1. A hydraulic assembly for a vehicle brake system with traction control, comprising:
a housing block having receptacles, provided on the housing block, the receptacles provided for receiving hydraulic components for regulating brake pressure at wheel brakes of the vehicle brake system;
the housing block having bores, that carry pressure fluid and switch the receptacles to at least one brake circuit;
the housing block having hydraulic connections for the wheel brakes of the vehicle brake system, for a master cylinder of the vehicle brake system, and having a first hydraulic sensor connection for a first pressure sensor that detects the hydraulic pressure in a hydraulic portion of the vehicle brake system; and
at least one second hydraulic sensor connection for a second pressure sensor being embodied on the housing block, wherein the first and the second hydraulic sensor connections are each disposed on closed ends, located inward, of blind bores that carry pressure fluid, wherein the blind bores put the first and second hydraulic sensor connections into contact with different receptacles for solenoid valves for regulating the brake pressure,
wherein the first hydraulic sensor connection is placed on a center axis extending vertically through the housing block and the at least one second hydraulic sensor connection is disposed on the housing block with horizontal spacing and with vertical spacing compared to the first hydraulic sensor connection, and
wherein the blind bores for contacting the first and second hydraulic sensor connections form an essentially right angle with one another.
2. The hydraulic assembly as defined by claim 1, wherein each of the respective blind bores extends in a common sectional plane through the housing block and each of the respective blind bores is oriented horizontally andor vertically.
3. The hydraulic assembly as defined by claim 1, wherein the respective blind bore of the at least one second hydraulic sensor connection hydraulically connects a respective wheel brake hydraulic connection with a first receptacle of the plurality of receptacles and a second receptacle of the plurality of receptacles, each of the first and second receptacles has a solenoid valve, the first receptacle is configured to receive a solenoid valve that controls pressure buildup in a respective wheel brake and the second receptacle is configured to receive a solenoid valve that controls pressure reduction of the respective wheel brake.
4. A hydraulic assembly for a hydraulic vehicle brake system with traction control, comprising:
a housing block having a plurality of receptacles defined therein, the receptacles being configured to receive hydraulic components for regulating brake pressure at wheel brakes of the vehicle brake system;
the housing block further defining a plurality of bores configured to carry pressure fluid and place the receptacles in fluid communication with at least one brake circuit;
the housing block further defining wheel brake hydraulic connections to the wheel brakes of the vehicle brake system and hydraulic master cylinder connections to a master cylinder of the vehicle brake system;
the housing block further defining a first hydraulic sensor connection for a first pressure sensor configured to detect hydraulic pressure in a hydraulic portion of the vehicle brake system; and
the housing block also defining at least one second hydraulic sensor connection for a second pressure sensor,
wherein a group of hydraulic sensor connections include the first hydraulic sensor connection and the at least one second hydraulic sensor connection,
wherein each hydraulic sensor connection of the group of hydraulic sensor connections is disposed on a closed end of a respective blind bore of the plurality of bores, the respective blind bore being configured to carry pressure fluid,
wherein the respective blind bore places a respective hydraulic sensor connection of the group of hydraulic sensor connections in fluid communication with a respective receptacle of the plurality of receptacles,
wherein the first hydraulic sensor connection is defined on a center axis extending vertically through the housing block, and the at least one second hydraulic sensor connection is defined on the housing block with horizontal spacing and with vertical spacing compared to the first hydraulic sensor connection, and
wherein the respective blind bore of the at least one second hydraulic sensor connection hydraulically connects a respective wheel brake hydraulic connection with a first receptacle of the plurality of receptacles and a second receptacle of the plurality of receptacles, each of the first and second receptacles has a solenoid valve, the first receptacle is configured to receive a solenoid valve that controls pressure buildup in the respective wheel brake and the second receptacle is configured to receive a solenoid valve that controls pressure reduction of the respective wheel brake.
5. The hydraulic assembly as defined by claim 4, wherein the first hydraulic sensor connection is disposed remote from the wheel brake hydraulic connections of the vehicle brake system, relative to the at least one second hydraulic sensor connection.
6. The hydraulic assembly as defined by claim 4, wherein each of the respective blind bores extends in a common sectional plane through the housing block and each of the respective blind bores is oriented horizontally andor vertically.
7. The hydraulic assembly as defined by claim 4, wherein the first hydraulic pressure sensor and the at least one second hydraulic pressure sensor connection discharge toward a common exterior of the housing block.
8. The hydraulic assembly as defined by claim 4, wherein the receptacles are defined in a common exterior of the housing block.
9. The hydraulic assembly as defined by claim 4, wherein the first hydraulic sensor connection is in fluid communication with one of the hydraulic master cylinder connections on the housing block, and each of the at least one second hydraulic sensor connections is in fluid communication with one of the wheel brake hydraulic connections of the housing block.
10. The hydraulic assembly as defined by claim 4, wherein the first hydraulic sensor connection and the at least one second hydraulic sensor fluidly communicate with different hydraulic master cylinder connections.
11. The hydraulic assembly as defined by claim 4, wherein each hydraulic sensor connection of the group of hydraulic sensor connections is disposed on a closed end of only one respective blind bore.
12. A hydraulic assembly for a hydraulic vehicle brake system with traction control, comprising:
a housing block having a plurality of receptacles defined therein, the receptacles being configured to receive hydraulic components for regulating brake pressure at wheel brakes of the vehicle brake system;
the housing block further defining a plurality of bores configured to carry pressure fluid and place the receptacles in fluid communication with at least one brake circuit;
the housing block further defining wheel brake hydraulic connections to the wheel brakes of the vehicle brake system and hydraulic master cylinder connections to a master cylinder of the vehicle brake system;
the housing block further defining a first hydraulic sensor connection for a first pressure sensor configured to detect hydraulic pressure in a hydraulic portion of the vehicle brake system; and
the housing block also defining at least one second hydraulic sensor connection for a second pressure sensor;
wherein a group of hydraulic sensor connections include the first hydraulic sensor connection and the at least one second hydraulic sensor connection,
wherein each hydraulic sensor connection of the group of hydraulic sensor connections is disposed on a closed end of a respective blind bore of the plurality of bores, the respective blind bore being configured to carry pressure fluid,
wherein the respective blind bore places a respective hydraulic sensor connection of the group of hydraulic sensor connections in fluid communication with a respective receptacle of the plurality of receptacles,
wherein the first hydraulic sensor connection is defined on a center axis extending vertically through the housing block, and the at least one second hydraulic sensor connection is defined on the housing block with horizontal spacing and with vertical spacing compared to the first hydraulic sensor connection,
wherein the first hydraulic sensor connection is disposed remote from the wheel brake hydraulic connections of the vehicle brake system, relative to the at least one second hydraulic sensor connection,
wherein each of the respective blind bores extends in a common sectional plane through the housing block and each of the respective blind bores is oriented horizontally andor vertically, and
wherein the first hydraulic sensor connection and the at least one second hydraulic sensor connection are defined in a common exterior of the housing block.
13. The hydraulic assembly as defined by claim 12, wherein the respective blind bore of the at least one second hydraulic sensor connection hydraulically connects a respective wheel brake hydraulic connection with a first receptacle of the plurality of receptacles and a second receptacle of the plurality of receptacles, each of the first and second receptacles has a solenoid valve, the first receptacle is configured to receive a solenoid valve that controls pressure buildup in a respective wheel brake and the second receptacle is configured to receive a solenoid valve that controls pressure reduction of the respective wheel brake.
14. The hydraulic assembly as defined by claim 12, wherein the receptacles are defined in the common exterior of the housing block.
15. The hydraulic assembly as defined by claim 14, wherein the first hydraulic sensor connection is in fluid communication with one of the hydraulic master cylinder connections on the housing bloc, and each of the at least one second hydraulic sensor connections is in fluid communication with one of the wheel brake hydraulic connections of the housing block.
16. The hydraulic assembly as defined by claim 15, wherein the first hydraulic sensor connection and the at east one second hydraulic sensor connection communicate with different hydraulic master cylinder connections.
17. A hydraulic assembly for a vehicle brake system with traction control, comprising:
a housing block having a plurality of receptacles defined therein, the receptacles being configured to receive hydraulic components for regulating brake pressure at wheel brakes of the vehicle brake system;
the housing block further defining a plurality of bores configured to carry pressure fluid and place the receptacles in fluid communication with at least one brake circuit;
the housing block further defining a first hydraulic sensor connection for a first pressure sensor configured to detect hydraulic pressure in a hydraulic portion of the vehicle brake system; and
the housing block also defining at least one second hydraulic sensor connection for a second pressure sensor,
wherein the first hydraulic sensor connection is disposed on a closed end of a first blind bore of the plurality of bores and each of the at least one second hydraulic sensor connections are disposed on a closed end of a respective second blind bore of the plurality of bores,
wherein the first blind bore places the first hydraulic sensor connection in fluid communication with a first receptacle of the plurality of receptacles,
wherein the respective second blind bore places a respective hydraulic sensor connection of the at least one second hydraulic sensor connection in fluid communication with a respective receptacle of the plurality of receptacles, and
wherein the first blind bore is defined within the housing block at an essentially right angle with respect to the second blind bore.
18. A hydraulic assembly for a hydraulic vehicle brake system with traction control, comprising:
a housing block having a plurality of receptacles defined therein, the receptacles being configured to receive hydraulic components for regulating brake pressure at wheel brakes of the vehicle brake system;
the housing block further defining a plurality of bores configured to carry pressure fluid and place the receptacles in fluid communication with at least one brake circuit;
the housing block further defining a first hydraulic sensor connection for a first pressure sensor configured to detect hydraulic pressure in a hydraulic portion of the vehicle brake system; and
the housing block also defining at least one second hydraulic sensor connection for a second pressure sensor,
wherein a group of hydraulic sensor connections include the first hydraulic sensor connection and the at least one second hydraulic sensor connection,
wherein each hydraulic sensor connection of the group of hydraulic sensor connections is disposed on a closed end of a respective blind bore of the plurality of bores, the respective blind bore being configured to carry pressure fluid,
wherein the respective blind bore places a respective hydraulic sensor connection of the group of hydraulic sensor connections in fluid communication with a respective receptacle of the plurality of receptacles, and
wherein the respective blind bore of the at least one second hydraulic sensor connection hydraulically connects a respective wheel brake hydraulic connection with a first receptacle of the plurality of receptacles and a second receptacle of the plurality of receptacles, each of the first and second receptacles has a solenoid valve, the first receptacle is configured to receive a solenoid valve that controls pressure buildup in a respective wheel brake and the second receptacle is configured to receive a solenoid valve that controls pressure reduction of the respective wheel brake.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A playback apparatus comprising:
a conversion unit that converts a frame rate of video data; and
a control unit,
wherein the control unit controls not to perform a first process before first video data is transmitted to a display apparatus if a frame rate of the first video data is equal to or more than a first predetermined frame rate, wherein the first video data includes video data which is reproduced if a slow playback is instructed to the playback apparatus, and the first process includes a process for reducing number of frames included in the first video data,
wherein the control unit controls to perform a second process if the frame rate of the first video data is equal to or more than the first predetermined frame rate, wherein the second process includes a process for increasing number of frames included in video data received by the display apparatus,
wherein the control unit controls to generate second video data by performing a third process if the frame rate of the first video data is not more than the first predetermined frame rate, wherein the third process includes a process for increasing number of frames included in the first video data, and
wherein the control unit controls to transmit the second video data to the display apparatus if the frame rate of the first video data is not more than the first predetermined frame rate.
2. The playback apparatus according to claim 1, wherein the control unit controls not to perform the second process if the frame rate of the first video data is not more than the first predetermined frame rate.
3. The playback apparatus according to claim 1, wherein the control unit controls not to perform fourth process before third video data is transmitted to the display apparatus if a frame rate of the third video data is not equal to or more than a second predetermined frame rate, wherein the third video data includes video data which is reproduced if a fast forward is instructed to the playback apparatus, and the fourth process includes a process for reducing number of frames included in the third video data.
4. The playback apparatus according to claim 3, wherein the control unit controls not to perform the second process if the frame rate of the third video data is not equal to or more than the second predetermined frame rate.
5. The playback apparatus according to claim 3, wherein the control unit controls to generates fourth video data by performing fifth process if the frame rate of the third video data is more than the second predetermined frame rate, the fifth process includes a process for reducing number of frames included in the third video data, and the control unit controls to transmit the fourth video data to the display apparatus if the frame rate of the third video data is more than the second predetermined frame rate.
6. A method of controlling a playback apparatus, the method comprising:
converting a frame rate of video data; and
controlling, wherein controlling includes
controlling not to perform a first process before first video data is transmitted to a display apparatus if a frame rate of the first video data is equal to or more than a first predetermined frame rate, wherein the first video data includes video data which is reproduced if a slow playback is instructed to the playback apparatus, and the first process includes a process for reducing number of frames included in the first video data,
controlling to perform a second process if the frame rate of the first video data is equal to or more than the first predetermined frame rate, wherein the second process includes a process for increasing number of frames included in video data received by the display apparatus,
controlling to generate second video data by performing a third process if the frame rate of the first video data is not more than the first predetermined frame rate, wherein the third process includes a process for increasing number of frames included in the first video data, and
controlling to transmit the second video data to the display apparatus if the frame rate of the first video data is not more than the first predetermined frame rate.
7. The method according to claim 6, wherein controlling further includes controlling not to perform the second process if the frame rate of the first video data is not more than the first predetermined frame rate.
8. The method according to claim 6, wherein controlling further includes controlling not to perform fourth process before third video data is transmitted to the display apparatus if a frame rate of the third video data is not equal to or more than a second predetermined frame rate, wherein the third video data includes video data which is reproduced if a fast forward is instructed to the playback apparatus, and the fourth process includes a process for reducing number of frames included in the third video data.
9. The method according to claim 8, wherein controlling further includes controlling not to perform the second process if the frame rate of the third video data is not equal to or more than the second predetermined frame rate.
10. The method according to claim 8, wherein controlling further includes controlling to generate fourth video data by performing fifth process if the frame rate of the third video data is more than the second predetermined frame rate, wherein the fifth process includes a process for reducing number of frames included in the third video data, and includes
controlling to transmit the fourth video data to the display apparatus if the frame rate of the third video data is more than the second predetermined frame rate.
11. A non-transitory storage medium storing a program executed by for a computer, wherein the program for using the computer to perform a method of controlling a playback apparatus, the method comprising:
converting a frame rate of video data; and
controlling, wherein controlling includes
controlling not to perform a first process before first video data is transmitted to a display apparatus if a frame rate of the first video data is equal to or more than a first predetermined frame rate, wherein the first video data includes video data which is reproduced if a slow playback is instructed to the playback apparatus, and the first process includes a process for reducing number of frames included in the first video data,
controlling to perform a second process if the frame rate of the first video data is equal to or more than the first predetermined frame rate, wherein the second process includes a process for increasing number of frames included in video data received by the display apparatus,
controlling to generate second video data by performing a third process if the frame rate of the first video data is not more than the first predetermined frame rate, wherein the third process includes a process for increasing number of frames included in the first video data, and
controlling to transmit the second video data to the display apparatus if the frame rate of the first video data is not more than the first predetermined frame rate.