Claims
- 1. A capacitive type MEMS switch comprising:
a) a substrate member; b) a conductor arrangement deposited on said substrate, said conductor arrangement including first and second RF conductors; c) first and second support members on said substrate; d) a bridge member having a central portion and first and second arms extending out from said central portion; e) said first and second arms being respectively connected to said first and second support members; f) a dielectric layer deposited on a portion of said conductor arrangement; g) said conductor arrangement defining an open area; h) a pull down electrode positioned within said open area; i) said pull down electrode being of a height less that that of said conductor arrangement, and being substantially surrounded by said conductor arrangement; j) said central portion of said bridge member being drawn toward said conductor arrangement upon application of a control voltage to said pull down electrode, to present a relatively low impedance, allowing a signal to propagate between said first and second RF conductors.
- 2. A capacitive type MEMS switch according to claim 1 wherein:
said conductor arrangement (b) includes a first RF conductor having an end portion defining said open area and substantially surrounds said pull down electrode; said first arm of said bridge member (d) is electrically conductive; and said conductor arrangement (b) includes a second RF conductor electrically connected to said first arm.
- 3. A capacitive type MEMS switch according to claim 1 wherein:
said conductor arrangement (b) includes first and second opposed RF conductors each including respective branches at the ends thereof; and wherein said branches define said open area and substantially surround said pull down electrode.
- 4. A capacitive type MEMS switch according to claim 1 wherein:
said central portion of said bridge member (d) is enlarged with respect to said arms.
- 5. A capacitive type MEMS switch according to claim 1 and further comprising:
l) a stiffener member positioned on said central portion of said bridge member (d).
- 6. A capacitive type MEMS switch according to claim 1 and further comprising:
m) a pad deposited on said substrate (a) for receiving said control voltage; and n) a thin film resistor connecting said pad (m) with said pull down electrode (h).
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present invention is related in subject matter to patent application Ser. No. 10/157,935, filed May 31, 2002, and to patent application Ser. No. ______ {NGC case 000194-078}, filed concurrently herewith, all of which are assigned to the same assignee as the present invention.