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REF35 数据表(PDF) 22 Page - Texas Instruments |
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REF35 数据表(HTML) 22 Page - Texas Instruments |
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22 / 30 page ![]() A ceramic capacitor of at least a 0.1 μF must be connected to the output to improve stability and help filter out high frequency noise. Add an additional 10 μF capacitor in parallel to improve transient performance in response to sudden changes in load current; however, keep in mind that doing so increases the start-up time of the device. Best performance and stability is attained with low-ESR, low-inductance ceramic chip-type output capacitors (X5R, X7R, or similar). If using an electrolytic capacitor on the output, place a 0.1 μF ceramic capacitor in parallel to reduce overall ESR on the output. Place the input and output capacitors as close as possible to the device. 10.3.2.3 Selection of ADC ADS7038-Q1 12-bit 8 channel multiplexed ADC is chosen for this application. The ADC offers low current operation with averaging mode to increase the resolution to 16-bit with internal averaging modes while operating with slow sampling speed. 10.3.3 Application Curves Table 10-2 shows the captured measurement results for various DC inputs. The ADC output is captured and analyzed for output accuracy, code spread and sigma with REF35500-Q1 as power supply vs LDO as power supply. REF35-Q1 offers better accuracy and lower noise than the LDO device at lower quiescent current. This results in lower error in measurement as well as lower ADC output code variation across various OSR seetings. Table 10-2. DC Input Performance Test Results INPUT V ADC OSR SETTING REF35500 LDO ERROR CODE SPREAD ERROR CODE SPREAD 1.0 V 0 0.01 mV 32 LSB 8.9 mV 48 LSB 8 0.3 mV 10 LSB 9.21 mV 16 LSB 128 0.38 mV 6 LSB 9.26 mV 6 LSB 2.5 V 0 0.69 mV 32 LSB 22.89 mV 64 LSB 8 1.44 mV 10 LSB 23.63 mV 18 LSB 128 1.17 mV 3 LSB 23.41 mV 5 LSB 4 V 0 2.27 mV 32 LSB 37.84 mV 48 LSB 8 3.01 mV 24 LSB 38.62 mV 24 LSB 128 2.46 mV 3 LSB 38.09 mV 17 LSB 10.4 Power Supply Recommendations The REF35 family of references feature an extremely low-dropout voltage. These references can be operated with a supply of only 50 mV above the output voltage at no load. TI recommends a supply bypass capacitor ranging between 0.1 µF to 10 µF. 10.5 Layout 10.5.1 Layout Guidelines Figure 10-3 shows an example of a PCB layout for a data acquisition system using the REF35-Q1. Some key considerations are: • Connect low-ESR, 0.1 μF ceramic bypass capacitors at VIN, VREF of the REF35-Q1. • Decouple other active devices in the system per the device specifications. • Using a solid ground plane helps distribute heat and reduces electromagnetic interference (EMI) noise pickup. • Place the external components as close to the device as possible. • Do not run sensitive analog traces in parallel with digital traces. Avoid crossing digital and analog traces if possible, and only make perpendicular crossings when absolutely necessary. Figure 10-4 shows the pin compatibility with TI REF31xx series reference in the 3-pin SOT-23 package when using the REF35xxx family footprint. You must rotate the REF31xx reference device by 180º before assembly. REF35-Q1 SNAS845 – AUGUST 2023 www.ti.com 22 Submit Document Feedback Copyright © 2023 Texas Instruments Incorporated Product Folder Links: REF35-Q1 |
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