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ADA4898-1YRDZ-R7 数据表(PDF) 13 Page - Analog Devices |
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ADA4898-1YRDZ-R7 数据表(HTML) 13 Page - Analog Devices |
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13 / 16 page ![]() ADA4898-1 Rev. 0 | Page 13 of 16 THEORY OF OPERATION The ADA4898-1 is a voltage feedback op amp that combines unity-gain stability with 0.9 nV/√Hz input noise. It employs a highly linear input stage that can maintain greater than −90 dBc (@ 2 V p-p) distortion out to 500 kHz while in a unity-gain configuration. This rare combination of low gain stability, low input referred noise, and extremely low distortion is the result of Analog Devices, Inc., proprietary op amp architecture and high speed complementary bipolar processing technology. The simplified ADA4898-1 topology, shown in Figure 40, is a single gain stage with a unity-gain output buffer. It has over 100 dB of open-loop gain and maintains precision specifications such as CMRR, PSRR and offset to levels that are normally associated with topologies having two or more gain stages. BUFFER gm CC R1 R L VOUT Figure 40. Topology PD (POWER DOWN) PIN The PD pin saves power by decreasing the quiescent power dissipated in the device. It is very useful when power is an issue and the device does not need to be turned on at all times. The response of the device is rapid when going from a power down mode to full power operation mode. Note that PD does not put the output in a high-Z state, which means that the ADA4898-1 is not recommended for use as a multiplexer. CURRENT NOISE MEASUREMENT To measure the very low (2.4 pA/√Hz) input current noise of the ADA4898-1, 10 kΩ resistors were used on both inputs of the amplifier. Figure 41 shows the noise measurement circuit used. The 10 kΩ resistors are used on both inputs to balance the input impedance and cancel the common-mode noise. In addition, a high gain configuration is used to increase the total output noise and bring it above the noise floor of the instrument. 100Ω 10Ω 10kΩ 10kΩ VOUT Figure 41. Current Noise Measurement Circuit The current noise density (In) is calculated using the following formula: [ ] 11 kΩ 20 2 ) Hz nV/ 18.4 (11 2 / 1 2 2 × × × − = no n e I |
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