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INA333-HT датащи(PDF) 14 Page - Texas Instruments |
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INA333-HT датащи(HTML) 14 Page - Texas Instruments |
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14 / 24 page ![]() SBOS514 – MARCH 2010 www.ti.com APPLICATION INFORMATION Application information below is provided for SETTING THE GAIN commercial temperature as a reference and not for high temperature. Gain of the INA333 is set by a single external resistor, RG, connected between pins 1 and 8. The It is not recommonded to use gain < 100 for the high value of RG is selected according to Equation 1: temperature (210°C) application. A filter is needed between Pin 1 and Pin 9 for gain = 100 and G = 1 + (100 k Ω/RG) (1) (1) gain = 1000 in 210°C application. Recommended Table 2 lists several commonly-used gains and resistor value is 3.5 k Ω and capacitor value is 10 nF. resistor values. The 100 k Ω term in Equation 1 Figure 34 shows the basic connections required for comes from the sum of the two internal feedback operation of the INA333. Good layout practice resistors of A1 and A2. These on-chip resistors are mandates the use of bypass capacitors placed close laser trimmed to accurate absolute values. The to the device pins as shown. accuracy and temperature coefficient of these resistors are included in the gain accuracy and drift The output of the INA333 is referred to the output specifications of the INA333. reference (REF) terminal, which is normally grounded. This connection must be low-impedance to The stability and temperature drift of the external gain assure good common-mode rejection. Although 15 Ω setting resistor, RG, also affects gain. The contribution or less of stray resistance can be tolerated while of RG to gain accuracy and drift can be directly maintaining specified CMRR, small stray resistances inferred from the gain Equation 1. Low resistor values of tens of ohms in series with the REF pin can cause required for high gain can make wiring resistance noticeable degradation in CMRR. important. Sockets add to the wiring resistance and contribute additional gain error (possibly an unstable gain error) in gains of approximately 100 or greater. To ensure stability, avoid parasitic capacitance of more than a few picofarads at the RG connections. Careful matching of any parasitics on both RG pins maintains optimal CMRR over frequency. 14 Submit Documentation Feedback Copyright © 2010, Texas Instruments Incorporated Product Folder Link(s): INA333-HT |
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