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  4. Punch-through impact ionization MOSFET (PIMOS): From device principle to applications
 
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research article

Punch-through impact ionization MOSFET (PIMOS): From device principle to applications

Moselund, K. E.  
•
Bouvet, D.  
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Pott, V.  
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2008
Solid-State Electronics

In the present work a punch-through impact ionization MOSFET (PIMOS) is presented, which exploits impact ionization in low-doped body-tied [Omega]- and tri-gate structures to obtain abrupt switching (3-10 mV/decade) combined with a hysteresis in the ID(VDS) and ID(VGS) characteristics. The PIMOS device shows an extraordinary temperature stability up to 125 °C. The influence of various parameters on device performance as abrupt switch or memory cell is investigated. Reduction of the electrical channel length, i.e. of gate length and/or substrate doping, reduces the breakdown voltage and hence the DRAM operating voltage, but also increase the Ioff. Two architectures for a capacitor-less DRAM cell are demonstrated and evaluated. In addition, a PIMOS n-type hysteretic inverter is demonstrated, which may serve as a 1T SRAM cell.

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