Improving radiation hardness of EEPROM/flash cell by N2O annealing

T Huang, FC Jong, TS Chao, HC Lin… - IEEE Electron …, 1998 - ieeexplore.ieee.org
T Huang, FC Jong, TS Chao, HC Lin, LY Leu, K Young, CH Lin, KY Chin
IEEE Electron Device Letters, 1998ieeexplore.ieee.org
The effects of an N/sub 2/O anneal on the radiation effects of a split-gate electrical erasable
programmable read only memory (EEPROM)/flash cell with a recently-proposed horn-
shaped floating gate were studied. We have found that although the cells appear to survive
1 Mrad (Si) Co/sup 60/irradiation without data retention failure, the write/erase cycling
endurance was severely impeded after irradiation. Specifically, the write/erase cycling
endurance was degraded to 20 K from the pre-irradiation value of 50 K. However, by adding …
The effects of an N/sub 2/O anneal on the radiation effects of a split-gate electrical erasable programmable read only memory (EEPROM)/flash cell with a recently-proposed horn-shaped floating gate were studied. We have found that although the cells appear to survive 1 Mrad(Si) Co/sup 60/ irradiation without data retention failure, the write/erase cycling endurance was severely impeded after irradiation. Specifically, the write/erase cycling endurance was degraded to 20 K from the pre-irradiation value of 50 K. However, by adding an N/sub 2/O annealing step after the interpoly oxidation, the after-irradiation write/erase cycling endurance of the resultant cell can be significantly improved to over 45 K. N/sub 2/O annealing also improves the after-irradiation program and erase efficiencies. The N/sub 2/O annealing step therefore presents a potential method for enhancing the robustness of the horn-shaped floating-gate EEPROM/flash cells for radiation-hard applications.
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