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L4620 数据表(PDF) 5 Page - STMicroelectronics |
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L4620 数据表(HTML) 5 Page - STMicroelectronics |
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5 / 9 page ![]() The L4620 liquid level alarm is designed to operate with a variety of sensor types which change imped- ance depending on whether the sensor is above or below the level of a liquid. If the impedancevariation of ther liquid itself is sensed, a very simple sensor (two electrodes) can be used. The output stage drives directly the alarm indicator with a 300mArec- tangular wave signal, the duty cycle of which is pro- grammable. SENSOR INTERFACE. As shownin the applicationcircuit, the sensoris con- nected so that it varies the attenuation of a square- wave signal between pin 2 and pin 3 where its posi- tive half cycle is comparedwiththe referencethresh- old (with hysteresis). This frequency, generated internally by a 50% duty cycle oscillator, is 50Hz in the typical application (Rosc = 180K Ω Cosc = 4.7nF). The threshold of the sensor input is a function of the outputvoltageat pin 2. The hysteresisis provided by a Schmitt trigger comparator. As shown in figure 1, this gives hysteresis with either threshold polarity selected. The AC driving of the level sensor allows the use of a capacitive filter (CA,CB,CC in block diagram) which acts as a bandpass filter at the frequency used.The resistor RC in theapplicationcircuit biases the sensor input stage. In this way the interference problems typical of automotive applications are re- duced considerably. If, however, it is not necessary to decouple and filter the sensor a simple resistive network may be used, eliminating the capacitors. SPURIOUS INDICATION PROTECTION. To preventspurious alarm signals when the liquid is agitated or in the presence of interference, the de- vice includes two protection mechanism : Firstly, the sensor interface which samples the posi- tive halfcycleof the sensor signalactivatesits output only if there are four consecutive alarm conditionin- dications. Secondly, the alarm output stage is only activated after an externally programmable delay. During this delay if the alarm condition ceases the alarm output will not be activated. Using the values Cosc = 4.7nF and Rosc = 180K Ω, which give a typical oscillator frequency of 1.6KHz, delaysof about 10 s (programmingpin 7 low)or 20s. INTERNAL MEMORY. When the alarm output has been activated an inter- nal latch holds it in the active state until the power supply is removed. This feature ensures that the alarm will not be interrupted if the sensor connection breaks. OUTPUT STAGE. Throughpin 8 it is possibleto programthe duty cycle of the alarm signal waveform (see figure 2). When pin 8is high the outputsignal has a dutycycle of 50% ; if pin 8 is low the duty cycle is 1 : 64. The period of the output signal is always 320ms using the compo- nent values indicated in block diagram. The outputstagecan deliver up to 300mAand is pro- tected internally against overvoltages (by a zener). A thermal shutdown circuit provides additional pro- tection. CIRCUIT OPERATION L4620 5/9 |
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