IP Library Granted Patent US 11,649,893
Granted Patent B1
US 11,649,893 · App. 17/650,211 · Granted May 16, 2023

Direct drive unit for a transmission system

Inventors: Kurt Cattoor (Koolkerke, BE); Filip D. Schacht (Meulebeke, BE); Joachim Van Dingenen (Drongen, BE); Tommy Van Acker (Lievegem, BE)
Assignee: Dana Belgium N.V.
F16H61/143B60K17/02F16H47/085F16H61/688F16H2061/145
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Quick Facts
Patent No.
US 11,649,893
App. No.
17/650,211
Granted
May 16, 2023
Kind
B1
Abstract

A torque convertor and direct drive unit arrangement and operating methods are provided herein. In one example, a prime mover may be configured to be coupled to a transmission via one of a torque convertor and a direct drive unit, the direct drive unit including a higher range clutch and a lower range clutch.

Claims (26)

1. A method for a vehicle, comprising:

during a first condition, connecting an engine to a transmission via a torque converter; and

during a second condition, decoupling the torque converter and connecting the engine to the transmission via a direct drive unit including a higher range clutch and a lower range clutch, wherein the first condition includes a vehicle start and a higher than threshold desire for tractive effort, and wherein the second condition includes a speed variance between two opposing rotational interfaces of the torque converter being smaller than a threshold value, the two opposing rotational interfaces coupled to the engine and the transmission, respectively.

2. The method of claim 1 , wherein during the second condition, one of the higher range clutch and the lower range clutch is connected to an input shaft of the transmission.

3. The method of claim 2 , wherein the higher range clutch is connected to the input shaft during a higher than threshold vehicle speed condition and the lower range clutch is connected to the input shaft during a lower than threshold vehicle speed condition.

4. The method of claim 2 , wherein the transmission includes a first set of directional clutches and a second set of range clutches positioned downstream of the first set of directional clutches.

5. The method of claim 4 , wherein the directional clutches include a forward clutch and a reverse clutch, and wherein the range clutches include a plurality of clutches.

6. The method of claim 5 , wherein during the first condition, the torque converter is connected to one of the forward clutch and the reverse clutch, and the one of the forward clutch and the reverse clutch connected to the torque converter is connected to one of the range clutches.

7. The method of claim 5 , wherein during the second condition, the one of higher range clutch and the lower range clutch connected to the input shaft of the transmission is connected to one of the forward clutch and the reverse clutch, and the one of the forward clutch and the reverse clutch connected to the direct drive unit is connected to one of the range clutches.

8. The method of claim 2 , wherein the decoupling the torque converter is via a disconnect clutch connected to the input shaft between the engine and the transmission.

9. A method for a vehicle, comprising:

during a first condition, connecting an engine to a transmission via a torque converter; and

during a second condition, decoupling the torque converter and connecting the engine to the transmission via a direct drive unit including a higher range clutch and a lower range clutch, wherein during the second condition, one of the higher range clutch and the lower range clutch is connected to an input shaft of the transmission, wherein the higher range clutch is connected to the input shaft during a higher than threshold vehicle speed condition and the lower range clutch is connected to the input shaft during a lower than threshold vehicle speed condition.

10. The method of claim 9 , wherein the first condition includes a vehicle start and a higher than threshold desire for tractive effort, and wherein the second condition includes a speed variance between two opposing rotational interfaces of the torque converter being smaller than a threshold value, the two opposing rotational interfaces coupled to the engine and the transmission, respectively.

11. The method of claim 9 , wherein the transmission includes a first set of directional clutches and a second set of range clutches positioned downstream of the first set of directional clutches.

12. The method of claim 11 , wherein the directional clutches include a forward clutch and a reverse clutch, and wherein the range clutches include a plurality of clutches.

13. The method of claim 12 , wherein during the first condition, the torque converter is connected to one of the forward clutch and the reverse clutch, and the one of the forward clutch and the reverse clutch connected to the torque converter is connected to one of the range clutches.

14. The method of claim 12 , wherein during the second condition, the one of higher range clutch and the lower range clutch connected to the input shaft of the transmission is connected to one of the forward clutch and the reverse clutch, and the one of the forward clutch and the reverse clutch connected to the direct drive unit is connected to one of the range clutches.

15. The method of claim 9 , wherein the decoupling the torque converter is via a disconnect clutch connected to the input shaft between the engine and the transmission.

16. A method for a vehicle, comprising:

during a first condition, connecting an engine to a transmission via a torque converter; and

during a second condition, decoupling the torque converter and connecting the engine to the transmission via a direct drive unit including a higher range clutch and a lower range clutch, wherein the transmission includes a first set of directional clutches and a second set of range clutches positioned downstream of the first set of directional clutches.

17. The method of claim 16 , wherein the first condition includes a vehicle start and a higher than threshold desire for tractive effort, and wherein the second condition includes a speed variance between two opposing rotational interfaces of the torque converter being smaller than a threshold value, the two opposing rotational interfaces coupled to the engine and the transmission, respectively, and wherein during the second condition, one of the higher range clutch and the lower range clutch is connected to an input shaft of the transmission.

18. The method of claim 17 , wherein the higher range clutch is connected to the input shaft during a higher than threshold vehicle speed condition and the lower range clutch is connected to the input shaft during a lower than threshold vehicle speed condition, and wherein decoupling the torque converter is via a disconnect clutch connected to the input shaft between the engine and the transmission.

19. The method of claim 17 , wherein the directional clutches include a forward clutch and a reverse clutch, and wherein the range clutches include a plurality of clutches, and wherein during the first condition, the torque converter is connected to one of the forward clutch and the reverse clutch, and the one of the forward clutch and the reverse clutch connected to the torque converter is connected to one of the range clutches.

20. The method of claim 19 , wherein during the second condition, the one of higher range clutch and the lower range clutch connected to the input shaft of the transmission is connected to one of the forward clutch and the reverse clutch, and the one of the forward clutch and the reverse clutch connected to the direct drive unit is connected to one of the range clutches.

Assignments (2)
CHANGE OF NAME Recorded Oct 27, 2025
From: DANA BELGIUM N.V.
To: DANA BELGIUM
Reel/Frame 073288/0564 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2022
From: CATTOOR, KURT; SCHACHT, FILIP D.; VAN DINGENEN, JOACHIM; VAN ACKER, TOMMY
To: DANA BELGIUM N.V.
Reel/Frame 058914/0617 →