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Contactless VLSI Measurement and Testing Techniques [electronic resource] / by Selahattin Sayil.

By: Sayil, Selahattin [author.].
Contributor(s): SpringerLink (Online service).
Material type: materialTypeLabelBookPublisher: Cham : Springer International Publishing : Imprint: Springer, 2018Edition: 1st ed. 2018.Description: V, 93 p. 34 illus., 11 illus. in color. online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9783319696737.Subject(s): Electronic circuits | Microprocessors | Computer architecture | Electronics | Electronic Circuits and Systems | Processor Architectures | Electronics and Microelectronics, InstrumentationAdditional physical formats: Printed edition:: No title; Printed edition:: No title; Printed edition:: No titleDDC classification: 621.3815 Online resources: Click here to access online
Contents:
1. Conventional Test Methods. – 2. Testability Design -- 3. Other Techniques Based on the Contacting Probe -- 4. Contactless Testing -- 5. Electron-Beam and Photoemission Probing -- 6. Electro Optic Sampling and Charge Density Probe -- 7. Electric Force Microscope, Capacitive Coupling and Scanning Magneto-Resistive Probe -- 8. Probing Techniques Based on Light Emission from Chip -- 9. All Silicon Optical Technology for Contactless Testing of Integrated Circuits -- 10. Comparison of Contactless Testing Methodologies.
In: Springer Nature eBookSummary: This book provides readers with a comprehensive overview of the state-of-the-art in optical contactless probing approaches, in order to fill a gap in the literature on VLSI Testing.  The author highlights the inherent difficulties encountered with the mechanical probe and testability design approaches for functional and internal fault testing and shows how contactless testing might resolve many of the challenges associated with conventional mechanical wafer testing. The techniques described in this book address the increasing demands for internal access of the logic state of a node within a chip under test: Provides a single-source reference on contactless probing approaches for VLSI testing and diagnostic measurement Introduces readers to various optical contactless testing techniques, such as Electro-Optic Probing, Charge Density Probe, and Photo-emissive Probe Discusses the applicability and adaptability of each technique, based on multilayer metallization, wafer level techniques, and invasiveness Provides a comparison among various contactless testing techniques Describes a variety of industrial applications of contactless VLSI testing.
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1. Conventional Test Methods. – 2. Testability Design -- 3. Other Techniques Based on the Contacting Probe -- 4. Contactless Testing -- 5. Electron-Beam and Photoemission Probing -- 6. Electro Optic Sampling and Charge Density Probe -- 7. Electric Force Microscope, Capacitive Coupling and Scanning Magneto-Resistive Probe -- 8. Probing Techniques Based on Light Emission from Chip -- 9. All Silicon Optical Technology for Contactless Testing of Integrated Circuits -- 10. Comparison of Contactless Testing Methodologies.

This book provides readers with a comprehensive overview of the state-of-the-art in optical contactless probing approaches, in order to fill a gap in the literature on VLSI Testing.  The author highlights the inherent difficulties encountered with the mechanical probe and testability design approaches for functional and internal fault testing and shows how contactless testing might resolve many of the challenges associated with conventional mechanical wafer testing. The techniques described in this book address the increasing demands for internal access of the logic state of a node within a chip under test: Provides a single-source reference on contactless probing approaches for VLSI testing and diagnostic measurement Introduces readers to various optical contactless testing techniques, such as Electro-Optic Probing, Charge Density Probe, and Photo-emissive Probe Discusses the applicability and adaptability of each technique, based on multilayer metallization, wafer level techniques, and invasiveness Provides a comparison among various contactless testing techniques Describes a variety of industrial applications of contactless VLSI testing.

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