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Dive into the research topics where Christopher F. Lane is active.

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Featured researches published by Christopher F. Lane.


field programmable gate arrays | 2005

The Stratix II logic and routing architecture

David Lewis; Elias Ahmed; Gregg William Baeckler; Vaughn Betz; Mark Bourgeault; David Cashman; David Galloway; Michael D. Hutton; Christopher F. Lane; Andy L. Lee; Paul Leventis; Sandy Marquardt; Cameron McClintock; Ketan Padalia; Bruce B. Pedersen; Giles Powell; Boris Ratchev; Srinivas T. Reddy; Jay Schleicher; Kevin Stevens; Richard Yuan; Richard G. Cliff; Jonathan Rose

This paper describes the Altera Stratix II™ logic and routing architecture. This architecture features a novel adaptive logic module (ALM) that is based on a 6-LUT, but can be partitioned into two smaller LUTs to efficiently implement circuits containing a range of LUT sizes that arises in conventional synthesis flows. This provides a performance increase of 15% in the Stratix II architecture while reducing area by 2%. The ALM also includes a more powerful arithmetic structure that can perform two bits of arithmetic per ALM, and perform a sum of up to three inputs. The routing fabric adds a new set of fast inputs to the routing multiplexers for another 3% improvement in performance, while other improvements in routing efficiency cause another 6% reduction in area. These changes in combination with other circuit and architecture changes in Stratix II contribute 27% of an overall 51% performance improvement (including architecture and process improvement). The architecture changes reduce area by 10% in the same process, and by 50% after including process migration.


field programmable gate arrays | 2003

The stratixπ routing and logic architecture

David Lewis; Vaughn Betz; David Jefferson; Andy L. Lee; Christopher F. Lane; Paul Leventis; Sandy Marquardt; Cameron McClintock; Bruce B. Pedersen; Giles Powell; Srinivas T. Reddy; Chris Wysocki; Richard G. Cliff; Jonathan Rose

This paper describes the Altera Stratix logic and routing architecture. The primary goals of the architecture were to achieve high performance and logic density. We give an overview of the entire device, and then focus on the logic and routing architecture. The Stratix logic architecture is based on a cluster of ten 4-input LUTs and its routing consists of staggered routing lines. We describe the development of the routing architecture, including its directional bias, its direct-drive routing which reduces both area and delay. The logic array block and logic cell design is also described, and new routing structures with in the logic array block, and logic element features are described.


Archive | 2002

Programmable logic device architecture with super-regions having logic regions and a memory region

David Jefferson; Cameron McClintock; James Schleicher; Andy L. Lee; Manuel Mejia; Bruce B. Pedersen; Christopher F. Lane; Richard G. Cliff; Srinivas T. Reddy


Archive | 2002

Programmable logic device with circuitry for observing programmable logic circuit signals and for preloading programmable logic circuits

Ketan Zaveri; Christopher F. Lane; Srinivas T. Reddy; Andy L. Lee; Cameron McClintock; Bruce B. Pedersen


Archive | 1998

Dual-port programmable logic device variable depth and width memory array

Srinivas T. Reddy; Christopher F. Lane; Manuel Mejia; Richard G. Cliff; Kerry Veenstra


Archive | 2004

Configuration shift register

Mario Guzman; Christopher F. Lane; Andy L. Lee; Ninh D. Ngo


Archive | 1999

Programmable logic device memory array circuit having combinable single-port memory arrays

Srinivas T. Reddy; Christopher F. Lane; Manuel Mejia


Archive | 1998

Programmable logic device circuitry for improving multiplier speed and/or efficiency

Christopher F. Lane; Srinivas T. Reddy; Richard G. Cliff; Ketan Zaveri; Bruce B. Pedersen; Kerry Veenstra


Archive | 1997

PLD with split multiplexed inputs from global conductors

Srinivas T. Reddy; Christopher F. Lane


Archive | 2003

Programmable logic device with hierarchical interconnection resources

Srinivas T. Reddy; Richard G. Cliff; Christopher F. Lane; Ketan Zaveri; Manuel Mejia; David Jefferson; Bruce B. Pedersen; Andy L. Lee

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