high speed of operation with low power consumption, hence the use of Complementary Metal-Oxide Semiconductor (CMOS) technologies. CMOS technologies are beginning to satisfy the needs of high-speed analog design, providing the drive for the quest for a complete commercial CMOS transceiver. Driven by the needs for low power, small size and low cost, CMOS RFIC design becomes main stream in modern wireless communication.The challenges are not only to design RF transceivers in CMOS processes, but also to establish design methodologies. Bücher / Naturwissenschaften, Medizin, Informatik & Technik / Informatik & EDV / Hardware

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Novel approach to design low power low noise CMOS Amplifier als Buch von Muhammad Zamin Ali Khan - Muhammad Zamin Ali Khan
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Muhammad Zamin Ali Khan:
Novel approach to design low power low noise CMOS Amplifier als Buch von Muhammad Zamin Ali Khan - gebunden oder broschiert

ISBN: 9783659265778

ID: 911930086

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Novel approach to design low power low noise CMOS Amplifier

In recent years, there have been growing demands for bandwidth, for both voice and data communications. This has increased the need for high speed systems. The Radio Frequency integrated circuit (RFIC) and wireless market has suddenly expanded to unimaginable dimensions. Devices such as pagers, cellular and cordless phones, cable modems, and RF identification tags are rapidly penetrating all aspects of our lives, evolving from luxury items to indispensable tools. Historically, RFIC’s are implemented in III-V compounded semiconductors or in bipolar technologies. The DSP circuits, on the other hand, require small feature sizes to guarantee high speed of operation with low power consumption, hence the use of Complementary Metal-Oxide Semiconductor (CMOS) technologies. CMOS technologies are beginning to satisfy the needs of high-speed analog design, providing the drive for the quest for a complete commercial CMOS transceiver. Driven by the needs for low power, small size and low cost, CMOS RFIC design becomes main stream in modern wireless communication.The challenges are not only to design RF transceivers in CMOS processes, but also to establish design methodolog

Detailangaben zum Buch - Novel approach to design low power low noise CMOS Amplifier


EAN (ISBN-13): 9783659265778
ISBN (ISBN-10): 3659265772
Gebundene Ausgabe
Taschenbuch
Erscheinungsjahr: 2012
Herausgeber: LAP Lambert Academic Publishing Dez 2012

Buch in der Datenbank seit 01.08.2014 05:07:49
Buch zuletzt gefunden am 02.06.2018 18:14:17
ISBN/EAN: 9783659265778

ISBN - alternative Schreibweisen:
3-659-26577-2, 978-3-659-26577-8


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