Optical assembly with variable optical attenuator
An optical assembly includes a photodetector for detecting light signals. An optical fiber receives an input signal and has a light-emitting portion extending in front of the photodetector. A MEMS actuator is located between the light-emitting portion of the optical fiber and the photodetector. The MEMS actuator is controllably deflectable to partially obscure the photodetector and thereby vary the amount of light received.
1 . An optical MEMS assembly for controlling the amount of light received by a photodetector, said optical assembly being locatable over said photodetector and comprising:
an optical transmission medium for receiving an input signal and having a light-emitting portion for directing light toward said photodetector;
a controllably deflectable actuator; and
a light-obscuring member mounted on said actuator for at least partially obscuring said photodetector from said light-emitting portion depending on the deflection state of said actuator arm.
2 . The optical assembly of claim 1 , wherein said light-obscuring member is a paddle.
3 . The optical assembly of claim 1 , wherein said optical transmission medium is an optical fiber.
4 . The optical assembly of claim 3 , wherein said optical fiber extends transversely in front of said photodetector and said light-emitting portion comprises a cleaved portion to direct light onto said photodetector.
5 . The optical assembly of claim 4 , wherein said cleaved portion comprises an angled cleaved end portion.
6 . The optical assembly of claim 5 , further comprising a lens between said angled cleaved end portion and said photodetector.
7 . The optical assembly of claim 6 , wherein said lens is a ball lens.
8 . The optical assembly of claim 7 , wherein said actuator comprises a cantilevered arm supported at one end on a substrate and extending over a recess in said substrate.
9 . The optical assembly of claim 8 , wherein said photodetector is locatable within said recess in said substrate.
10 . The optical assembly of claim 3 , wherein said optical fiber is supported in an alignment groove on said substrate.
11 . The optical assembly of claim 10 , wherein said alignment groove is a V-shaped groove.
12 . The optical assembly of claim 1 , wherein said light-obscuring member is arranged to progressively obscure said photodetector as said actuator is deflected.
13 . The optical assembly of claim 1 , wherein said light-obscuring member is arranged to progressively expose said photodetector as said actuator is deflected.
14 . The optical assembly of claim 1 , wherein said light-obscuring member is also connected to a concertinaed spring element to allow current to be supplied to said actuator.
15 . A method of controlling the amount of light received by a photodetector, comprising:
directing a received input signal toward a photodetector; and
displacing a light-obscuring member mounted on a MEMS actuator to at least partially obscure said photodetector.
16 . The method of claim 15 , wherein said actuator is deflected to obscure said photodetector.
17 . The method of claim 16 , wherein said actuator is deflected to expose said photodetector.
18 . The method of claim 15 , wherein said input signal is direct toward said photodetector from a cleaved end of an optical fiber.
19 . The method of claim 18 , wherein said input signal is further passed through a ball lens focusing said input signal onto said photodetector.
20 . An optical MEMS assembly for controlling the amount of light received by a photodetector, said optical assembly being locatable over said photodetector and comprising:
means for receiving an input signal and having a light-emitting portion for directing light toward said photodetector;
a controllably deflectable actuator; and
means mounted on said actuator for at least partially obscuring said photodetector from said light-emitting portion depending on the deflection state of said actuator arm.
21 . The optical assembly of claim 20 , wherein said actuator comprises a cantilevered actuator arm.