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G3MC101PDC24
SOLID STATE RELAYS
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- Manufacturer: OMRON / PARTNER STOCK
- Product type:
- SVHC: No SVHC (25-Jun-2025)
| Delivery and price | |
|---|---|
| Units per pack | 75 |
| Price | 4.15 € |
| Current stock | 100+ |
| Lead time | 30 days |
## **Solid State Relay G3MC** ## **Compact, Thin-profile, Low-cost SSR with Reinforced Insulation** - Small bottom surface area (approx. 80% of the conventional G3MB’s), ideal for close PCB mounting. - DC input and AC output for an applicable load of 1A at 40°C. - Compact, thin-profile SSR of monoblock construction with an all-in-one frame incorporates a PCB, terminals, and a heatsink. - Approved by UL and CSA. VDE certified models available. - Models with reinforced insulation are available. ## **Orderin Information g** To Order: Select the part number and add the desired coil voltage rating, (e.g., G3MC-101P- _DC12_ ). |**Isolation**|**Zero-cross function**|**Built-in snubber circuit**|**Rated output load**|**Rated input voltage**|**Part number**| |---|---|---|---|---|---| |Phototriac|Yes|Yes|1 A at 100 to 120 VAC<br>(75 to 132 VAC)|5 VDC|**G3MC-101P**| |||||12 VDC|| |||||24 VDC|| ||No|||5 VDC|**G3MC-101PL**| |||||12 VDC|| |||||24 VDC|| ||Yes||2 A at 100 to 240 VAC<br>(75 to 264 VAC)|5 VDC|**G3MC-202P**| |||||12 VDC|| |||||24 VDC|| ||No|||5 VDC|**G3MC-202PL**| |||||12 VDC|| |||||24 VDC|| - **Note: 1.** All models meet UL and CSA standards. In order to obtain VDE approved versions with UL, CSA and VDE Logos, add “-VD” to the part number. Example: G3MC-101P _-VD_ -DC12 **2.** 2A models are available with reinforced insulation. Add “-1” to the part number to obain 2A models with reinfored insulation. Examples: G3MC-202PL _-1_ -DC5 G3MC-202P-VD _-1_ -DC24 Solid State Relay **G3MC** 401 ## **S ecifications p** ## ■ **Ratings (Ambient temperature 25°C)** ## **Input** |**Input**||||||||| |---|---|---|---|---|---|---|---|---| |**Rated voltage**|**Operating voltage**<br>**Impedance**||||**Voltage levels**|||| |||||**Must operate voltage**|||**Must dropout voltage**|| |5 VDC|4 to 6 VDC<br>300Ω ±20%|||4 VDC max.|||1 VDC min.|| |12 VDC|9.6 to 14.4 VDC<br>800Ω ±20%|||9.6 VDC max.||||| |24 VDC|19.2 to 28.8 VDC<br>1.6kΩ ±20%|||19.2 VDC max.||||| |**Note:**Each model has 5-VDC, 12-VDC, and 24-VDC input versions.||||||||| |**Output**||||||||| |**Part number**<br>**Applicable load**<br>**Rated load voltage**<br>**Load voltage range**<br>**Load current**<br>**Surge current**<br>G3MC-101P(L)(-VD)<br>100 to 120 VAC, 50/60 Hz<br>75 to 132 VAC, 50/60 Hz<br>0.1 to 1 A<br>8 A (60 Hz, 1 cycle)<br>G3MC-202P(L)(-VD)(-1)<br>100 to 240 VAC, 50/60 Hz<br>75 to 264 VAC, 50/60 Hz<br>0.1 to 2 A<br>30 A (60 Hz, 1 cycle)<br>~~——_————_—~~||||||||| |■**Characteristics**||||||||| |**Item**|**G3MC-101P(-VD)**<br>**G3MC-101PL(-VD)**|||**G3MC-202P(-VD)(-1)**|||**G3MC-202PL(-VD)(-1)**|| |**Operate time**|1/2 of load power source<br>1 ms max.|||1/2 of load power source||1 ms max.||| ||cycle + 1 ms|||cycle + 1 ms||||| |**Release time**|1/2 of load power source cycle + 1 ms)|||||||| |**Output ON voltage drop**|1.6 V (RMS) max.|||||||| |**Leakage current**|1 mA max. (at 100 VAC)|||1.5 mA max. (at 200 VAC)|1.5 mA max. (at 200 VAC)|||| |**Insulation resistance**|1,000 MΩmin. (at 500 VDC)|||||||| |**Dielectric strength**|2,500 VAC, 50/60 Hz for 1 min (3,000 VAC, 50/60 Hz for 1 min. for G3MC-|2,500 VAC, 50/60 Hz for 1 min (3,000 VAC, 50/60 Hz for 1 min. for G3MC-|2,500 VAC, 50/60 Hz for 1 min (3,000 VAC, 50/60 Hz for 1 min. for G3MC-@@@-VD-1)|||||| |**Vibration resistance**|Malfunction: 10 to 55 Hz, 0.75-mm double amplitude|||||||| |**Shock resistance**|Malfunction: 1,000 m/s2(approx. 100G)|||||||| |**Ambient temperature**|Operating:–30°C to 80°C (with no icing or condensation)|||||||| ||Storage:–30°C to 100°C (with no icing or condensation)|||||||| |**Approved standards**|UL File No. E64562, CSA File No. LR35535|||||||| ||EN60950 File No. 5925UG (“-VD(-1)” type)|||||||| |**Ambient humidity**|Operating: 45% to 85%|||||||| |**Weight**|Approx. 2.5g (Approx. 5g for G3MC-202P(L)-VD-1)|||||||| Solid State Relay **G3MC** 402 ## **En ineerin Data g g** ## ■ **G3MC-101P(L)(-VD)** **Load Current vs. Ambient** **Temperature Characteristics** **==> picture [158 x 158] intentionally omitted <==** **----- Start of picture text -----**<br> 1.21.0 TOCEe<br>0.8<br>EAE<br>0.6 Ht<br>0.4 et AL<br>IN I<br>0.2 TPP ty<br>0<br>−30 eae −20 0 20 40 60 80 100<br>Ambient temperature (°C)<br>Load current (A)<br>**----- End of picture text -----**<br> ## **Inrush Current Resistivity** One cycle, non-repetitive (Keep the inrush current to half the rated value if it occurs repeatedly.) **==> picture [128 x 132] intentionally omitted <==** **----- Start of picture text -----**<br> I<br>Hs<br>A<br>Energized time (ms)<br>Peak inrush current (A)<br>**----- End of picture text -----**<br> ## ■ **G3MC-202P(L)(-VD)(-1)** **Load Current vs. Ambient Temperature Characteristics** **==> picture [152 x 156] intentionally omitted <==** **----- Start of picture text -----**<br> 2.52.0 TTI<br>1.5<br>1.0<br>LENGE<br>0.5<br>OOIEENE<br>−030 TTT −20 0 20 25 40 60 80 100<br>Ambient temperature (°C)<br>Load current (A)<br>**----- End of picture text -----**<br> ## **Inrush Current Resistivity** One cycle, non-repetitive (Keep the inrush current to half the rated value if it occurs repeatedly.) **==> picture [135 x 131] intentionally omitted <==** **----- Start of picture text -----**<br> ° TR<br>et<br>Tis<br>Energized time (ms)<br>Peak inrush current (A)<br>**----- End of picture text -----**<br> Solid State Relay **G3MC** 403 ## **Dimensions** Units: mm (inch) ## **G3MC-101P(L)(-VD)** **==> picture [161 x 102] intentionally omitted <==** **----- Start of picture text -----**<br> 4.5 max.<br>2 4.5 max __ .<br>-—— |<br>13.5 max.<br>0.8<br>3.5<br>2.54 0.25<br>4-1.6 4-0.7<br>P e 10.16 k 7.62 1.2<br>2.54<br>**----- End of picture text -----**<br> ## **PCB Dimensions (Bottom View)** **==> picture [54 x 7] intentionally omitted <==** **----- Start of picture text -----**<br> Four, 1.0-dia. holes<br>**----- End of picture text -----**<br> **Terminal Arrangement (Bottom View)** ## **G3MC-202P(L)(-VD)(-1)** **PCB Dimensions (Bottom View)** **==> picture [329 x 122] intentionally omitted <==** **----- Start of picture text -----**<br> 4.5 max.<br>2 4.5 ma x. (Bottom View)<br>Four, 1.0-dia. holes<br>COOP AT<br>20.5 max. 254<br>; CESSESporate} ft EEE<br>0.8 POPPE eer<br>3.5<br>Terminal Arrangement<br>2.54 0.25 (Bottom View)<br>4-1.6 4-0.7<br>1.2<br>2.54 PE 10.16 7.62 (—)4 3+)— 2 _ 4<br>**----- End of picture text -----**<br> Solid State Relay **G3MC** 404 ## **Precautions** ## ■ **General Precautions** Do not touch the terminals of the SSR while power is being supplied to the SSR. The terminals are charged with the power, and an electric shock may be received by touching the terminals. The built-in capacitor may have a residual voltage after the SSR is turned off. Be sure to discharge the residual voltage before touching the terminals of the SSR, otherwise an electric shock may be received. ## ■ **Mounting** **1.** Make sure that no excessive voltage or current is imposed on or flows to the input or output circuit of the SSR, otherwise the SSR may malfunction or burn. **2.** Solder the terminals of the SSR properly under the required soldering conditions. The SSR may be abnormally heated and burn if power is supplied to the terminals soldered incorrectly. **3.** Do not short-circuit the load of the SSR while power is supplied to the SSR. Do not short-circuit the power supply through the SSR. The SSR may be damaged, malfunction, or burn if the load or power supply is short-circuited. ## ■ **Correct use** The terminals of the SSR are highly heat-conductive. Each terminal must be soldered within 10 s at 260°C or within 5 s at 350°C. The SSR is of a thin-profile construction. To maintain the vibration resistance of the SSR, make sure that the space between the SSR and PCB is 0.1 mm maximum. Lifting of the PCB can be prevented by setting the hole diameter of the PCBs on both sides slightly smaller than the actual terminal dimension. ## ■ **Protective element** No overvoltage absorption element is built in. Therefore, if the G3MC is connected to an inductive load, be sure to connect the overvoltage absorption element. ## **G3MC-** @@@ **PL (without Zero cross function)** **==> picture [227 x 44] intentionally omitted <==** **----- Start of picture text -----**<br> Phototriac<br>+O i-O Td Load<br>Protective<br>Input Power<br>element<br>supply<br>a (MOV)<br>**----- End of picture text -----**<br> ## **G3MC-** @@@ **P (with Zero cross function)** Phototriac Load Protective Input element Power supply (MOV) ogSETI Select the model without the zero-cross function when using the Unit for phase control output. The casing works as a heat sink. When mounting two or more Units closely, make sure that the Units are properly ventilated by taking ambient temperature rises into consideration. If Units are closely mounted and used in places with no ventilation, the load current of each Unit must be 1/2 of the rated load current. Solid State Relay **G3MC** 405 **All sales are subject to Omron Electronic Components LLC standard terms and conditions of sale, which can be found at http://www.components.omron.com/components/web/webfiles.nsf/sales_terms.html** ~~pt~~ **ALL DIMENSIONS SHOWN ARE IN MILLIMETERS.** To convert millimeters into inches, multiply by 0.03937. To convert grams into ounces, multiply by 0.03527. ~~pT~~ OMRON. **OMRON ELECTRONIC OMRON ON-LINE COMPONENTS LLC** Global - http://www.omron.com 55 E. Commerce Drive, Suite B USA - http://www.components.omron.com Schaumburg, IL 60173 **847-882-2288** **OMRON ON-LINE** Global - http://www.omron.com USA - http://www.components.omron.com Printed in USA Cat. No. X301-E-1b 09/11 Specifications subject to change without notice Solid State Relay **G3MC**
Updated at June 10, 2026
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