IP Library Granted Patent US 12677938
Granted Patent B2
US 12677938 · App. 18/606,677 · Granted Jul 14, 2026

Band brake mechanism

Inventor: Vladimir Stanislavovich Chumakov (Brooklyn, NY)
Assignee: Humanscale Corporation
A47B9/12F16D63/008A47B9/02A47B2220/0002F16D2121/16
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Quick Facts
Patent No.
US 12677938
App. No.
18/606,677
Granted
Jul 14, 2026
Kind
B2
Abstract

A band brake suitable for use with height adjustable tables and configured to selectively grip and release a lift band utilized by the table's height adjusting mechanism to raise and lower the work surface. The band brake may include an eccentric roller configured to move between a band-engaged position and a band-disengaged position. A release lever is connected to the eccentric roller and configured to transition the eccentric roller between the band-engaged and the band-disengaged positions. A linkage system is connected between the brake housing and the release lever, whereby the linkage system counteracts torque created by a release spring operating on the release lever.

Claims (38)

1 . A height adjustable table comprising:

(a) a work surface;

(b) adjustable legs supporting the work surface;

(c) a lift mechanism, including at least one band, wherein the lift mechanism is configured to allow height adjustment of the adjustable legs; and

(d) a band brake configured to selectively grip and release the band, the band brake comprising:

i) a brake housing with the band extending therethrough;

ii) an eccentric roller extending into the housing, the eccentric roller configured to move between a band-engaged positioned and a band-disengaged position;

iii) a release lever connected to the eccentric roller and configured to transition the eccentric roller between the band-engaged and the band-disengaged positions;

iv) a linkage system with a first link connected to the brake housing and a second link connected to the release lever; and

v) a biasing device connected between the release lever and the linkage system.

2 . The height adjustable surface of claim 1 , wherein the first link and the second link are joined by a link pin and the biasing device is connected to the link pin.

3 . The height adjustable surface of claim 2 , wherein the link pin is free to translate with respect to the housing.

4 . The height adjustable surface of claim 2 , wherein a pivot axis extends through the eccentric roller and the release lever rotates around the pivot axis.

5 . The height adjustable surface of claim 4 , wherein the release lever includes a bias arm and a guide arm on a first side of the pivot axis and a link arm on a second side of the pivot axis.

6 . The height adjustable surface of claim 1 , wherein the brake housing includes a guide slot and the release lever includes a guide pin engaging the guide slot, wherein the guide slot limits the release lever travel to movement between the band-engaged and the band-disengaged positions.

7 . The height adjustable surface of claim 1 , wherein a brake roller is positioned between the band and an inclined clutch plate such that (i) movement of the brake roller in a first direction increases engagement of the brake roller with the band, and (ii) movement of the brake roller in an opposite direction decreases engagement of the brake roller with the band.

8 . The height adjustable surface of claim 7 , wherein a biasing device biases the brake roller in the opposite direction of decreasing engagement of the brake roller with the band, wherein the biasing device includes a spring and spring housing, wherein the spring housing engages the brake roller.

9 . The height adjustable surface of claim 7 , wherein the housing comprises an upper and lower shoe, with (i) the band entering the housing between the upper and lower shoes; (ii) the eccentric roller positioned in the lower shoe, and (iii) the brake roller and the inclined clutch plate positioned in the upper shoe.

10 . The height adjustable surface of claim 9 , wherein at least two brake rollers are positioned in the upper shoe.

11 . The height adjustable surface of claim 7 , wherein the inclined clutch plate has an angle of inclination of between 3° and 10° relative to a plane containing the band.

12 . The height adjustable surface of claim 7 , wherein downward force on the adjustable legs pulls the band in the first direction increasing engagement of the brake roller with the band.

13 . The height adjustable surface of claim 1 , wherein brake rollers are positioned between the band and inclined clutch plates such that (i) movement of the first brake roller in the first direction increases engagement of the first brake roller with the band, and (ii) movement of the second brake roller in an opposite direction increases engagement of the second brake roller with the band.

14 . A band brake configured to selectively grip and release a band, the band brake comprising:

(a) a brake housing with a band channel extending therethrough;

(b) an eccentric roller extending into the housing, the eccentric roller configured to move between a band-engaged positioned and a band-disengaged position;

(c) a release lever connected to the eccentric roller and configured to transition the eccentric roller between the band-engaged and the band-disengaged positions;

(d) a linkage system with a first link connected to the brake housing and a second link connected to the release lever; and

(e) a biasing device connected between the release lever and the linkage system.

15 . The band brake of claim 14 , wherein the first link and the second link are joined by a link pin and the biasing device is connected to the link pin.

16 . The band brake of claim 15 , wherein a pivot axis extends through the eccentric roller and the release lever rotates around the pivot axis, and wherein the release lever includes a bias arm and a guide arm on a first side of the pivot axis and a link arm on a second side of the pivot axis.

17 . The band brake of claim 14 , wherein the brake housing includes a guide slot and the release lever includes a guide pin engaging the guide slot, wherein the guide slot limits the release lever travel to movement between the band-engaged and the band-disengaged positions.

18 . A band brake configured to selectively grip and release a band, the band brake comprising:

(a) a brake housing with a band channel extending therethrough;

(b) an eccentric roller extending into the housing, the eccentric roller configured to move between a band-engaged positioned and a band-disengaged position, wherein the eccentric roller is configured to apply force to a first side of the band in the band-engaged position;

(c) and at least one brake roller configured to apply force to a second side of the band, the brake roller engaging an inclined clutch plate such that movement of the brake roller in a first direction increases engagement of the brake roller with the band, and movement of the brake roller in an opposite direction decreases engagement of the brake roller with the band; and

(d) a release lever connected to the eccentric roller and configured to transition the eccentric roller between the band-engaged and the band-disengaged positions.

19 . The band brake of claim 18 , wherein the housing comprises an upper and lower shoe, with (i) the band channel extending through the housing between the upper and lower shoes; (ii) the eccentric roller positioned in the lower shoe, and (iii) the brake roller and the inclined clutch plate positioned in the upper shoe.

20 . The band brake of claim 18 , wherein the inclined clutch plate has an angle of inclination of between 3° and 10° relative to a plane containing the band channel.