J
		
		2013
			
	    
Bar Piezoelectric Ceramic Transformers
	    ERHART, Jiří; Petr PŮLPÁN a Luboš RUSIN
	
	
	
	    
	
     
 
	
	Základní údaje
	
		Originální název
		Bar Piezoelectric Ceramic Transformers
	 
				Autoři
				ERHART, Jiří (203 Česká republika, domácí); Petr PŮLPÁN (203 Česká republika, domácí) a Luboš RUSIN (203 Česká republika, domácí)
			 
			
				Vydání
				 IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, 2013, 0885-3010
			 
		
Další údaje
		
	
		
			Typ výsledku
			Článek v odborném periodiku
		 
	
		
			Obor
			Elektronika a optoelektronika, elektrotechnika
		 
	
		
			Stát vydavatele
			Spojené státy
		 
	
		
			Utajení
			není předmětem státního či obchodního tajemství
		 
	
			
		
		
			Kód RIV
			RIV/46747885:24510/13:#0000988
		 
	
			
				Organizace
				Fakulta přírodovědně-humanitní a pedagogická – Technická univerzita v Liberci – Repozitář
			 
		
		
		
			Klíčová slova anglicky
			piezoelectric transformer
		 
				Návaznosti
				GAP102/10/1139, projekt VaV. 
			 
			
			
				
					V originále
					Bar-shaped piezoelectric ceramic transformers (PTs) working in the longitudinal vibration mode (k31 mode) were studied. Two types of the transformer were designed— one with the electrode divided into two segments of different length, and one with the electrodes divided into three symmetrical segments. Parameters of studied transformers such as efficiency, transformation ratio, and input and output impedances were measured. An analytical model was developed for PT parameter calculation for both two- and three-segment PTs. Neither type of bar PT exhibited very high efficiency (maximum 72% for three-segment PT design) at a relatively high transformation ratio (it is 4 for two-segment PT and 2 for three-segment PT at the fundamental resonance mode). The optimum resistive loads were 20 and 10 kΩ for two- and three-segment PT designs for the fundamental resonance, respectively, and about one order of magnitude smaller for the higher overtone (i.e., 2 kΩ and 500 Ω, respectively). The no-load transformation ratio was less than 27 (maximum for two-segment electrode PT design). The optimum input electrode aspect ratios (0.48 for three-segment PT and 0.63 for two-segment PT) were calculated numerically under no-load conditions.
				  
				Zobrazeno: 4. 11. 2025 09:23