DY125U MCCB 100A 3P 415V AC 10kA Thermal Magnetic 50/60 Hz with Spreader Terminals | L&T – EM90983OOKO
₹3,390.00 Excl. GST
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Sourced through authorised channels, the EM90983OOKO EM90983OOKO mccb delivers dependable performance for reliable circuit protection and isolation. Key ratings include 100 A, 415V AC, 3 Poles. myelectric.in stocks the DY125U MCCB 100A 3P 415V AC 10kA Thermal Magnetic 50/60 Hz with Spreader Terminals | L&T for contractors, panel builders, and project buyers — buy online with GST invoice, or request a bulk quote for domestic supply and export to UAE, Singapore, UK, USA, Sri Lanka and more.
📋 Technical Specifications
| Parameter | Value |
|---|---|
| Brand | EM90983OOKO |
| Part Number / SKU | EM90983OOKO |
| Category | MCCB |
| Current Rating | 100 A |
| Voltage Rating | 415V AC |
| Poles | 3 Poles |
| Breaking Capacity | 10 kA |
| Frequency | 60 Hz |
| Rated Operational Voltage (Ue) | 415V AC (50/60 Hz) |
| Mounting | Fixed, front connected |
| Rated Frequency | 50/60 Hz |
| Standard | IEC 60947-2 / IS 13947-2 |
| Certifications | BIS certified where applicable |
⚡ Key Features
- 10 kA breaking capacity at 415V AC — safely clears bolted three-phase faults in commercial and light industrial switchboards.
- Thermal-magnetic trip unit — factory-calibrated overload and short-circuit protection; suitable for standard feeder circuits without electronic adjustment.
- 3 Poles — three-phase feeder protection; neutral not switched (TN-C / IT systems).
- Manufactured to IEC 60947-2 / IS 13947-2 — complies with the applicable Indian BIS and IEC international standards for this product category.
- BIS certified where applicable — meets Indian regulatory requirements for use in government, commercial, and industrial electrical installations.
- Genuine authorised EM90983OOKO product — sourced directly from the official distribution network with full manufacturer traceability and warranty.
- GST invoice provided for India orders — valid for corporate procurement, government project orders, and public tender supply via myelectric.in.
- Worldwide export available — UAE, Singapore, UK, USA, Sri Lanka & more. Contact +91 94814 00316 for bulk pricing and international shipping.
❓ Frequently Asked Questions
Q: What load can the EM90983OOKO protect at its rated 100 A?
A: The EM90983OOKO is rated to carry and protect circuits up to 100 A continuously. For motor loads, ensure the full-load current (FLC) of the motor does not exceed this rating. For resistive loads (heaters, lighting), the 100 A rating is used directly. Derate by 20% for ambient temperatures above 40°C.
Q: What does the 10 kA breaking capacity on the EM90983OOKO mean in practice?
A: Breaking capacity (10 kA) is the maximum prospective short-circuit current the EM90983OOKO can safely interrupt without damage. Before installing, verify that the prospective fault level at the installation point does not exceed 10 kA — this is checked using a fault level calculation or from the upstream transformer impedance data. Installing a breaker with insufficient breaking capacity is a serious safety violation.
Q: Can the EM90983OOKO be motorised for remote switching and automation?
A: Yes. EM90983OOKO MCCBs in this series support rotary handle adaptation and motorised operating mechanisms as accessories, enabling remote ON/OFF switching via PLC, SCADA, or BMS. Motorised MCCBs are used for automatic load management and remote trip in automated distribution systems.
Q: What trip unit type does the EM90983OOKO use — thermal-magnetic or electronic?
A: The EM90983OOKO uses a thermal-magnetic TMD trip unit — thermal bimetal for overload protection and electromagnetic mechanism for short-circuit. Compact, reliable, and maintenance-free for standard applications.
Q: Is the EM90983OOKO suitable for use as a motor branch circuit protector (Type E coordination)?
A: MCCBs used for motor branch circuit protection must be coordinated with the downstream overload relay for Type 2 coordination (no damage to contactor or relay on short-circuit). Verify the EM90983OOKO coordination table for the specific contactor-overload-MCCB combination to confirm Type 1 or Type 2 coordination is achieved.













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