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TC7126 데이터시트(PDF) 7 Page - Microchip Technology |
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TC7126 데이터시트(HTML) 7 Page - Microchip Technology |
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7 / 26 page ![]() © 2006 Microchip Technology Inc. DS21458C-page 7 TC7126/A 2.0 PIN DESCRIPTIONS The descriptions of the pins are listed in Table 2-1. TABLE 2-1: PIN FUNCTION TABLE Pin Number (40-Pin PDIP) Normal (Reversed) Symbol Description 1 (40) V+ Positive supply voltage. 2 (39) D1 Activates the D section of the units display. 3 (38) C1 Activates the C section of the units display. 4 (37) B1 Activates the B section of the units display. 5 (36) A1 Activates the A section of the units display. 6 (35) F1 Activates the F section of the units display. 7 (34) G1 Activates the G section of the units display. 8 (33) E1 Activates the E section of the units display. 9 (32) D2 Activates the D section of the tens display. 10 (31) C2 Activates the C section of the tens display. 11 (30) B2 Activates the B section of the tens display. 12 (29) A2 Activates the A section of the tens display. 13 (28) F2 Activates the F section of the tens display. 14 (27) E2 Activates the E section of the tens display. 15 (26) D3 Activates the D section of the hundreds display. 16 (25) B3 Activates the B section of the hundreds display. 17 (24) F3 Activates the F section of the hundreds display. 18 (23) E3 Activates the E section of the hundreds display. 19 (22) AB4 Activates both halves of the 1 in the thousands display. 20 (21) POL Activates the negative polarity display. 21 (20) BP LCD Backplane drive output (TC7106A). Digital Ground (TC7107A). 22 (19) G3 Activates the G section of the hundreds display. 23 (18) A3 Activates the A section of the hundreds display. 24 (17) C3 Activates the C section of the hundreds display. 25 (16) G2 Activates the G section of the tens display. 26 (15) V- Negative power supply voltage. 27 (14) VINT The integrating capacitor should be selected to give the maximum voltage swing that ensures component tolerance buildup will not allow the integrator output to saturate. When analog common is used as a reference and the conversion rate is 3 readings per second, a 0.047 μF capacitor may be used. The capacitor must have a low dielectric constant to prevent rollover errors. See Section 6.3 “Integrating Capaci- tor (CINT)”, Integrating Capacitor for additional details. 28 (13) VBUFF Integration resistor connection. Use a 180k Ω resistor for a 200mV full-scale range and a 1.8M Ω resistor for a 2V full scale range. 29 (12) CAZ The size of the auto-zero capacitor influences system noise. Use a 0.33 μF capacitor for 200mV full scale, and a 0.033 μF capacitor for 2V full scale. See Section 6.1 “Auto-Zero Capacitor (CAZ)”, Auto-Zero Capacitor for additional details. 30 (11) VIN- The analog LOW input is connected to this pin. 31 (10) VIN+ The analog HIGH input signal is connected to this pin. 32 (9) ANALOG COMMON This pin is primarily used to set the Analog Common mode voltage for battery opera- tion, or in systems where the input signal is referenced to the power supply. It also acts as a reference voltage source. See Section 7.3 “Analog Common (Pin 32)”, Analog Common for additional details. 33 (8) CREF- See Pin 34. |
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