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ER421DDZM2-18A/SQ

Description
RF Relay, SPDT, Latched, 0.019A (Coil), 18VDC (Coil), 290mW (Coil), 0.5A (Contact), 28VDC (Contact), DC Input, AC/DC Output, Through Hole-Straight Mount
CategoryMechanical and electronic products    relay   
File Size5MB,6 Pages
ManufacturerTeledyne Technologies Incorporated
Websitehttp://www.teledyne.com/
Download Datasheet Parametric View All

ER421DDZM2-18A/SQ Overview

RF Relay, SPDT, Latched, 0.019A (Coil), 18VDC (Coil), 290mW (Coil), 0.5A (Contact), 28VDC (Contact), DC Input, AC/DC Output, Through Hole-Straight Mount

ER421DDZM2-18A/SQ Parametric

Parameter NameAttribute value
Is it lead-free?Contains lead
Is it Rohs certified?incompatible
Objectid2143293535
Reach Compliance Codecompliant
ECCN codeEAR99
YTEOL6.34
Other featuresWITH INTERNAL DIODE
body height7.11 mm
Body length or diameter9.4 mm
Maximum coil current (DC)0.019 A
Coil operating voltage (DC)14.5 V
Coil power290 mW
Coil release voltage (DC)14.5 V
Coil resistance1130 Ω
Maximum coil voltage (DC)18 V
Coil/Input Power TypeDC
Contact (AC) maximum rated R load.25A@115VAC
Maximum contact current (AC)0.25 A
Maximum contact current (DC)0.5 A
Contact (DC) maximum rated R load.5A@28VDC
Maximum contact voltage (AC)115 V
Maximum contact voltage (DC)28 V
Contact/Output Power TypeAC/DC
Electrical life100000 Cycle(s)
JESD-609 codee0
Installation featuresTHROUGH HOLE-STRAIGHT
operating hours3 ms
Maximum operating temperature125 °C
Minimum operating temperature-65 °C
Relay actionLATCHED
Relay functionSPDT
Relay typeRF RELAY
sealHERMETICALLY SEALED
surface mountNO
switching time3 ms
Terminal surfaceTin/Lead (Sn/Pb)
Termination typeSOLDER
SERIES
MAGNETIC-LATCHING
ESTABLISHED RELIABILITY
TO-5 RELAYS
SPDT
SERIES
DESIGNATION
421
421D
421DD
SPDT basic relay
SPDT relay with internal diode for coil transient suppression
SPDT relay with internal diodes for coil transient suppression and polarity
reversal protection
RELAY TYPE
421
DESCRIPTION
The magnetic-latching TO-5 relay, originally conceived and
developed by Teledyne, has become one of the industry standards
for low-level switching from dry circuit to 0.5 ampere. Designed for
high-density PC board mounting, its small size and low coil power
dissipation make the 421 relay one of the most versatile
ultraminiature relays available.
The following unique construction features and manufacturing
techniques provide excellent resistance to environmental extremes
and overall high reliability:
• All welded construction.
• Unique uni-frame design providing high magnetic efficiency and
mechanical rigidity.
• High force/mass ratios for resistance to shock and vibration.
• Advanced cleaning techniques provide maximum assurance of
internal cleanliness.
• Precious metal alloy contacts material with gold plating assures
excellent high current and dry circuit switching capabilities.
The Series 421D and 421DD utilize discrete silicon diodes for coil
suppression and polarity reversal protection.
By virtue of its inherently low intercontact capacitance and contact
circuit losses, the 421 relay has proven to be an excellent
ultraminiature RF switch for frequency ranges well into the UHF
spectrum. A typical RF application for this TO-5 relay is in handheld
radio transceivers, wherein the combined features of good RF
performance, small size, low coil power dissipation and high
reliability make it a preferred method of transmit-receive switching
(see Figure 1).
The Series 421 magnetic-latching relays are ideally suited for
applications where coil 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 Series 421 provides a “memory”
capability, since the relays will not reset upon removal of coil power.
PERMANENT MAGNET
MAGNETIC CIRCUIT A
SOFT IRON CORE A
PRINCIPLE OF OPERATION
MAGNETIC CIRCUIT B
Energizing Coil B produces a magnetic field
COIL A
COIL B
opposing the holding flux of the permanent magnet
SOFT IRON
in Circuit B. As this net holding force decreases, the
SOFT IRON
CORE A
CORE B
attractive force in the air gap of Circuit A, which also
AIR GAP
results from the flux of the permanent magnet,
SOFT IRON
ARMATURE
MOVING
CONTACT
becomes great 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
STATIONARY
CONTACT
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 field, 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.
ENVIRONMENTAL AND
PHYSICAL SPECIFICATIONS
Temperature
(Ambient)
Vibration
(General Note 1)
Shock
(General Note 1)
Acceleration
Enclosure
Weight
–65°C to +125°C
30 g’s to 3000 Hz
100 g’s,
6 msec, half-sine
50 g’s
Hermetically sealed
0.089 oz. (2.52g) max.
©2005 TELEDYNE RELAYS
421/1205/Q1
421 Page 1
SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE
www.teledynerelays.com
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