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paper 19, Design of DDS IP Compiler Based on Triangular Approximation ROM Compress Technique
In Session 2 of Future Computer and Communication 2011
from:
International Conference on Future Computer and Communication, 3rd (ICFCC 2011), First
Table of Contents
- Session 1 of Future Computer and Communication 2011
- 1. Integrating Entanglement Swapping into Secure Socket Layer — Handshake Protocol
- Session 2 of Future Computer and Communication 2011
- 11. Scene Change Detection with Temporally Constrained Clustering
- Session 3 of Future Computer and Communication 2011
- 21. Walking Compensation Treadmill Based System: Device, Environment and Testing Method
- Session 4 of Future Computer and Communication 2011
- 31. Hidden Coupling and Its Impact on Software Reliability
- Session 1 of Mathematics in Business and Economics 2011
- 40. Modeling Operational Risk in Financial Institutions: Application and Improvement on EVT
- 44. The Effects of Split Share Structure on Accounting Conservatism—Evidence from Chinese Listed Firms
- Session 1 of Mathematics and Geosciences 2011
- 46. Application of Three-Dimensional Terrain Modeling Technology of Gan Jiang Yuan
- Session 1 of Mathematics and Arts 2011
- 51. Automatic Masked Morphing for 3D Facial Animations
- Session 2 of Mathematics and Arts 2011
- 61. Structural Instability for Solo Piano (2007) by Greek Composer Fani Kosona
- Session 3 of Mathematics and Arts 2011
- 71. The Creation of the Modal through Symmetry in Liviu Glodeanu's Musical Composition
Chapter Contents
- Abstract
- Key Words
- 1. Introduction
- 2. Design of DDS Circuits
- 3. Design of DDS Complier
- 4. Summaries
- References
Excerpt
To achieve the flexibility and reusability of design and the excellent balance between performance and consumption, design and realize IP Compiler for DDS core based on Triangular approximation ROM compress technique. Finally it also shows the test results of the IP Compiler. It is verified by practice that the DDS circuits produced by the complier run steadily and perform excellently in most of the digital transmitters.
©2011 ASME


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