Active and passive to-can extension boards
An apparatus can include a TO-can and an optoelectronic device. An extension board, such as a rigid board or extension board, can be connected to the TO-can. The board can connected to a printed circuit board. Variants can mount an integrated circuit on the extension board, connect the external surface of the TO-can to the board, and/or use a rigid extension board.
1 . An apparatus comprising:
an optoelectronic TO-can having at least an external surface, the optoelectronic TO-can including:
a TO-can having a width; and
an optoelectronic device in the TO-can, the optoelectronic device having an optical axis; and
an extension board connected to the optoelectronic TO-can, the extension board having a width less than twice the width of the TO-can, the extension board including:
a first set of one or more contacts positioned to connect to a printed circuit board positioned at least substantially parallel to the optical axis of the optoelectronic device in the TO-can;
a second set of one or more contacts positioned to connect to the optoelectronic TO-can; and
an integrated circuit mounted on the extension board, the integrated circuit coupled to at least one contact of the first set of one or more contacts and at least one contact of the second set of one or more contacts.
2 . The apparatus of claim 1 , wherein a lateral distance on a surface of the extension board between the integrated circuit and the optoelectronic TO-can is less than twice the width of the TO-can.
3 . The apparatus of claim 2 , wherein the integrated circuit is mounted on the surface of the extension board facing away from the optoelectronic TO-can.
4 . The apparatus of claim 1 , wherein the optoelectronic device includes an optoelectronic receiver.
5 . The apparatus of claim 4 , wherein the integrated circuit includes circuitry processing one or more signals received from the optoelectronic receiver.
6 . The apparatus of claim 1 , wherein the optoelectronic device includes an optoelectronic transmitter.
7 . The apparatus of claim 6 , wherein the integrated circuit includes an optical transmitter driver.
8 . The apparatus of claim 1 , wherein the extension board includes a rigid board.
9 . The apparatus of claim 1 , wherein the extension board includes a flexible board.
10 . The apparatus of claim 1 , further comprising:
one or more electrical connections between at least the external surface of the optoelectronic TO-can to the extension board, wherein the one or more electrical connections ground the extension board to the external surface of the optoelectronic TO-can.
11 . The apparatus of claim 10 , wherein at least one of the one or more electrical connections occupy a gap between the optoelectronic TO-can and the extension board connected to the optoelectronic TO-can.
12 . The apparatus of claim 1 , further comprising:
the printed circuit board.
13 . An apparatus comprising:
an optoelectronic TO-can having at least an external surface, the optoelectronic TO-can including:
a TO-can having a width; and
an optoelectronic device in the TO-can, the optoelectronic device having an optical axis;
a flexible board having a width less than twice the width of the TO-can, the flexible board including:
a TO-can portion positioned at least substantially perpendicular to the optical axis of the optoelectronic device in the TO-can;
a printed circuit board portion positioned at least substantially parallel to the optical axis of the optoelectronic device in the TO-can; and
one or more contacts on the printed circuit board portion, the one or more contacts positioned to connect to a printed circuit board positioned at least substantially parallel to the optical axis of the optoelectronic device in the TO-can; and
one or more electrical connections between at least the external surface of the optoelectronic TO-can to the TO-can portion of the flexible board.
14 . The apparatus of claim 13 , wherein the optoelectronic device includes an optoelectronic receiver.
15 . The apparatus of claim 14 , wherein the optoelectronic device includes an optoelectronic transmitter.
16 . The apparatus of claim 13 , wherein at least one of the one or more conductive connections includes conductive epoxy.
17 . The apparatus of claim 13 , wherein at least one of the one or more conductive connections includes at least one of solder, alloy, and metal.
18 . The apparatus of claim 13 , wherein the one or more conductive connections ground the flexible board to the external surface of the optoelectronic TO-can.
19 . The apparatus of claim 18 , wherein the one or more conductive connections ground a surface of the flexible board to the external surface of the optoelectronic TO-can, the surface of the flexible board facing toward the optoelectronic TO-can.
20 . The apparatus of claim 13 , further comprising:
an integrated circuit mounted on the flexible board.
21 . The apparatus of claim 13 , wherein at least one of the one or more electrical connections occupy a gap between the optoelectronic TO-can and the flexible board connected to the optoelectronic TO-can.
22 . The apparatus of claim 13 , further comprising:
the printed circuit board.
23 . An apparatus comprising:
an optoelectronic TO-can having at least an external surface, the optoelectronic TO-can including:
a TO-can having a width; and
an optoelectronic device in the TO-can, the optoelectronic device having an optical axis; and
a rigid board connected to the optoelectronic TO-can, the rigid board positioned at least substantially perpendicular to the optical axis of the optoelectronic device in the TO-can, the rigid board having a width less than twice the width of the TO-can, the rigid board including:
a first surface facing toward the optoelectronic TO-can;
a second surface facing away from the optoelectronic TO-can;
a first set of one or more contacts on the first surface, the first set of one or more contacts positioned to connect to the optoelectronic TO-can; and
a second set of one or more contacts on the second surface, the second set of one or more contacts positioned to connect to a printed circuit board positioned at least substantially parallel to the optical axis of the optoelectronic device in the TO-can.
24 . The apparatus of claim 23 , wherein the optoelectronic device includes an optoelectronic receiver.
25 . The apparatus of claim 23 , wherein the optoelectronic device includes an optoelectronic transmitter.
26 . The apparatus of claim 23 , further comprising:
an integrated circuit mounted on the rigid board.
27 . The apparatus of claim 23 , further comprising:
one or more electrical connections between at least the external surface of the optoelectronic TO-can to the rigid board, wherein the one or more electrical connections ground the rigid board to the external surface of the optoelectronic TO-can.
28 . The apparatus of claim 27 , wherein at least one of the one or more electrical connections occupy a gap between the optoelectronic TO-can and the rigid board connected to the optoelectronic TO-can.
29 . The apparatus of claim 23 , further comprising:
the printed circuit board.
30 . An apparatus comprising:
an optoelectronic module comprising:
an optoelectronic TO-can having at least an external surface, the optoelectronic TO-can including:
a TO-can having a width; and
an optoelectronic device in the TO-can, the optoelectronic device having an optical axis; and
an extension board connected to the optoelectronic TO-can, the extension board having a width less than twice the width of the TO-can, the extension board including:
a first set of one or more contacts positioned to connect to a printed circuit board positioned at least substantially parallel to the optical axis of the optoelectronic device in the TO-can;
a second set of one or more contacts positioned to connect to the optoelectronic TO-can; and
an integrated circuit mounted on the extension board, the integrated circuit coupled to at least one contact of the first set of one or more contacts and at least one contact of the second set of one or more contacts.
31 . The apparatus of claim 30 , wherein the optoelectronic module includes an optoelectronic transceiver.
32 . The apparatus of claim 30 , wherein the optoelectronic module includes an optoelectronic transponder.
33 . An apparatus comprising:
an optoelectronic module comprising:
an optoelectronic TO-can having at least an external surface, the optoelectronic TO-can including:
a TO-can having a width; and
an optoelectronic device in the TO-can, the optoelectronic device having an optical axis;
a flexible board having a width less than twice the width of the TO-can, the flexible board including:
a TO-can portion positioned at least substantially perpendicular to the optical axis of the optoelectronic device in the TO-can;
a printed circuit board portion positioned at least substantially parallel to the optical axis of the optoelectronic device in the TO-can; and
one or more contacts on the printed circuit board portion, the one or more contacts positioned to connect to a printed circuit board positioned at least substantially parallel to the optical axis of the optoelectronic device in the TO-can; and
one or more electrical connections between at least the external surface of the optoelectronic TO-can to the TO-can portion of the flexible board.
34 . The apparatus of claim 33 , wherein the optoelectronic module includes an optoelectronic transceiver.
35 . The apparatus of claim 33 , wherein the optoelectronic module includes an optoelectronic transponder.
36 . An apparatus comprising:
an optoelectronic module comprising:
an optoelectronic TO-can having at least an external surface, the optoelectronic TO-can including:
a TO-can having a width; and
an optoelectronic device in the TO-can, the optoelectronic device having an optical axis; and
a rigid board connected to the optoelectronic TO-can, the rigid board positioned at least substantially perpendicular to the optical axis of the optoelectronic device in the TO-can, the rigid board having a width less than twice the width of the TO-can, the rigid board including:
a first surface facing toward the optoelectronic TO-can;
a second surface facing away from the optoelectronic TO-can;
a first set of one or more contacts on the first surface, the first set of one or more contacts positioned to connect to the optoelectronic TO-can; and
a second set of one or more contacts on the second surface, the second set of one or more contacts positioned to connect to a printed circuit board positioned at least substantially parallel to the optical axis of the optoelectronic device in the TO-can.
37 . The apparatus of claim 36 , wherein the optoelectronic module includes an optoelectronic transceiver.
38 . The apparatus of claim 36 , wherein the optoelectronic module includes an optoelectronic transponder.