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Datasheet UMX5601 Equivalent ( PDF )

N.º Número de pieza Descripción Fabricantes PDF
1 UMX5601   ULTRA LOW MAGNETIC MOMENT PIN DIODE FOR MRI APPLICATIONS

UMX5601 ULTRA LOW MAGNETIC MOMENT PIN DIODE FOR MRI APPLICATIONS RoHS COMPLAINT DESCRIPTION The UMX5601 PIN diode series was designed to provide ultra low magnetic PIN diodes for in bore surface coil applications associated with higher field strength (3T and greater) MR scanners
Microsemi
Microsemi
datasheet UMX5601 pdf

UMX5 Datasheet ( Hoja de datos ) - resultados coincidentes

Número de pieza Descripción Fabricantes PDF
UMX5N

High transition frequency (dual transistors)

EMX5 / UMX5N / IMX5 Transistors High transition frequency (dual transistors) EMX5 / UMX5N / IMX5 !Features 1) Two 2SC3838K chips in a EMT or UMT or SMT package. 2) High transition frequency. (fT=3.2GHz) 3) Low output capacitance. (Cob=0.9pF) !External dimensions (Units : mm) EMX
ROHM Semiconductor
ROHM Semiconductor
datasheet pdf - ROHM Semiconductor
UMX5601

ULTRA LOW MAGNETIC MOMENT PIN DIODE FOR MRI APPLICATIONS

UMX5601 ULTRA LOW MAGNETIC MOMENT PIN DIODE FOR MRI APPLICATIONS RoHS COMPLAINT DESCRIPTION The UMX5601 PIN diode series was designed to provide ultra low magnetic PIN diodes for in bore surface coil applications associated with higher field strength (3T and
Microsemi
Microsemi
datasheet pdf - Microsemi
UMX5101

ULTRA LOW MAGNETIC MOMENT PIN DIODE FOR MRI APPLICATIONS

UMX5101 ULTRA LOW MAGNETIC MOMENT PIN DIODE FOR MRI APPLICATIONS RoHS COMPLIANT DESCRIPTION The UMX5101 PIN diode series was designed to provide ultra low magnetic PIN diodes for in bore surface coil applications associated with higher field strength (3T and
Microsemi
Microsemi
datasheet pdf - Microsemi


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Número de pieza Descripción Fabricantes PDF
SPS122

Modern EU gaming Machines require increased +12V current to accommodate the latest gaming peripherals. DC Converters have been engineered with Sanken’s latest technology to efficiently convert redundant power from our lamp gaming PSU and provide additional +12V capacity at the point of use.

Sanken
Sanken
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