参数资料
型号: G6L-1P DC12
厂商: Omron Electronics Inc-EMC Div
文件页数: 8/10页
文件大小: 0K
描述: RELAY TELECOM SPST 1A 12V
产品培训模块: Medical Solutions
产品目录绘图: G6L-1P Series
G6L-1P Series Circuit Bottom View
G6L-1P Series Footprint
标准包装: 50
系列: G6L
继电器类型: 电信
线圈类型: 无锁存
线圈电流: 15mA
线圈电压: 12VDC
触点形式: SPST-NO(1 A 型)
触点额定值(电流): 1A
切换电压: 125VAC,60VDC - 最小值
关闭电压(最大): 9 VDC
关闭电压(最小): 1.2 VDC
特点: 密封式 - 全部
安装类型: 通孔
端接类型: PC 引脚
包装: 管件
操作时间: 5ms
释放时间: 5ms
线圈功率: 180 mW
线圈电阻: 800 欧姆
工作温度: -40°C ~ 70°C
产品目录页面: 2588 (CN2011-ZH PDF)
其它名称: G6L 8002A
G6L-1P-DC12
G6L1P12DC
G6L1PDC12
Z1229
Precautions
■ Correct Use
Long-term Continuously ON Contacts
Using the Relay in a circuit where the Relay will be ON continuously
for long periods (without switching) can lead to unstable contacts
because the heat generated by the coil itself will affect the insulation,
causing a film to develop on the contact surfaces. Be sure to use a
fail-safe circuit design that provides protection against contact failure
or coil burnout.
Handling
Leave the Relays packed until just prior to mounting them.
Soldering
Solder: JIS Z3282, H63A
Soldering temperature: Approx. 250 ° C (At 260oC if the DWS method
is used.)
Soldering time: Approx. 5 s max. (approx. 2 s for the first time and
approx. 3 s for the second time if the DWS method is used.)
Be sure to adjust the level of the molten solder so that the solder will
not overflow onto the PCB.
Claw Securing Force During Automatic
Insertion
During automatic insertion of Relays, make sure to set the securing
force of the claws to the following values so that the Relay character-
istics will be maintained.
Maximum Voltage
The maximum voltage of the coil can be obtained from the coil tem-
perature increase and the heat-resisting temperature of coil insulat-
ing sheath material. (Exceeding the heat-resisting temperature may
result in burning or short-circuiting). The maximum voltage also
involves important restrictions which include the following:
? Must not cause thermal changes in or deterioration of the insulating
material.
? Must not cause damage to other control devices.
? Must not cause any harmful effect on people.
? Must not cause fire.
Therefore, be sure not to exceed the maximum voltage specified in
the catalog.
As a rule, the rated voltage must be applied to the coil. A voltage
exceeding the rated value, however, can be applied to the coil pro-
vided that the voltage is less than the maximum voltage. It must be
noted that continuous voltage application to the coil will cause a coil
temperature increase thus affecting characteristics such as electrical
life and resulting in the deterioration of coil insulation.
Coating
Relays mounted on PCBs may be coated or washed. Do not apply
silicone coating or detergent containing silicone, otherwise the sili-
cone coating or detergent may remain on the surface of the Relays.
Coil Power Supply Waveform
A
C
B
If the voltage applied to the coil is increased or decreased gradually,
operating characteristics may be unstable, contact endurance may
decline, or the Relay may not function at its full performance level.
Therefore, always use an instantaneous ON and instantaneous OFF
when applying the voltage. Be sure that the rated voltage or zero
voltage is reached within 1 ms.
Direction A: 5.0 N max.
Direction B: 5.0 N max.
Direction C: 5.0 N max.
Secure the claws to the area indicated by shading.
Do not attach them to the center area or to only part of the
Relay.
Environmental Conditions During Operation,
Storage, and Transportation
Protect the Relays from direct sunlight and keep the Relays under
normal temperature, humidity, and pressure.
38
Low Signal Relay
G6L
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相关代理商/技术参数
参数描述
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G6L1PDC3 制造商:Omron Electronic Components LLC 功能描述:EM RLY SPST-NO 1A 3VDC 50OHM TH - Rail/Tube 制造商:Omron Electronic Components LLC 功能描述:RELAY TELECOM SPST 1A 3V
G6L-1PDC3 制造商:Omron Electronic Components LLC 功能描述:Electromechanical Relay SPST-NO 1A 3VDC 50Ohm Through Hole
G6L-1P-DC3 功能描述:低信号继电器 - PCB LO PROF SPST 3VDC 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: