1. Ultra-low-power design: device and logic design approaches
2. On-chip optical interconnect for low-power
3. Nanotechnologies for low power
4. Static leakage reduction through simultaneous Vt/Tox and state assignment
5. Energy-efficient shared memory architectures for multi-processor systems-on-chip
6. Tuning caches to applications for low-energy embedded systems
7. Reduce energy consumption chip multiprocessors using workload variations
8. Architectures and design techniques for energy efficient embedded DSP and multimedia processing
9. Source-level models for software power optimization
10. Transmittance scaling for reducing power dissipation of a backlit TFT-LCD
11. Power-aware network swapping for wireless palmtop PCs
12. Energy efficient network-on-chip design
13. System level power modeling and simulation of high-end industrial network-on-chip design
14. Emergency aware adaptations for end-to-end video streaming to mobile handheld devices