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LS6522 数据表(PDF) 2 Page - LSI Computer Systems |
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LS6522 数据表(HTML) 2 Page - LSI Computer Systems |
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2 / 8 page ![]() INHIBIT The Output Duration Timer can be inhibited from trig- gering by the voltage level at the INHIBIT input. When this voltage level exceeds the Inhibit Threshold, the Timer will be prevented from triggering if it is OFF. If the Timer is ON, the INHIBIT input is blocked from affecting the Timer. There is approximately 10% hysteresis between the In- hibit and Enable thresholds at the INHIBIT input. The LED output is not affected by the INHIBIT input. An adjustable Ambient Light Level Inhibit can be implemented by con- necting a Light Determining Resistor (LDR) network to the INHIBIT input (See Figures 3 and 4). DEAD TIME False turn-ons are prevented from occurring by es- tablishing a Dead Time between the end of the timeout of the Output Duration Timer and the retriggering of that Timer. The state of the DEAD TIME SELECT input de- termines the Dead Time duration (See Table 2). OSCILLATOR For battery operation, an external RC is connected to the OSCILLATOR input to produce a 50Hz or 60Hz clock. A 30Hz clock can be used to extend timing durations (See Tables 1 and 2). DC POWER SUPPLY VDD - Vss is 8V ± 1V. Typical quiescent current is 250μA (TRIAC/RELAY, LED and REGULATOR outputs not loaded). DC REGULATOR The LS65 22 includes a Regulator which provides a nominal +5V to the Differential Amplifier and Window Comparator and is available as an output to supply the PIR Sensor. TRIAC/RELAY OUTPUT This open drain output turns ON when the Output Dura- tion Timer is triggered. The output drives a Triac when the OSCILLATOR input is tied to ground and 50/60Hz is applied to the AC input (See Figure 3). The output drives a Relay when the AC input is tied to ground and an RC network is connected to the OSCILLATOR input (See Figure 4). TRIAC DRIVE (See Figure 3) With the Output Duration Timer ON and a 2.7V P-P 60Hz signal applied to the AC input, the output produces a negative-going pulse in each half-cycle delayed a nominal 1.2ms from the zero crossing. There is no more than 150μs difference between the zero-crossing delay of each pulse. RELAY DRIVE (See Figure 4) The output can sink current continously with the Output Duration Timer ON and the OSCILLATOR input active. This output can sink current from a relay coil returned to a positive voltage (VDD to 12.5V maximum). 030 18 15 0.09 VDD 60 36 30 0.16 VDD 90 54 45 0.22 VDD 120 72 60 0.28 VDD 4 2. 4 2 0.34 VDD 6 3.6 3 0.41 VDD 8 4.8 4 0.47 VDD 10 6 5 0.53 VDD 12 7.2 6 0.59 VDD 14 8.4 7 0 .66 VDD 16 9.6 8 0.72 VDD 18 10.8 9 0.78 VDD 20 12 10 0.84 VDD 24 14.4 12 0.91 VDD 28 16.8 14 VDD 30 18 15 TABLE 1 OUTPUT DURATION TIMER AS A FUNCTION OF TIMER CONTROL INPUT VOLTAGE (f = Frequency at AC input or OSCILLATOR input) INPUT VOLTAGE f = 30Hz f = 50Hz f = 60Hz UNIT TABLE 2 DEAD TIME DURATION AS A FUNCTION OF THE STATE OF DEAD TIME SELECT INPUT (f = Frequency at AC input or OSCILLATOR input) INPUT STATE f = 30Hz f = 50Hz f = 60Hz UNIT 0 2 1.2 1 OPEN 8 4.8 4 1 16 9.6 8 65 22-110712-2 sec sec sec sec min min min min min min min min min min min min sec sec sec |
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