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AD8429ARZ-R7 数据表(PDF) 17 Page - Analog Devices |
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AD8429ARZ-R7 数据表(HTML) 17 Page - Analog Devices |
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17 / 20 page ![]() AD8429 Rev. 0 | Page 17 of 20 INPUT BIAS CURRENT RETURN PATH The input bias current of the AD8429 must have a return path to ground. When using a floating source without a current return path, such as a thermocouple, create a current return path, as shown in Figure 50. THERMOCOUPLE +VS REF –VS AD8429 CAPACITIVELY COUPLED +VS REF C C –VS AD8429 TRANSFORMER +VS REF –VS AD8429 INCORRECT CAPACITIVELY COUPLED +VS REF C R R C –VS AD8429 1 fHIGH-PASS = 2πRC THERMOCOUPLE +VS REF –VS 10MΩ AD8429 TRANSFORMER +VS REF –VS AD8429 CORRECT Figure 50. Creating an Input Bias Current Return Path INPUT PROTECTION Do not allow the inputs of the AD8429 to exceed the ratings stated in the Absolute Maximum Ratings section of this data sheet. If this cannot be done, protection circuitry can be added in front of the AD8429 to limit the current into the inputs to a maximum current, IMAX. Input Voltages Beyond the Rails If voltages beyond the rails are expected, use an external resistor in series with each input to limit current during overload condi- tions. The limiting resistor at the input can be computed from MAX SUPPLY IN PROTECT I V V R | | − ≥ Noise sensitive applications may require a lower protection resis- tance. Low leakage diode clamps, such as the BAV199, can be used at the inputs to shunt current away from the AD8429 inputs, thereby allowing smaller protection resistor values. To ensure current flows primarily through the external protection diodes, place a small value resistor, such as a 33 Ω, between the diodes and the AD8429. SIMPLE METHOD LOW NOISE METHOD +VS AD8429 RPROTECT RPROTECT –VS I VIN+ + – VIN– + – +VS +VS AD8429 RPROTECT 33Ω 33Ω RPROTECT –VS –VS I VIN+ + – VIN– + – +VS –VS Figure 51. Protection for Voltages Beyond the Rails Large Differential Input Voltage at High Gain If large differential voltages at high gain are expected, use an external resistor in series with each input to limit current during overload conditions. The limiting resistor at each input can be computed by using the following equation: G MAX DIFF PROTECT R I V R − ⎟ ⎟ ⎠ ⎞ ⎜ ⎜ ⎝ ⎛ − ≥ V 1 2 1 Noise sensitive applications may require a lower protection resis- tance. Low leakage diode clamps, such as the BAV199, can be used across the inputs to shunt current away from the AD8429 inputs and, therefore, allow smaller protection resistor values. AD8429 RPROTECT RPROTECT I VDIFF + – AD8429 RPROTECT RPROTECT I VDIFF + – SIMPLE METHOD LOW NOISE METHOD Figure 52. Protection for Large Differential Voltages IMAX The maximum current into the AD8429 inputs, IMAX, depends on time and temperature. At room temperature, the device can withstand a current of 10 mA for at least one day. This time is cumulative over the life of the device. RADIO FREQUENCY INTERFERENCE (RFI) RF rectification is often a problem when amplifiers are used in applications that have strong RF signals. The disturbance can appear as a small dc offset voltage. High frequency signals can be filtered with a low-pass RC network placed at the input of the instrumentation amplifier, as shown in Figure 53. |
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