Signal Relays
Cradle N Relay V23154/V23162 (Continued)
AXICOM
Dimensions
V23154-Mxxx, size I type
PCB layout
TOP view on component side of PCB
V23154-M/Nxx versions
V23154-Nxxx, size II type
M = Earth terminal
a) Hole for mechanical armature actuation, if required
b) Hole for socket mounting with screw M1.6.
Instructions for Impulse Operation
The maximum voltage stated in the part code table can be increased for
impulse operation as follows:
U II Impuls U II tamb xq
U II tamb Maximum continuous voltage at ambient temperature t amb
q Factor
The impulse voltage must not exceed 80% of the test voltage (winding/
frame or winding/winding) or 2.5 times the value of the maximum voltage
listed in the part code table.
Ift ED ≤ 3s then q= ; Ift ED = Pulse width, t 2 = Cycle time. If t ED > 3s the
value of q must be obtained from the nomograph.
Examples of various periodic pulse trains (energizing side)
1. Periodic recurrence of one energizing pulse
2. Periodic recurrence of two unequal energizing pulses
tED = tI + tII
tI + tII = Pulse widths
within one cycle
4
07-2012, Rev. 0712
www.te.com
? 2011 Tyco Electronics Corporation,
a TE Connectivity Ltd. company
Datasheets and product specification
according to IEC 61810-1 and to be used
only together with the ‘Definitions’ section.
Datasheets and product data is subject to the
terms of the disclaimer and all chapters of
the ‘Definitions’ section, available at
http://relays.te.com/definitions
Datasheets, product data, ‘Definitions’ sec-
tion, application notes and all specifications
are subject to change.
相关PDF资料
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相关代理商/技术参数
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6-1393807-0 制造商:TE Connectivity 功能描述:V23154D 426B113 - Bulk
6-1393807-2 功能描述:低信号继电器 - PCB V23154D 426F104 RoHS:否 制造商:NEC 触点形式:2 Form C (DPDT-BM) 触点电流额定值: 线圈电压:5 V 最大开关电流:1 A 线圈电流:1 A 线圈类型:Non-Latching 功耗:140 mW 端接类型:SMT 绝缘: 介入损耗:
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6-1393807-4 制造商:TE Connectivity 功能描述:
6-1393807-5 制造商:TE Connectivity 功能描述:
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6-1393807-7 功能描述:低信号继电器 - PCB V23154D 438B124 RoHS:否 制造商:NEC 触点形式:2 Form C (DPDT-BM) 触点电流额定值: 线圈电压:5 V 最大开关电流:1 A 线圈电流:1 A 线圈类型:Non-Latching 功耗:140 mW 端接类型:SMT 绝缘: 介入损耗: