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MAS6180B 数据表(PDF) 6 Page - Micro Analog systems |
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MAS6180B 数据表(HTML) 6 Page - Micro Analog systems |
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6 / 13 page ![]() 6 (13) DA6180B.003 17 September, 2014 TYPICAL APPLICATION (Continued) Note 1: Crystals The crystal as well as ferrite antenna frequencies are chosen according to the time-signal system (Table 1). More detailed crystal nominal frequency is normally specified for certain load capacitance but in MAS6180 filter circuit the load capacitance is not used. Effectively this means that most accurate filter frequency is achieved by using about 3 Hz higher frequency crystal than the received time signal frequency. For example in DCF77 application a 77.503 kHz crystal resonates at the desired DCF77 77.500 kHz frequency when the load capacitor is missing. Table 1. Time-Signal System Frequencies Time-Signal System Location Antenna Frequency Recommended Crystal Frequency DCF77 Germany 77.5 kHz 77.503 kHz HBG Switzerland 75 kHz 75.003 kHz MSF United Kingdom 60 kHz 60.003 kHz WWVB USA 60 kHz 60.003 kHz JJY Japan 40 kHz and 60 kHz 40.003 kHz and 60.003 kHz BPC China 68.5 kHz 68.505 kHz The crystal shunt capacitance C0 should be matched as well as possible with the internal shunt capacitance compensation capacitor CC of MAS6180. MAS6180B5 is option for external crystal compensation capacitor. The external compensation capacitor should be matched similarly as well as possible with crystal’s shunt capacitance. See Compensation Capacitance Options on table 2. Table 2 . Compensation Capacitance Options Device CC Crystal Description MAS6180B1 0.75 pF For low C0 crystals MAS6180B5 CC_EXT For any crystals, external compensation capacitor It should be noted that grounded crystal package has reduced shunt capacitance. This value is about 85% of floating crystal shunt capacitance. For example crystal with 1 pF floating package shunt capacitance can have 0.85 pF grounded package shunt capacitance. PCB traces of crystal and external compensation capacitance should be kept at minimum to minimize additional parasitic capacitance which can cause capacitance mismatching. In dual band receiver configuration the crystals are best to connect as shown in figure 3. In this configuration the crystals’ shunt capacitances compensate each other and external compensation capacitor is not needed at all. Table 3 below presents some crystal suppliers having suitable crystals for time signal receiver application. Table 3. Crystal Suppliers and Crystal Types in Alphabetical Order for Time Signal Receiver Application Supplier Crystal Type Dimensions Web Link Citizen CFV-206 ø 2.0 x 6.0 http://www.citizen.co.jp/tokuhan/quartz/ Epson Toyocom C-2-Type C-4-Type ø 1.5 x 5.0 ø 2.0 x 6.0 http://www.epsontoyocom.co.jp/english/ KDS Daishinku DT-261 ø 2.0 x 6.0 http://www.kds.info/index_en.htm Microcrystal MS3V-T1R 1.45 x 1.45 x 6.7 http://www.microcrystal.com/ Seiko Instruments VTC-120 ø 1.2 x 4.7 http://www.sii-crystal.com |
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