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ADA4622-2ACPZ-R7 数据表(PDF) 28 Page - Analog Devices |
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ADA4622-2ACPZ-R7 数据表(HTML) 28 Page - Analog Devices |
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28 / 38 page ![]() ADA4622-1/ADA4622-2/ADA4622-4 Data Sheet Rev. E | Page 28 of 38 The ADA4622-1/ADA4622-2/ADA4622-4 are designed for 12 nV/√Hz wideband input voltage noise density and maintain low noise performance at low frequencies (see Figure 84). This noise performance, along with the low input current as well as low current noise, means that the ADA4622-1/ADA4622-2/ ADA4622-4 contribute negligible noise for applications with a source resistance greater than 10 kΩ and at signal bandwidths greater than 1 kHz. 1k 10k 100k 10 100 1k 10k 100k FREQUENCY (Hz) ADA4622-1/ADA4622-2/ADA4622-4 VOLTAGE AND CURRENT NOISE RS NOISE TOTAL NOISE Figure 84. Total Noise vs. Source Resistance and Frequency Input Overvoltage Protection The ADA4622-1/ADA4622-2/ADA4622-4 have internal protective circuitry that allows voltages as high as 0.3 V beyond the supplies applied at the input of either terminal without causing damage. Use a current-limiting resistor in series with the input of the ADA4622-1/ADA4622-2/ADA4622-4 if the input voltage exceeds 0.3 V beyond the supply rails of the amplifiers. If the overvoltage condition persists for more than a few seconds, damage to the amplifiers can result. For higher input voltages, determine the resistor value by mA 10 ≤ − S SY IN R V V where: VIN is the input voltage. VSY is the voltage of either the V+ pin or the V− pin. RS is the series resistor. With a very low input bias current of ±1.5 nA maximum up to 125°C, higher resistor values can be used in series with the inputs without introducing large offset errors. A 1 kΩ series resistor allows the ADA4622-1/ADA4622-2/ADA4622-4 to withstand 10 V of continuous overvoltage and increases the noise by a negligible amount. A 5 kΩ resistor protects the inputs from voltages as high as 25 V beyond the supplies and adds less than 10 µV to the offset voltage of the amplifiers. EMI Rejection Ratio Figure 85 shows the EMI rejection ratio (EMIRR) vs. the frequency for the ADA4622-1/ADA4622-2/ADA4622-4. 0 20 40 60 80 100 10M 100M 1G FREQUENCY (Hz) COMPETITOR 1 COMPETITOR 2 ADA4622-1/ADA4622-2/ADA4622-4 Figure 85. EMIRR vs. Frequency OUTPUT CHARACTERISTICS The ADA4622-1/ADA4622-2/ADA4622-4 unique bipolar rail- to-rail output stage swings within 10 mV of the supplies with no external resistive load. The approximate output saturation resistance of the ADA4622-1/ ADA4622-2/ADA4622-4 is 24 Ω, sourcing or sinking. Use the output impedance to estimate the output saturation voltage when driving heavier loads. As an example, when driving 5 mA, the saturation voltage from either rail is approximately 120 mV. If the ADA4622-1/ADA4622-2/ADA4622-4 output drives hard against the output saturation voltage, it recovers within 1.2 µs of the input, returning to the linear operating region of the amplifier (see Figure 56 and Figure 59). Capacitive Load Drive Capability Direct capacitive loads interact with the effective output impedance of the ADA4622-1/ADA4622-2/ADA4622-4 to form an additional pole in the feedback loop of the amplifiers, which causes excessive peaking on the pulse response or loss of stability. The worst case condition is when the devices use a single 5 V supply in a unity-gain configuration. Figure 86 shows the pulse response of the ADA4622-1/ADA4622-2/ADA4622-4 when driving 500 pF directly. CH1 50.0mV BW M2.00µs A CH1 108mV 1 Figure 86. Pulse Response with 500 pF Load Capacitance |
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