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G6Z-K-1PEAR-DC5 PDF预览

G6Z-K-1PEAR-DC5

更新时间: 2024-10-28 19:25:03
品牌 Logo 应用领域
欧姆龙 - OMRON 光电二极管继电器
页数 文件大小 规格书
19页 965K
描述
RF Relay, SPDT, Latched, 0.072A (Coil), 5VDC (Coil), 360mW (Coil), 0.5A (Contact), 30VDC (Contact), 2600MHz, 10W (RF Input), DC Input, AC/DC Output, Through Hole-Straight Mount

G6Z-K-1PEAR-DC5 技术参数

是否Rohs认证:符合生命周期:Obsolete
Reach Compliance Code:unknownECCN代码:EAR99
HTS代码:8536.41.00.20风险等级:5.73
Is Samacsys:N主体宽度:8.6 mm
主体高度:8.9 mm主体长度或直径:20 mm
特性阻抗:50 Ω最大线圈电流(直流):0.072 A
线圈工作电压(直流):3.75 V线圈功率:360 mW
线圈释放电压(直流):3.75 V线圈电阻:69 Ω
最大线圈电压(直流):5 V线圈/输入电源类型:DC
触点(交流)最大额定R负载:.5A@30VAC最大触点电流(交流):0.5 A
最大触点电流(直流):0.5 A触点(直流)最大额定R负载:.5A@30VDC
最大触点电压(交流):30 V最大触点电压(直流):30 V
触点/输出电源类型:AC/DC电气寿命:300000 Cycle(s)
最大输入功率:10 W最大插入损耗:0.3 dB
最大隔离度:35 dB安装特点:THROUGH HOLE-STRAIGHT MOUNT
工作时间:10 ms最大工作频率:2600 MHz
最小工作频率:900 MHz最高工作温度:70 °C
最低工作温度:-40 °C包装方法:TUBE
物理尺寸:20mm x 8.6mm x 8.9mm继电器动作:LATCHED
继电器功能:SPDT继电器类型:RF RELAY
释放时间:10 ms表面贴装:NO
切换时间:20 ms端接类型:SOLDER
电压驻波比:1.3Base Number Matches:1

G6Z-K-1PEAR-DC5 数据手册

 浏览型号G6Z-K-1PEAR-DC5的Datasheet PDF文件第13页浏览型号G6Z-K-1PEAR-DC5的Datasheet PDF文件第14页浏览型号G6Z-K-1PEAR-DC5的Datasheet PDF文件第15页浏览型号G6Z-K-1PEAR-DC5的Datasheet PDF文件第17页浏览型号G6Z-K-1PEAR-DC5的Datasheet PDF文件第18页浏览型号G6Z-K-1PEAR-DC5的Datasheet PDF文件第19页 
Safety Precautions  
Substrate for High-frequency Characteristic  
Compensation (75-Models, E-shape or Y-shape)  
Precautions for Correct Use  
Please observe the following precautions to prevent failure to oper-  
ate, malfunction, or undesirable effect on product performance.  
30.7  
(Unit: mm)  
20  
4-dia. through-hole  
High-frequency Characteristics  
Measurement Method and  
Measurement Substrate  
0.6-dia. through-hole  
1
0.95  
High-frequency characteristics for the G6Z are measured in the way  
shown below. Consult your OMRON representative for details on 50-  
models.  
40 30  
Measurement Method for 75-Models  
G6Z  
Network vector analyzer  
(Agilent Technologies)  
75-terminating  
resistance  
Substrate Types  
Material: FR-4 glass epoxy (glass cloth impregnated with epoxy  
resin and copper laminated to its outer surface)  
HP8753D  
50Ω/75adapter  
(Agilent Technologies)  
11852B-004  
Thickness: 1.6 mm  
Thickness of copper plating:18 µm  
Note: 1. The compensation substrate is used when measuring the  
Relay’s insertion loss. The insertion loss is obtained by  
subtracting the measured value for the compensation sub-  
strate from the measured value with the Relay mounted to  
the high-frequency measurement substrate.  
Through-hole Substrate (75-Models, E-shape or  
Y-shape)  
40  
30  
4-dia. through-hole  
2. For convenience, the diagrams of the high-frequency  
measurement substrates given here apply both to models  
with an E-shape terminal structure and to models with a Y-  
shape terminal structure.  
0.4  
(Unit: mm)  
1.4  
3. Be sure to mount a standoff tightly to the through-hole sub-  
strate.  
3.59  
4. Use measuring devices, connectors, and substrates that  
are appropriate for 50 and 75 respectively.  
40 30  
1
5. Ensure that there is no pattern under the Relay. Other-  
wise, the impedance may be adversely affected and the  
Relay may not be able to attain its full characteristics.  
0.95  
6.3  
Handling  
0.6-dia. through-hole  
Do not use the Relay if it has been dropped. Dropping the Relay may  
adversely affect its functionality.  
SMD-type Substrate (75-Models, E-shape or Y-shape)  
Protect the Relay from direct sunlight and keep the Relay under nor-  
mal temperature, humidity, and pressure.  
40  
Flow Soldering  
30  
4-dia. through-hole  
1.4  
(Unit: mm)  
Solder: JIS Z3282, H63A  
0.4  
Soldering temperature: Approx. 250°C (260°C if the DWS method is  
used)  
0.6-dia. through-hole  
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 make a molten solder level adjustment so that the solder  
will not overflow on the PCB.  
40 30  
3.91  
1
0.95  
6.3  
16  
High-frequency Relay G6Z  

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