参数资料
型号: G6ZK-1F-TR DC5
厂商: Omron Electronics Inc-EMC Div
文件页数: 12/13页
文件大小: 0K
描述: RELAY RF SPDT 10MA 5V
标准包装: 300
系列: G6Z
继电器类型: RF
线圈类型: 锁存,双线圈
线圈电流: 72mA
线圈电压: 5VDC
触点形式: SPDT(1 C 型)
触点额定值(电流): 10mA
切换电压: 30VAC,30VDC - 最小值
关闭电压(最大): 3.75 VDC
特点: 密封式 - 全部
安装类型: 表面贴装
端接类型: 鸥翼型
包装: 带卷 (TR)
触点材料: 铜(Cu),金(Au)
操作时间: 10ms
释放时间: 10ms
线圈功率: 360 mW
线圈电阻: 69 欧姆
工作温度: -40°C ~ 70°C
其它名称: G6ZK1FTRDC5
G6Z
Surface-mounting High-frequency Relay
■ Precautions
● For general precautions on PCB Relays, refer to the precautions provided in General Information of the Relay Product
Data Book.
Correct Use
● High-frequency Characteristics Measurement Method
and Measurement Substrate
? High-frequency characteristics for the G6Z are measured in
the way shown below. Consult your OMRON representative for
details on 50- Ω models.
Measurement Method for 75- Ω Models
G6Z
Network vector analyzer
Substrate Types
Material: FR-4 glass epoxy (glass cloth impregnated with epoxy
resin and copper laminated to its outer surface)
Thickness: 1.6 mm
Thickness of copper plating: 18 μ m
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 substrate from the measured value with the
Relay mounted to the high-frequency measurement substrate.
Note 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.
Note 3. Be sure to mount a standoff tightly to the through-hole substrate.
(Agilent Technologies)
HP8753D
75- Ω
terminating
resistance
Note 4. Use measuring devices, connectors, and substrates that are
appropriate for 50 Ω and 75 Ω respectively.
Note 5. Ensure that there is no pattern under the Relay. Otherwise, the
50- Ω /75- Ω adapter
(Agilent Technologies)
11852B-004
Through-hole Substrate (75- Ω Models, E-shape or Y-shape)
40
impedance may be adversely affected and the Relay may not be able
to attain its full characteristics.
● Handling
? Do not use the Relay if it has been dropped. Dropping the
Relay may adversely affect its functionality.
30
4-dia.
? Protect the Relay from direct sunlight and keep the Relay
G
6
Z
(Unit: mm)
0.4
1.4
through-hole
under normal temperature, humidity, and pressure.
? Use the Relay as soon as possible after opening the
moistureproof package. If the Relay is left for a long time after
opening the moisture-proof package, the appearance may
suffer and seal failure may occur after the solder mounting
3.59
process. To store the Relay after opening the moisture-proof
40
30
6.3
1
0.95
package, place it into the original package and sealed the
package with adhesive tape.
? When washing the product after soldering the Relay to a PCB,
use a water-based solvent or alcohol-based solvent, and keep
the solvent temperature to less than 40°C. Do not put the relay
0.6-dia.
through-hole
SMD-type Substrate (75- Ω Models, E-shape or Y-shape)
in a cold cleaning bath immediately after soldering.
● Claw Securing Force During Automatic Mounting
? During automatic insertion of Relays, be sure to set the
40
30
4-dia.
through-hole
securing force of each claw to the following so that the Relay’s
characteristics will be maintained.
(Unit: mm)
1.4
0.4
C
0.6-dia.
through-hole
A
B
Direction A: 4.90 N max.
Direction B: 4.90 N max.
Direction C: 4.90 N max.
Secure the claws to the shaded area. Do not attach them to the center
40
30
6.3
3.91
0.95
area or to only part of the Relay.
● Latching Relay Mounting
? Make sure that the vibration or shock that is generated from
1
Substrate for High-frequency Characteristic Compensation
(75- Ω Models, E-shape or Y-shape)
other devices, such as Relays, on the same panel or substrate
and imposed on the Latching Relay does not exceed the rated
value, otherwise the set/reset status of the Latching Relay may
be changed. The Latching Relay is reset before shipping. If
excessive vibration or shock is imposed, however, the Latching
Relay may be set accidentally. Be sure to apply a reset signal
(Unit: mm)
30.7
20
4-dia.
through-hole
before use.
● Coating
? Do not use silicone coating to coat the Relay when it is
mounted to the PCB. Do not wash the PCB after the Relay is
0.6-dia.
through-hole
mounted using detergent containing silicone. Otherwise, the
0.95
1
detergent may remain on the surface of the Relay.
40
30
● Repeatability
? Contact your OMRON representative if the Relay will be used
in an application that requires high repeatability in
high-frequencycharacteristics for the microload region. (Such
applications include testing and measurement equipment and
ATE applications.)
12
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G6ZK-1P DC12 功能描述:高频/射频继电器 Latching HF TH 75 Relay RoHS:否 制造商:Omron Electronics 触点形式:2 Form C (DPDT-BM) 触点电流额定值: 线圈电压:5 VDC 线圈类型:Non-Latching 频率: 功耗:100 mW 端接类型:Solder Terminal 绝缘:20 dB to 30 dB at 1 GHz 介入损耗:0.2 dB at 1 GHz
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G6ZK-1P DC4.5 功能描述:高频/射频继电器 Latching HF TH 75 Relay RoHS:否 制造商:Omron Electronics 触点形式:2 Form C (DPDT-BM) 触点电流额定值: 线圈电压:5 VDC 线圈类型:Non-Latching 频率: 功耗:100 mW 端接类型:Solder Terminal 绝缘:20 dB to 30 dB at 1 GHz 介入损耗:0.2 dB at 1 GHz
G6ZK-1P DC5 功能描述:高频/射频继电器 Latching HF TH 75 Relay RoHS:否 制造商:Omron Electronics 触点形式:2 Form C (DPDT-BM) 触点电流额定值: 线圈电压:5 VDC 线圈类型:Non-Latching 频率: 功耗:100 mW 端接类型:Solder Terminal 绝缘:20 dB to 30 dB at 1 GHz 介入损耗:0.2 dB at 1 GHz