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ATS667LSG 数据表(PDF) 3 Page - Allegro MicroSystems |
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ATS667LSG 数据表(HTML) 3 Page - Allegro MicroSystems |
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3 / 14 page ![]() True Zero-Speed, High Accuracy Gear Tooth Sensor IC ATS667LSG 3 Allegro MicroSystems, Inc. 115 Northeast Cutoff Worcester, Massachusetts 01615-0036 U.S.A. 1.508.853.5000; www.allegromicro.com OPERATING CHARACTERISTICS Valid over operating voltage and temperature ranges; unless otherwise noted Characteristics Symbol Test Conditions Min. Typ.1 Max. Unit Electrical Characteristics Supply Voltage2 VCC Operating, TJ < TJ(max) 4.0 – 24 V Undervoltage Lockout (UVLO) VCC(UV) – 3.5 3.95 V Reverse Supply Current IRCC VCC = –18 V – – – 10 mA Supply Zener Clamp Voltage VZ ICC = 15 mA, TA = 25 °C 26.5 – – V Supply Zener Current IZ TA = 25°C, TJ < TJ(max), continuous, VZ =26.5 V – – 15 mA Supply Current ICC Output off 4 7 12 mA Output on 4 7 12 mA Power-On State Characteristics Power-On State POS Connected as in figure 6 – High – – Power-On Time3 tPO SROT < 200 rpm; VCC > VCC(min) – – 2 ms OUTPUT STAGE Low Output Voltage VOUT(SAT) IOUT = 10 mA, Output = on – 100 250 mV Output Zener Clamp Voltage VZOUT IOUT = 3 mA, TA = 25°C 26.5 – – V Output Current Limit IOUT(LIM) VOUT = 12 V, TJ < TJ(max) 25 45 70 mA Output Leakage Current IOUT(OFF) Output = off, VOUT = 24 V – – 10 μA Output Rise Time tr RPULLUP = 1 kΩ, CL = 4.7 nF, VPULLUP = 12 V, 10% to 90%, connected as in figure 6 – 10 – μs Output Fall Time tf RPULLUP = 1 kΩ, CL = 4.7 nF, VPULLUP = 12 V, 90% to 10%, connected as in figure 6 – 0.6 2 μs D-to- A Converter (DAC) Characteristics Allowable User Induced Differential Offset4,5 BDIFFEXT User induced differential offset – ±60 – G Calibration Initial Calibration6 CALI Possible reduced edge detection accuracy, duty cycle not guaranteed – 1 6 edge Update Method Running mode operation, bounded for decreasing AG, unlimited for increasing AG – Continuous –– Operating Characteristics (with Allegro 60-0 Reference Target) Operational Air Gap Range7 AGOP Repeatability and duty cycle within specification 0.5 – 2.5 mm Maximum Operational Air Gap Range AGOPMAX Output switching only (no missing edges) – – 3.1 mm Relative Repeatability8 TθE 100 Gpk-pk ideal sinusoidal signal, TA=150°C, SROT=1000 rpm (f=1000Hz) – 0.12 – deg. Maximum Single Outward Sudden Air Gap Change9 ΔAGMAX Percentage of most recent AGpk-pk, single instantaneous air gap increase, f < 500 Hz, VPROC(pk-pk) > VLOE after sudden AG change – 40 – % Duty Cycle D Wobble < 0.5 mm, AGOP < AGOPMAX, direction of target rotation pin 1 to pin 4 42 47 52 % Continued on the next page… |
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