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NZ603709A - Rechargeable battery powered utility pump with series centrifugal pump configuration - Google Patents

Rechargeable battery powered utility pump with series centrifugal pump configuration

Info

Publication number
NZ603709A
NZ603709A NZ60370912A NZ60370912A NZ603709A NZ 603709 A NZ603709 A NZ 603709A NZ 60370912 A NZ60370912 A NZ 60370912A NZ 60370912 A NZ60370912 A NZ 60370912A NZ 603709 A NZ603709 A NZ 603709A
Authority
NZ
New Zealand
Prior art keywords
battery
receiving portion
protruding portion
battery receiving
electrical terminals
Prior art date
Application number
NZ60370912A
Other versions
NZ603709B (en
Inventor
Humberto V Meza
Randall H Moormann
Mark F Ingersoll
Jeffrey B Schopperle
Joel A Kenney
Original Assignee
Flow Control LLC
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from US13/300,174 external-priority patent/US8894389B2/en
Application filed by Flow Control LLC filed Critical Flow Control LLC
Publication of NZ603709A publication Critical patent/NZ603709A/en
Publication of NZ603709B publication Critical patent/NZ603709B/en

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D13/00Pumping installations or systems
    • F04D13/02Units comprising pumps and their driving means
    • F04D13/06Units comprising pumps and their driving means the pump being electrically driven
    • F04D13/068Battery powered
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D13/00Pumping installations or systems
    • F04D13/02Units comprising pumps and their driving means
    • F04D13/06Units comprising pumps and their driving means the pump being electrically driven
    • F04D13/08Units comprising pumps and their driving means the pump being electrically driven for submerged use
    • F04D13/086Units comprising pumps and their driving means the pump being electrically driven for submerged use the pump and drive motor are both submerged
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/40Casings; Connections of working fluid
    • F04D29/42Casings; Connections of working fluid for radial or helico-centrifugal pumps
    • F04D29/426Casings; Connections of working fluid for radial or helico-centrifugal pumps especially adapted for liquid pumps

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Structures Of Non-Positive Displacement Pumps (AREA)
  • Battery Mounting, Suspending (AREA)

Abstract

603709 Disclosed is a utility pump with a housing (12) containing a series configuration of integral pumps, and also containing a battery receiving portion configured with a flat wall with electrical terminals arranged thereon for receiving power to the pump . The utility pump also has a battery (14) with a protruding portion configured with a corresponding flat wall having corresponding electrical terminals arranged thereon. The corresponding electrical terminals are configured to contact respectively both of the electrical terminals on the flat wall of the battery receiving portion to provide power from the battery (14) to the pump when the protruding portion of the battery (14) is inserted into the battery receiving portion of the housing and rotated to an “ON” position. The corresponding electrical terminals are also configured not to contact respectively both of the electrical terminals when the battery (14) is rotated from the “ON” position to an “OFF” position.

Description

Patent Form No. 5 Our Ref: 77102NZP00 No. 174 Date. 18 Nov 2011 Patents Act 1953 COMPLETE SPECIFICATION RECHARGEABLE BATTERY POWERED Y PUMP WITH SERIES CENTRIFUGAL PUMP CONFIGURATION INVe, Flow Control LLC.. a body corporate organised under the laws of United States of America of 1 Kondelin Road, Gloucester, Massachusetts, 01930, UNITED STATES OF AMERICA hereby declare the invention, for which l/we pray that a patent may be d to me/us, and the method by which it is to be performed, to be particularly described in and by the following statement:- Total Fee Paid: NZ$250.00 — by Direct Debit (as per covering letter) 503852700_1l6358 RECHARGEABLE Y POWERED UTILITY PUMP WITH SERIES CENTRIFUGAL PUMP CONFIGURATION CROSS REFERENCE TO RELATED APPLICATIONS This application is a continuation-in-part application of patent application serial no. 13/222,303, filed 31 August 2011 (published as U82013-0052059 A1), entitled Portable Battery Operated Bilge Pump, which is hereby incorporated by reference in its ty.
BACKGROUND OF THE INVENTION The present invention relates to a pump; and more particularly a rechargeable le utility pump.
SUMMARY OF THE INVENTION The present invention provides a utility pump featuring a new and unique combination of a g and a battery. According to some embodiments of the present invention, the housing may have a series configuration of integral pumps, and may also have a battery receiving portion configured with a flat wall having electrical terminals arranged thereon for receiving power to the pump; and the battery may include a protruding portion configured with a corresponding flat wall having corresponding electrical terminals arranged n, the corresponding electrical terminals being configured to contact respectively both of the ical terminals on the flat wall of the battery receiving portion to provide power from the battery to the pump when the ding portion of the battery is inserted into the battery receiving portion of the housing and d to an "ON" on, and the corresponding electrical terminals also being configured not to contact respectively both of the electrical terminals when the y is rotated from the "ON" position to an "OFF" position.
According to some embodiments of the present invention, the utility pump may also include one or more of the following es: The series uration of the integral pumps may include a first centrifugal pump and a second centrifugal pump.
A suction Side of the first centrifugal pump may be configured to receive a fluid through a lower strainer unit, and/or a discharge of the first centrifugal pump may be configured to be directly integrated into a corresponding suction side of the second centrifugal pump so that the fluid is then discharged out the second centrifugal pump through a fitting.
The utility pump may include a rechargeable battery pack and printed circuit board (PCB) controls that are housed inside a thermoplastic ly or housing.
The protruding portion may also include a cylindrical wall with an O—ring configured to frictionally engage and make sealing contact with an internal wall of the battery receiving portion to t fluid from contacting the electrical terminals and the corresponding ical terminals when the battery is inserted into the y receiving portion, so that the utility pump may be operated when either partially or totally submersed in the fluid.
The battery receiving portion may e an internal wall configured with at least one axial channel therein; and the protruding portion may include an external wall having at least one protruding portion configured to engage the at least one axial channel for guiding and orienting the battery when inserted into the y receiving portion into a first rotational position.
The al wall of the battery receiving portion may also be configured with at least one partial circumferential l; and the at least one ding portion may also be configured to engage the at least one partial circumferential channel for rotating the battery from the first rotational position when the protruding portion of the battery is inserted into the battery receiving portion of the housing into either a second rotational on, including the "ON" position where the series configuration of integral pumps is turned "ON", or to a third rotational on, including the "OFF" position where the series configuration of the al pumps is turned "OFF." The at least one axial channel may also include two axial channels disposed on opposite sides of the battery receiving n, and the at least partial circumferential channel may also include two partial circumferential channels; and the external wall of the protruding portion may include two protruding portions configured to engage respectively the two axial channels for guiding and orienting the battery when inserted into the battery receiving portion, and also to engage the two partial circumferential channels for positioning the battery in either the second rotational position ("ON") or the third rotational position ("OFF").
The two axial ls may be configured and dimensioned with different sizes, and the two ding portions may be configured and dimensioned with corresponding different sizes, so that the battery can only be inserted into the battery receiving portion with one orientation.
The at least one partial circumferential channel may include a flexible locking device having a first face and a second face and being configured on a le hinge portion. The first face may be configured on an angle so as to respond to the at least one protruding portion and flex the flexible locking device downwardly into an opening or slot and below the channel e so as to allow the at least one protruding n to slide or pass by when the battery is rotated in the one direction in the battery receiving portion. The flexible locking device may be configured to flex back upwardly above the channel surface oncethe at least one protruding n slides or passes by the first face. The second face may be configured to extend into the partial circumferential channel above the channel surface so as to prevent the at least one protruding portion from passing or g by when the y is d in an opposite direction in the battery receiving portion so as to lock the battery in the battery receiving portion so it cannot be removed.
The housing may also include a switch configured to respond to a switching actuation and move the flexible locking device downwardly into the opening or slot and below the channel surface to allow the at least one protruding portion to pass by when the battery is rotated in the opposite direction in the battery receiving portion, so that the battery may be moved to the first rotational position and removed from the battery receiving portion.
The battery receiving portion may also be configured with a flat wall having the electrical terminals ed thereon; and the protruding portion may also be configured with a corresponding flat wall having the corresponding ical terminals arranged thereon for contacting the electrical terminals when the y is ed into the battery receiving portion and rotated.
The housing may also have a detachable two-part construction, including a lower part configured with openings to receive fluid to be , and an upper part configured with an outlet port for providing the fluid being pumped.
The battery may be a rechargeable battery.
The y may also include a cover portion having an arrow-shaped member configured to provide a visual indication of the orientation of the battery.
Unless the context y requires otherwise, throughout the description and the claims, the words "comprise", "comprising", and the like are to be construed in an inclusive sense as opposed to an exclusive or exhaustive sense; that is to say, in the sense of "including, but not limited to".
BRIEF DESCRIPTION OF THE DRAWING The drawing, which is not arily drawn to scale, includes the ing Figures: Figure 1 is a top perspective view of a portable bilge pump according to some embodiments of the present invention; Figure 2 is a front view of the portable bilge pump shown in Figure 1 with the battery ed, according to some embodiments of the present ion; Figure 3 is a front view of the portable bilge pump shown in Figure 1 without the battery inserted, according to some embodiments of the present invention; Figure 4 is a side view of the portable bilge pump shown in Figure 1 ing to some embodiments of the present invention; Figure 5 is a partial perspective view of the portable bilge pump shown in Figure 3 according to some embodiments of the present invention; Figure 6 is a side view of a battery that forms part of the portable bilge pump shown in Figure 1 according to some embodiments of the present invention; Figure 7 is a back view of the battery shown in Figure 6 according to some embodiments of the present invention; and Figure 8 is a perspective view of the battery shown in Figure 6 according to some embodiments of the t invention.
Figures 9a, 9b show a utility pump according to some embodiments of the present invention, where Figure 9a is an isometric view of the utility pump, and Figure 9b is a cross- sectional view of the utility pump shown in Figure 9a.
DETAILED DESCRIPTION OF THE ION Figures 1-8 show a pump generally indicated as 10 that features a new and unique combination, ement or configuration of a housing 12 and a battery 14, including a rechargeable battery, which is disclosed and claimed in patent application serial no. 13/222,303, filed 31 August 2011 (published as U82013-0052059 A1), consistent with that set forth below. For the ience of the reader, it is noted that the subject matter shown in Figures 9a and 9b and the description thereof set forth below form the basis of the additional subject matter of the instant continuation-in-part patent application as set forth .
As shown by way of example in Figures 3 and 5, the housing 12 may be configured with a battery receiving portion generally indicated as 16 having electrical terminals 18a, 18b for receiving power to the pump 10. The battery receiving portion 16 is configured or formed as a cavity in part of the housing 12 that is dimensioned to receive some portion of the battery 14. tent with that described herein.
As shown by way of example in s 6-8, the battery 14 may include a protruding portion 20 with corresponding electrical terminals 22a, 22b configured to contact the electrical als 18a, 18b of the battery receiving portion 16 to e power to the pump 10 when the protruding portion 20 of the battery 14 is ed into the battery receiving portion 16 of the housing 12 as shown in Figure 2 and rotated in one direction indicated by arrow A (Figure 2) to an "ON" position, and also configured so as not to contact the ical als when the battery 14 is not rotated to the "ON" position. The battery 14 is not rotated to the "ON" position when it is any other rotational position other than in the "ON" position, e.g., including when it is in a battery insert on lly indicated by reference label I in Figures 2-3, and also including when it is in the "OFF" position.
As shown by way of example in Figure 6, the protruding portion 20 may also include a cylindrical wall 24 with an O-ring 26 configured to frictionally engage and make sealing contact with one cylindrical internal wall 28 of the battery ing portion 16 as shown in Figures 3 and 5 to prevent the fluid from contacting the electrical terminals 18a, 18b (Figure 3) and the corresponding electrical terminals 22a, 22b (Figure 7) when the battery 14 is inserted into the y receiving portion 16 as shown in Figure 2, so that the pump 10 may be operated when either partially and totally submersed in the fluid. The configuration of the cylindrical wall 24 and O-ring 26 includes the rical wall 24 having an r channel or groove for receiving and retaining the O-ring 26 therein, as well as embodiments in which the O-ring 26 is arranged on the cylindrical wall 24 without using an annular channel or groove.
As shown by way of example in Figures 3 and 5, the battery receiving portion 16 may include another internal wall 30a configured with at least one axial l 32a, 32b formed therein. As shown in Figures 6—8, the protruding portion 20 may include at least one external wall 34a, 34b with at least one protruding portion 36a, 36b configured to engage the at least one axial channel 32a, 32b for g and orienting the battery 14 when inserted into the battery receiving portion 16 as shown in Figure 2 into a first rotational position as indicated by reference label I in Figures 2-3.
As shown by way of example in Figure 5, the internal wall 30a of the battery ing portion 16 may also be configured with at least one partial circumferential channel 38 that is formed between the internal wall 30a and a ponding internal wall 30b. The at least one protruding portion 36a shown in Figures 6-8 may also be configured to engage the partial ferential channel 38 shown in Figure 5 for rotating the battery 14 from the first rotation position I (Figures 2-3) when the protruding portion 20 of the battery 14 is inserted into the battery ing n 16 of the g 12 as shown in Figure 2 into either a second rotational on, such as the "ON" position where the pump is turned "ON", or to a third rotational position, such as the "OFF" position where the pump is turned "OFF", as shown in Figure 2.
As shown by way of example in Figures 3 and 5, the two axial channels 32a, 32b are configured, disposed, ed or formed on opposite sides of the battery receiving portion 16.
In embodiments having two protruding portions 36a, 36b (Figures 6-8), the at least partial circumferential channel 38 may include a second partial circumferential channel for receiving the corresponding protruding portion 36b. The second partial circumferential channel is not shown in Figure 5, but is understood to be configured substantially similar to the l circumferential channel 38 and dimensioned to receive the protruding portion 36b.
Embodiments are envisioned using one protruding portion, e.g., t 36a, so that one corresponding circumferential channel, e.g., element 38, may be formed in the battery receiving portion 16 for receiving the same. in operation, when inserted into the battery receiving portion 16 the two corresponding protruding portions 36a, 36b are configured to engage tively the two axial channels 32a, 32b for guiding and orienting the battery 14 in the battery receiving portion 16; and the two corresponding protruding portions 368, 36b are also configured to engage the two partial ferential channels 38 for rotating and positioning the battery 14 in some other onal position, including either the second rotational position (i.e. the "ON" position) or the third onal position (i.e. the "OFF" position), as shown in Figures 2-3.
As shown by way of example in s 3 and 5 and Figures 6—8, the two axial channels 32a, 32b may be configured and ioned with different sizes, and the two protruding portions 36a, 36b may also be configured and dimensioned with corresponding different sizes, so that the battery 14 can only be inserted into the battery receiving portion 16 with one orientation, i.e. the larger protruding portion 36a is received by the larger dimensioned axial channel 32a and the smaller protruding portion 86b is received by the smaller dimensioned axial channel 32b, as shown in Figures 3 and 5-7. The scope of the invention is not intended to be limited to any particular dimension or size of the axial channels 32a, 32b or protruding portions 36a, 36b in relation to one another or each other.
As shown by way of example in Figure 5, the at least one partial circumferential channel 38 may also include a flexible locking device 40 having a first face 40a and a second face 40b and being configured on a flexible hinge portion 42. The first face 40a is configured on an angle so as to respond to the at least one ding portion 36a and flex the flexible locking device 40 downwardly into an opening or slot 44 and below the channel surface so as to allow the at least one protruding portion 36a to slide or pass by when the battery 14 is rotated in the one direction A (see Figure 2) in the battery ing portion 16. Once the at least one protruding portion 36a has slid and passed by the first face 40a when the y 14 is d in the one ion A (Figure 2), the flexible locking device 40 is configured to flex back upwardly above the channel surface. In this position, the second face 40b is configured to extend into the partial circumferential channel 38 so as to prevent the at least one protruding portion 36a from passing or sliding by when the battery 14 is rotated in an opposite direction B (see Figure 2) in the battery receiving portion 16 so as to lock the battery 14 in the y receiving portion 16 so it cannot be removed.
As shown by way of example in Figures 1-3, the housing 12 may also include a switch or button 50 configured to respond to a switching actuation, e.g., by a user pressing the button, and move the flexible locking device 40 downwardly so the second face 40b is below the l surface to allow the at least one protruding portion 36a to pass by when the battery 14 is rotated in the opposite direction B (Figure 2) in the battery receiving portion 16, so that the battery 14 may be moved to the first rotational position I e 2) and removed from the battery ing portion 16. The scope of the invention is not intended to be limited to the type or kind of coupling between the switch 50 and the flexible locking device 40, and a person skilled in the art would be able to implement such a coupling without undue experimentation.
By way of example, such a coupling may include an embodiment in which the switch or button 50 is pressed inwardly by a user so the flexible g device 40 moves downwardly below the channel surface and stays in place until the switch or button 50 is pressed a second time to release the flexible locking device 40 and moves upwardly above the channel surface. atively, such a coupling may include an embodiment in which the switch or button 50 may be pressed inwardly by the user and held by the user so the le locking device 40 moves rdly below the channel surface and stays in place until the switch or button 50 is released by the user such that the flexible locking device 40 moves upwardly back above the channel surface.
As shown by way of example in Figure 3, the battery receiving n 16 may also be configured with a flat wall 60 having the electrical terminals 18a, 18b arranged thereon. As shown in Figures 6-8. the protruding portion 20 may also be configured with a corresponding flat wall 62 having the corresponding electrical terminals 22a, 22b arranged thereon for ting the electrical terminals 18a, 18b when the battery 14 is inserted into the battery receiving portion 16 and rotated. Embodiment are also envisioned in which the electrical terminals 18a, 18b (Figure 3) may be ed on the cylindrical internal wall 28 and the corresponding electrical terminals 22a, 22b (Figures 6-8) may be ed on the cylindrical wall 24 so as to make electrical contact when the protruding portion 20 is inserted into the battery receiving portion 16 of the housing 12 and suitably rotated to the "ON" position. ment are also envisioned where one ical terminal may be arranged on a flat wall and the other electrical al may be arranged on a cylindrical wall, and where one corresponding electrical terminal may be arranged on a corresponding flat wall and the other corresponding electrical al may be arranged on a corresponding cylindrical wall, so as to make electrical contact when the protruding n 20 is inserted into the battery receiving portion 16 of the housing 12 and suitably rotated to the "ON" position.
As shown by way of example in Figures 2, 4 and 6, the battery 14 may be configured with a cover portion 90 having an arrow-shaped member 92 configured to provide a visual indication of the orientation of the battery 14. For example, when the battery 14 inserted in the battery receiving portion 16, the arrow-shaped member 92 would be pointed to the reference label I in Figure 2; when the battery 14 is rotated to the "ON" position in the battery receiving portion 16, the shaped member 92 would be pointed to the reference label "ON" in Figure 2; and when the battery 14 is rotated to the "OFF" position in the battery receiving n 16, the arrow-shaped member 92 would be pointed to the reference label "OFF" in Figure 2.
As shown by way of example in Figures 1-5, the housing 12 may be configured as a detachable two-part construction, ing a lower part 70 configured with openings 72 to receive fluid to be pumped, and an upper part 80 configured with an outlet port 82 for providing the fluid being pumped. The lower part 70 has tabs 74 (Figure 1) and 76 (Figure 4) that are configured to be received in corresponding openings 84 (Figure 1) and 86 e 4) of the upper part 80 and pressed, e.g., by fingers of a user, to detach and release the lower part 70 from the upper part 80. The lower part 70 is also configured with recesses 78a (Figure 1) and 78b (Figure 4) to be engaged, e.g., with the other fingers of the user, when detaching the lower part 70 and the upper part 80. Embodiments are also envisioned in which the pump 10 is assembled and the two parts 70, 80 of the housing 12 are sealed together, e.g., using an ultrasonic sealing or welding. The housing 12 may also be configured with a handle 100 as shown in Figures 1-4 for ly ng the pump 10.
It is understood that the pump 10 is configured to contain some kind of pumping device (not shown) inside the housing 10. Pumping devices are known in the art and the scope of the invention is not intended to be limited to any particular type, kind or implementation thereof either now known or later developed in the future, including by way of example, a diaphragm pump. The pumping device itself does not form part of the underlying invention, and thus is not shown or described in detail. Moreover, consistent with that disclosed , a person skilled in the art would be able to implement such a g device, e.g., a diaphragm pump, into the housing 12 without undue experimentation within the spirit of the underlying ion in order to make the pump 10 receive the fluid in the openings 72 es 1-4) and provide the fluid from the port 82 (Figures 1 and 4).
Figures 9a, 9b: Series Centrifugal Pump Configuration Figures 9a, 9b shows a utility pump generally indicated as 200 that forms the basis for the instant continuation-in-part application of patent ation serial no. ,303, filed 31 August 2011 (published as U82013-0052059 A1), consistent with that set forth below.
Similar elements in Figures 1-8 and Figures 9a and 9b are provided with similar reference numerals for the sake of consistency. So as to not unduly clutter Figures 9a and 9b, not every element in Figures Qa and 9b is provided a reference numeral tent with s 1-8.
The utility pump comprises a series configuration of two centrifugal pumps 202, 204 that gives an increase in the head pressure and is integral package within the pump housing The utility pump or pump system 200 comprises of an internal "hydraulics" assembly which includes the two centrifugal pumps 202, 204. The n side of the first centrifugal pump 202 receives water through a lower er unit or openings 72. The discharge of the first pump 202 is directly integrated into the suction side of the second centrifugal pump 204.
The fluid is then discharged out the second pump through a fitting 204b for providing out a discharge 206 (Figure 9a). This hydraulic unit along with the rechargeable battery pack 14 and printed circuit board (PCB) controls are housed inside a plastic assembly or pump housing 12.
In Figures 9a and 9b, the utility pump 200 is designed to meet consumer pumping needs for applications which AC or other DC power may not be readily available or convenient for use.
In Figure 9a, the utility pump 200 includes a battery assembly release button 210 that may be pressed in order to allow the battery 14 to be rotated and d from the housing 12. See the switch or button 50 shown in Figures 1-3.
The utility pump 200 also includes pump legs 212a, 212b, and 2120 for supporting and stabilizing the utility pump 200.
THE SCOPE OF THE INVENTION Further still, the embodiments shown and bed in detail herein are provided by way of example only; and the scope of the invention is not intended to be d to the particular configurations, dimensionalities, and/or design details of these parts or elements included herein. In other words, a person skilled in the art would appreciate that design changes to these embodiments may be made and such that the resulting embodiments would be different than the embodiments disclosed herein, but would still be within the l spirit of the present invention.
It should be tood that, unless stated otherwise herein, any of the features, teristics, alternatives or modifications described regarding a particular embodiment herein may also be applied, used, or incorporated with any other embodiment described herein. Also, the drawings herein are not necessarily drawn to scale.
Although the invention has been described and illustrated with respect to exemplary embodiments thereof, the ing and various other additions and omissions may be made therein and thereto without departing from the spirit and scope of the present invention.

Claims (18)

1. A utility pump sing: a housing having a series uration of al pumps, and also having a battery ing n configured with a flat wall having electrical terminals arranged thereon for receiving power to the pump; and a battery having a protruding portion configured with a corresponding flat wall having corresponding ical als arranged thereon, the corresponding electrical terminals being configured to contact tively both of the electrical terminals on the flat wall of the battery receiving portion to provide power from the y to theto the pump when the protruding portion of the battery is ed into the battery receiving portion of the housing and rotated to an "ON" position, and the corresponding electrical terminals also being configured not to contact respectively both of the electrical terminals when the battery is rotated from the “ON” position to an"OFF" position.
2. A utility pump according to claim 1, wherein the protruding portion has a cylindrical wall with an O-ring configured to frictionally engage and make sealing contact with an internal wall of the battery receiving portion to prevent fluid from contacting the electrical terminals and the corresponding electrical terminals when the battery is ed into the battery receiving portion, so that the series configuration of integral pumps may be operated when either partially or totally submersed in the fluid.
3. A utility pump according to claim 1, wherein the battery receiving portion has an internal wall configured with at least one axial channel therein; and the protruding portion has an external wall having at least one protruding portion ured to engage the at least one axial channel for guiding and orienting the battery when inserted into the battery receiving portion into a first rotational on.
4. A utility pump according to claim 3, wherein the internal wall of the battery receiving portion is configured with at least one l circumferential channel; and the at least one protruding portion is configured to engage the at least one partial circumferential channel for rotating the battery from a first position when the protruding portion of the battery is inserted into the battery receiving portion of the housing into either a second rotational position, including the "ON" position where the series configuration of integral pumps is turned "ON". or to a third onal position, including the "OFF" position where the series configuration of integral pumps is turned "OFF."
5. A utility pump according to claim 4, wherein the at least one axial channel comprises two axial channels disposed on opposite sides of the battery receiving n, and the at least partial circumferential channel comprises two partial circumferential channels; and the external wall of the protruding portion includes two protruding portions configured to engage respectively the two axial ls for guiding and orienting the battery when inserted into the battery receiving portion, and to engage the two partial circumferential channels for positioning the battery in either the second onal position or the third rotational on.
6. A utility pump according to claim 5, wherein the two axial channels are configured and dimensioned with different sizes, and the two ding portions configured and dimensioned with corresponding different sizes, so that the battery can only be inserted into the battery receiving portion with one orientation.
7. A utility pump according to claim 3, wherein the at least one partial circumferential channel has a flexible locking device having a first face and a second face that is configured on a flexible hinge portion; the first face is ured on an angle so as to respond to the at least one protruding portion and flex the flexible locking device downwardly into an opening or slot and below a surface of the channel so as to allow the at least one protruding portion to slide or pass by when the battery is d in the one direction in the battery receiving n; the flexible locking device is configured to flex back upwardly above the channel surface once the at least one protruding portion slides or passes by the first face; and the second face is configured to extend into the l circumferential channel above the channel surface so as to prevent the at least one protruding portion from passing or sliding by when the battery is rotated in an opposite direction in the battery receiving portion so as to lock the battery in the battery receiving portion so it cannot be removed.
8. A utility pump according to claim 7, wherein the housing has a switch configured to respond to a switching actuation and move the flexible g device downwardly into the opening or slot and below the l surface to allow the at least one protruding portion to pass by when the battery is rotated in the opposite direction in the battery receiving portion, so that the battery may be moved to the first rotational position and d from the battery receiving portion.
9. A utility pump according to claim 1, wherein the battery ing portion is configured with a flat wall having the ical terminals arranged thereon; and the protruding portion is configured with a corresponding flat wall having the corresponding electrical terminals arranged thereon for contacting the electrical terminals when the battery is ed into the battery receiving portion and rotated.
10. A utility pump according to claim 1, wherein the housing has a detachable two-part construction, including a lower part configured with openings to receive fluid being pumped, and an upper part ured with an outlet port for providing the fluid being pumped.
11. A utility pump according to claim 1, wherein the battery is rechargeable.
12. A utility pump according to claim 1, n the battery has a cover portion having an shaped member configured to provide a visual indication of the orientation of the battery.
13. A utility pump according to claim 1, n the series configuration of the integral pumps comprises a first centrifugal pump and a second centrifugal pump.
14. A y pump according to claim 13, n a suction side of the first centrifugal pump is configured to receive a fluid through a lower strainer unit; and a discharge of the first centrifugal pump is configured to be directly integrated into a corresponding n side of the second centrifugal pump so that the fluid is then discharged out the second centrifugal pump through a fitting.
15. A utility pump according to claim 14, wherein the utility pump comprises a rechargeable battery pack and printed t board (PCB) controls that are housed inside a thermoplastic assembly.
16. A utility pump comprising: a housing configured with a series configuration of al pumps, and also configured with a battery receiving portion having electrical terminals for ing power for providing to the series configuration of the integral pumps, the battery receiving portion having an internal wall configured with at least one axial channel therein, the internal wall of the battery receiving portion configured with at least one partial circumferential channel; and a battery having a protruding portion with ponding electrical terminals configured to contact the electrical terminals on the battery receiving portion to provide the power to the series configuration of integral pumps when the protruding portion of the battery is inserted into the battery receiving n of the housing and rotated in one direction to an "ON" position, and also configured so as not to contact the electrical terminals when the battery is not rotated to the "ON" position, the ding portion having an external wall with at least one further protruding portion configured to engage the at least one axial channel for guiding and orienting the battery when inserted into the battery receiving portion into a first rotational position, the at least one further protruding portion ured to engage the partial circumferential channel for rotating the battery from a first position when the protruding portion of the battery is inserted into the battery receiving portion of the housing into either a second rotational position, including the "ON" position where the series configuration of integral pumps is turned "ON", or to a third rotational position, including the "OFF" on where the series uration of integral pumps is turned "OFF; the at least one partial circumferential l having a flexible locking device with a first face and a second face that is configured on a flexible hinge portion; the first face being configured on an angle so as to respond to the at least one further protruding n and flex the flexible locking device downwardly into an opening or slot and below the channel surface so as to allow the at least one further protruding n to slide or pass by when the y is rotated in the one direction in the battery ing portion; the flexible locking device being configured to flex back upwardly above the channel surface once the at least one further protruding portion slides or passes by the first face; and the second face being configured to extend into the partial circumferential channel above the channel surface so as to prevent the at least one further protruding portion from passing or sliding by when the battery is rotated in an opposite ion in the battery receiving portion so as to lock the battery in the battery receiving portion so it cannot be removed.
17. A utility pump according to claim 16, wherein the housing has a switch configured to respond to a switching ion and move the flexible locking device downwardly into the opening or slot and below the channel surface to allow the at least one further protruding portion to pass by when the battery is rotated in the opposite direction in the battery receiving portion, so that the battery may be moved to the first onal position and removed from the battery receiving portion.
18. A utility pump substantially as herein described with reference to any one of the embodiments rated in
NZ603709A 2011-11-18 2012-11-19 Rechargeable battery powered utility pump with series centrifugal pump configuration NZ603709B (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US13/300174 2011-11-18
US13/300,174 US8894389B2 (en) 2011-08-31 2011-11-18 Rechargeable battery powered utility pump with series centrifugal pump configuration

Publications (2)

Publication Number Publication Date
NZ603709A true NZ603709A (en) 2014-05-30
NZ603709B NZ603709B (en) 2014-09-02

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CA2795964A1 (en) 2013-05-18
AU2012254972A8 (en) 2015-10-29
CN103133357B (en) 2016-12-28
AU2012254972B8 (en) 2015-10-29
CA2795964C (en) 2017-04-11
EP2594801B1 (en) 2017-10-11
DK2594801T3 (en) 2017-11-27
MX2012013390A (en) 2013-06-04
EP2594801A3 (en) 2014-04-30
AU2012254972B2 (en) 2015-07-02
AU2012254972A1 (en) 2013-06-06
EP2594801A2 (en) 2013-05-22
CN103133357A (en) 2013-06-05

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