IP Library Granted Patent US 8,860,243
Granted Patent B2
US 8,860,243 · App. 13/045,709 · Granted Oct 14, 2014

Power supply device and unit

Inventors: Torsten Hering (Uberlingen, DE); Axel Michael Mueller (Friedrichshafen, DE)
Assignee: ZF Friedrichshafen AG
B60L1/00
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Quick Facts
Patent No.
US 8,860,243
App. No.
13/045,709
Granted
Oct 14, 2014
Kind
B2
Abstract

A power supply device for a unit that is to be supplied with electrical energy and typically arranged on a commercial vehicle trailer, for example. The power supply device comprises an electro-hybrid drive system for a commercial vehicle and a supply unit which is designed to convert a direct voltage, from a high-voltage system of the electro-hybrid drive system, into a three-phase alternating voltage. The supply unit comprises an output which transmit the three-phase alternating voltage for supplying power to the unit. The output is designed to form a standardized interface together with the unit. In addition, the unit which can be connected to the power supply device is one of a refrigerator unit, a concrete mixer, a concrete pump or a shredder.

Claims (27)

1. A power supply device ( 1 ) for an electrical energy consumer unit ( 2 ) that is to be supplied with electrical energy and being arranged on a commercial vehicle trailer, the power supply device ( 1 ) comprising:

an electro-hybrid drive system ( 3 ) of a commercial vehicle, comprising a high-voltage battery ( 5 ) and a high-voltage system ( 4 ) having an inverter ( 6 );

the inverter ( 6 ) of the high-voltage system being electrically connected to the high-voltage battery ( 5 ) and an electric motor ( 7 ) of the commercial vehicle, such that the inverter ( 6 ) of the high-voltage system delivers energy from the high-voltage battery ( 5 ) to the electric motor ( 7 );

the electro-hybrid drive system ( 3 ) being directly connected to a supply unit ( 8 ) by a plug-in connection ( 14 ) for converting a direct voltage, from the high-voltage system ( 4 ) of the electro-hybrid drive system ( 3 ), into a three-phase alternating voltage;

the supply unit ( 8 ) comprising a supply unit inverter ( 10 ), a transformer ( 12 ) and an output ( 11 ), the transformer ( 12 ) being connected downstream from the supply unit inverter ( 10 ) and the output ( 11 ) being connected downstream from the transformer ( 12 ) for transmitting the three-phase alternating voltage and supplying power to the consumer unit ( 2 );

the transformer ( 12 ) is a step up transformer; and

the output ( 11 ) is a standardized interface ( 13 ) together with the consumer unit ( 2 ).

2. The power supply device ( 1 ) according to claim 1 , wherein the output ( 11 ), forming the interface ( 13 ), is an industrial three-phase alternating-current plug-and-socket connection.

3. The power supply device ( 1 ) according to claim 1 , wherein the output ( 11 ), for forming the interface ( 13 ), comprises an industrial three-phase alternating-current socket.

4. The power supply device ( 1 ) according to claim 1 , wherein the supply unit ( 8 ) comprises the supply unit inverter ( 10 ), for converting the direct voltage into the three-phase alternating voltage, and the transformer ( 12 ) for stepping up the three-phase alternating voltage.

5. The power supply device ( 1 ) according to claim 1 , wherein the supply unit ( 8 ) provides, at the output ( 11 ) thereof, a three-phase alternating current with a voltage of 400 V and a frequency of 50 Hz.

6. The power supply device ( 1 ) according to claim 1 , wherein the supply unit ( 8 ) is releasably connected to the high-voltage system ( 4 ) by a releasable plug-in connection ( 14 ).

7. The power supply device ( 1 ) according to claim 1 , wherein the supply unit ( 8 ) is located on one of the commercial vehicle and the commercial vehicle trailer.

8. A power supply device ( 1 ) in combination with an electrical energy consumer unit ( 2 ) being arranged on a commercial vehicle trailer, the power supply device ( 1 ) comprising:

an electro-hybrid drive system ( 3 ) of a commercial vehicle comprising a high-voltage battery ( 5 ) and a high-voltage system ( 4 ) having an inverter ( 6 );

the inverter ( 6 ) of the high-voltage system being electrically connected to the high-voltage battery ( 5 ) and an electric motor ( 7 ) of the commercial vehicle, such that the inverter ( 6 ) of the high-voltage system delivers energy from the high-voltage battery ( 5 ) to the electric motor ( 7 ) the electro-hybrid drive system ( 3 ) being directly connected to a supply unit ( 8 ) by a plug-in connection ( 14 ) for converting a direct voltage, from the high-voltage system ( 4 ) of the electro-hybrid drive system ( 3 ), into a three-phase alternating voltage,

the supply unit ( 8 ) comprising a supply unit inverter ( 10 ), a transformer ( 12 ) and an output ( 11 ), the supply unit inverter being connected to the high-voltage system of the electro-hybrid drive system, the transformer ( 12 ) being connected downstream from the supply unit inverter ( 10 ) and the output ( 11 ) being connected downstream from the transformer ( 12 ) for transmitting the three-phase alternating voltage and supplying power to the consumer unit ( 2 ), the output ( 11 ) being a standardized interface ( 13 ) together with the consumer unit ( 2 ), and

the consumer unit ( 2 ) comprising a single input ( 15 ) which forms the standardized interface ( 13 ) with the power supply device ( 1 ) to facilitate connection with a desired power supply unit.

9. The power supply device ( 1 ) in combination with the consumer unit ( 2 ) according to claim 8 , wherein the input ( 15 ) of the consumer unit ( 2 ), for forming the interface ( 13 ), is an industrial three-phase alternating-current plug-and-socket connection.

10. The power supply device ( 1 ) in combination with the consumer unit ( 2 ) according to claim 8 , wherein the consumer unit ( 2 ), to form the interface ( 13 ), comprises an industrial three-phase alternating-current plug.

11. A power supply device ( 1 ) which supplies electrical energy to an electrical energy consumer unit ( 2 ) being arranged on a commercial vehicle trailer, the power supply device ( 1 ) comprising:

an electro-hybrid drive system ( 3 ) of a commercial vehicle comprising a high-voltage battery ( 5 ) and a high-voltage system ( 4 ) having an inverter ( 6 );

the inverter ( 6 ) of the high-voltage system being electrically connected to the high-voltage battery ( 5 ) and an electric motor ( 7 ) of the commercial vehicle, such that the inverter ( 6 ) of the high-voltage system delivers energy from the high-voltage battery ( 5 ) to the electric motor ( 7 );

the electro-hybrid drive system ( 3 ) being directly connected to a supply unit ( 8 ) having a supply unit inverter ( 10 ), a transformer ( 12 ) and an output ( 11 ); the transformer ( 12 ) being connected downstream from the supply unit inverter ( 10 ) and the output ( 11 ) being connected downstream from the transformer ( 12 ),

the electro-hybrid drive system ( 3 ) comprising the high-voltage system ( 4 ) which generates a direct voltage, the direct voltage being transmitted, via a plug-in connection ( 14 ), from the electro-hybrid drive system ( 3 ) to the supply unit inverter ( 10 ),

the supply unit inverter ( 10 ) converting the direct voltage into a three-phase alternating voltage, and

the consumer unit ( 2 ) comprising an input ( 15 ) being connected to the output ( 11 ) via a standardized interface ( 13 ) such that the consumer unit ( 2 ) is supplied with and powered by the three-phase alternating voltage.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2011
From: MUELLER, AXEL MICHAEL; HERING, TORSTEN
To: ZF FRIEDRICHSHAFEN AG
Reel/Frame 025946/0693 →
Priority Claims (1)
DE 10 2010 003 509 · Mar 31, 2010 · national
Continuity (1)
Related Publication 20110241420A1 · Oct 6, 2011