参数资料
型号: TC820CPL
元件分类: ADC
英文描述: 1-CH DUAL-SLOPE ADC, PDIP40
封装: PLASTIC, DIP-40
文件页数: 9/24页
文件大小: 185K
代理商: TC820CPL
17
TC820
3-3/4 A/D Converter with Frequency
Counter and Logic Probe
TC820-10 10/17/96
2001 Microchip Technology Inc.
DS21476A
Figure 15. Suggested Crystal Oscillator Circuit
5pF
37
38
39
110k
10pF
75pF
TC820
Figure 14. DGND and COM Outputs
+
12
A
P
TC820
LOGIC
SECTION
5V
3.2V
N
VDD
VSS
COM
DGND
Figure 16. R-C Oscillator Circuit
Typical values are R = 10k
and C = 68pF. The resis-
tor value should be
≥100k. For accurate frequency mea-
surement, an R-C oscillator frequency of 40kHz is re-
quired.
System Timing
All system timing is derived from the clock oscillator.
The clock oscillator is divided by 2 prior to clocking the A/D
counters. The clock is also divided by 8 to drive the buzzer,
by 240 to generate the LCD backplane frequency, and by
40,000 for the frequency counter time base. A simplified
diagram of the system clock is shown in Figure 17.
Component Value Selection
Auto Zero Capacitor — CAZ
The value of the auto-zero capacitor (CAZ) has some
influence on system noise. A 0.47
F capacitor is recom-
mended; a low dielectric absorption capacitor (Mylar) is
required.
Reference Voltage Capacitor — CREF
The reference voltage capacitor used to ramp the inte-
grator output voltage back to zero during the reference
integrate cycle is stored on CREF. A 0.1F capacitor is
typical. A good quality, low leakage capacitor (such as
Mylar) should be used.
Integrating Capacitor — CINT
CINT should be selected to maximize integrator output
voltage swing without causing output saturation. Analog
common will normally supply the differential voltage
reference. For this case, a
±2V integrator output swing is
optimum when the analog input is near full scale. For 2.5
readings/second (fOSC = 40kHz) and VFS = 400mV, a
0.22
F value is suggested. If a different oscillator frequency
is used, CINT must be changed in inverse proportion to
0.3
RC
Clock Oscillator
The TC820 oscillator can be controlled with either a
crystal or with an inexpensive resistor-capacitor combina-
tion. The crystal circuit, shown in Figure 15, is recom-
mended when high accuracy is required in the frequency
counter mode. The 40kHz crystal is a standard 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.
Where low cost is important, the R-C circuit of Figure
16 can be used. The frequency of this circuit will be
approximately:
fOSC =
TC820
40kHz
38
39
5 pF
10pF
22 M
470k
37
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