NFPA 110 Level 1 vs Level 2 Classification Decision
Why this matters
NFPA 110 classifies emergency power supply systems into Level 1 (most critical) and Level 2 (less critical). The classification drives every other requirement in the standard: transfer time, run time, testing frequency, fuel storage capacity, enclosure rating, signage, and inspection regimen. Misclassifying a system saves install dollars and creates a liability when an inspector or insurance carrier reviews the install after a failure. This is the decision framework for assigning the correct level and the requirement summary for each.
What NFPA 110 covers (and does not)
NFPA 110 covers the performance requirements for emergency and standby power supply systems (EPSS) including generator sets, transfer switches, controls, and accessories that supply electrical power to loads classified as emergency, legally required standby, or optional standby per NEC Articles 700, 701, and 702.
NFPA 110 does not cover:
- The loads themselves (a hospital's emergency lighting requirements come from NFPA 99 and NFPA 101).
- Optional standby systems serving non critical loads (typical residential standby). These can follow NFPA 110 voluntarily, but are not required to.
The standard primarily governs commercial, institutional, and industrial systems. Residential standby installations under 22 kW serving a single family dwelling are almost never under NFPA 110 jurisdiction.
Level 1 vs Level 2 definition
Per NFPA 110 Chapter 4:
Level 1: "EPSS that are installed where failure of the equipment to perform could result in loss of human life or serious injuries." This is the highest classification. Hospitals, life safety systems in high rise buildings, certain water and wastewater facilities, public communications facilities, mass notification systems.
Level 2: "EPSS that are installed where failure of the EPSS to perform is less critical to human life and safety." Industrial processes where outage is costly but not life threatening, heating systems serving non critical occupancies, certain communications systems, certain water systems not classified Level 1.
The classification is assigned by the authority having jurisdiction (AHJ) and the engineer of record, based on the loads served and the applicable code body (typically NFPA 101 Life Safety Code, NFPA 99 Health Care Facilities, or local equivalent).
Class and Type designators
In addition to Level, NFPA 110 assigns Class and Type:
Class: defines the minimum run time at full rated load. The classes are:
| Class | Minimum run time |
|---|---|
| Class 0.083 | 5 minutes |
| Class 0.25 | 15 minutes |
| Class 2 | 2 hours |
| Class 6 | 6 hours |
| Class 48 | 48 hours |
| Class X | Other duration as required |
Type: defines the maximum transfer time from loss of normal power to availability of EPS power, in seconds:
| Type | Maximum transfer time |
|---|---|
| Type U | Uninterruptible (no break, like a UPS feeding the load while generator starts) |
| Type 10 | 10 seconds |
| Type 60 | 60 seconds |
| Type 120 | 120 seconds |
| Type M | Manual transfer (no automatic) |
A hospital generator powering operating room lighting might be classified Level 1, Class 96, Type 10. A standby generator for a wastewater pump station might be Level 2, Class 6, Type 60.
Decision framework
To classify a new installation:
- Identify the loads served. Are any of them life safety per NFPA 101, NFPA 99, or local code?
- If yes, Level 1.
- If no, determine if the loads are required by some other code provision (legally required standby per NEC 701). If yes, Level 2.
- If no code provision requires the standby (true optional standby per NEC 702), NFPA 110 classification is not required, though it can be applied voluntarily for project documentation.
Examples:
- Hospital operating room, ICU, exit signs, fire pump: Level 1.
- Smoke control fan in a high rise: Level 1.
- Telephone central office serving 911: Level 1.
- Snow melt heating for an emergency exit path: Level 2.
- Water booster pump for an apartment building (not life safety): Level 2.
- HVAC for a commercial building (non life safety): Level 2 if locally required, otherwise optional standby (not under NFPA 110).
- Residential standby for an owner occupied home: Optional standby, not under NFPA 110.
Level 1 requirements (summary)
Level 1 imposes the strictest requirements throughout the standard:
- Emergency power source must be on premises (no shore power, no power from a different building).
- Two separate fuel sources may be required for certain applications (a Class 6 Level 1 might require both natural gas and a 6 hour on site diesel fuel supply).
- Enclosures must meet specific weather, ventilation, and security requirements.
- Annual load bank test of 2 continuous hours (or actual building load if it meets 30 percent of nameplate kW for the monthly exercise).
- Monthly exercise at 30 percent of nameplate load minimum.
- Logbook retention for the life of the EPSS.
- 30 second maximum transfer time for Type 30 systems (newer NFPA 110 editions; older buildings may be grandfathered at slower types).
- All components UL listed.
- Annual inspection by qualified personnel.
- Fuel storage tank sized per Class (Class 6 = 6 hours of fuel at full rated load, Class 48 = 48 hours, etc.).
Level 2 requirements (summary)
Level 2 is less strict but still requires:
- Monthly exercise at 30 percent of nameplate load minimum (same as Level 1).
- Annual load bank test if monthly exercise does not reach 30 percent (same as Level 1).
- Logbook retention.
- Periodic inspection (NFPA 110 allows the AHJ to set frequency).
- Fuel storage per Class.
- Enclosure requirements less stringent.
- Transfer time per Type assigned (often Type 60 or Type 120 for Level 2).
Many of the most expensive NFPA 110 provisions (dual fuel, on premises only, hardened enclosure) are Level 1 specific. Level 2 installations are roughly 20 to 40 percent less costly to install correctly than equivalent Level 1.
Optional standby (NEC 702, not under NFPA 110)
NEC 702 covers standby systems serving loads not legally required. Most residential and many commercial installations fall here. The requirements are minimal:
References
- NFPA 110 Standard for Emergency and Standby Power Systems (current edition), Chapters 4 (Classification), 5 (Energy Source), 6 (Transfer Switches), 7 (Installation), 8 (Maintenance and Testing).
- NEC (NFPA 70) Articles 700 (Emergency Systems), 701 (Legally Required Standby Systems), 702 (Optional Standby Systems).
- NFPA 99 Health Care Facilities Code (drives Level 1 classification for medical loads).
- NFPA 101 Life Safety Code (drives emergency lighting and exit sign classification).
- NFPA 111 Standard on Stored Electrical Energy Emergency and Standby Power Systems (battery based EPSS).
- IEEE 446 Recommended Practice for Emergency and Standby Power Systems for Industrial and Commercial Applications.
- ASHE Health Facility Commissioning Guidelines.