翻訳と辞書
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・ Traffic policing (communications)
・ Traffic Power
・ Traffic psychology
・ Traffic pumping
・ Traffic Radio
・ Traffic Ramaswamy
・ Traffic regulations
・ Traffic reporting
・ Traffic robots in Kinshasa
・ Traffic Safety (book)
・ Traffic Safety and the Driver
・ Traffic Safety Store
・ Traffic school
・ Traffic Separation Scheme
・ Traffic Server
Traffic Service Position System
・ Traffic shaping
・ Traffic sign
・ Traffic sign design
・ Traffic sign recognition
・ Traffic Signal (film)
・ Traffic signal operations specialist
・ Traffic signal preemption
・ Traffic Signs Regulations and General Directions
・ Traffic simulation
・ Traffic Sound
・ Traffic Sports Marketing
・ Traffic Sports USA
・ Traffic stop
・ Traffic ticket


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Traffic Service Position System : ウィキペディア英語版
:''"TSPS" redirects here. For the school, see The Sheffield Private School.''Traffic Service Position System''' ('''TSPS''') was developed by Bell Labs in Columbus, Ohio to replace traditional cord switchboards. The first TSPS was deployed in 1969 and used the Stored Program Control-1A CPU, "Piggyback" twistor memory (a proprietary technology developed by Bell Labs similar to core memory) and IGFET Insulated Gate Field Effect Transistor solid state memory devices similar to DRAM Dynamic Random Access Memory.==How it works==The TSPS system utilized special analog trunks that originated at Class 5 End Office circuit switch systems and Class 4 Toll Access circuit switch systems that were connected to Class 3 Primary Toll circuit switch systems such as the 4A-ETS/PBC and 4ESS switch systems. The TSPS system did not perform switching between the originating end office switch and the toll switch for the subscriber voice path.The TSPS system included a feature known as "Remote Trunking Arrangement" or (RTA) that consolidated the trunk connection at the originating switch and provided a switched connection to a telephone operator only as required for a short duration at the beginning of a call to obtain billing information or at the end of a call in which the caller requested "time and charges". See the Bell System Technical Journal for several articles on the TSPS system and RTA enhancement. Some telecom manufacturers wrongly claimed intellectual property rights in the late 1990s on the RTA concept developed by Bell Labs in the 1970s.The TSPS system provided a temporary switched connection to a Toll Operator who helped facilitate calls requiring human assistance such as Person-to-Person, Collect, Third-Party-Billed, and Hotel Billing. The TSPS system supported up to seven "Chief Operator Groups" (COGs) with each COG supporting up to 31 operator consoles. Operator consoles initially used nixie tube displays that were quickly replaced by light-emitting diode displays due to reliability issues.The TSPS system was ultimately replaced by the OSPS or Operator Service Position System feature package developed for the 5ESS switching system. During the era of TSPS systems, calls to mobile and marine radiotelephone customers were initially handled by operators at a Special Operator Service Treatment cord board. Operator assisted calls to international destinations were handled by "Code 10" and "Code 11" operators generally co-located at special gateway International Switching Systems.
:''"TSPS" redirects here. For the school, see The Sheffield Private School.''
Traffic Service Position System (TSPS) was developed by Bell Labs in Columbus, Ohio to replace traditional cord switchboards. The first TSPS was deployed in 1969 and used the Stored Program Control-1A CPU, "Piggyback" twistor memory (a proprietary technology developed by Bell Labs similar to core memory) and IGFET Insulated Gate Field Effect Transistor solid state memory devices similar to DRAM Dynamic Random Access Memory.
==How it works==
The TSPS system utilized special analog trunks that originated at Class 5 End Office circuit switch systems and Class 4 Toll Access circuit switch systems that were connected to Class 3 Primary Toll circuit switch systems such as the 4A-ETS/PBC and 4ESS switch systems. The TSPS system did not perform switching between the originating end office switch and the toll switch for the subscriber voice path.
The TSPS system included a feature known as "Remote Trunking Arrangement" or (RTA) that consolidated the trunk connection at the originating switch and provided a switched connection to a telephone operator only as required for a short duration at the beginning of a call to obtain billing information or at the end of a call in which the caller requested "time and charges". See the Bell System Technical Journal for several articles on the TSPS system and RTA enhancement. Some telecom manufacturers wrongly claimed intellectual property rights in the late 1990s on the RTA concept developed by Bell Labs in the 1970s.
The TSPS system provided a temporary switched connection to a Toll Operator who helped facilitate calls requiring human assistance such as Person-to-Person, Collect, Third-Party-Billed, and Hotel Billing. The TSPS system supported up to seven "Chief Operator Groups" (COGs) with each COG supporting up to 31 operator consoles. Operator consoles initially used nixie tube displays that were quickly replaced by light-emitting diode displays due to reliability issues.
The TSPS system was ultimately replaced by the OSPS or Operator Service Position System feature package developed for the 5ESS switching system. During the era of TSPS systems, calls to mobile and marine radiotelephone customers were initially handled by operators at a Special Operator Service Treatment cord board. Operator assisted calls to international destinations were handled by "Code 10" and "Code 11" operators generally co-located at special gateway International Switching Systems.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
ウィキペディアで「:''"TSPS" redirects here. For the school, see The Sheffield Private School.'''''Traffic Service Position System''' ('''TSPS''') was developed by Bell Labs in Columbus, Ohio to replace traditional cord switchboards. The first TSPS was deployed in 1969 and used the Stored Program Control-1A CPU, "Piggyback" twistor memory (a proprietary technology developed by Bell Labs similar to core memory) and IGFET Insulated Gate Field Effect Transistor solid state memory devices similar to DRAM Dynamic Random Access Memory.==How it works==The TSPS system utilized special analog trunks that originated at Class 5 End Office circuit switch systems and Class 4 Toll Access circuit switch systems that were connected to Class 3 Primary Toll circuit switch systems such as the 4A-ETS/PBC and 4ESS switch systems. The TSPS system did not perform switching between the originating end office switch and the toll switch for the subscriber voice path.The TSPS system included a feature known as "Remote Trunking Arrangement" or (RTA) that consolidated the trunk connection at the originating switch and provided a switched connection to a telephone operator only as required for a short duration at the beginning of a call to obtain billing information or at the end of a call in which the caller requested "time and charges". See the Bell System Technical Journal for several articles on the TSPS system and RTA enhancement. Some telecom manufacturers wrongly claimed intellectual property rights in the late 1990s on the RTA concept developed by Bell Labs in the 1970s.The TSPS system provided a temporary switched connection to a Toll Operator who helped facilitate calls requiring human assistance such as Person-to-Person, Collect, Third-Party-Billed, and Hotel Billing. The TSPS system supported up to seven "Chief Operator Groups" (COGs) with each COG supporting up to 31 operator consoles. Operator consoles initially used nixie tube displays that were quickly replaced by light-emitting diode displays due to reliability issues.The TSPS system was ultimately replaced by the OSPS or Operator Service Position System feature package developed for the 5ESS switching system. During the era of TSPS systems, calls to mobile and marine radiotelephone customers were initially handled by operators at a Special Operator Service Treatment cord board. Operator assisted calls to international destinations were handled by "Code 10" and "Code 11" operators generally co-located at special gateway International Switching Systems.」の詳細全文を読む
'Traffic Service Position System (TSPS) was developed by Bell Labs in Columbus, Ohio to replace traditional cord switchboards. The first TSPS was deployed in 1969 and used the Stored Program Control-1A CPU, "Piggyback" twistor memory (a proprietary technology developed by Bell Labs similar to core memory) and IGFET Insulated Gate Field Effect Transistor solid state memory devices similar to DRAM Dynamic Random Access Memory.==How it works==The TSPS system utilized special analog trunks that originated at Class 5 End Office circuit switch systems and Class 4 Toll Access circuit switch systems that were connected to Class 3 Primary Toll circuit switch systems such as the 4A-ETS/PBC and 4ESS switch systems. The TSPS system did not perform switching between the originating end office switch and the toll switch for the subscriber voice path.The TSPS system included a feature known as "Remote Trunking Arrangement" or (RTA) that consolidated the trunk connection at the originating switch and provided a switched connection to a telephone operator only as required for a short duration at the beginning of a call to obtain billing information or at the end of a call in which the caller requested "time and charges". See the Bell System Technical Journal for several articles on the TSPS system and RTA enhancement. Some telecom manufacturers wrongly claimed intellectual property rights in the late 1990s on the RTA concept developed by Bell Labs in the 1970s.The TSPS system provided a temporary switched connection to a Toll Operator who helped facilitate calls requiring human assistance such as Person-to-Person, Collect, Third-Party-Billed, and Hotel Billing. The TSPS system supported up to seven "Chief Operator Groups" (COGs) with each COG supporting up to 31 operator consoles. Operator consoles initially used nixie tube displays that were quickly replaced by light-emitting diode displays due to reliability issues.The TSPS system was ultimately replaced by the OSPS or Operator Service Position System feature package developed for the 5ESS switching system. During the era of TSPS systems, calls to mobile and marine radiotelephone customers were initially handled by operators at a Special Operator Service Treatment cord board. Operator assisted calls to international destinations were handled by "Code 10" and "Code 11" operators generally co-located at special gateway International Switching Systems.

:''"TSPS" redirects here. For the school, see The Sheffield Private School.''
Traffic Service Position System (TSPS) was developed by Bell Labs in Columbus, Ohio to replace traditional cord switchboards. The first TSPS was deployed in 1969 and used the Stored Program Control-1A CPU, "Piggyback" twistor memory (a proprietary technology developed by Bell Labs similar to core memory) and IGFET Insulated Gate Field Effect Transistor solid state memory devices similar to DRAM Dynamic Random Access Memory.
==How it works==
The TSPS system utilized special analog trunks that originated at Class 5 End Office circuit switch systems and Class 4 Toll Access circuit switch systems that were connected to Class 3 Primary Toll circuit switch systems such as the 4A-ETS/PBC and 4ESS switch systems. The TSPS system did not perform switching between the originating end office switch and the toll switch for the subscriber voice path.
The TSPS system included a feature known as "Remote Trunking Arrangement" or (RTA) that consolidated the trunk connection at the originating switch and provided a switched connection to a telephone operator only as required for a short duration at the beginning of a call to obtain billing information or at the end of a call in which the caller requested "time and charges". See the Bell System Technical Journal for several articles on the TSPS system and RTA enhancement. Some telecom manufacturers wrongly claimed intellectual property rights in the late 1990s on the RTA concept developed by Bell Labs in the 1970s.
The TSPS system provided a temporary switched connection to a Toll Operator who helped facilitate calls requiring human assistance such as Person-to-Person, Collect, Third-Party-Billed, and Hotel Billing. The TSPS system supported up to seven "Chief Operator Groups" (COGs) with each COG supporting up to 31 operator consoles. Operator consoles initially used nixie tube displays that were quickly replaced by light-emitting diode displays due to reliability issues.
The TSPS system was ultimately replaced by the OSPS or Operator Service Position System feature package developed for the 5ESS switching system. During the era of TSPS systems, calls to mobile and marine radiotelephone customers were initially handled by operators at a Special Operator Service Treatment cord board. Operator assisted calls to international destinations were handled by "Code 10" and "Code 11" operators generally co-located at special gateway International Switching Systems.

抄文引用元・出典: フリー百科事典『 ''Traffic Service Position System (TSPS) was developed by Bell Labs in Columbus, Ohio to replace traditional cord switchboards. The first TSPS was deployed in 1969 and used the Stored Program Control-1A CPU, "Piggyback" twistor memory (a proprietary technology developed by Bell Labs similar to core memory) and IGFET Insulated Gate Field Effect Transistor solid state memory devices similar to DRAM Dynamic Random Access Memory.==How it works==The TSPS system utilized special analog trunks that originated at Class 5 End Office circuit switch systems and Class 4 Toll Access circuit switch systems that were connected to Class 3 Primary Toll circuit switch systems such as the 4A-ETS/PBC and 4ESS switch systems. The TSPS system did not perform switching between the originating end office switch and the toll switch for the subscriber voice path.The TSPS system included a feature known as "Remote Trunking Arrangement" or (RTA) that consolidated the trunk connection at the originating switch and provided a switched connection to a telephone operator only as required for a short duration at the beginning of a call to obtain billing information or at the end of a call in which the caller requested "time and charges". See the Bell System Technical Journal for several articles on the TSPS system and RTA enhancement. Some telecom manufacturers wrongly claimed intellectual property rights in the late 1990s on the RTA concept developed by Bell Labs in the 1970s.The TSPS system provided a temporary switched connection to a Toll Operator who helped facilitate calls requiring human assistance such as Person-to-Person, Collect, Third-Party-Billed, and Hotel Billing. The TSPS system supported up to seven "Chief Operator Groups" (COGs) with each COG supporting up to 31 operator consoles. Operator consoles initially used nixie tube displays that were quickly replaced by light-emitting diode displays due to reliability issues.The TSPS system was ultimately replaced by the OSPS or Operator Service Position System feature package developed for the 5ESS switching system. During the era of TSPS systems, calls to mobile and marine radiotelephone customers were initially handled by operators at a Special Operator Service Treatment cord board. Operator assisted calls to international destinations were handled by "Code 10" and "Code 11" operators generally co-located at special gateway International Switching Systems.">ウィキペディア(Wikipedia)
''Traffic Service Position System (TSPS) was developed by Bell Labs in Columbus, Ohio to replace traditional cord switchboards. The first TSPS was deployed in 1969 and used the Stored Program Control-1A CPU, "Piggyback" twistor memory (a proprietary technology developed by Bell Labs similar to core memory) and IGFET Insulated Gate Field Effect Transistor solid state memory devices similar to DRAM Dynamic Random Access Memory.==How it works==The TSPS system utilized special analog trunks that originated at Class 5 End Office circuit switch systems and Class 4 Toll Access circuit switch systems that were connected to Class 3 Primary Toll circuit switch systems such as the 4A-ETS/PBC and 4ESS switch systems. The TSPS system did not perform switching between the originating end office switch and the toll switch for the subscriber voice path.The TSPS system included a feature known as "Remote Trunking Arrangement" or (RTA) that consolidated the trunk connection at the originating switch and provided a switched connection to a telephone operator only as required for a short duration at the beginning of a call to obtain billing information or at the end of a call in which the caller requested "time and charges". See the Bell System Technical Journal for several articles on the TSPS system and RTA enhancement. Some telecom manufacturers wrongly claimed intellectual property rights in the late 1990s on the RTA concept developed by Bell Labs in the 1970s.The TSPS system provided a temporary switched connection to a Toll Operator who helped facilitate calls requiring human assistance such as Person-to-Person, Collect, Third-Party-Billed, and Hotel Billing. The TSPS system supported up to seven "Chief Operator Groups" (COGs) with each COG supporting up to 31 operator consoles. Operator consoles initially used nixie tube displays that were quickly replaced by light-emitting diode displays due to reliability issues.The TSPS system was ultimately replaced by the OSPS or Operator Service Position System feature package developed for the 5ESS switching system. During the era of TSPS systems, calls to mobile and marine radiotelephone customers were initially handled by operators at a Special Operator Service Treatment cord board. Operator assisted calls to international destinations were handled by "Code 10" and "Code 11" operators generally co-located at special gateway International Switching Systems.">ウィキペディアで「:''"TSPS" redirects here. For the school, see The Sheffield Private School.''Traffic Service Position System (TSPS''') was developed by Bell Labs in Columbus, Ohio to replace traditional cord switchboards. The first TSPS was deployed in 1969 and used the Stored Program Control-1A CPU, "Piggyback" twistor memory (a proprietary technology developed by Bell Labs similar to core memory) and IGFET Insulated Gate Field Effect Transistor solid state memory devices similar to DRAM Dynamic Random Access Memory.==How it works==The TSPS system utilized special analog trunks that originated at Class 5 End Office circuit switch systems and Class 4 Toll Access circuit switch systems that were connected to Class 3 Primary Toll circuit switch systems such as the 4A-ETS/PBC and 4ESS switch systems. The TSPS system did not perform switching between the originating end office switch and the toll switch for the subscriber voice path.The TSPS system included a feature known as "Remote Trunking Arrangement" or (RTA) that consolidated the trunk connection at the originating switch and provided a switched connection to a telephone operator only as required for a short duration at the beginning of a call to obtain billing information or at the end of a call in which the caller requested "time and charges". See the Bell System Technical Journal for several articles on the TSPS system and RTA enhancement. Some telecom manufacturers wrongly claimed intellectual property rights in the late 1990s on the RTA concept developed by Bell Labs in the 1970s.The TSPS system provided a temporary switched connection to a Toll Operator who helped facilitate calls requiring human assistance such as Person-to-Person, Collect, Third-Party-Billed, and Hotel Billing. The TSPS system supported up to seven "Chief Operator Groups" (COGs) with each COG supporting up to 31 operator consoles. Operator consoles initially used nixie tube displays that were quickly replaced by light-emitting diode displays due to reliability issues.The TSPS system was ultimately replaced by the OSPS or Operator Service Position System feature package developed for the 5ESS switching system. During the era of TSPS systems, calls to mobile and marine radiotelephone customers were initially handled by operators at a Special Operator Service Treatment cord board. Operator assisted calls to international destinations were handled by "Code 10" and "Code 11" operators generally co-located at special gateway International Switching Systems.」の詳細全文を読む

TSPS''') was developed by Bell Labs in Columbus, Ohio to replace traditional cord switchboards. The first TSPS was deployed in 1969 and used the Stored Program Control-1A CPU, "Piggyback" twistor memory (a proprietary technology developed by Bell Labs similar to core memory) and IGFET Insulated Gate Field Effect Transistor solid state memory devices similar to DRAM Dynamic Random Access Memory.==How it works==The TSPS system utilized special analog trunks that originated at Class 5 End Office circuit switch systems and Class 4 Toll Access circuit switch systems that were connected to Class 3 Primary Toll circuit switch systems such as the 4A-ETS/PBC and 4ESS switch systems. The TSPS system did not perform switching between the originating end office switch and the toll switch for the subscriber voice path.The TSPS system included a feature known as "Remote Trunking Arrangement" or (RTA) that consolidated the trunk connection at the originating switch and provided a switched connection to a telephone operator only as required for a short duration at the beginning of a call to obtain billing information or at the end of a call in which the caller requested "time and charges". See the Bell System Technical Journal for several articles on the TSPS system and RTA enhancement. Some telecom manufacturers wrongly claimed intellectual property rights in the late 1990s on the RTA concept developed by Bell Labs in the 1970s.The TSPS system provided a temporary switched connection to a Toll Operator who helped facilitate calls requiring human assistance such as Person-to-Person, Collect, Third-Party-Billed, and Hotel Billing. The TSPS system supported up to seven "Chief Operator Groups" (COGs) with each COG supporting up to 31 operator consoles. Operator consoles initially used nixie tube displays that were quickly replaced by light-emitting diode displays due to reliability issues.The TSPS system was ultimately replaced by the OSPS or Operator Service Position System feature package developed for the 5ESS switching system. During the era of TSPS systems, calls to mobile and marine radiotelephone customers were initially handled by operators at a Special Operator Service Treatment cord board. Operator assisted calls to international destinations were handled by "Code 10" and "Code 11" operators generally co-located at special gateway International Switching Systems.」
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