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TC534CPL 数据表(PDF) 13 Page - Microchip Technology |
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TC534CPL 数据表(HTML) 13 Page - Microchip Technology |
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13 / 22 page ![]() © 2002 Microchip Technology Inc. DS21433B-page 13 TC530/TC534 5.0 SELECTING COMPONENT VALUES FOR THE TC530/TC534 1. Calculate Integrating Resistor ( RINT) The desired full scale input voltage and amplifier output current capability determine the value of RINT. The buffer and integrator amplifiers each have a full scale current of 20 µA. The value of RINT is therefore directly calculated as follows: EQUATION 5-1: 2. Select Reference (CREF) and Auto Zero (CAZ) Capacitors CREF and CAZ must be low leakage capacitors (such as polypropylene). The slower the conver- sion rate, the larger the value CREF must be. Rec- ommended capacitors for CREF and CAZ are shown in Table 5-1. Larger values for CAZ and CREF mayalsobeused tolimit rollover errors. TABLE 5-1: CREF AND CAZ SELECTION 5.1 Calculate Integrating Capacitor (CINT) The integrating capacitor must be selected to maximize integrator output voltage swing. The integrator output voltage swing is defined as the absolute value of VDD (or VSS) less 0.9V (i.e.,IVDD – 0.9VI or IVSS +0.9VI). Using the 20 µA buffer maximum output current, the value of the integrating capacitor is calculated using the following equation. EQUATION 5-2: It is critical that the integrating capacitor have a very low dielectric absorption. PPS capacitors are an exam- ple of one such dielectric. Table 5-2 summarizes various capacitors suitable for CINT. TABLE 5-2: RECOMMENDED CAPACITOR FOR CINT 5.2 Calculate VREF The reference de-integration voltage is calculated using the following equaton: EQUATION 5-3: 5.3 Serial Port Communication with the TC530/TC534 is accom- plished over a 3 wire serial port. Data is clocked into DIN on the rising edge of DCLK and clocked out of DOUT on the falling edge of DCLK.R/W must be HIGH to read converted data from the serial port and LOW to write the LOAD VALUE to the TC530/TC534. 5.4 Data Read Cycle Data is shifted out of the serial port in the following order: End of Conversion (EOC), Overrange (OVR), Polarity (POL), conversion data (MSB first). When R/W is high, the state of the EOC bit can be polled by simply reading the state of DOUT. This allows the processor to determine if new data is available without connecting an additional wire to the EOC output pin (this is espe- cially useful in a polled environment). See Figure 5-1. FIGURE 5-1: SERIAL PORT DATA READ CYCLE Conversion Per Second Typical Value of CREF,CAZ (µF) Suggested* Part Number >7 0.1 SMR5 104K50J0IL 2 to 7 0.22 SMR5 224K50J2L 2 or less 0.47 SMR5 474K50J04L Note: *Manufactured by Evox-Rifa, Inc. VINMAX 20 RINT = m Ω where: VIN(MAX) = Maximum Input Voltage (full count voltage) RINT = Integrating Resistor (in mΩ) For loop stability, RINT should be ≥ 50kΩ. (TINT)(20 x10 -6) (VS -0.9) CINT = µF where: TINT = Integration Period VS =IVDDI CINT = Integrated Capacitor Value (µF). Value ( µF) Suggested Part Number* 0.1 SMR5 104K50J0IL 0.22 SMR5 224K50J2L 0.33 SMR5 334K50J03L4 0.47 SMR5 474K50J04L Note: *Manufactured by Evox-Rifa, Inc. (VS –0.9) (CINT)(RINT) VREF = 2(RINT) V EOC OVR POL MSB LSB R/W DCLK DOUT |
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