IP Library Granted Patent US 12,464,852
Granted Patent B2
US 12,464,852 · App. 18/092,305 · Granted Nov 4, 2025

Waveguide dual-depletion region (DDR) photodiodes

Inventors: Mingzhi Lu (Fremont, CA); Peter W. Evans (Tracy, CA)
H10F77/413G02B6/12G02B6/4296H10F77/50G02B2006/12123
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Quick Facts
Patent No.
US 12,464,852
App. No.
18/092,305
Granted
Nov 4, 2025
Kind
B2
Abstract

Consistent with the present disclosure, a DDR photodiode is provided on a substrate adjacent to a passive waveguide. In order to efficiently capture light output from the waveguide, the photodiode is coupled to the waveguide with a butt-joint. As a result, the photodiode and the waveguide abut one another such that the dominant mode of light propagating in the waveguide parallel to the substrate is supplied directly to a side of the absorber layer of the photodiode without, in one example, evanescent coupling, nor is a resonant coupler required to supply light to the photodiode. Thus, light is absorbed more efficiently in the photodiode such that the photodiode may have a shorter length. In addition, since substantially all light is input to the photodiode, nearly complete absorption and nearly ideal quantum efficiency can be achieved in a relatively short length. Further, the improved linearity associated with DDR photodiodes is preserved with the exemplary butt joint configurations disclosed herein.

Claims (9)

1 . An optical receiver, comprising:

a substrate;

an optical waveguide provided on a first region of the substrate;

a photodiode provided on a second region of the substrate, such that an interface between the optical waveguide and the photodiode constitutes a butt joint,

wherein a width of the optical waveguide increases along a length of the optical waveguide,

wherein a first outer edge of the photodiode and a second outer edge of the photodiode together define therebetween a width of the photodiode extending transverse to both the first edge of the photodiode and the second edge of the photodiode,

wherein the width of the photodiode is uniform along a length of the photodiode, and

wherein the interface between the optical waveguide and the photodiode is provided at a non-orthogonal angle relative to both the first edge of the photodiode and the second edge of the photodiode.

2 . The optical receiver of claim 1 , wherein the optical receiver is configured to propagate from the optical waveguide an optical signal through the interface and into the photodiode along a propagation direction that is orthogonal to the width of the photodiode.

Continuity (2)
Division 17106181 · Nov 30, 2020
Related Publication 20230133616A1 · May 4, 2023
References Cited (3)
US 6027255A · Joo · 2000 [cited by examiner]
US 20120243824A1 · Takabayashi · 2012 [cited by examiner]
US 20140023314A1 · Onishi · 2014 [cited by examiner]