EL500 Series
EL500 Earth Leakage Relay / Residual Current Monitor (RCM)
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Description
The EL500 Earth Leakage Relay is a microprocessor-based device designed to measure leakage current and isolate the faulty circuit from the system. Leakage current is sensed through a core-balance current transformer (CBCT). When the leakage current exceeds the trip level setting for the time setting, the device will trip. The trip level and trip time settings are adjustable with front-mounted potentiometers. Additional features include LED trip and power indication, LED bar graph indication for leakage current, front-panel and remote test and reset, and CT OPEN indication.
Features
Monitors, detects and protects power systems from earth leakage faults.
Wide range of selectable earth leakage current: 30 mA - 30 A
Configurable earth leakage trip time: 0-10 s
Wide auxiliary supply range: 110 - 240 Vac / Vdc
Base or DIN-rail mounting
Instantaneous trip for 5 times of set value of leakage current
1 changeover (Form C) and 1 NO (Form A) relay output
Specifications
- Supply Voltage: 110 - 240 Vac / Vdc
- Supply Variation: ±20 %
- Fuse: Use external 250 mA time-delay fuse
- Frequency: 50 / 60 Hz
- Power Consumption: (Max.) 5 VA
- Leakage Current Range (IΔn): 30 mA to 30 A
- Trip-level settings (A): 0.03, 0.1, 0.3, 0.5, 1, 3, 5, 10, 20, 30
- Type Class: ‘A’ True RMS measurement (as per IEC 60947-2 appendix M) up to lΔn = 3 A
- Max. Crest Factor: 4
- Reset Mode: Manual Reset
- Reset Enable and Reset Time: Below 50% of set current threshold in presence of CBCT and < 1 s
- Trip Time (Δt in s): 0.00, 0.06, 0.15, 0.25, 0.5, 0.8, 1, 2.5, 5, 10
- Test/Reset: Local and Remote (potential free-contacts, up to 10 m cable length for external button)
- Setting Accuracy: +0, -20 % (including CBCT accuracy)
- Repeat Accuracy: ±2%
Output
- Relay Output: 1 Changeover (Form C) and 1 NO (Form A)
- Contact Rating: 5 A (Resistive) at 240 Vac / 30 Vdc
- Electrical Life: 1 x 105 operations
- Mechanical Life: 1 x 107 operations
Utilization Category:
- AC-15: Rated Voltage (Ue): 120 / 240 V, Rated Current (le): 3.0 / 1.5 A
- DC-13: Rated Voltage (Ue): 125 / 250 V, Rated Current (le): 0.22 / 0.1 A
LED Indication:
- Power: Power On (Solid Green)
- EL/CT: EL Trip (Solid Red), CT Open (Blinking Red)
- Leakage Current Bar Graph: 30% of setting (Solid Green), 45% of setting (Solid Green), 60% of setting (Solid Yellow), 75% of setting (Solid Red), LEDs blink when TST/RST is pressed
- Operating Temperature: -15 °C to +60 °C
- Storage Temperature: -20 °C to +80 °C
- Humidity (Non Condensing): 95% (Rh)
- Enclosure: Flame Retardant UL94-V0
- Dimension: (WxHxD) (in mm) 36 x 90 x 66.2
- Weight (unpacked): Approx. 150 g
- Mounting: Base / DIN-rail
- Degree of Protection: IP20 for Terminals, IP40 for Enclosure
Ordering Information
| ORDERING NUMBER | DESCRIPTION |
| EL500-00-10 * | 110-240 Vac / Vdc, Current Range 30 mA-30 A, 1 C/O+1 NO, Manual Reset |
Accessories
ELCT500 Series Core-Balance Current Transformer
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Top FAQs
A protection relay is a device that receives inputs typically from current transformers CT’s (but can be other sources) and then compares these inputs to set levels. If these inputs exceed the set levels a protection relay can then provide that information via display or indication, feed that information to other electronic control devices or it can be connected to a circuit breaker to isolate power.
Yes, currently Fuseco can offer both earth leakage and NER relays that are compliant to AS2081:2011. The relay manufacturer (Littelfuse) is also currently in the final stages of development for an AS2081:2011 compliant continuity relay that we expect to release in the near term.
An arc fault is a type of electrical fault that results from the breakdown of an insulating medium between two conductors where the energy is enough to sustain an arc across the insulator (often air) and can cause extreme amounts of light (arc flash), immense heat upwards of 19,000 degrees, and a resulting explosive pressure wave (arc blast). By using a relay that has optical sensors we can detect the flash of light the emanates from an Arc Flash and within 1 msec send a signal to a breaker to interrupt power. Because of the immense energy being released by an Arc Flash reaction time is critical. It can be seen on the graph that with a relay reaction time of only 1 msec (+ circuit breaker reaction time) we can interrupt power before the Arc Flash can result in critical damage.
An arc-flash happens when electric current flows through an air gap between conductors. There are several ways this can happen but the most common occurrence is when conductor insulation is worn or broken down.
The most important aspects of arc-flash relays are:
- reaction time
- trip reliability
- ease of installation
- sensor flexibility
- software
- sensor design
- avoidance of nuisance tripping
- scalability
To gain a deeper understanding of which features to consider when selecting an arc-flash relay please refer to the downloadable application guides.
Arc-flash relays are a necessary component in an electrical cabinet because they reduce the amount of incident energy in the system. While an arc-flash relay cannot prevent an arc flash from happening, it will protect critical assets and workers’ safety by reducing the severity of the flash. An arc-flash relay is an integral part of an arc-flash protection scheme that can minimize damage, and save money, time, and lives.
Three phase power systems are most often solidly earthed, however by using a Neutral Earthing Resistor (NER) a power system can be resistance earthed. This is done so that if an earth fault were to occur the amount of fault current will be limited by the NER resistance. One potential problem with a resistance earthed system is; what happens if the NER goes open circuit due to damage? If this were to happen the power system has now changed from a resistance earthed system to a system with no earth reference (floating). Now the NER is no longer restricting the amount of fault current and other devices that rely on an earth reference in order to operate, cannot do so. By using a NER monitoring relay the resistance and integrity of a NER can be continually monitored to detect for any variance in the NER resistance or integrity.
An earth fault can occur as a result of inadvertent contact between and energized conductor and earth or equipment frame. There can also be earth leakage from a system without “inadvertent contact”. This type of fault can be called capacitive earth leakage and it is caused by a capacitive effect between a high power conductor and earth. Small amount of earth leakage current can occur as a result of this capacitive effect. Whether it is smaller amounts current from capacitive earth leakage or larger amounts of current from direct inadvertent contact an earth leakage relay can detect this fault current. In all electrical circuits, current returns to its source. An earth fault relay can use a zero sequence CT to monitor phase current to ensure that all current coming from the source returns on those same conductors or it can monitor current in the connection between transformer neutral and earth. By either method the earth leakage relay detect any lost current to earth.
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Applicable Industries
Hi Tim, just wanted to thank you and the Fuseco team for your help. You've managed to help us solve some nagging issues here and the Littelfuse SE-330AU relay installation has saved us a lot of time. Thanks!
Mark Sherman
PGS Silver, Queensland
Just wanted to send a note of thanks to you guys. When it comes to relays, your advice & service is high level & appreciated. Cheers.
Jesse Marshall
Newcrest WA
The Littelfuse SE-701 & the CT's are functioning well. Thanks guys, really appreciate your help. Good to work with people you can rely on.
Cliff Peligro
Alpha Coal, Queensland
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