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TowerPro SG90 SG 90 180 Degree Servo Motor||Robostan


Specification:

  1. Operating Voltage: 4.8~6.0V
  2. Operating Speed: 0.12sec/60 degree(4.8V)~0.1sec/60 degree(6.0V)
  3. Torque: 1.6kg/cm(4.8V)
  4. Dead Band Width: 5usec
  5. Temperature Range: -30~ 60?
  6. Cable Length: 25cm

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TowerPro SG90 SG 90 180 Degree Servo Motor||Robostan

TowerPro SG90 SG 90 180 Degree Servo Motor||Robostan.The TowerPro SG90 mini servo motor is lightweight, high-quality, and lightning-fast. The servo is designed to work with almost all the radio control systems. It is with excellent performance that brings you to another horizon of flight. The SG90 mini servo with accessories is perfect for R/C helicopter, plane, car, boat, and truck use.

Features:

  • Tiny and lightweight with high output power. The servo can rotate approximately 180 degrees (90 in each direction) and works just like the standard kinds but smaller.
  • You can use any servo code, hardware, or library to control these servos.
  • Good for beginners who want to make stuff move without building a motor controller with feedback & gearbox, especially since it will fit in small places. It comes with 3 horns (arms) and hardware.

Specification:

  1. Operating Voltage: 4.8~6.0V
  2. Operating Speed: 0.12sec/60 degree(4.8V)~0.1sec/60 degree(6.0V)
  3. Torque: 1.6kg/cm(4.8V)
  4. Dead Band Width: 5usec
  5. Temperature Range: -30~ 60?
  6. Cable Length: 25cm
  7. Servo Type: Analog Servo
  8. Brand Model: Tower Pro SG90

Package Includes:

  • 1 x Set of SG90 Servo Motor

Best online shopping website for TowerPro SG90 SG 90 180 Degree Servo Motor at a cheap price in Lahore, Islamabad, Karachi, Faisalabad, Multan, Quetta, Sukkur, Peshawar, Sibbi, Kohat, Mardan, Rawalpindi, and all over Pakistan at cheap price at Robostan with fastest delivery.

Image result for sg90 gif

Testing Code: Automatic

nothin#include <Servo.h>

Servo myservo;  // create servo object to control a servo
// twelve servo objects can be created on most boards

void setup() {
myservo.attach(9);  // attaches the servo on pin 9 to the servo object
}

void loop() {
myservo.write(0);
delay(1000);

myservo.write(180);
delay(1000);
}

Testing Code: Without Knobe

#include <Servo.h>

Servo servo;
int angle = 10;

void setup() {
servo.attach(8);
servo.write(angle);
}

void loop()
{
// scan from 0 to 180 degrees
for(angle = 10; angle < 180; angle++)
{
servo.write(angle);
delay(15);
}
// now scan back from 180 to 0 degrees
for(angle = 180; angle > 10; angle–)
{
servo.write(angle);
delay(15);
}
}……..

 

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