Arranging a crystal to generate an oscillating signal
View Patent ↗A crystal is loaded with capacitance in such a way that it begins to oscillate at a desired frequency with a resonance circuit ( 2 ). Capacitive voltage division is carried out with a voltage divider to at least one terminal ( 3 ) of the crystal ( 1 ). From the voltage divider, the signal of the crystal ( 1 ) is supplied to a second circuit ( 7 ).
1. A method for arranging a crystal to generate an oscillating signal for a circuit, the method comprising loading the crystal with capacitance in such a way that the crystal begins to oscillate at a desired frequency with a resonance circuit, carrying out capacitive voltage division to both terminals of the crystal with a first and a second voltage divider, and supplying the oscillating signal of the crystal from the first voltage divider to a second circuit and from the second voltage divider to a third circuit.
2. A method according to claim 1 , comprising supplying the oscillating signal of the crystal from the voltage dividers to several circuits.
3. An oscillating circuit comprising a crystal, and capacitors that load the crystal in such a way that the crystal oscillates at a desired frequency with a resonance circuit connected to the crystal, wherein at least two capacitors are connected in series at both terminals of the crystal in such a way that the capacitors form a capacitive voltage divider and that a first buffer is connected between the capacitors at the first terminal for supplying the oscillating signal of the crystal to a second circuit and a second buffer is connected between the capacitors at the second terminal for sunolying the oscillating signal of the crystal to a third circuit.
4. An oscillating circuit according to claim 3 , wherein at least three capacitors are connected in series at least one terminal of the crystal, whereby the oscillating signal of the crystal is suppliable from the at least one terminal of the crystal to at least two different circuits.
5. An oscillating circuit according to claim 3 , wherein at least two capacitors of substantially equal magnitude are connected to the at least one terminal of the crystal.
6. A mobile station comprising an oscillating circuit that is arranged to generate an oscillating signal required by the mobile station, whereby the oscillating circuit comprises a crystal, and capacitors that load the crystal in such a way that the crystal oscillates at a desired frequency with a resonance circuit connected to the crystal, wherein at least two capacitors are connected in series at both terminals of the crystal in such a way that the capacitors form a capacitive voltage divider and a first buffer is connected between the capacitors at the first terminal for supplying the oscillating signal of the crystal to a second circuit and a second buffer is connected between the canacitors at the second terminal for supplying the oscillating signal of the crystal to a third circuit.
7. A mobile station according to claim 6 , wherein at least three capacitors are connected in series at least one terminal of the crystal, whereby the oscillating signal of the crystal is suppliable from the at least one terminal of the crystal to at least two different circuits.
8. A mobile station according to claim 6 , wherein at least two capacitors of substantially equal magnitude are connected to at least one terminal of the crystal.