参数资料
型号: G6Y-1 DC9
厂商: Omron Electronics Inc-EMC Div
文件页数: 4/6页
文件大小: 0K
描述: RELAY RF SPDT 10MA 9V
产品目录绘图: G6Y-1 Series
G6Y Series High Freq Circuit
G6Y Series High Freq Footprint
标准包装: 100
系列: G6Y
继电器类型: RF
线圈类型: 无锁存
线圈电流: 22.2mA
线圈电压: 9VDC
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): 6.75 VDC
关闭电压(最小): 0.9 VDC
特点: 密封式 - 全部
安装类型: 通孔
端接类型: PC 引脚
包装: 散装
触点材料: 铜(Cu),金(Au)
操作时间: 10ms
释放时间: 5ms
线圈功率: 200 mW
线圈电阻: 405 欧姆
工作温度: -40°C ~ 70°C
其它名称: G6W 1027M
G6Y-1DC9
G6Y19DC
G6Y1DC9
Precautions
■ Correct Use
Long-term Continuously ON Contacts
Using the Relay in a circuit where the Relay will be O N 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.
Seal integrity during cleaning will last 1 minute at 70 ° C. Complete
cleaning within these conditions.
Micro Strip Line Design
? It is advantageous to use the Micro Strip Line in high–frequency
transmission circuits because a low-loss transmission can be con-
structed with this method. By etching the dielectric base which has
copper foil attached to both sides, the Micro Strip Line will have a
concentrated electric field between the lines and ground as shown
in the following diagram.
Lines with impedance Z
? For example, when creating 50- Ω lines using a glass epoxy base
with a thickness of 1.6 mm, the above graph will yield a w/h ratio of
1.7 for a dielectric constant of 4.8. Since the base thickness is
1.6 mm, the width will be h × 1.7 ≈ 2.7 mm.
The thickness of the copper foil “t” is ignored in this design method,
but it must be considered because large errors will occur in extreme
cases such as a foil thickness of t ≈ w.
Furthermore, with the Micro Strip Line design, the lines are too
short for the G6Y’s intended frequency bandwidths, so we can
ignore conductive losses and the line’s attenuation constant.
? The spacing of the Strip Lines and ground pattern should be
comparable to the width of the Strip Lines.
? Design the pattern with the shortest possible distances. Excessive
distances will adversely effect the high-frequency characteristics.
? Spread the ground patterns as widely as possible so that potential
differences are unlikely to develop between the ground patterns.
? To avoid potential short-circuits, do not place the pattern’s leads
near the point where the bottom of the Relay attaches to the board.
Bending the Micro Strip Line
Strip Line w ith impedance Z
El b o w
Clip the corners.
Ground pattern
Dielectric base
(dielectric constant: ε r )
? The characteristic impedance of the lines Z O is determined by the
kind of base (dielectric constant), the base’s thickness, and the
width of the lines, as expressed in the following equation.
45 ° C
W hen the lines m u st c u r v e, an el b o w can b e u sed as sho w n
in the diagram. A distance (D) b et w een the lines of approxi-
ε
1+ 2H
Z O =
r
W
H
377
π W
1+In
π W
H
mately t w ice the line w idth is s u fficient.
Relay Handling
W: Line width
ε r: Effective dielectric constant
H: Dielectric base thickness
The copper foil thickness must be less than H.
? The following graph shows this relationship.
Dielectric constant (ε r )
Micro Strip (w/h)
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 in a cold
cleaning bath immediately after soldering.
338
High Frequency Relay
G6Y
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