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PSRL0402DMX-0324 |
Wall Industries,Inc. |
|
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400 watt with airflow dual output medical approved AC/DC medical power supply with active pfc |
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PSRL0402DMX-0512 |
Wall Industries,Inc. |
|
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400 watt with airflow dual output medical approved AC/DC medical power supply with active pfc |
|
PSRL0402DMX-0524 |
Wall Industries,Inc. |
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400 watt with airflow dual output medical approved AC/DC medical power supply with active pfc |
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PSRL0402DX-0524 |
Wall Industries,Inc. |
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400 watt with airflow medical approved dual output AC/DC switching power supply with active pfc |
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PSRL0402DM |
Wall Industries,Inc. |
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400 watt with airflow dual output medical approved AC/DC medical power supply with active pfc |
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PSRL0402DX-0512 |
Wall Industries,Inc. |
|
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400 watt with airflow medical approved dual output AC/DC switching power supply with active pfc |
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PSRL0402X-12I |
Wall Industries,Inc. |
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400 watt with airflow forced current sharing series single output medical approved AC/DC switching power supply with active pfc |
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APA-BP2USC |
HellermannTyton |
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附件
插头板,插孔面板配件
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helps to maintain the correct airflow within the rack or cabinet. |
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387000176 |
Laird Technologies |
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热量管理
热电
|
the tunnel series teas are designed with a patented, high-performance cross flow technology that maximizes heat transfer when pulling air through a heat exchanger. the number of airflow paths required to operate is reduced when compared to traditional impingement flow teas |
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387000840 |
Laird Technologies |
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热量管理
热电
|
the tunnel series teas are designed with a patented, high-performance cross flow technology that maximizes heat transfer when pulling air through a heat exchanger. the number of airflow paths required to operate is reduced when compared to traditional impingement flow teas. this product series is offered in two heat transfer mechanism configurations: |
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387000872 |
Laird Technologies |
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热量管理
热电
|
the tunnel series teas are designed with a patented, high-performance cross flow technology that maximizes heat transfer when pulling air through a heat exchanger. the number of airflow paths required to operate is reduced when compared to traditional impingement flow teas. |
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387000899 |
Laird Technologies |
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热量管理
热电
|
the AA tunnel series is an air-to-air thermoelectric assembly (tea) that minimizes the number of airflow paths required to operate. It offers dependable, compact performance by cooling objects via convection. |
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387000873 |
Laird Technologies |
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热量管理
热电
|
the tunnel series teas are designed with a patented, high-performance cross flow technology that maximizes heat transfer when pulling air through a heat exchanger. the number of airflow paths required to operate is reduced when compared to traditional impingement flow teas |
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387000910 |
Laird Technologies |
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热量管理
热电
|
the tunnel series teas are designed with a patented, high-performance cross flow technology that maximizes heat transfer when pulling air through a heat exchanger. the number of airflow paths required to operate is reduced when compared to traditional impingement flow teas |
|
387000866 |
Laird Technologies |
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热量管理
热电
|
the tunnel series teas are designed with a patented, high-performance cross flow technology that maximizes heat transfer when pulling air through a heat exchanger. the number of airflow paths required to operate is reduced when compared to traditional impingement flow teas. |
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387000848 |
Laird Technologies |
|
热量管理
热电
|
the tunnel series teas are designed with a patented, high-performance cross flow technology that maximizes heat transfer when pulling air through a heat exchanger. the number of airflow paths required to operate is reduced when compared to traditional impingement flow teas. |
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387000913 |
Laird Technologies |
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热量管理
热电
|
the tunnel series teas are designed with a patented, high-performance cross flow technology that maximizes heat transfer when pulling air through a heat exchanger. the number of airflow paths required to operate is reduced when compared to traditional impingement flow teas. |
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387000918 |
Laird Technologies |
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热量管理
热电
|
the tunnel series teas are designed with a patented, high-performance cross flow technology that maximizes heat transfer when pulling air through a heat exchanger. the number of airflow paths required to operate is reduced when compared to traditional impingement flow teas. |