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TC820 датащи(PDF) 17 Page - Microchip Technology |
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TC820 датащи(HTML) 17 Page - Microchip Technology |
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17 / 28 page ![]() © 2002 Microchip Technology Inc. DS21476B-page 17 TC820 5.0 TYPICAL APPLICATIONS 5.1 Power Supplies The TC820 is designed to operate from a single power supply such as a 9V battery (Figure 5-1). The converter will operate over a range of 7V to 15V. For battery oper- ation, analog common (COM) provides a Common mode bias voltage (see analog common discussion in the theory of operation section). However, measure- ments cannot be referenced to battery ground. To do so will exceed the Negative Common mode voltage limit. FIGURE 5-1: POWERING THE TC820 FROM A SINGLE 9V BATTERY A battery with voltage between 3.5V and 7V can be used to power the TC820, when used with a voltage doubler, as shown in Figure 5-2. The voltage doubler uses the TC7660 and two external capacitors. With this configuration, measurements can be referenced either to analog common or to battery ground. FIGURE 5-2: POWERING THE TC820 FROM A LOW VOLTAGE BATTERY 5.2 Digital Ground (DGND) Digital ground is generated from an internal zener diode (Figure 5-3). The voltage between VDD and DGND is the internal supply voltage for the digital sec- tion of the TC820. DGND will sink a minimum of 3mA. DGND establishes the low logic level reference for the TC820 mode select inputs, and for the frequency and logic probe inputs. The DGND pin can be used as the negative supply for external logic gates, such as the logic probe buffers. To ensure correct counter opera- tion at high frequency, connect a 1 µF capacitor from DGND to VDD. DGND also provides the drive voltage for the LCD. The TC820 40-pin package internally connects the LCD VDISP pin to DGND, and provides an LCD drive voltage of about 5VP-P. In the 44-pin package, connecting the VDISP pin to DGND will provide a 5V LCD drive voltage. FIGURE 5-3: DGND AND COM OUTPUTS 5.3 Digital Input Logic Levels Logic levels for the TC820 digital inputs are referenced to VDD and DGND. The high level threshold is VDD – 1.5V, and the low logic level is DGND + 1.5V. In most cases, digital inputs will be connected directly to VDD with a mechanical switch. CMOS gates can also be used to control the logic inputs, as shown in the logic probe inputs section. 5.4 Clock Oscillator The TC820 oscillator can be controlled with either a crystal, or with an inexpensive resistor capacitor com- bination. The crystal circuit, shown in Figure 5-4, is rec- ommended when high accuracy is required in the Frequency Counter mode. The 40kHz crystal is a stan- dard frequency for ultrasonic alarms, and will provide a 1-second time-base for the counter or 2.5 analog-to- digital conversions per second. Consult the crystal manufacturer for detailed applications information. TC820 VIN VREF- VDD VREF+ COM VIN+ VIN- VSS + – 9V + – VDD VSS VREF+ VREF- TC820 3.5V to 6V TC7660 VIN+ VIN- + – VIN 10µF 3 4 2 8 5 10µF + + + COM + – 12µA P TC820 Logic Section 5V 3.2V N N VDD VSS COM DGND |
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