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HF77KETMINIFAKRAm0412G1080MSMPmF Perspective 1 HF77KETMINIFAKRAm0412G1080MSMPmF Perspective 2

Radio Frequency Probes (Automotive) HF77KETMINIFAKRAm0412G1080MSMPmF

Item number 1109577

Technical data sheet

Quantity

Technical data

General
Structure Coaxial Probe
Type/family HF77
Pitch (mm/mil) 20,00 / 787
Temperature -45°C...+100°C
Dimensions
Total length (mm) 31
Protrusion height (mm) 20
Tip style diameter (mm) 2
Barrel diameter (mm) 11
Collar diameter (mm) 20
Press ring diameter (mm) 20
Tip style diameter (mm) 2 0.45
Materials and surfaces
Tip style 50
Tip style 2 16
Plunger material Beryllium copper
Plunger plating Gold
Barrel material Brass
Barrel plating Gold
Spring material High-grade steel
Spring plating Uncoated
Plunger material 2 Beryllium copper
Plunger plating 2 Gold
Spring material 2 Spring steel
Spring plating 2 Gold
Mechanical specifications
Preload (cN) 230
Spring force (cN) 420
Nominal travel (mm) 2
Maximum travel (mm) 2.8
Thread M2
Connection Plug
DUT KET MINI FAKRA
Electrical specifications
Continuous current (A) 0.5
Impedance (ohm) 50
Frequency (GHz) 12
Continuous current (A) 2 0.1
Internal contact specifications
Nominal travel (mm) 2 0.5
Maximum travel (mm) 2 1.8
Preload (cN) 2 95
Spring force (cN) 2 120

Graphics

HF77KETMINIFAKRAm0412G1080MSMPmF Family designation HF77KETMINIFAKRAm0412G1080MSMPmF Tip style 1 HF77KETMINIFAKRAm0412G1080MSMPmF Tip style 2

Beschreibung des Produkts

The High Frequency Probe HF77KETMINIFAKRAm0412G1080MSMPmF (item number 1109577) is designed for reliable transmission of high-frequency signals in test and measurement applications. With a defined impedance of 50 Ω, HF77KETMINIFAKRAm0412G1080MSMPmF supports controlled signal routing and helps minimize reflections and signal loss at the test interface. The frequency range of HF77KETMINIFAKRAm0412G1080MSMPmF extends up to 12 GHz, and this version is intended for contacting KET MINI FAKRA connectors. On HF77KETMINIFAKRAm0412G1080MSMPmF, spring forces of 420 cN on the outer contact and 120 cN on the inner contact provide defined mechanical contacting.