Claims
- 1. A frequency synthesizer for generating a data-modulated output signal based on a reference signal and an input data signal, the frequency synthesizer comprising:
(a) a phase-locked loop (PLL) circuit configured to receive the reference signal and generate the data-modulated output signal; (b) a first data-modulation path configured to (i) generate a first data-modulated input signal based on the input data signal and (ii) apply the first data-modulated input signal at a voltage-controlled oscillator (VCO) of the PLL circuit; and (c) a second data-modulation path configured to (i) generate a second data-modulated input signal based on the input data signal and (ii) apply the second data-modulated input signal at a frequency divider of the PLL circuit.
- 2. The invention of claim 1, wherein the first and second data-modulated input signals have substantially complementary frequency responses.
- 3. The invention of claim 1, wherein:
the PLL circuit comprises a phase detector, a loop filter connected to the phase detector, the VCO connected to the loop filter, and the frequency divider, which is part of a feedback path connecting the VCO and the phase detector.
- 4. The invention of claim 3, wherein:
the first data-modulation path has a high-pass frequency response corresponding substantially to a corner frequency of the loop filter; and the second data-modulation path has a low-pass frequency response corresponding substantially to the corner frequency of the loop filter.
- 5. The invention of claim 3, wherein:
the phase detector is configured to generate a phase-difference signal based on the reference signal and a frequency-divided signal from the frequency divider; the loop filter is configured to generate a loop-filtered signal based on the frequency-divided signal from the phase detector; the VCO is configured to generate the data-modulated output signal based on the loop-filtered signal from the loop filter and the first data-modulated input signal from the first data modulation path; and the frequency divider is configured to generate the frequency-divided signal based on the data-modulated output signal from the VCO and the second data-modulated input signal from the second data modulation path, wherein the second data-modulated input signal determines a division factor applied by the frequency divider to the data-modulated output signal to generate the frequency-divided signal.
- 6. The invention of claim 1, wherein the second data modulation path comprises a sigma-delta modulator configured to generate the second data-modulated input signal based on the input data signal.
- 7. The invention of claim 6, wherein frequency synthesizer is configured to operate with two or more different reference signals and the second data modulation path further comprises:
a scaling block configured to adjust gain of the second data modulation path based on a selected reference signal; and a carrier-selection block configured to inject a carrier frequency based on the selected reference signal.
- 8. The invention of claim 6, wherein the frequency synthesizer applies Gaussian frequency shift keying (GFSK) data modulation and the input data signal is Gaussian low-pass filtered prior to application to the first and second data modulation paths.
- 9. The invention of claim 6, wherein the sigma-delta modulator quantizes spurious signals to high frequencies that are attenuated within the PLL circuit.
- 10. The invention of claim 6, wherein the sigma-delta modulator comprises:
(i) an adder; and (ii) a noise-shaping loop, wherein:
the adder is configured to generate a summation signal based on the input data signal and an output signal from the noise-shaping loop, wherein:
a set of one or more most significant bits (MSBs) of the summation signal corresponds to the second data-modulation input signal applied to the frequency divider; and a set of one or more least significant bits (LSBs) of the summation signal is fed back as an input signal to the noise-shaping loop.
- 11. The invention of claim 10, wherein the sigma-delta modulator functions as a quantizer with quantization error fed back into the quantizer via the noise-shaping loop.
- 12. The invention of claim 1, wherein the VCO is an analog VCO, the first data-modulated input signal is an analog signal, and the first data modulation path comprises a digital-to-analog converter (DAC) to generate the analog first data-modulated input signal.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This applications claims priority from U.S. Provisional Patent Application No. 60/317,025 filed Sep. 4, 2001, and entitled “Bluetooth RF Transceiver.”
Provisional Applications (1)
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Number |
Date |
Country |
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60317025 |
Sep 2001 |
US |