An equivalent network for resistance and temperature coefficient of resistance versus temperature and composition of thick resistive films
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[1] D. B. Rogers,et al. Crystal chemistry of metal dioxides with rutile-related structures , 1969 .
[2] Electrical conduction in discontinuous metal films , 1969 .
[3] Ivar Giaever,et al. Tunneling Through Thin Insulating Layers , 1961 .
[4] Robert M. Hill. Electrical Transport in Thick Film Resistors , 1980 .
[5] Andrzej Kusy. Chains of conducting particles that determine the resistivity of thick resistive films , 1977 .
[6] Andrzej Kusy,et al. On 1f noise in RuO2-based thick resistive films , 1986 .
[7] C. A. Neugebauer,et al. Electrical Conduction Mechanism in Ultrathin, Evaporated Metal Films , 1962 .
[8] Andrzej Kusy. On the structure and conduction mechanism of thick resistive films , 1976 .
[9] Andrzej Kusy,et al. Computer simulation of thick resistive films as two component percolation systems: Segregation of the conducting component , 1985 .
[10] Ping Sheng,et al. Structural and electrical properties of granular metal films , 1975 .
[11] N. C. Halder. Electron Tunneling and Hopping Possibilites in RuO2 Thick Films , 1983 .
[12] Carleton H. Seager,et al. Electrical properties and conduction mechanisms of Ru‐based thick‐film (cermet) resistors , 1977 .
[13] W. D. Ryden,et al. Temperature dependence of the resistivity of RuO2 and IrO2 , 1968 .
[14] E. H. Sondheimer,et al. The mean free path of electrons in metals , 1952 .