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422K-26

产品描述High Frequency / RF Relays DPDT HIGH SHOCK TO-5
产品类别热门应用    机电/工控/自动化   
文件大小138KB,共6页
制造商Teledyne Relays
官网地址http://www.teledynerelays.com/
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422K-26概述

High Frequency / RF Relays DPDT HIGH SHOCK TO-5

422K-26规格参数

参数名称属性值
Product AttributeAttribute Value
制造商
Manufacturer
Teledyne Relays
产品种类
Product Category
High Frequency / RF Relays
RoHSDetails
工厂包装数量
Factory Pack Quantity
1

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SERIES
HIGH-SHOCK,
HIGH-PERFORMANCE
TO-5 RELAY
DPDT
SERIES
DESIGNATION
412K
422K
DPDT high-shock relay
DPDT high-shock magnetic-latching relay
RELAY TYPE
412K
422K
INTERNAL CONSTRUCTION
UNI-FRAME
DESCRIPTION
UPPER
STATIONARY
CONTACT
LOWER
STATIONARY
CONTACT
HIGH-PERFORMANCE
ARMATURE
The TO-5 relay, originally conceived and developed by Teledyne, has become one of the
industry standards for low-level switching from dry circuit to 1 ampere. Designed for high-
density PC board mounting, its small size and low coil power dissipation make the TO-5
relay one of the most versatile subminiature relays available.
The K Series high-shock TO-5 relays are designed to withstand shock levels up to 4000
g’s, .5 millisecond duration. Special material selection and construction details provide
assurance that critical elements of the relay structure and mechanism will not be
permanently displaced or damaged as a result of extremely high g level shocks.
Typical applications:
• Commercial avionics aircraft control
• Commercial aircraft control systems
• Transportation systems (rail/truck)
By virtue of their inherently low intercontact capacitance and contact circuit losses, the
K Series relays have proven to be excellent subminiature RF switches for applications
with frequency ranges well into the UHF spectrum. A typical RF application for the 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 T-R switching (see Figure 1 and 2).
MOVING
CONTACT
412K ENVIRONMENTAL AND
PHYSICAL SPECIFICATIONS
Temperature
(Ambient)
Vibration
(General Note 1)
(General
Note 1)
Shock
(General
Note 4)
–65°C to +125°C
30 g’s to 3000 Hz
75 g’s, 6 msec, half-sine
4000 g’s, 0.5 msec. axial
plane, half-sine
1000 g’s, 0.5 msec side
planes, half-sine
50 g’s
Hermetically sealed
0.09 oz. (2.55g) max.
422K ENVIRONMENTAL AND
PHYSICAL SPECIFICATIONS
Temperature
(Ambient)
Vibration
(General Note 1)
(General
Note 1)
Shock
(General
Note 4)
–65°C to +125°C
30 g’s to 3000 Hz
100 g’s, 6 msec, half-sine
2100 g’s, 0.5 msec. axial
plane, half-sine
750 g’s, 0.5 msec side
planes, half-sine
50 g’s
Hermetically sealed
0.10 oz. (2.84g) max.
PERMANENT MAGNET
MAGNETIC CIRCUIT A
SOFT IRON FRAME
PRINCIPLE OF OPERATION 422K
MAGNETIC CIRCUIT B
Acceleration
Enclosure
Weight
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
SOFT IRON
results from the flux of the permanent magnet,
ARMATURE
STATIONARY
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
MOVING
CONTACT
upon removal of power from Coil B, but will snap
back to 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
magnetically neutral position.
Acceleration
Enclosure
Weight
©2003 TELEDYNE RELAYS
SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE
www.teledynerelays.com
412K/422K Page
1
412K/422K/1203/Q1
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