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Circuit-breaker comparison and buyer guide
Difference Between MCCB and MCB: Choose by Circuit Duty
The practical difference is scale and control, but there is no universal ampere value that separates the two categories. The right breaker comes from the circuit, fault level and protection study.
Direkte Antwort
An MCB is usually the compact choice for lower-current final circuits with a selected fixed trip curve. An MCCB is usually the starting point for feeders, incomers and larger equipment that need a broader current or fault range, adjustable protection or more accessories. Exact ratings and functions depend on the product—not the acronym.
MCBCompact modular branch or final-circuit directionMCCBLarger frame with product-specific trip and accessory options
Four facts that decide the comparison
Use these checks before comparing price, case size or a current number printed on the handle.
01 · Circuit roleFinal circuit, feeder, incomer or equipment protection
02 · FehlerhaftpflichtProspective short-circuit current at the exact location
03 · Trip behaviorFixed curve or required adjustable protection functions
04 · Complete systemConductors, panel, accessories, coordination and standard
Reader route
Use the page as a selection workflow
This guide is for panel builders, contractors, facility engineers, equipment designers, maintenance teams, distributors and technical buyers. It supports early selection and purchasing, not final protection design.
Entscheidung im direkten Vergleich
MCCB vs MCB: the full comparison
The table shows common market roles. It does not set universal category limits. Product families overlap, and the marked standard and data sheet control every final claim.
Entscheidungsfaktor
MCB: common direction
MCCB: common direction
Was der Käufer bestätigen muss
Typical circuit role
Final or branch circuits in distribution boards, equipment and control panels
Feeders, incomers, larger branches, machines and industrial distribution
The breaker's position in the single-line diagram and coordination objective
Aktueller Bereich
Usually the lower, compact end of a product portfolio
Usually a broader and higher frame or trip-unit range
Common branch-circuit values; high-capacity MCB families also exist
Often offers higher fault duties and more frame options
Prospective fault current, operating voltage, standard and rating definition
Reiseverhalten
Often a fixed thermal-magnetic characteristic with a selected curve
May be fixed, adjustable thermal-magnetic or electronic
Complete time-current data and the exact functions of the ordering code
Montage und Anschlüsse
Commonly modular DIN-rail mounting with compact terminals and comb-busbar systems
Commonly plate or panel mounted with larger terminals and connection options
Panel authorization, busbar or cable kit, torque, clearances and heat management
Zubehör
Family-dependent auxiliaries, shunt trip, undervoltage release or residual-current add-ons
Often a wider system for remote operation, indication, metering and communication
Accessory voltage, wiring, installation position, certification and compatibility
Grundsätze
IEC 60898-1 is common for household and similar AC MCB applications; other standards can apply
IEC 60947-2 is common for industrial molded-case circuit breakers; UL 489 is relevant in North America
Exact standard edition, certification, voltage, poles and destination-market acceptance
Platz und Kosten
Usually smaller and simpler for repeated final circuits
Usually larger and may add trip-unit or accessory cost
Total installed cost, panel space, maintenance, spares and future expansion
There is no universal current cut-off between MCB and MCCB.
IEC 60898-1 includes AC circuit breakers up to 125 A within its scope, but that does not make 125 A a global product-category border. Some industrial miniature breakers follow IEC 60947-2, and MCCB ranges vary by manufacturer.
Both are resettable overcurrent protective devices. A conventional thermal-magnetic breaker uses a thermal element for sustained overload and a magnetic element for high fault current. The contacts open, and an arc-control system helps interrupt the current.
Shared function
Überspannungschutz
The breaker responds when current stays above the allowed condition long enough. Its curve must protect the conductor and equipment under the stated reference conditions.
Coordinate design current and conductor capacity.
Apply ambient, grouping and enclosure corrections.
Check load duty and normal inrush.
Shared function
Kurzschluss-Schutz
The breaker opens rapidly during a high fault current. Its interrupting rating must suit the available fault current at the installation point and voltage.
Use a short-circuit study or approved method.
Check upstream and downstream coordination.
Verify any backup or cascading claim.
Overcurrent protection is not every protection function.
A standard MCB or MCCB does not automatically provide residual-current protection, arc-fault protection, surge protection, motor overload protection or an emergency-stop function. A separate device or a documented product-specific feature may be required. See the SENTOP Fehlerstromschutzschalter page when leakage protection is part of the design.
Bewertungen, die zählen
Breaking capacity can decide before current rating does
A breaker may carry the normal load and still be unsuitable for the fault current available at its location. Read the value together with its standard, voltage and test meaning.
Icn
Bemessungskurzschlusskapazität
A rating used in the IEC 60898-1 context. Compare it only at the stated voltage and product conditions.
Icu
Maximales Ausschaltvermögen
An IEC 60947-2 rating for ultimate short-circuit interruption. Post-fault service can be limited.
Ics
Betriebsunterbrechungskapazität
An IEC 60947-2 rating linked to continued service after the defined test sequence.[5].
Do not compare “10 kA” to “10 kA” without context. The two markings may use different standards, voltages, pole arrangements or definitions. The available fault current can also change greatly between a main bus and a distant branch circuit.
Time-current behavior
MCB curves are usually fixed; MCCB settings may be adjustable
This is a useful difference, but it is not absolute. Fixed-trip MCCBs exist, while some compact breaker families support advanced functions. Verify the exact trip unit.
For many IEC-oriented MCBs, the curve letter describes the instantaneous magnetic-trip band. ABB technical material gives the following AC examples for its cited MCB range.[4].
B
3–5 × Nennstrom
A common starting direction for lower-inrush loads. The complete curve and fault loop still need verification.
C
5–10 × Nennstrom
A common direction for moderate inrush. Check actual startup current and required disconnection time.
D
10–20 × Nennstrom
A direction for higher expected inrush. It also needs enough fault current to operate as required.
Do not change a curve or trip setting only to stop nuisance trips.
First measure the load and inrush, then check wiring faults, conductors, ambient conditions and coordination. A higher threshold can remove needed protection.
An MCCB trip unit may provide adjustable long-time, short-time, instantaneous or ground-fault functions. Each function depends on the selected family and ordering code. Settings must be calculated, documented and controlled. “MCCB” alone does not mean “adjustable.”
Systemposition
MCB and MCCB often work in the same panel
The better question is often not “Which device wins?” It is “Where does each breaker belong?” An MCCB may protect a feeder while several downstream MCBs protect final circuits.
Selectivity, also called discrimination, aims to let the device nearest the fault clear it before an upstream device. It is not proven by size or ampere ratio. Use time-current data and tested manufacturer combinations where applicable.
One coordinated protection systemThe central MCCB and downstream modular breakers have different jobs. Their ratings and curves must work together.
INCOMER
Haupteingangsschutz
Common start: MCCB or ACB. Confirm source capacity, main-bus fault level, busbar rating, settings, neutral treatment and upstream coordination.
FEEDER
Submain or equipment feeder
Common start: MCCB. Review conductor protection, load duty, adjustable settings, remote accessories and downstream selectivity.
FINAL
Lighting, sockets and control circuits
Common start: MCB. Match current, cable capacity, curve, poles, prospective fault current, board temperature and grouping.
MOTOR
Motor branch circuit
System-specific. The breaker may provide short-circuit protection, while a starter, overload relay or drive provides the required motor overload function.[6].
DC / PV
Battery, solar or DC control circuit
Use a specifically rated product. Confirm DC voltage per pole, polarity, poles in series, breaking capacity, energy source and wiring instructions.
Coordinate the breaker layout with the chosen distribution box or enclosure. Mechanical fit does not prove electrical, thermal or certification compatibility.
Interaktive Planungshilfe
Build an MCB or MCCB starting direction
Choose the known project conditions. The result helps prepare a technical enquiry. It does not select a model or replace a fault and coordination study.
Planungsergebnis
Complete the four inputs
Final selection must verify voltage, rated current, conductors, prospective fault current, breaking rating, trip data, poles, installation conditions, standard, certification and coordination.
Auswahl-Workflow
Choose the breaker from the circuit in seven steps
The category choice becomes easier after the protection requirements are written down.
Definiere den Schaltkreis
Record AC or DC, voltage, phases and poles, load type, steady current, inrush, switching duty, conductor and protected equipment.
Define the installation
Record enclosure, ambient temperature, grouping, ventilation, altitude, contamination, mounting and who will operate the breaker.
Establish the fault level
Calculate or document the prospective short-circuit current at the actual breaker location. Do not reuse a value from another panel position.
Choose the standard path
Confirm the product and installation standards, target-market certification, voltage, poles and complete nameplate requirements.
Select the protection behavior
Choose the fixed curve or required long-time, short-time, instantaneous and ground-fault functions. Check conductor and load protection.
Das System koordinieren
Check upstream and downstream selectivity, backup protection, residual-current needs, motor or DC rules, thermal limits and accessories.
Verify the exact ordering code
Confirm frame, trip unit, terminals, torque, busbar or cable kit, dimensions, handle, accessories, certificates, labels and test documents.
Vermeidbare Fehler
Common MCB and MCCB selection mistakes
Selecting by ampere rating alone
A breaker can carry the normal load but still have the wrong trip behavior, breaking capacity, voltage rating, standard or coordination. Match the whole circuit.
Assuming every MCCB is adjustable
Fixed-trip MCCBs exist. An adjustable family can also offer different trip units and setting ranges. Specify the protection functions and verify the exact code.
Treating B, C and D as motor ratings
The curve letter describes instantaneous behavior in a stated product context. It does not replace motor starting data, overload protection or coordination.
Using an AC breaker on DC by appearance
DC interruption is product-specific. Use only a model with the required DC voltage, polarity, pole arrangement, breaking capacity and wiring instructions.
Assuming a larger upstream breaker will be selective
A larger rating does not prove discrimination. Compare time-current behavior and use verified manufacturer selectivity or cascading data where required.
Ignoring terminals, torque and enclosure heat
Poor termination and thermal derating can cause overheating or unwanted trips. Use the exact conductor range, torque, spacing and temperature information.
Checkliste für Käufer und Angebotsanfragen
“100 A MCCB” or “16 A MCB” is not a complete request
A useful request connects the device to the electrical system, installation and target market. A one-line diagram, panel schedule or clear nameplate photo can shorten model matching.
AC/DC, frequency, earthing, phases, poles, feeder/final role and one-line diagram.
02 · Laden
Current and inrush
Design current, duty, startup current, conductor, protected equipment and motor data.
03 · Schutz
Fault and trip data
Prospective fault current, breaking rating, curve or settings, coordination and extra functions.
04 · Order
Mechanische und kommerzielle Daten
Mounting, terminals, accessories, target standard, quantity, documents, packaging and destination.
FAQ
Questions about the difference between MCCB and MCB
Was ist der Hauptunterschied zwischen MCB und MCCB?
An MCB is usually a compact breaker for lower-current final circuits with a selected fixed trip curve. An MCCB is usually used for feeders, incomers or larger equipment that need a broader current or fault range, adjustable protection or more accessories. The exact model data controls the final difference.
Ist ein MCCB immer besser als ein MCB?
No. An MCCB may be unnecessarily large, complex or costly for a standard final circuit. A suitable MCB is the better choice when its voltage, current, trip curve, breaking capacity, standard and installation conditions meet the circuit.
What current rating separates MCB from MCCB?
There is no universal dividing current. IEC 60898-1 covers household and similar AC breakers up to 125 A within its scope, but product families and standards overlap. Use the marked standard and exact data sheet.
Are MCCB trip settings adjustable?
Often, but not always. MCCBs can have fixed thermal-magnetic, adjustable thermal-magnetic or electronic trip units. Confirm the ordering code, available functions, adjustment ranges and approved settings method.
What do B, C and D mean on an MCB?
They identify different instantaneous magnetic-trip bands in the applicable product context. Typical AC examples are B at 3–5 times rated current, C at 5–10 times and D at 10–20 times. Use the exact manufacturer curve for design.
Kann ein Leitungsschutzschalter (MCB) in einem Industrieverteiler verwendet werden?
Yes, when the exact MCB meets the voltage, current, fault, trip, standard, temperature, enclosure and coordination requirements. Industrial use alone does not require an MCCB.
Can an MCCB protect a motor by itself?
Not always. A motor circuit needs short-circuit protection and overload protection matched to the motor system. The MCCB may need coordination with a starter, overload relay or drive.
Can I use an AC MCB or MCCB on DC?
Only when the manufacturer explicitly rates that model and pole arrangement for the required DC circuit. Check DC voltage, polarity, poles in series, breaking capacity and wiring instructions.
Sicherheitshinweis: This page is a comparison and purchasing aid. It does not replace a qualified short-circuit, conductor-protection, selectivity or installation design.
Use the exact breaker instructions, approved panel or enclosure documentation, local electrical rules and project protection study. If the fault current or required trip function is unknown, do not finalize the breaker.
Need an MCB or MCCB requirement reviewed?
Send the one-line diagram, system voltage, load and inrush, conductor data, prospective fault current, trip requirements, panel conditions, target standard, quantity and destination.
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