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ATS610LSC Datasheet(PDF) 9 Page - Allegro MicroSystems |
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ATS610LSC Datasheet(HTML) 9 Page - Allegro MicroSystems |
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9 / 12 page ![]() ATS610LSC DYNAMIC, PEAK-DETECTING, DIFFERENTIAL HALL-EFFECT GEAR-TOOTH SENSOR DEVICE DESCRIPTION — Continued Peak-Detecting vs. AC-Coupled Filters. High-pass filtering (normal ac coupling) is a commonly used tech- nique for eliminating circuit offsets. AC coupling has errors at power up because the filter circuit needs to hold the circuit zero value even though the circuit may power up over a large signal. Such filter techniques can only perform properly after the filter has been allowed to settle, which is typically greater than one second. Also, high- pass filter solutions cannot easily track rapidly changing baselines such as those caused by eccentricities. Peak detection switches on the change in slope of the signal and is baseline independent at power up and during running. Track-and-Hold Peak Detecting vs. Zero-Crossing Reference. The usual differential zero-crossing sensors are susceptible to false switching due to off-center and tilted installations, which result in a shift in baseline that changes with air gap. The track-and-hold peak-detection technique ignores baseline shifts versus air gaps and provides increased immunity to false switching. In addi- tion, using track-and-hold peak-detecting techniques, increased air gap capabilities can be expected because a peak detector utilizes the entire peak-to-peak signal range as compared to zero-crossing detectors that switch on fixed thresholds. NOTE — “Baseline” refers to the zero-gauss differen- tial where each Hall-effect element is subject to the same magnetic field strength. CRITERIA FOR DEVICE QUALIFICATION All Allegro sensors are subjected to stringent qualification requirements prior to being released to production. To become qualified, except for the destructive ESD tests, no failures are permitted. Test Method and Samples Qualification Test Test Conditions Test Length Per Lot Comments Temperature Humidity JESD22-A101, 1000 hrs 48 Device biased for Bias Life TA = 85°C, RH = 85% minimum power Bias Life JESD22-A108, 1000 hrs 48 TA = 150°C, TJ = 165°C (Surge Operating Life) JESD22-A108, 168 hrs 48 TA = 175°C, TJ = 190°C Autoclave, Unbiased JESD22-A102, 96 hrs 48 TA = 121°C, 15 psig High-Temperature JESD22-A103, 1000 hrs 48 (Bake) Storage Life TA = 170°C Temperature Cycle JESD22-A104 1000 cycles 60 -55 °C to +150°C ESD, CDF-AEC-Q100-002 Pre/Post 3 per Test to failure Human Body Model Reading test All leads > 8 kV |
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