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MAS6283 bảng dữ liệu(PDF) 5 Page - Micro Analog systems |
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MAS6283 bảng dữ liệu(HTML) 5 Page - Micro Analog systems |
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5 / 13 page ![]() DA6283.002 11 November, 2010 5/13 EXTERNAL COMPONENT SELECTION Quartz Crystal and VCXO Module Information To ensure the best system performance, the crystal parameters should be considered carefully. Pulling is an important parameter which can be calculated according to an equation 1. Layout guidelines in the following section should be followed. The frequency of the crystal is tuned by load capacitors. There are integrated variable load capacitors on the MAS6283 and they are controlled by an external voltage at the VC pin. It is recommended to connect a 1 nF capacitor between VDD and VSS. The external crystal should be located as close to the chip as possible. In case of a PCB mounted module, it is usually advisable to mount a crystal on the same side with the VCXO IC to minimize stray capacitance. Often vias between the crystal pins and the XIN and XOUT pins of the VCXO IC increase stray capacitance. There should be no noisy signal traces underneath or close to the crystal. Equation 1 Crystal Pulling Sensitivity pF ppm C C C S L 6 2 0 1 10 ) ( 2 + − = [values are given in the units described below] Where, CL = Load capacitance in series with the crystal C0 = Shunt capacitance of the crystal C1 = Motional capacitance of the crystal Example 1 If we choose a crystal with the following values CL = 8.0 pF, C0 = 2.0 pF, C1 = 6.7 fF the equation 1 yields ( ) pF ppm S 5 . 33 10 10 0 . 8 10 0 . 2 2 10 7 . 6 6 2 12 12 15 − = × + × × − = − − − If a crystal load differs from 8 pF the oscillator will have frequency offset at VC = 1.65 V. Thus if you need to use 1.65 V VC voltage with a crystal which CL is other than 8 pF you have to design the crystal for a specific nominal frequency. The following guidelines show how to define the crystal’s nominal frequency. Separate crystal CL as CL_XTAL and MAS IC CL as CL_IC. To define specific nominal frequency for the crystal first calculate load difference ∆CL [pF] as in an equation 2. Equation 2 XTAL L IC L L C C C _ _ − = ∆ Calculate frequency difference ∆f [ppm] as in an equation 3. Pulling S comes from the equation 1. Equation 3 S C f L × ∆ = ∆ |
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