Showing posts with label controller. Show all posts
Showing posts with label controller. Show all posts
Wednesday, September 4, 2013
LMD18200 Motor Controller Schematic
Using the LMD18200 3A H-Bridge designed by National Semiconductors for motion control applications can be designed a very simple motor controller electronic project . Ideal for driving DC and stepper motors; the LMD18200 accommodates peak output currents up to 6A. An innovative circuit which facilitates low-loss sensing of the output current has been implemented.
LMD18200 Motor Controller Schematic
This circuit controls the current through the motor by applying an average voltage equal to zero to the motor terminals for a fixed period of time, whenever the current through the motor exceeds the commanded current. This action causes the motor current to vary slightly about an externally controlled average level. The duration of the Off-period is adjusted by the resistor and capacitor combination of the LM555.
Using this motor driver circuit you can design a 24 DC motor that require a maximum current consumption of 3 amperes .
LMD18200 Motor Controller Schematic
Using this motor driver circuit you can design a 24 DC motor that require a maximum current consumption of 3 amperes .
Thursday, April 11, 2013
Automatic Street Light Controller Circuit Diagram
This circuit is an automatic street light controller. Sensors used to detect changes in light is LDR (Light dependent resistor), the working principle of Light dependent resistor
is exposed to light when the resistance value of LDR great, but if not
exposed to light or dark then the resistance value of LDR.
LDR is a special type of resistance whose value depends on the brightness
of the light which is falling on it. It has resistance of about 1 mega
ohm when in total darkness, but a resistance of only about 5k ohms when
brightness illuminated. It responds to a large part of light spectrum.
When
light falls on the LDR then its resistance decreases which results in
increase of the voltage at pin 2 of the IC 555. IC 555 has got comparator
inbuilt, which compares between the input voltage from pin2 and 1/3rd
of the power supply voltage. When input falls below 1/3rd then output is
set high otherwise it is set low. Since in brightness, input voltage
rises so we obtain no positive voltage at output of pin 3 to drive relay.
More...
is exposed to light when the resistance value of LDR great, but if not
exposed to light or dark then the resistance value of LDR.

LDR is a special type of resistance whose value depends on the brightness
of the light which is falling on it. It has resistance of about 1 mega
ohm when in total darkness, but a resistance of only about 5k ohms when
brightness illuminated. It responds to a large part of light spectrum.

light falls on the LDR then its resistance decreases which results in
increase of the voltage at pin 2 of the IC 555. IC 555 has got comparator
inbuilt, which compares between the input voltage from pin2 and 1/3rd
of the power supply voltage. When input falls below 1/3rd then output is
set high otherwise it is set low. Since in brightness, input voltage
rises so we obtain no positive voltage at output of pin 3 to drive relay.
Subscribe to:
Posts (Atom)
