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OL2385 Datasheet(PDF) 21 Page - NXP Semiconductors |
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OL2385 Datasheet(HTML) 21 Page - NXP Semiconductors |
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21 / 85 page ![]() OL2385 All information provided in this document is subject to legal disclaimers. © NXP Semiconductors N.V. 2016. All rights reserved. Product data sheet COMPANY PUBLIC Rev. 1.0 — 15 June 2016 21 of 85 NXP Semiconductors OL2385 Industrial RF transceiver input with a wide-band input matching optimized for 200Ohms. A current reuse scheme is employed to maintain maximum performance with minimum current consumption. Power consumption is controllable depending on the demands of the system. The advanced feedback structure in combination with the attenuator set-up results in very low LO radiation. 9.5.4 Attenuators Passive 2dB step attenuators are positioned in front of the LNA and in front of the mixer in order to control the gain of the receiver. The RF inputs have integrated ESD protection and integrated AC coupling for easy application. A matching network can be applied off-chip for best performance and adaptation to different source impedances. 9.5.5 Mixer The mixer multiplies the single-ended RF signal with a balanced quadrature (I and Q) LO signal in order to differentiate between the wanted and image channel. A special algorithm is used to remove the impact of analog mismatch on the image rejection. This usually leads to intrusion (leakage) of the image channel into the wanted channel. 9.5.6 Baseband amplifier (TIA) and DC offset compensation The baseband amplifier stage (TIA - transimpedance amplifier) amplifies the balanced quadrature (I and Q) mixer output signals to the optimal level for the ADC and performs the anti-aliasing filtering in front of the sigma-delta ADC. Internal DC offset correction loops guarantee maximum image suppression and high linearity and dynamic range. 9.5.7 SD ADC The SD ADC is a 1-bit higher order oversampled sigma-delta ADC with very low current consumption. The sigma delta switched time core makes use of the most modern feedback techniques to ensure stability and performance over a wide frequency band, process and temperature variation. It features fast auto-calibration for optimum performance. The calibration time is typically below 1 µs. The output is a single bit data-stream which is further processed by the digital baseband. |
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