摘要:
To adaptively switch a modulation mode according to an operation form of quality-priority and capacity-priority in a multi-value applicable radio device having an active/standby configuration. The comparison unit 28a compares a reception monitoring signal c1 of an active transmission line with a lower-limit threshold LS and an upper-limit threshold HS, while the comparison unit 28b compares a reception monitoring signal c2 of a standby transmission line with the lower-limit threshold and the upper-limit threshold. Then, they output their respective results to a determination unit 28c. The determination unit 28c has therein a low-level flag and a high-level flag that are set/reset based on comparison results in the comparison units 28a and 28b. Conditions for the set/reset are different depending on the operation form. The determination unit 28c determines a modulation mode based on comparison results in the comparison units 28a and 28b and the states of the low-level flags and high-level flags, and outputs modulation mode switching control information e1 and e2.
摘要:
To adaptively switch a modulation mode according to an operation form of quality-priority and capacity-priority in a multi-value applicable radio device having an active/standby configuration. The comparison unit 28a compares a reception monitoring signal c1 of an active transmission line with a lower-limit threshold LS and an upper-limit threshold HS, while the comparison unit 28b compares a reception monitoring signal c2 of a standby transmission line with the lower-limit threshold and the upper-limit threshold. Then, they output their respective results to a determination unit 28c. The determination unit 28c has therein a low-level flag and a high-level flag that are set/reset based on comparison results in the comparison units 28a and 28b. Conditions for the set/reset are different depending on the operation form. The determination unit 28c determines a modulation mode based on comparison results in the comparison units 28a and 28b and the states of the low-level flags and high-level flags, and outputs modulation mode switching control information e1 and e2.
摘要:
A vehicle air intake system includes a grille disposed along the front portion of an engine compartment, a hood disposed over the engine compartment and a bulkhead cover disposed in the engine compartment below the hood. The bulkhead cover has a bulkhead cover intake port and a deflector disposed along and extending forwardly from a lower portion of the bulkhead cover intake port to circuitously redirect airflow passing from the grille to the bulkhead cover intake port.
摘要:
A vehicle air intake system includes a grille disposed along the front portion of an engine compartment, a hood disposed over the engine compartment and a bulkhead cover disposed in the engine compartment below the hood. The bulkhead cover has a bulkhead cover intake port and a deflector disposed along and extending forwardly from a lower portion of the bulkhead cover intake port to circuitously redirect airflow passing from the grille to the bulkhead cover intake port.
摘要:
The present invention provides a mixing faucet that can use a low-cost temperature sensing spring. A mixing faucet (1) includes a casing (2) having a hot water inlet opening (24), a cold water inlet opening (23), and an outlet opening (28); a control valve element (3) slidably mounted in the casing (2) and capable of switching between any one of a cold water discharge state, a mixed water discharge state, and a hot water discharge state; a temperature adjusting screw (7) rotatably disposed at one end in the casing (2); a slider (6) sliding in the casing (2) through rotation of the temperature adjusting screw (7); a bias spring (5) disposed in the casing (2), between the control valve element (3) and the slider (6), and biasing the control valve element (3) toward the cold water inlet opening (23); a temperature sensing spring (4) which biases, in the casing (2), the control valve element (3) toward the hot water inlet opening (24), and the elastic force of which changes in accordance with changes in the temperature of hot water flowing in the casing (2); and a pull-up spring (10) for biasing the control valve element (3) toward the hot water inlet opening (24) in the cold water discharge state and in the mixed water discharge state.
摘要:
A liquid crystal display device having a first sub pixel and a second sub pixel. The first sub pixel corresponds to a first color layer having a first color. The second sub pixel, corresponds to a second color layer having a second color. The first and second sub pixels each have a rectangular shape that includes a pair of longer sides. A first reflective region and a second reflective region, in which first and second reflective films are disposed, each extend across the first sub pixel and the second sub pixel respectively between the longer sides. A first transmissive region and a second transmissive region, in which the reflective films are not disposed, each extend entirely across the first sub pixel and the second sub pixel respectively between the longer sides, An area of the first reflective region is different from an area of the second reflective region.
摘要:
In an IC mounting region 70 of a substrate 20 constituting a liquid crystal device, first terminals 91A, 91B, and 91C are divided into a plurality of terminals 911A, 912A, 913A, 914A, 921B, 922B, 921C, and 922C by slits 96 formed of portions where an ITO film forming wiring patterns 91 and the first terminals 91 is not formed. For this reason, when the first terminals 91 and first electrodes 71 are electrically and mechanically connected by an anisotropic conductive film, a resin component contained in the anisotropic conductive film fixedly bonds a driving IC 7 to the second transparent substrate 20 while it enters the slits 96. Since the area of the resin component 61 of the anisotropic conductive film in contact with the first terminals 91 is large, fixing strength of the IC 7 is increased.
摘要:
A liquid crystal device comprising a pair of substrates 3a and 3b which are bonded together by a sealing material 2, and a plurality of electrodes 9a and 9b which are formed on the inside surfaces of these substrates. The electrodes 9a have wiring lines 17a and 17b which pass through the sealing material 2 and extend to a substrate projecting part 4a, and dummy patterns 19a which pass through the sealing material 2 at the side opposite to the wiring lines 17a and 17b; dummy patterns 19a are formed with a width which is smaller than the width of the electrodes 9a inside the region surrounded by the sealing material 2; preferably, they are formed with the same width as the wiring lines 17a.
摘要:
An automobile air intake system is provided that channels air from outside the automobile engine compartment to the engine. The automobile air intake system according to an embodiment of the invention includes an intake enclosure coupled to a bulkhead across the front of the engine compartment. The automobile grille, radiator, and a front portion of the hood in front of the bulkhead form a flow channel to an intake port of the intake enclosure. Aspects of the invention include a screen extending from the bulkhead to the grille for inhibiting the flow of water and particles through the flow channel. Other aspects provide an alternative air path for channeling air from the engine compartment to the intake enclosure.
摘要:
An automobile air intake system is provided that channels air from outside the automobile engine compartment to the engine. The automobile air intake system according to an embodiment of the invention includes an intake enclosure coupled to a bulkhead across the front of the engine compartment. The automobile grille, radiator, and a front portion of the hood in front of the bulkhead form a flow channel to an intake port of the intake enclosure. Aspects of the invention include a screen extending from the bulkhead to the grille for inhibiting the flow of water and particles through the flow channel. Other aspects provide an alternative air path for channeling air from the engine compartment to the intake enclosure.