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ARS10A12X PDF预览

ARS10A12X

更新时间: 2024-01-09 09:00:37
品牌 Logo 应用领域
松下 - PANASONIC 光电二极管继电器
页数 文件大小 规格书
11页 414K
描述
RF Relay, 1 Form C, SPDT, Momentary, 0.017A (Coil), 12VDC (Coil), 200mW (Coil), 0.5A (Contact), 30VDC (Contact), 3000MHz, 1W (RF Input), DC Input, Random, DC Output, Surface Mount-Straight, ROHS COMPLIANT

ARS10A12X 技术参数

是否Rohs认证: 符合生命周期:Active
包装说明:ROHS COMPLIANTReach Compliance Code:compliant
ECCN代码:EAR99HTS代码:8536.41.00.20
风险等级:5.59主体宽度:8.6 mm
主体高度:8 mm主体长度或直径:14 mm
特性阻抗:75 Ω最大线圈电流(直流):0.017 A
线圈工作电压(直流):9 V线圈功率:200 mW
线圈释放电压(直流):1.2 V线圈电阻:720 Ω
最大线圈电压(直流):12 V标称线圈电压:12 V
线圈/输入电源类型:DC最大触点电流(直流):0.5 A
触点(直流)最大额定R负载:.5A@30VDC触点电阻:100 m Ω
最大触点电压(直流):30 V触点/输出电源类型:DC
线圈与触点之间的介电强度:1000 Vrms断开触点之间的介电强度:500 Vrms
电气寿命:300000 Cycle(s)末端触点镀层:GOLD
最大输入功率:1 W输入切换控制类型:Random
最大插入损耗:0.5 dB绝缘电阻:100000000 Ω
最大隔离度:30 dBJESD-609代码:e4
安装特点:SURFACE MOUNT-STRAIGHT工作时间:10 ms
最大工作频率:3000 MHz最小工作频率:
最高工作温度:70 °C最低工作温度:-40 °C
包装方法:TAPE AND REEL物理尺寸:14mm x 8.6mm x 8mm
继电器动作:MOMENTARY继电器样式:1 FORM C
继电器功能:SPDT继电器类型:RF RELAY
释放时间:6 ms表面贴装:NO
切换时间:16 ms端子面层:Gold (Au)
端接类型:SOLDER电压驻波比:1.5
重量:2 gBase Number Matches:1

ARS10A12X 数据手册

 浏览型号ARS10A12X的Datasheet PDF文件第5页浏览型号ARS10A12X的Datasheet PDF文件第6页浏览型号ARS10A12X的Datasheet PDF文件第7页浏览型号ARS10A12X的Datasheet PDF文件第8页浏览型号ARS10A12X的Datasheet PDF文件第9页浏览型号ARS10A12X的Datasheet PDF文件第10页 
RS (ARS)  
Insertion loss compensation  
Three countermeasures for these are  
listed here.  
(1) Incorporate an arc-extinguishing  
circuit.  
6) To ensure accurate operation of the  
latching type amidst surrounding  
The insertion loss of relay itself is given  
by subtracting the insertion loss of  
shortcircuit the COM and the NC (or NO).  
(signal path and two connectors)  
9. Others  
1) The switching lifetime is defined under  
the standard test condition specified in  
the JIS* C 5442 standard (temperature  
15 to 35°C 59 to 95°F, humidity 25 to  
75%). Check this with the real device as it  
is affected by coil driving circuit, load  
type, activation frequency, activation  
phase, ambient conditions and other  
factors.  
Also, be especially careful of loads such  
as those listed below.  
• When used for AC load-operating and  
the operating phase is synchronous,  
rocking and fusing can easily occur due  
to contact shifting.  
temperature changes and other factors  
that might affect the set and reset pulse  
times, we recommend a coil impress set  
and reset pulse width of at least 30 ms at  
the rated operation voltage.  
(2) Lower the operating frequency  
(3) Lower the ambient humidity  
2) Use the relay within specifications  
such as coil rating, contact rating and on/  
off service life. If used beyond limits, the  
relay may overheat, generate smoke or  
catch fire.  
3) Be careful not to drop the relay. If  
accidentally dropped, carefully check its  
appearance and characteristics before  
use.  
7) The latching type relay is shipped in  
the reset position. But jolts during  
transport or impacts during installation  
can change the reset position. It is,  
therefore, advisable to build a circuit in  
which the relay can be initialized (set and  
reset) just after turning on the power.  
8) If silicone materials (e.g., silicone  
rubbers, silicone oils, silicone coating  
agents, silicone sealers) are used in the  
vicinity of the relay, the gas emitted from  
the silicone may adhere to the contacts of  
the relay during opening and closing and  
lead to improper contact. If this is the  
case, use a material other than silicone.  
4) Be careful to wire the relay correctly.  
Otherwise, malfunction, overheat, fire or  
other trouble may occur.  
5) If a relay stays on in a circuit for many  
months or years at a time without being  
activated, circuit design should be  
reviewed so that the relay can remain  
non-excited. A coil that receives current  
all the time heats, which degrades  
insulation earlier than expected. A  
latching type relay is recommended for  
such circuits.  
• When high-frequency opening and  
closing of the relay is performed with a  
load that causes arcs at the contacts,  
nitrogen and oxygen in the air is fused by  
the arc energy and HNO3 is formed. This  
can corrode metal materials.  
For general cautions for use, please  
refer to the “General Application  
Guidelines”.  
ASCTB106E 201407-T  
–11–  

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