Product Parameters ELECTRICAL
DATA Impedance 50ΩFrequency
range (for connector interface)12.4GHzDielectric withstanding
voltage (at sea level)≥750-1500V,50Hz (depending on
cable)Working voltage (at sea level)≥250-500V,50Hz (sea level)
/ ≥65-125V,50Hz (Height 21000M)Insulation
resistance≥ 5000 mΩContact resistanceInner
conductor: ≤3mΩOuter conductor: ≤2.5mΩRF
leakage(2-3GHZ)Flexible: ≥60dBSemi-rigid
cable: ≥100dBMECHANICAL DATA Coupling nut
torque0.8Nm--1.1Nm / 7.1 in.lbs--9.7 in.lbsCoupling nut retention
force≥270N / 60.7 lbsContact captivation axial ≥27N / 6.1
lbsDurability (matings)≤500ENVIRONMENTAL DATA Temperature
range-65°C to +165°C MATERIAL DATA Bodies, outer
contactsBeryllium copper--Au platingStainless
steel--PassivationBrass--Au plated / ternary alloy
plating Phosphor bronze --Au platingPin
contactsBrass/Beryllium copper--Au platingSocket contactsBeryllium
copper / Phosphor bronze--Au platingCrimp ferrulesBrass--Au
platingInsulatorPTFEGasketsSilicone rubber Product
Features Can terminate to coax, PCB (printed circuit board) or
terminal;Can be male or female gender in standard polarity (RPSMA /
RP-SMA) or reverse polarity threads, with 50ohm impedance;Body
can be straight, radius right angle or right angle;Mount
Method can be press in, bulkhead, 2 hole panel, 4 hole panel or
mount-less;Attachment methods include clamp/solder,
compression, crimp/solder, crimp/solder (captive contact), field
replaceable, solder, solder (without contact), solder/solder or
solder/solder (captive contact);Body is brass or stainless
steel. Related Products RF connectors are
used to connect cables to other devices and are specifically
designed to maintain the shielding on the cable. High-quality
connectors offer reliable, long-lasting connections, Low Pim
Connectors. There are two distinct connector styles;
male and female. Male connectors have a protruding metal pin in the
center, whereas female connectors have a receptacle to receive that
pin. Depending on the connector size and frequency, some may be
sexless and mounted flush instead of mating. Within
digital, video, audio, Network,RF Coaxial system, and microwave
industries, there are several varieties of coaxial cable connector
types. Each offers unique benefits based on the end use or
application. Below are some of the most common coaxial connector
types, along with their distinguishing characteristics and intended
applications,DIN 7-16, N, 4.3-10, BNC, SMA, NEX10, MCX, TNC, QMA,
IPEX/U.FL etc. RF Cable Assemblies high-frequency
cables are suitable for low-loss and distortion-free transmission
of high-frequency signals. The fastest transmission of data takes
place directly which is why assembled coaxial cables from ROHO
ensure powerful and uncomplicated data communication. The shielded
design makes ROHO assembled coaxial cables far less sensitive to
external interferences such as damage or electromagnetic fields.
Wired solutions are suitable for highly complex infrastructures
where flexibility, security and performance count, such as
measurement lines in test laboratories. Furthermore, they are used
in electrical and radio technology, communication and data
technology - all areas where high demands on transmission quality
or shielding are made. The product range incorporates
all commonly available RF cable assemblies and the development of
customized solutions from DC up to 50 GHz. ROHO offers
RF adapters design as well as T and Cross RF adapters. RF adapters
include some connectors interface types such as SMA,TNC, N, BNC,
SMP, 4.3-10, DIN 7-16, 2.92mm, 3.5mm, NEX10, QMA ,MCX, UHF and
F. RF adapters are available in male, female, plug,
jack, receptacle or sexless gender, in 50 Ohm, 75 Ohm, 78 Ohm or 95
Ohm impedance and in standard polarity or reverse polarity. RF
adapters are available in quick disconnect (QD), push-on or
standard interface as well as straight, 45 degrees right, radius
right angle or right angle versions. ROHO offers RF adapters in
standard and high performance with brass and stainless steel body
as well as some hermetic, bulkhead or 4 hole panel
configurations. An antenna is an array of conductors
(elements), electrically connected to the receiver or transmitter.
Antennas can be designed to transmit and receive radio waves in all
horizontal directions equally (omnidirectional antennas), or
preferentially in a particular direction (directional, or
high-gain, or "beam" antennas). An antenna may include components
not connected to the transmitter, parabolic reflectors, horns, or
parasitic elements, which serve to direct the radio waves into a
beam or other desired radiation pattern. Strong directivity and
good efficiency when transmitting are hard to achieve with antennas
with dimensions that are much smaller than a half wavelength.
RF attenuators act as resistors and are used to reduce the
level of a signal within radio frequency applications and RF circ
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