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LS7340 Datasheet(PDF) 1 Page - LSI Computer Systems |
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LS7340 Datasheet(HTML) 1 Page - LSI Computer Systems |
1 / 4 page AUTO SHUT-OFF AC POWER SWITCH WITH PROGRAMMABLE TIMER FEATURES: • Phase-Lock Loop Synchronization allows use in Wall Switch Applications. • PLL accuracy delivers Pure AC Power. • Timer programmable with external R-C. • ON input switches AC Power On and starts Timer. • OFF input switches AC Power Off. • 50/60Hz Line Frequency. • +12V to +18V Operation (VSS - VDD). • LS7339, LS7340 (DIP); LS7339-S, LS7340-S - See Figure 1 APPLICATIONS: • AUTO SHUT-OFF TIMER for appliances such as coffee pots, curling irons, hair curlers, electric blankets, hand dryers. • TIMED-ON WALL SWITCH for incandescent lighting and heat lamps. DESCRIPTION: The LS7339 and LS7340 are MOS integrated circuits designed to turn a triac On and Off in a Power Switch for AC loads. Activation of the ON input will always turn the triac On and start a Timer. The triac re- mains On for the duration of the Timer which is controlled by an ex- ternal R-C connected to the OSCILLATOR input. Activation of the OFF input will always turn the triac Off. The two ICs differ only in the width of the TRIG pulse used to trigger the triac. (See I/O Description, Pin 4.) In a typical application (Figure 5), the output of the LS7339 drives the gate of a triac in series with the load. Because the LS7339 is ac- curately synchronized to the line frequency with a phase-lock loop, the power delivered by the triac to the load is pure AC, allowing use with inductive loads such as motors and transformers. There are two states through which the LS7339 can be stepped. The states and their corresponding operating modes, phase angles, and delivered power levels are shown in Table 1. TABLE 1 (See Figures 2 and 3) STATE 0 STATE 1 OPERATING MODE OFF Timed-On PHASE ANGLE, ø No Output 159˚ % LOAD POWER (1) 0 99 (1) The percentage of full power delivered to a resistive load by the triac switch. If left in STATE 1, after a time-out period determined by the frequency set at the OSC input (See I/O Description, Pin 6), the circuit automatically steps to STATE 0. If the ON input tran- sitions to logic 0 before completion of the time-out period in STATE 1, the Timer is restarted, beginning a new time-out January 2003 7339-012703-1 1 2 3 4 5 6 7 8 PIN ASSIGNMENT - TOP VIEW FIGURE 1 ON OFF VDD (-V) TRIG V SS (+V) SYNC CAP OSC LSI/CSI LSI Computer Systems, Inc. 1235 Walt Whitman Road, Melville, NY 11747 (631) 271-0400 FAX (631) 271-0405 LS7339-7340 UL ® A3800 OPERATING DESCRIPTION: Upon power up, internal power-on-reset starts the LS7339 in STATE 0. When the ON input transitions to logic 0, the circuit steps to STATE 1. When the OFF input transitions to logic 0, the circuit steps to STATE 0. When implemented as shown in the application example (Figure 5), this is accomplished by the momentary switching of the appropriate in- put to VDD through S1. STATE 1 is a quasi-stable state. INPUT/OUTPUT DESCRIPTION: ON (Pin 1) - See NOTE 1 A logic 0 applied to this input for a minimum of three SYNC cy- cles, TS1 (50ms for 60Hz, 60ms for 50Hz), turns TRIG On and starts a Timer. Upon completion of the Time-out, TD1, TRIG turns Off. While the Time-out is in progress a new transition to logic 0 at this input for a minimum of three SYNC Cycles, TS1, restarts the Timer. This input is designed for Touch or Switch control. (See Figure 5.) OFF (Pin 2) - See NOTE 2 A logic 0 applied to this input for a minimum of three SYNC cy- cles, TS1, turns TRIG Off. This input is designed for Switch con- trol only. (See Figure 5.) VDD (Pin 3) Supply voltage negative terminal. TRIG (Pin 4) TRIG is a negative going pulse occurring once every half cycle of the SYNC input. Pulse width is 1ms (LS7339) or 33µs (LS7340). The LS7339 wide pulse width may be required for in- ductive loads. The LS7340 narrow pulse width allows use of a smaller value of C2 power supply capacitor. (See Figure 5.) VSS (Pin 5) Supply voltage positive terminal. OSC (Pin 6) An R-C network connected to this input controls the frequency of oscillation which determines the Time-out, TD1, in State 1. TD1 is approximately 255RC. The Oscillator is active only in State 1. Chip to chip Oscillation Tolerance is ±10% for fixed value of RC. Tie Pin 6 to VSS if a Time-out is not desired. (See Figure 5.) |
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