Claims
- 1. A first-order noise-shaping coder with tri-level quantization and a substantially dithered quantizer, said coder adapted to process an input signal.
- 2. The coder of claim 1, comprising a dither scheme including applying a M-times sample-and-hold to the dither sequence.
- 3. The coder of claim 2, further comprising a PN sequence generator having a clocking rate which is M-times less than the coder's clock sampling rate.
- 4. An Nth-order noise-shaping coder with L number of levels of quantization, wherein L is greater than 1, comprising a dither scheme including applying a M-times sample-and-hold to the dither sequence.
- 5. An M-factor sample and hold decimation apparatus for use in data communications apparatus having a coder, comprising a pseudo-noise (PN) sequence generator having clocking at a rate M-times less than the sampling clock rate of said coder.
- 6. The apparatus of claim 5, wherein M equals a power of 2.
- 7. A method for implementing noise shaping coding in a coder apparatus, comprising:
providing an input signal; and applying a multi-level quantization to said input signal, said act of applying including applying an M-times sample-and-hold to the dither sequence, thereby holding a constant dither for at least a plurality of clock cycles.
- 8. The method of claim 7, wherein said act of applying comprises:
providing a pseudo-noise (PN) sequence generator; clocking said generator at a rate M-times less than a sampling clock rate of said coder.
- 9. A digitally actuated resonant power (DARP) converter comprising:
a fully dithered first order multi-level quantized noise-shaping encoder for receiving digital data at a clock rate Fc/L1 where L1 is a multiple of a carrier frequency Fc and encoding said digital data; a power supply, having a frequency at or substantially near DC; a resonator having a resonant frequency at or substantially near said carrier frequency Fc; a load impedance coupled to said resonator for receiving energy stored in said resonator; and a charging switch, said charging switch coupled to said first-order noise-shaping encoder, said power supply, said resonator, and a clock having a clock rate L2Fc, where L2 is a multiple of said carrier frequency Fc, said charging switch adapted to:
(i) receive encoded data from said first-order noise-shaping encoder; (ii) sample the voltage or current of said power supply; and (iii) deliver said power supply voltage or current samples to said resonator.
PRIORITY
[0001] This application claims priority benefit of U.S. provisional patent application Serial No. 60/361,813 entitled “CODER APPARATUS FOR RESONANT POWER CONVERSION AND METHOD” filed Mar. 4, 2002, which is incorporated by reference herein in its entirety.
[0002] This application is related to co-owned and co-pending U.S. patent application Ser. No. 10/______ entitled “RESONANT POWER CONVERTER FOR RADIO FREQUENCY TRANSMISSION AND METHOD” filed contemporaneously herewith, which claims priority benefit of U.S. provisional patent application Serial No. 60/361,812 of the same title filed Mar. 4, 2002, both of which are incorporated by reference herein in their entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60361813 |
Mar 2002 |
US |