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		<title>P-MART wiki - User contributions [en]</title>
		<link>https://pm.haifa.ac.il/index.php?title=Special:Contributions/GarfieldKraus526</link>
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			<title>User:GarfieldKraus526</title>
			<link>https://pm.haifa.ac.il/index.php?title=User:GarfieldKraus526</link>
			<description>&lt;p&gt;GarfieldKraus526:&amp;#32;Created page with 'The [http://www.china-bldcmotor.com/ brushless DC (BLDC) motor] can be envisioned as a brush DC motor turned inside out, where the permanent magnets are on the rotor, and the win…'&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;The [http://www.china-bldcmotor.com/ brushless DC (BLDC) motor] can be envisioned as a brush DC motor turned inside out, where the permanent magnets are on the rotor, and the windings are on the stator. As a result, there are no brushes and commutators in this motor, and all of the disadvantages associated with the sparking of brush DC motors are eliminated. &lt;br /&gt;
This motor is referred to as a &amp;quot;DC&amp;quot; motor because its coils are driven by a DC power source which is applied to the various stator coils in a predetermined sequential pattern. This process is known as commutation. However, &amp;quot;BLDC&amp;quot; is really a misnomer, since the motor is effectively an AC motor. The current in each coil alternates from positive to negative during each electrical cycle. The stator is typically a salient pole structure which is designed to produce a trapezoidal back-EMF waveshape which matches the applied commutated voltage waveform as closely as possible. However, this is very hard to do in practice, and the resulting back-EMF waveform often looks more sinusoidal than trapezoidal. For this reason, many of the control techniques used with a PMSM motor (such as Field Oriented Control) can equally be applied to a [http://zh.netlog.com/majing900103/blog/blogid=376069#blog BLDC motor].&lt;/div&gt;</description>
			<pubDate>Tue, 08 May 2012 07:29:54 GMT</pubDate>			<dc:creator>GarfieldKraus526</dc:creator>			<comments>https://pm.haifa.ac.il/index.php?title=User_talk:GarfieldKraus526</comments>		</item>
		<item>
			<title>GarfieldKraus526</title>
			<link>https://pm.haifa.ac.il/index.php?title=GarfieldKraus526</link>
			<description>&lt;p&gt;GarfieldKraus526:&amp;#32;Created page with 'The [http://www.china-bldcmotor.com/ brushless DC (BLDC) motor] can be envisioned as a brush DC motor turned inside out, where the permanent magnets are on the rotor, and the win…'&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;The [http://www.china-bldcmotor.com/ brushless DC (BLDC) motor] can be envisioned as a brush DC motor turned inside out, where the permanent magnets are on the rotor, and the windings are on the stator. As a result, there are no brushes and commutators in this motor, and all of the disadvantages associated with the sparking of brush DC motors are eliminated. &lt;br /&gt;
This motor is referred to as a &amp;quot;DC&amp;quot; motor because its coils are driven by a DC power source which is applied to the various stator coils in a predetermined sequential pattern. This process is known as commutation. However, &amp;quot;BLDC&amp;quot; is really a misnomer, since the motor is effectively an AC motor. The current in each coil alternates from positive to negative during each electrical cycle. The stator is typically a salient pole structure which is designed to produce a trapezoidal back-EMF waveshape which matches the applied commutated voltage waveform as closely as possible. However, this is very hard to do in practice, and the resulting back-EMF waveform often looks more sinusoidal than trapezoidal. For this reason, many of the control techniques used with a PMSM motor (such as Field Oriented Control) can equally be applied to a [http://zh.netlog.com/majing900103/blog/blogid=376069#blog BLDC motor].&lt;/div&gt;</description>
			<pubDate>Tue, 08 May 2012 07:29:25 GMT</pubDate>			<dc:creator>GarfieldKraus526</dc:creator>			<comments>https://pm.haifa.ac.il/index.php?title=Talk:GarfieldKraus526</comments>		</item>
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