The Experts below are selected from a list of 66 Experts worldwide ranked by ideXlab platform
Dago M De Leeuw - One of the best experts on this subject based on the ideXlab platform.
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Low-cost all-polymer integrated circuits
1998Co-Authors: Cornelis Maria Hart, Marco Matters, Dago M De Leeuw, P. T. Herwig, C.m.j. Mutsaerts, Christopher John DruryAbstract:A technology has been developed to make all-polymer integrated circuits. It involves reproducible fabrication of field-effect transistors in which the semiconducting, conducting and insulating parts are all made of polymers. The fabrication on flexible substrates uses spin-coating of electrically active precursors and patternwise exposure of the deposited films. In the whole Process Stack-integrity is maintained. Vertical interconnects are made mechanically. As a demonstrator for the technology functional 15-bit programmable code generators are fabricated. These circuits still operate when the foils are sharply bent. Due to the limited number of Process steps the technology is potentially inexpensive.
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low cost all polymer integrated circuits
Applied Physics Letters, 1998Co-Authors: Christopher John Drury, C M J Mutsaers, Cornelis Maria Hart, Marco Matters, Dago M De LeeuwAbstract:A technology has been developed to make all polymer integrated circuits. It involves reproducible fabrication of field-effect transistors in which the semiconducting, conducting and insulating parts are all made of polymers. The fabrication on flexible substrates uses spin-coating of electrically active precursors and patternwise exposure of the deposited films. In the whole Process Stack integrity is maintained. Vertical interconnects are made mechanically. As a demonstrator functional 15-bit programmable code generators are fabricated. These circuits still operate when the foils are sharply bent. Due to the limited number of Process steps the technology is potentially inexpensive.
Christopher John Drury - One of the best experts on this subject based on the ideXlab platform.
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Low-cost all-polymer integrated circuits
1998Co-Authors: Cornelis Maria Hart, Marco Matters, Dago M De Leeuw, P. T. Herwig, C.m.j. Mutsaerts, Christopher John DruryAbstract:A technology has been developed to make all-polymer integrated circuits. It involves reproducible fabrication of field-effect transistors in which the semiconducting, conducting and insulating parts are all made of polymers. The fabrication on flexible substrates uses spin-coating of electrically active precursors and patternwise exposure of the deposited films. In the whole Process Stack-integrity is maintained. Vertical interconnects are made mechanically. As a demonstrator for the technology functional 15-bit programmable code generators are fabricated. These circuits still operate when the foils are sharply bent. Due to the limited number of Process steps the technology is potentially inexpensive.
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low cost all polymer integrated circuits
Applied Physics Letters, 1998Co-Authors: Christopher John Drury, C M J Mutsaers, Cornelis Maria Hart, Marco Matters, Dago M De LeeuwAbstract:A technology has been developed to make all polymer integrated circuits. It involves reproducible fabrication of field-effect transistors in which the semiconducting, conducting and insulating parts are all made of polymers. The fabrication on flexible substrates uses spin-coating of electrically active precursors and patternwise exposure of the deposited films. In the whole Process Stack integrity is maintained. Vertical interconnects are made mechanically. As a demonstrator functional 15-bit programmable code generators are fabricated. These circuits still operate when the foils are sharply bent. Due to the limited number of Process steps the technology is potentially inexpensive.
N. Singh - One of the best experts on this subject based on the ideXlab platform.
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Libsafe: transparent system-wide protection against buffer overflow attacks
Proceedings International Conference on Dependable Systems and Networks, 2002Co-Authors: T. Tsai, N. SinghAbstract:Libsafe is a practical solution that protects against the most common forms of buffer overflow attacks. Such attacks often result in granting the attacker full privileges on the target system. Libsafe is implemented as a shared library that intercepts calls to vulnerable standard library functions. Based on an inspection of the Process Stack and the function arguments, Libsafe ensures that no return addresses can be overwritten, thus preventing the most common form of buffer overflow attack.
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DSN - Libsafe: transparent system-wide protection against buffer overflow attacks
Proceedings International Conference on Dependable Systems and Networks, 2002Co-Authors: T. Tsai, N. SinghAbstract:Libsafe is a practical solution that protects against the most common forms of buffer overflow attacks. Such attacks often result in granting the attacker full privileges on the target system. Libsafe is implemented as a shared library that intercepts calls to vulnerable standard library functions. Based on an inspection of the Process Stack and the function arguments, Libsafe ensures that no return addresses can be overwritten, thus preventing the most common form of buffer overflow attack.
Cornelis Maria Hart - One of the best experts on this subject based on the ideXlab platform.
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Low-cost all-polymer integrated circuits
1998Co-Authors: Cornelis Maria Hart, Marco Matters, Dago M De Leeuw, P. T. Herwig, C.m.j. Mutsaerts, Christopher John DruryAbstract:A technology has been developed to make all-polymer integrated circuits. It involves reproducible fabrication of field-effect transistors in which the semiconducting, conducting and insulating parts are all made of polymers. The fabrication on flexible substrates uses spin-coating of electrically active precursors and patternwise exposure of the deposited films. In the whole Process Stack-integrity is maintained. Vertical interconnects are made mechanically. As a demonstrator for the technology functional 15-bit programmable code generators are fabricated. These circuits still operate when the foils are sharply bent. Due to the limited number of Process steps the technology is potentially inexpensive.
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low cost all polymer integrated circuits
Applied Physics Letters, 1998Co-Authors: Christopher John Drury, C M J Mutsaers, Cornelis Maria Hart, Marco Matters, Dago M De LeeuwAbstract:A technology has been developed to make all polymer integrated circuits. It involves reproducible fabrication of field-effect transistors in which the semiconducting, conducting and insulating parts are all made of polymers. The fabrication on flexible substrates uses spin-coating of electrically active precursors and patternwise exposure of the deposited films. In the whole Process Stack integrity is maintained. Vertical interconnects are made mechanically. As a demonstrator functional 15-bit programmable code generators are fabricated. These circuits still operate when the foils are sharply bent. Due to the limited number of Process steps the technology is potentially inexpensive.
Marco Matters - One of the best experts on this subject based on the ideXlab platform.
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Low-cost all-polymer integrated circuits
1998Co-Authors: Cornelis Maria Hart, Marco Matters, Dago M De Leeuw, P. T. Herwig, C.m.j. Mutsaerts, Christopher John DruryAbstract:A technology has been developed to make all-polymer integrated circuits. It involves reproducible fabrication of field-effect transistors in which the semiconducting, conducting and insulating parts are all made of polymers. The fabrication on flexible substrates uses spin-coating of electrically active precursors and patternwise exposure of the deposited films. In the whole Process Stack-integrity is maintained. Vertical interconnects are made mechanically. As a demonstrator for the technology functional 15-bit programmable code generators are fabricated. These circuits still operate when the foils are sharply bent. Due to the limited number of Process steps the technology is potentially inexpensive.
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low cost all polymer integrated circuits
Applied Physics Letters, 1998Co-Authors: Christopher John Drury, C M J Mutsaers, Cornelis Maria Hart, Marco Matters, Dago M De LeeuwAbstract:A technology has been developed to make all polymer integrated circuits. It involves reproducible fabrication of field-effect transistors in which the semiconducting, conducting and insulating parts are all made of polymers. The fabrication on flexible substrates uses spin-coating of electrically active precursors and patternwise exposure of the deposited films. In the whole Process Stack integrity is maintained. Vertical interconnects are made mechanically. As a demonstrator functional 15-bit programmable code generators are fabricated. These circuits still operate when the foils are sharply bent. Due to the limited number of Process steps the technology is potentially inexpensive.