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GRF424D-12

产品描述high frequency / RF relays 12 vdc 4pst magnetic-latching
产品类别热门应用    机电/工控/自动化   
文件大小416KB,共5页
制造商Teledyne Relays
官网地址http://www.teledynerelays.com/
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GRF424D-12概述

high frequency / RF relays 12 vdc 4pst magnetic-latching

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Series GRF424
Magnetic-Latching Electromechanical Relay
Signal Integrity up to 10Gbps,
MAGNETIC-LATCHING
DC-8 GHz
TO-5 RELAYS
4PST
SERIES
RELAY TYPE
GRF424
GRF424D
4PST RF Relay
4PST RF Relay with internal diodes for coil transient suppression
• Minimum mass components and welded construction
provide maximum resistance to shock and vibration.
• Advanced cleaning techniques provide maximum
assurance of internal cleanliness.
• Gold-plated precious metal contacts ensure reliable,
lowlevel switching.
The RF424 relay is ideally suited for applications where
power dissipation must be minimized. The relays can be
operated with a short duration pulse. After the contacts
have transferred, no external holding power is required.
The magnetic latching
feature of the RF424 series provides a nonvolatile
“memory” capability since the relays will not reset upon
removal of coil power.
The 424D series utilizes discrete diodes for coil
suppression.
DESCRIPTION
The GRF424 series relay is an ultraminiature, hermetically
sealed, magnetic-latching relay featuring low intercontact
capacitance for exceptional RF performance from DC-8
GHz. It’s low profile and small size make it ideal for
applications where extreme packaging density and/or
close PC board spacing are required. Due to its minimal
mass, many relays may be used to configure
replacements for bulkier switching solutions at a
substantial savings in weight.These design features make
these unique relays the perfect choice for use in RF
attenuators, RF switching matrices and other RF
applications requiring low insertion loss and low VSWR.
The basic operating mechanism is similar to the TO-5 422
series relay.
The following unique construction features and
manufacturing techniques provide overall high reliability
and excellent resistance to environmental extremes:
PRINCIPAL OF OPERATION
PERMANENT MAGNET
MAGNETIC CIRCUIT B
MAGNETIC CIRCUIT A
SOFT IRON FRAME
Energizing Coil B produces a
+
+
magnetic
eld opposing the hold-
COIL A
COIL B
ing
ux of the permanent magnet
SOFT IRON
SOFT IRON
COIL A
COIL B
in Circuit B. As this net holding
-
-
AIR GAP
SOFT IRON
force decreases, the attractive
ARMATURE
STATIONARY
CONTACT
force in the air gap of Circuit A, which
also results from the
ux of the
MOVING
permanent magnet, becomes great
CONTACT
enough to break the armature free of
Core B, and snap it into a closed
position against Core A. The armature then remains in this position upon
removal of power from Coil B, but will snap back into position B upon
energizing Coil A. Since operation depends upon cancellation of a magnetic
eld, it is necessary to apply the correct polarity to the relay coils as indicated
on the relay schematic. When latching relays are installed in equipment, the
latch and reset coils should not be pulsed simultaneously. Coils should not be
pulsed with less than rated coil voltage and the pulse width should be a
minimum of three times the specified operate time of the relay. If these
conditions are not followed, it is possible for the relay to be in the magnetic
neutral position.
© 2013 TELEDYNE RELAYS
(800) 284-7007 • www.teledynerelays.com
ENVIRONMENTAL AND
PHYSICAL SPECIFICATIONS
Temperature
Storage
Operating
–65°C to +125°C
–55°C to +85°C
Vibration
10 g’s to 500 Hz
(General Note 1)
Shock
30 g’s, for 6 msec
(General Note 1) half sine
Enclosure
Weight
Hermetically
Sealed
0.1 oz. (2.9g) max.
GRF424 Page 1
GRF424\062013\Q2

 
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