Omron Electronic Components Signal Relay G6J-Y, 2CO, DC, 5V ...
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Omron 08 Cat 1-302 5/10/07 15:39 PCB Signal Relay – G6H Page 210 Text Surface-Mounting Signal Relay – G6J-Y Ultra-compact and Slim DPDT Relay ■ ROHS compliant. ■ Dimensions of 5.7 x 10.6 x 9 mm (W x L x H) Signal Relays represent a reduction of approximately 56% in mounting area compared with the OMRON G6S, for higher-density mounting.
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5/10/07 15:39 Page 212 Surface-Mounting Signal Relay – G6J-Y Text Text Surface-Mounting Signal Relay – G6J-Y Standard Specifications ■ Characteristics Item Contact mechanism: Crossbar twin Ag (Au-alloy contact) Enclosure rating: ■ Plastic-sealed Coil Rating Single-side Stable Relays (G6J-2P-Y, G6J-2FS-Y, G6J-2FL-Y) Single-side Stable Relays Single-winding Latching Relays G6J-2P-Y, G6J-2FS-Y, G6J-2FL-Y G6JU-2P-Y, G6JU-2FS-Y, G6JU-2FL-Y Contact resistance (See note 1.) 100 mΩ max.
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5/10/07 15:39 Page 212 Surface-Mounting Signal Relay – G6J-Y Text Text Surface-Mounting Signal Relay – G6J-Y Standard Specifications ■ Characteristics Item Contact mechanism: Crossbar twin Ag (Au-alloy contact) Enclosure rating: ■ Plastic-sealed Coil Rating Single-side Stable Relays (G6J-2P-Y, G6J-2FS-Y, G6J-2FL-Y) Single-side Stable Relays Single-winding Latching Relays G6J-2P-Y, G6J-2FS-Y, G6J-2FL-Y G6JU-2P-Y, G6JU-2FS-Y, G6JU-2FL-Y Contact resistance (See note 1.) 100 mΩ max.
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Page 214 Text Surface-Mounting Signal Relay – G6J-Y 55 33 AC resistive load 11 0.7 0.7 AC resistive load 0.5 0.5 DC resistive load 0.3 0.3 DC resistive load Ambient Temperature vs. Switching Current 250 250 200 200 150 150 Change rate on the basis of initial value (%) 10 10 77 Ambient Temperature vs.
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Page 214 Text Surface-Mounting Signal Relay – G6J-Y 55 33 AC resistive load 11 0.7 0.7 AC resistive load 0.5 0.5 DC resistive load 0.3 0.3 DC resistive load Ambient Temperature vs. Switching Current 250 250 200 200 150 150 Change rate on the basis of initial value (%) 10 10 77 Ambient Temperature vs.
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Page 216 Surface-Mounting Signal Relay – G6J-Y Text 30 25 5.0 Operate bounce time 35 Release bounce time 30 25 20 20 15 15 10 10 5 5 0.5 1 1.5 2 2.5 3 0 0.5 1 1.5 Time (ms) 2 2.5 3.0 Terminal Arrangment/ 2.0 10.3 10.6 1.0 Operate voltage 0.0 −1.0 3 5.2 5.7 9 Mounting Dimensions Internal Connections (Bottom View) G6J-2P Orientation mark Tolerance ±0.1 mm Eight, 9 Eight, 0.85-dia. 0.85-dia. holes holes 11 22 33 44 77 66 55 ++ Release voltage 3.2 3.2 3.5 3.5 0.
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Page 216 Surface-Mounting Signal Relay – G6J-Y Text 30 25 5.0 Operate bounce time 35 Release bounce time 30 25 20 20 15 15 10 10 5 5 0.5 1 1.5 2 2.5 3 0 0.5 1 1.5 Time (ms) 2 2.5 3.0 Terminal Arrangment/ 2.0 10.3 10.6 1.0 Operate voltage 0.0 −1.0 3 5.2 5.7 9 Mounting Dimensions Internal Connections (Bottom View) G6J-2P Orientation mark Tolerance ±0.1 mm Eight, 9 Eight, 0.85-dia. 0.85-dia. holes holes 11 22 33 44 77 66 55 ++ Release voltage 3.2 3.2 3.5 3.5 0.
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15:39 Page 218 Surface-Mounting Signal Relay – G6J-Y Text Text Surface-Mounting Signal Relay – G6J-Y Stick Packing and Tape Packing IRS Method (for Surface-Mounting Terminal Relays) BB Cross Section 16.0±0.1 2.0±0.1 Temperature (°C) 1. Stick Packing Relays in stick packing are arranged so that the orientation mark of each Relay is on the left side. Always confirm that the Relays are in the correct orientation when mounting the Relays to the PCBs. Recommended Soldering Method +0.1 Ø1.5-0.0 4.0±0.
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15:39 Page 218 Surface-Mounting Signal Relay – G6J-Y Text Text Surface-Mounting Signal Relay – G6J-Y Stick Packing and Tape Packing IRS Method (for Surface-Mounting Terminal Relays) BB Cross Section 16.0±0.1 2.0±0.1 Temperature (°C) 1. Stick Packing Relays in stick packing are arranged so that the orientation mark of each Relay is on the left side. Always confirm that the Relays are in the correct orientation when mounting the Relays to the PCBs. Recommended Soldering Method +0.1 Ø1.5-0.0 4.0±0.
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5/10/07 15:39 Page 220 Surface-Mounting Signal Relay – G6J-Y Text Precautions CORRECT USE Long Term Current Carrying Under a long-term current carrying without switching, the insulation resistance of the coil goes down gradually due to the heat generated by the coil itself. Furthermore, the contact resistance of the Relay will gradually become unstable due to the generation of film on the contact surfaces. A Latching Relay can be used to prevent these problems.
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