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Knowledge, learning and education are the thrust of this century
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  Googol Technology brings in practical experience to the table when developing solutions for fast learning and successful retention for the entire spectrum of Automation and Control technology. This expertise and experience put us in a key position in the market of the control engineering challenges. Demand for motion control training will continue to grow rapidly. That is why we have set ourselves the goal of making control learning ever more efficient. The greater the challenge for us. we will create an innovative solutions for you.
General
Purpose Motion
Controlle
r

An universal controller which could used for simple point-to-point control equipment to highly profiled motion control equipment, such as measuring machine, PCB drilling machine, SMT, engraving machine, NC lathe, machining center, water jet cutter, laser cutting machine, robot and more.
GT Series, 2 ~ 8 Axes
The heart of Googol GM-400 is its PMD 1401A DSP motion chipset that handles the servo algorithms with PID and velocity filtering for all four axes. It performs the intensive computational tasks required for high performance applications such as digital velocity, torque and position control. It is ideally suitable for PC-based applications such as machine tool control, packaging and factory automation.
GM Series, 4 Axes

Automation
Control



Googol's inverted pendulum system is a nonlinear unstable system, an ideal experiment platform for teaching control theories and conducting various control experiments. Many abstract control concepts, such as the stability and the controllability of a control system, can all be shown visually through the inverted pendulum system. In addition to educational purposes, an inverted pendulum is also an excellent tool for researchers of modern control theories. Through continuous research,  new control methods haven been developed and then applied to high-tech industries such as aeronautical engineering and robotics.
Linear Inverted Pendulum

Googoltech's Magnetic Levitation system (MLS) is composed of an LED light source, an electromagnet, an optoelectronic sensor, amplifier module, an analogue control module, data acquisition card, and a steel ball, etc. Its structure is simple, yet the control effect is very intuitionistic and interesting. One can easily levitate one or more steel balls in a steady-state position and keep them floating. This system synthesizes main experimental contents in control area and satisfies many experiment requirements such as automatic control, control theory, and feedback system, etc, which are suitable for Undergraduate or Post-graduate course designs and algorithm research as well.
Magnetic Levitation System
The Ball and Beam Control System consists of a long beam which can be tilted by a servo motor together with a ball rolling back and forth on top of the beam. It is one of the most popular textbook example in control theory.
Ball and Beam Control System


Googol's inverted pendulum system adopt an open control solution and a modularized experiment platform. With the linear motion module as the base platform, it is easy to be cascaded to more stages to enhance the complexity in the control design, thus satisfying the challenge and algorithm building for various levels for control teaching and research.
3-stage Inverted Pendulum

Mechatronics & Mechanical Engineering


The Googol's XY table and linear modules are based on modularized design and industrial manufacturing standard, and is widely used in various areas of CNC and precision position control equipment research and development such as welding, dispenser, bonding, drilling, packing etc. They are also widely used in universities and colleges for advanced research and teaching in the area of mechantronics, computer control system, mechanical engineering and CNC technology, etc.
XY Table and Linear Modules
Googol Technology has been successfully integrated most of its individual control challenge modules into real-life scale-down solutions for Educational Flexible manufacturing system (FMS)  system. The FMS systems are fully open architecture platform that suitable to provide students with both theoretical knowledge and practical experience of how real control systems work and how real processes behave in the fields of automatic control, CNC, manufacturing, mechantronics, industrial engineering and logistics etc.
Educational FMS System

4-axis Motion Control Platform

Googol Technology provdies standard educational FMS and logistics system that successfully meeting the training requirements of academia and industry.
Educational Logistics Systems

Robotics

 

The self-balancing robot is in fact a movable 3 Dof inverted pendulum system. This system uses the gyro as feedback, is balanced by outputting different torque in two wheels. It is designed to drive the wheels in the direction that the upper part of the robot is falling.
Available from 2009 Q2

 

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