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MLX92215 데이터시트(PDF) 4 Page - Melexis Microelectronic Systems |
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MLX92215 데이터시트(HTML) 4 Page - Melexis Microelectronic Systems |
4 / 13 page MLX92215-AAA 3-Wire Hall Effect Latch 390109221501 Page 4 of 13 Datasheet Rev. 001 www.melexis.com NOV/14 5 General Electrical Specifications DC Operating Parameters TA = -40°C to 150°C, VDD = 2.7V to 24V (unless otherwise specified) Parameter Symbol Test Conditions Min Typ (1) Max Units Supply Voltage VDD Operating 2.7 - 24 V Supply Current IDD 1.5 3.0 4.5 mA Reverse Supply Current IDDREV VDD = -18V 1 mA Output Leakage Current IOFF VOUT = 12V, VDD = 12V, B < Brp 0.1 10 µA Output Saturation Voltage VDSon B > BOP, VDD = 3.8 to 18V, IOUT = 20mA 0.2 0.5 V Output Rise Time (2) (RPU dependent) tR VDD = 12V, VPU (3) = 5V, R PU = 1kΩ CLOAD = 50pF to GND 0.1 0.3 1 µs Output Fall Time (2) (On-chip controlled) tF VDD = 12V, VPU = 5V, RPU = 1kΩ CLOAD = 50pF to GND 0.1 0.3 1 µs Chopping Frequency fCHOP 340 kHz Output Refresh Period (2) tPER 6 µs Delay time (2,4) tD Average over 1000 successive switching events @10kHz, square wave with B≥30mT, tRISE=tFALL≤20μs 6 µs Output Jitter (p-p) (2, 5) tJITTER Over 1000 successive switching events @1kHz, square wave with B≥30mT, tRISE=tFALL ≤100μs ±3 µs Maximum Switching Frequency (2,6) fSW B ≥30mT and square wave magnetic field 30 50 kHz Power-On Time (7,8) tON VDD = 5V, dVDD/dt > 2V/us 16 35 μs SE Package Thermal Resistance RTH Single layer (1S) Jedec board 300 °C/W UA Package Thermal Resistance RTH Single layer (1S) Jedec board 200 °C/W Table 1: Electrical specifications 1 Typical values are defined at T A = +25°C and VDD = 12V, unless otherwise specified 2 Guaranteed by design and verified by characterization, not production tested 3 R PU and VPU are respectively the external pull-up resistor and pull-up power supply 4 The Delay Time is the time from magnetic threshold reached to the start of the output switching 5 Output jitter is the unpredictable deviation of the Delay time 6 Maximum switching frequency corresponds to the maximum frequency of the applied magnetic field which is detected without loss of pulses 7 The Power-On Time represents the time from reaching V DD = VPOR to the first refresh of the output (first valid output state) 8 Power-On Slew Rate is not critical for the proper device start-up |
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