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MPXM2202GS 数据表(PDF) 125 Page - Motorola, Inc |
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MPXM2202GS 数据表(HTML) 125 Page - Motorola, Inc |
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125 / 670 page ![]() 2–89 Motorola Sensor Device Data www.motorola.com/semiconductors AN1635 Baseball Pitch Speedometer Prepared by: Carlos Miranda, Systems and Applications Engineer and David Heeley, Systems and Applications Mechanical Engineer INTRODUCTION The Baseball Pitch Speedometer, in its simplest form, con- sists of a target with acceleration sensors mounted on it, an MCU to process the sensors’ outputs and calculate the ball speed, and a display to show the result. The actual imple- mentation, shown in Figure 1, resembles a miniature pitching cage, that can be used for training and/or entertainment. The cage is approximately 6 ft. tall by 3 ft. wide by 6 ft. deep. The upper portion is wrapped in a nylon net to retain the baseballs as they rebound off the target. A natural rubber mat, backed by a shock resistant acrylic plate, serve as the target. Accel- erometers, used to sense the ball impact, and buffers, used to drive the signal down the transmission line, are mounted on the back side of the target. The remainder of the electronics is contained in a display box on the top front side of the cage. Accelerometers are sensors that measure the accelera- tion exerted on an object. They convert a physical quantity into an electrical output signal. Because acceleration is a vector quantity, defined by both magnitude and direction, an accelerometer’s output signal typically has an offset voltage and can swing positive and negative relative to the offset, to account for both positive and negative acceleration. An example acceleration profile is shown in Figure 2. Because acceleration is defined as the rate of change of velocity with respect to time, the integration of acceleration as a function of time will yield a net change in velocity. By digitizing and numerically integrating the output signal of an accelerometer through the use of a microcontroller, the “area under the curve” could be computed. The result corresponds to the net change in velocity of the object under observation. This is the basic principle behind the Baseball Pitch Speedometer. Figure 1. David Heeley, mechanical designer of the Baseball Pitch Speedometer Demo, tests his skills at Sensors Expo Boston ’97. MOTOROLA SEMICONDUCTOR APPLICATION NOTE REV 1 Freescale Semiconductor, Inc. For More Information On This Product, Go to: www.freescale.com |
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