IP Library Granted Patent US 10,804,913
Granted Patent B1
US 10,804,913 · App. 16/127,103 · Granted Oct 13, 2020

Clock and data recovery devices with fractional-N PLL

Inventors: Mrunmay Talegaonkar (Laguna Hills, CA); Jorge Pernillo (Daly City, CA); Junyi Sun (Singapore, SG); Praveen Prabha (Lake Forest, CA); Chang-Feng Loi (Singapore, SG); Yu Liao (Longmont, CO); Jamal Riani (Fremont, CA); Belal Helal (Santa Clara, CA); Karthik Gopalakrishnan (Cupertino, CA); Aaron Buchwald (Newport Beach, CA)
Assignee: INPHI CORPORATION
H03L7/1976H03L7/087H03L7/0807H03L7/099H04L7/0331
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Quick Facts
Patent No.
US 10,804,913
App. No.
16/127,103
Granted
Oct 13, 2020
Kind
B1
Abstract

The present invention relates to data communication and electrical circuits. More specifically, embodiments of the present invention provide a clock and data recovery (CDR) architecture implementation for high data rate wireline communication links. In an embodiment, a CDR device includes a phase detector, a loop filter, and a fractional-N PLL. The fractional-N PLL generates output clock signal based on output of the loop filter. There are other embodiments as well.

Claims (12)

1. A clock data recovery (CDR) device comprising:

a first phase detection module configured to receive digital input signal and determine a difference between the digital input signal and an output clock signal;

a loop filter module coupled to the phase detector module and configured to generate a frequency control word; and

a fractional-N phase lock loop (Frac-N PLL) configured to generate the output clock signal based on the frequency control word, the Frac-N PLL comprising a sigma delta module, the Frac-N PLL comprising a voltage controlled oscillator configured on a feedforward signal path and a current mode digital-to-analog converter, the current mode digital-analog converter being directly coupled to output of the sigma delta modules,

wherein the CDR is characterized by an error transfer function and Frac-N PLL is characterized by a bandwidth, the error transfer function being substantially independent from the bandwidth, and

wherein the first phase detection module is configured to calibrate a gain parameter of the Frac-N PLL based at least on the output clock signal by,

injecting a digital square wave signal along the feedforward signal path to create a triangular signal at a phase detector output,

detecting peak-to-peak value of a triangular waveform digitally to find gain mismatch, and

correcting for the gain mismatch by adjusting a digital gain scaling factor (K VFF ) in situ.

2. The CDR device of claim 1 further comprising a charge pump configured on the feedforward signal path.

3. The CDR device of claim 1 wherein the first phase detection module is coupled to a reference clock signal.

4. The CDR device of claim 1 wherein the Frac-N PLL further comprises a multi-modulus divider.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2021
From: CAVIUM INTERNATIONAL
To: MARVELL ASIA PTE LTD.
Reel/Frame 057336/0873 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2021
From: MARVELL TECHNOLOGY CAYMAN I
To: CAVIUM INTERNATIONAL
Reel/Frame 057279/0519 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2021
From: INPHI CORPORATION
To: MARVELL TECHNOLOGY CAYMAN I
Reel/Frame 056649/0823 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2019
From: TALEGAONKAR, MRUNMAY; PERNILLO, JORGE; SUN, JUNYI; PRABHA, PRAVEEN; LOI, CHANG-FENG; LIAO, YU; RIANI, JAMAL; HELAL, BELAL; GOPALAKRISHNAN, KARTHIK; BUCHWALD, AARON
To: INPHI CORPORATION
Reel/Frame 050478/0018 →