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HAL805 Datasheet(PDF) 17 Page - Micronas |
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HAL805 Datasheet(HTML) 17 Page - Micronas |
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17 / 24 page ![]() PRELIMINARY DATA SHEET HAL 805 Micronas 17 4. Application Notes 4.1. Application Circuit For EMC protection, it is recommended to connect one ceramic 4.7 nF capacitor each between ground and the supply voltage, respectively the output voltage pin. In addition, the input of the controller unit should be pulled-down with a 4.7 kOhm resistor and a ceramic 4.7 nF capacitor. Please note that during programming, the sensor will be supplied repeatedly with the programming voltage of 12 V for 100 ms. All components connected to the VDD line at this time must be able to resist this voltage. Fig. 4–1: Recommended application circuit 4.2. Use of two HAL 805 in Parallel Two different HAL 805 sensors which are operated in parallel to the same supply and ground line can be programmed individually. In order to select the IC which should be programmed, both Hall ICs are inacti- vated by the “Deactivate” command on the common supply line. Then, the appropriate IC is activated by an “Activate” pulse on its output. Only the activated sen- sor will react to all following read, write, and program commands. If the second IC has to be programmed, the “Deactivate” command is sent again, and the sec- ond IC can be selected. Fig. 4–2: Parallel operation of two HAL 805 4.3. Temperature Compensation The relationship between the temperature coefficient of the magnet and the corresponding TC and TCSQ codes for linear compensation is given in the following table. In addition to the linear change of the magnetic field with temperature, the curvature can be adjusted as well. For this purpose, other TC and TCSQ combi- nations are required which are not shown in the table. Please contact MICRONAS for more detailed informa- tion on this higher order temperature compensation. The HAL 800 and HAL 805 contain the same tempera- ture compensation circuits. If an optimal setting for the HAL 800 is already available, the same settings may be used for the HAL 805. OUT VDD GND 4.7 nF HAL805 4.7 k Ω µC 4.7 nF 4.7 nF HAL 805 GND 10 nF HAL 805 4.7 nF 4.7 nF Sensor A Sensor B VDD OUT B & Select B OUT A & Select A Temperature Coefficient of Magnet (ppm/K) TC TCSQ 400 31 6 300 28 7 200 24 8 100 21 9 018 10 −50 17 10 −90 16 11 −130 15 11 −170 14 11 −200 13 12 −240 12 12 −280 11 12 −320 10 13 −360 9 13 −410 8 13 −450 7 13 −500 6 14 −550 5 14 −600 4 14 −650 3 14 −700 2 15 −750 1 15 |
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