IP Library › Granted Patent US 10,634,134
Granted Patent B2
US 10,634,134 · App. 16/285,681 · Granted Apr 28, 2020

Beverage dispenser system with removable pumps

Inventors: Avihay Cohen (Qiryat Bialik, IL); Robert R. Kimberlin (Christiana, TN)
Assignee: Standex International Corporation
F04B53/16A47J31/4403A47J31/468B67D1/0021B67D1/0042B67D1/0044B67D1/06B67D1/0888B67D1/10B67D1/122B67D1/1222B67D1/1243B67D2001/0095B67D2210/00031F04B49/02F04B49/065
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,634,134
App. No.
16/285,681
Granted
Apr 28, 2020
Kind
B2
Abstract

A post-mix beverage dispenser system with removable pumps is disclosed. The system includes a pump enclosure for receiving a plurality of beverage syrup pumps. Each beverage syrup pump may be easily removed from the enclosure and replaced in a tool-less manner. A sensor and control system for the plurality or removable pumps is also disclosed.

Claims (47)

1. A multiple-pump removable pump system comprising:

a pump enclosure for receiving a plurality of removable pumps, the pump enclosure having at least a front panel, a rear panel, first and second side panels, a bottom panel, and a removable top panel, the panels defining a pump enclosure interior space,

wherein the rear panel includes a plurality of openings and at least one horizontal lip disposed above the plurality of openings, the lip having a plurality of slots formed therein so that one slot is positioned above each of the plurality of openings; and

a plurality of removable pumps at least partially disposed within the pump enclosure interior space, each removable pump including

a pump housing having an internal pumping chamber, an inlet port and an outlet port, each of the ports being in flow communication with the pumping chamber,

a spring biased retainer pin received within a retainer pin hole formed on an outer surface of the pump housing,

a pump motor, and

a pumping mechanism driven by the pump motor and at least partially disposed within the pumping chamber, the pumping mechanism being capable of receiving a fluid through the inlet port into the pumping chamber at a first pressure and discharging the fluid from the pumping chamber through the outlet port at a second pressure which is greater than the first pressure,

wherein the pump motor and at least portion of the pump housing are disposed within the pump enclosure interior space, the inlet port and the outlet port extend through one of the plurality of rear panel openings, and a portion of the retainer pin extends through one of the rear panel slots so as to retain at least a portion of the removable pump within the pump housing.

2. The multiple-pump removable pump system of claim 1 , wherein each removable pump further includes

a sliding lock member having a first portion, a second portion which is narrower than the first portion, and a lock retainer opening, the sliding lock member being slidingly movable between a locked position and an unlocked position; and

a sliding lock retainer passing through the sliding lock retainer opening to secure the sliding lock member to the pump housing in a position disposed between the inlet port and the outlet port,

wherein the inlet port and the outlet port each include a channel for receiving the first portion of the sliding lock member,

wherein the first portion of the sliding lock member is received in the channels of the inlet port and the outlet port so as to engage and retain removable fittings within the inlet port and the outlet port when the sliding lock member is in the locked position, and

wherein the second portion of the sliding lock member is positioned adjacent the channels of the inlet port and the outlet port, but without engaging and retaining the removable fittings within the inlet port and the outlet port, when the sliding lock member is in the locked position.

3. The multiple-pump removable pump system of claim 2 , wherein, for each removable pump, the inlet port has a first cross-sectional area and the outlet port has a second cross-sectional area which is different from the first cross-sectional area.

4. The multiple-pump removable pump system of claim 2 , wherein, for each removable pump, the inlet port has a first cross-sectional diameter and the outlet port has a second cross-sectional diameter which is different from the first cross-sectional diameter.

5. The multiple-pump removable pump system of claim 1 , wherein, for each removable pump, the pumping mechanism comprises:

a drive gear, having a plurality of drive gear teeth, disposed within the pumping chamber and rotatably driven by the pump motor; and

an idler gear, having a plurality of idler gear teeth intermeshed with the drive gear teeth, disposed within the pumping chamber and attached to an idler shaft disposed within the pumping chamber.

6. The multiple-pump removable pump system of claim 1 , wherein, for each removable pump, the pump housing further includes a sensor port in flow communication with the pumping chamber and a pressure transducer disposed adjacent the sensor port, the transducer being in contact with a quantity of the fluid at the second pressure and generating an electrical signal based upon the second pressure.

7. The multiple-pump removable pump system of claim 1 , wherein the removable pumps are beverage syrup pumps.

8. A post-mix beverage dispenser system comprising:

a beverage dispensing station having a plurality of beverage mixing and dispensing nozzles;

a supply of carbonated water in flow communication with each of the beverage mixing and dispensing nozzles;

a plurality of beverage syrup containers, each container having a supply of concentrated beverage syrup; and

a multiple-pump syrup pump system comprising:

a pump enclosure for receiving a plurality of syrup pumps, the pump enclosure having at least a front panel, a rear panel, first and second side panels, a bottom panel, and a removable top panel, the panels defining a pump enclosure interior space,

wherein the rear panel includes a plurality of openings and at least one horizontal lip disposed above the plurality of openings, the lip having a plurality of slots formed therein so that one slot is positioned above each of the plurality of openings; and

a plurality of syrup pumps at least partially disposed within the pump enclosure interior space, each syrup pump including

a pump housing having an internal pumping chamber, an inlet port in flow communication with one of the beverage syrup containers and with the pumping chamber, and an outlet port in flow communication with the pumping chamber and with one of the beverage mixing and dispensing nozzles,

a spring biased retainer pin received within a retainer pin hole formed on an outer surface of the pump housing,

a pump motor, and

a pumping mechanism driven by the pump motor and at least partially disposed within the pumping chamber, the pumping mechanism being capable of receiving a fluid through the inlet port into the pumping chamber at a first pressure and discharging the fluid from the pumping chamber through the outlet port at a second pressure which is greater than the first pressure,

wherein the pump motor and at least portion of the pump housing are disposed within the pump enclosure interior space, the inlet port and the outlet port extend through one of the plurality of rear panel openings, and a portion of the retainer pin extends through one of the rear panel slots so as to retain at least a portion of the syrup pump within the pump housing.

9. The post-mix beverage dispenser system of claim 8 , wherein each syrup pump further includes

a sliding lock member having a first portion, a second portion which is narrower than the first portion, and a lock retainer opening, the sliding lock member being slidingly movable between a locked position and an unlocked position; and

a sliding lock retainer passing through the sliding lock retainer opening to secure the sliding lock member to the pump housing in a position disposed between the inlet port and the outlet port,

wherein the inlet port and the outlet port each include a channel for receiving the first portion of the sliding lock member,

wherein the first portion of the sliding lock member is received in the channels of the inlet port and the outlet port so as to engage and retain removable fittings within the inlet port and the outlet port when the sliding lock member is in the locked position, and

wherein the second portion of the sliding lock member is positioned adjacent the channels of the inlet port and the outlet port, but without engaging and retaining the removable fittings within the inlet port and the outlet port, when the sliding lock member is in the locked position.

10. The post-mix beverage dispenser system of claim 8 , wherein, for each syrup pump, the inlet port has a first cross-sectional area and the outlet port has a second cross-sectional area which is different from the first cross-sectional area.

11. The post-mix beverage dispenser system of claim 8 , wherein, for each syrup pump, the inlet port has a first cross-sectional diameter and the outlet port has a second cross-sectional diameter which is different from the first cross-sectional diameter.

12. The post-mix beverage dispenser system of claim 8 , wherein, for each syrup pump, the pumping mechanism comprises:

a drive gear, having a plurality of drive gear teeth, disposed within the pumping chamber and rotatably driven by the pump motor; and

an idler gear, having a plurality of idler gear teeth intermeshed with the drive gear teeth, disposed within the pumping chamber and attached to an idler shaft disposed within the pumping chamber.

13. The post-mix beverage dispenser system of claim 8 , wherein, for each syrup pump, the pump housing further includes a sensor port in flow communication with the pumping chamber and a pressure transducer disposed adjacent the sensor port, the transducer being in contact with a quantity of the fluid at the second pressure and generating an electrical signal based upon the second pressure.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Oct 1, 2024
From: LOAN ADMIN CO LLC
To: MICROPUMP, INC.
Reel/Frame 068757/0354 →
GRANT OF SECURITY INTEREST IN UNITED STATES PATENTS Recorded Aug 3, 2023
From: MICROPUMP, INC.; PROCON US, INC.
To: LOAN ADMIN CO LLC, AS COLLATERAL AGENT
Reel/Frame 064482/0099 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2023
From: STANDEX INTERNATIONAL CORPORATION
To: PROCON US, INC.
Reel/Frame 062367/0252 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 1, 2019
From: COHEN, AVIHAY
To: ARBEL AGENCIES LIMITED
Reel/Frame 050914/0779 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 3, 2019
From: KIMBERLIN, ROBERT R.
To: STANDEX INTERNATIONAL CORPORATION
Reel/Frame 049665/0401 →
Continuity (2)
Provisional Application 62635575 · Feb 27, 2018
Related Publication 20190264684A1 · Aug 29, 2019