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ATS128 Datasheet(PDF) 20 Page - Allegro MicroSystems |
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ATS128 Datasheet(HTML) 20 Page - Allegro MicroSystems |
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20 / 25 page ![]() Highly Programmable, Back-Biased, Hall-Effect Switch with TPOS Functionality ATS128LSE 20 Allegro MicroSystems, LLC 115 Northeast Cutoff Worcester, Massachusetts 01615-0036 U.S.A. 1.508.853.5000; www.allegromicro.com B+ B– Target Displacement from Home Position, θ (°) 0 –θθ BOP Home Position Displaced Clockwise Displaced Counterclockwise Target BRP Figure 15 shows a plot of the example, indicating magnetic field density versus displacement, at a fixed air gap. For the example, the magnetic field is assumed to be positive (south). At the Home position the device output will be in a state defined by B > BOP , low (assuming POL = 0) . In a position at a displacement greater than ±θ, the output will be in the state defined by B < BRP, high. To achieve the required result, BOP is programmed to a level such that the sensor IC changes state from low to high at ±θ. First, the target is located at the corresponding switchpoint loca- tion, the –θ° or +θ° position. Next, the device Positive Trim, Up- Counting register is selected and the output is monitored while the addressed code is increased. When the register is entered, the default magnitude (code 1) of BOP is lower than the magnetic flux density, Bactual, and output is low. (See A in figure 16.) As the code is increased, BOP is increased. When BOP is increased to a level where BOP point is greater than Bactual, the output changes state from low to high. The code value when the device switched from low to high corresponds to the BRP point (record this for later reference). (See B in figure 16.) To find the code that corresponds to BOP, the device Positive Trim, Down-Counting register is selected, and the output is moni- tored while the addressed code is increased. When the register is entered, the default magnitude (code 1) BOP is higher than the ambient field flux density, Bactual, (because the codes are inverted for down-counting) and output is high. (See C in figure 17.) Figure 15. Example of magnetic flux density versus target displacement. In an application, an increasing B value could indicate either an increasing intensity of a south field or a decreasing intensity of a north field. |
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