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Section 110.2

California Energy Code (Title 24, Part 6) · 2019 edition · updated 2026-09-12 · California

CBSC: official editions, supplements and errata

MANDATORY REQUIREMENTS FOR SPACE-CONDITIONING EQUIPMENT

Certification by manufacturers. Any space-conditioning equipment listed in this section may be installed only if the manufacturer has certified to the Commission that the equipment complies with all the applicable requirements of this section.

(a) Efficiency. Equipment shall meet the applicable efficiency requirements in Tables 110.2-A through 110.2-K, subject to the following:

  1. If more than one efficiency standard is listed for any equipment in Tables 110.2-A through 110.2-K, the equipment shall meet all the applicable standards that are listed; and

  2. If more than one test method is listed in Tables 110.2-A through 110.2-K, the equipment shall comply with the applicable efficiency standard when tested with each listed test method; and

  3. Where equipment serves more than one function, it shall comply with the efficiency standards applicable to each function; and

  4. Where a requirement is for equipment rated at its “maximum rated capacity” or “minimum rated capacity,” the capacity shall be as provided for and allowed by the controls, during steady-state operation.

Exception 1 to Section 110.2(a): Water-cooled centrifugal water-chilling packages that are not designed for operation at ANSI/AHRI Standard 550/ 590 test conditions of 44°F leaving chilled water

temperature and 85°F entering condenser water temperature with 3 gallons per minute per ton condenser water flow shall have a maximum full load kW/ton and NPLV ratings adjusted using the following equation:

Adjusted maximum full-load kW/ton rating = (fullload kW/ton from Table 110.2-D)/ K adj Adjusted maximum NPLV rating = (IPLV from Table 110.2-D)/ K adj

Where:

K adj = (A) × (B)

A = 0.00000014592 × (LIFT) 4 0.0000346496 × (LIFT) 3 + 0.00314196 × (LIFT) 2 - 0.147199 × (LIFT) + 3.9302 LIFT = Lvg Cond – Lvg Evap (°F)

Lvg Cond = Full-load leaving condenser fluid temperature (°F) Lvg Evap = Full-load leaving evaporator fluid temperature (°F) B = (0.0015 × Lvg Evap) + 0.934 The adjusted full-load and NPLV values are only applicable for centrifugal chillers meeting all of the following full-load design ranges:

  • Minimum Leaving Evaporator Fluid Temperature: 36°F

  • Maximum Leaving Condenser Fluid Temperature: 115°F

  • LIFT ≥ 20°F and ≤ 80°F

Centrifugal chillers designed to operate outside of these ranges are not covered by this exception.

Exception 2 to Section 110.2(a): Positive displacement (air-cooled and water-cooled) chillers with a leaving evaporator fluid temperature higher than 32°F shall show compliance with Table 110.2-D when tested or certified with water at standard rating conditions, per the referenced test procedure.

Exception 3 to Section 110.2(a): Equipment pri - marily serving refrigerated warehouses or commercial refrigeration.

(b) Controls for heat pumps with supplementary elec- tric resistance heaters. Heat pumps with supplementary electric resistance heaters shall have controls:

  1. That prevent supplementary heater operation when the heating load can be met by the heat pump alone; and

  2. In which the cut-on temperature for compression heating is higher than the cut-on temperature for supplementary heating, and the cut-off temperature for compression heating is higher than the cut-off temperature for supplementary heating.

Exception 1 to Section 110.2(b): The controls may allow supplementary heater operation during:

A. Defrost; and

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Copyright © 2019 ICC. ALL RIGHTS RESERVED. Accessed by Kevin Day (kevin.day@dgs.ca.gov), (California Building Standards Commission) Order Number #100735044 on Jul 24, 2019 03:54 PM (PDT) pursuant to License Agreement with ICC. No further reproduction or distribution authorized. Single user only, copying and networking prohibited. ANY UNAUTHORIZED REPRODUCTION OR DISTRIBUTION IS A VIOLATION OF THE FEDERAL COPYRIGHT ACT AND THE LICENSE AGREEMENT, AND SUBJECT TO CIVIL AND CRIMINAL PENALTIES THEREUNDER.

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B. Transient periods such as start-ups and follow

  1. Setback capabilities. All thermostats shall have a clock mechanism that allows the building occupant to program the temperature setpoints for at least four periods within 24 hours. Thermostats for heat pumps shall meet the requirements of Section 110.2(b).

ing room thermostat setpoint advance, if the controls provide preferential rate control, intelligent recovery, staging, ramping or another control mechanism designed to preclude the unnecessary operation of supplementary heating.

Exception 2 to Section 110.2(b): Room air-conditioner heat pumps.

(c) Thermostats. All heating or cooling systems not controlled by a central energy management control system (EMCS) shall have a setback thermostat.

clude the unnecessary operation of supple- Exception to Section 110.2(c): Gravity gas wall mentary heating. heaters, gravity floor heaters, gravity room heaters, Exception 2 to Section 110.2(b): Room air-condi- noncentral electric heaters, fireplaces or decorative tioner heat pumps. gas appliances, wood stoves, room air conditioners

and room air-conditioner heat pumps.

  • (c) Thermostats. All heating or cooling systems not con

TABLE 110.2-A

AIR CONDITIONERS AND CONDENSING UNITS – MINIMUM EFFICIENCY REQUIREMENTS

EQUIPMENT TYPE SIZE CATEGORY EFFICIENCYa, b TEST PROCEDUREc
Air conditioners, air cooled
both split system and single
package
> 65,000 Btu/h and
< 135,000 Btu/h
11.2 EER
12.9 IEER
ANSI/AHRI 340/360
Air conditioners, air cooled
both split system and single
package
> 135,000 Btu/h and
< 240,000 Btu/h
11.0 EER
12.4 IEER
ANSI/AHRI 340/360
Air conditioners, air cooled
both split system and single
package
> 240,000 Btu/h and
< 760,000 Btu/h
10.0 EER
11.6 IEER
10.0 EER
11.6 IEER
Air conditioners, air cooled
both split system and single
package
> 760,000 Btu/h 9.7 EER
11.2 IEER
9.7 EER
11.2 IEER
Air conditioners,
water cooled
> 65,000 Btu/h and
< 135,000 Btu/h
12.1 EER
13.9 IEER
ANSI/AHRI 340/360
Air conditioners,
water cooled
> 135,000 Btu/h and
< 240,000 Btu/h
12.5 EER
13.9 IEER
ANSI/AHRI 340/360
Air conditioners,
water cooled
> 240,000 Btu/h and
< 760,000 Btu/h
12.4 EER
13.6 IEER
ANSI/AHRI 340/360
Air conditioners,
water cooled
> 760,000 Btu/h 12.2 EER
13.5 IEER
ANSI/AHRI 340/360
Air conditioners,
evaporatively cooled
> 65,000 Btu/h and
< 135,000 Btu/h
12.1 EERb
12.3 IEERb
ANSI/AHRI 340/360
Air conditioners,
evaporatively cooled
> 135,000 Btu/h and
< 240,000 Btu/h
12.0 EERb
12.2 IEERb
ANSI/AHRI 340/360
Air conditioners,
evaporatively cooled
> 760,000 Btu/h 11.7 EERb
11.9 IEERb
ANSI/AHRI 340/360
Condensing units,
air cooled
> 135,000 Btu/h 10.5 EER
11.8 IEER
ANSI/AHRI 365
Condensing units, water
cooled
> 135,000 Btu/h 13.5 EER
14.0 IEER
13.5 EER
14.0 IEER
Condensing units, evapora-
tively cooled
> 135,000 Btu/h 13.5 EER
14.0 IEER
13.5 EER
14.0 IEER

a. IEERs are only applicable to equipment with capacity control as specified by ANSI/AHRI 340/360 test procedures. b. Deduct 0.2 from the required EERs and IEERs for units with a heating section other than electric resistance heat. c. Applicable test procedure and reference year are provided under the definitions.

Copyright © 2019 ICC. ALL RIGHTS RESERVED. Accessed by Kevin Day (kevin.day@dgs.ca.gov), (California Building Standards Commission) Order Number #100735044 on Jul 24, 2019 03:54 PM (PDT) pursuant to License Agreement with ICC. No further reproduction or distribution authorized. Single user only, copying and networking prohibited. ANY UNAUTHORIZED REPRODUCTION OR DISTRIBUTION IS A VIOLATION OF THE FEDERAL COPYRIGHT ACT AND THE LICENSE AGREEMENT, AND SUBJECT TO CIVIL AND CRIMINAL PENALTIES THEREUNDER.

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Exceptions & meaning →

TABLE 110.2-B

HEAT PUMPS, MINIMUM EFFICIENCY REQUIREMENTS

EQUIPMENT TYPE SIZE CATEGORY SUBCATEGORY OR
RATING CONDITION
EFFICIENCYa, b TEST PROCEDUREc
Air cooled
(cooling mode), both split
system and single package
≥ 65,000 Btu/h and
< 135,000 Btu/h
11.0 EER
12.2 IEER
ANSI/AHRI 340/360
Air cooled
(cooling mode), both split
system and single package
≥ 135,000 Btu/h and
< 240,000 Btu/h
10.6 EER
11.6 IEER
10.6 EER
11.6 IEER
Air cooled
(cooling mode), both split
system and single package
≥ 240,000 Btu/h 9.5 EER
10.6 IEER
9.5 EER
10.6 IEER
Water source
(cooling mode)
≥ 65,000 Btu/h and
< 135,000 Btu/h
86ºF entering water 13.0 EER ISO-13256-1
Groundwater source
(cooling mode)
< 135,000 Btu/h 59ºF entering water 18.0 EER ISO-13256-1
Ground source
(cooling mode)
< 135,000 Btu/h 77ºF entering water 14.1 EER ISO-13256-1
Water source
water-to-water
(cooling mode)
< 135,000 Btu/h 86ºF entering water 10.6 EER ISO-13256-2
Groundwater source
water-to-water
(cooling mode)
< 135,000 Btu/h 59ºF entering water 16.3 EER ISO-13256-1
Ground source
brine-to-water
(cooling mode)
< 135,000 Btu/h 77ºF entering water 12.1 EER ISO-13256-2
Air cooled
(heating mode)
Split system and single
≥ 65,000 Btu/h and
< 135,000 Btu/h
(cooling capacity)
47°F db/43°F wb
outdoor air
3.3 COP ANSI/AHRI 340/360
Air cooled
(heating mode)
Split system and single
≥ 65,000 Btu/h and
< 135,000 Btu/h
(cooling capacity)
17°F db/15°F wb
outdoor air
2.25 COP 2.25 COP
Air cooled
(heating mode)
Split system and single
≥ 135,000 Btu/h
(cooling capacity)
47°F db/43°F wb
outdoor air
3.2 COP 3.2 COP
Air cooled
(heating mode)
Split system and single
≥ 135,000 Btu/h
(cooling capacity)
17°F db/15°F wb
outdoor air
2.05 COP 2.05 COP
Water source
(heating mode)
< 135,000 Btu/h
(cooling capacity)
68ºF entering water 4.3 COP ISO-13256-1
Water source
(heating mode)
≥ 135,000 Btu/h and
< 240,000 Btu/h
68ºF entering water 2.90 COP
Groundwater source
(heating mode)
< 135,000 Btu/h
(cooling capacity)
50ºF entering water 7 COP ISO-13256-1
Ground source
(heating mode)
< 135,000 Btu/h
(cooling capacity)
32ºF entering water 3.2 COP ISO-13256-1
Water source water-to-water
(heating mode)
< 135,000 Btu/h
(cooling capacity)
68ºF entering water 3.7 COP ISO-13256-2
Groundwater source
brine-to-water
(heating mode)
< 135,000 Btu/h
(cooling capacity)
50ºF entering water 3.1 COP ISO-13256-2
Ground source
brine-to-water
(heating mode)
< 135,000 Btu/h
(cooling capacity)
32ºF entering water 2.5 COP ISO-13256-2

a. IEERs are only applicable to equipment with capacity control as specified by ANSI/AHRI 340/360 test procedures. b. Deduct 0.2 from the required EERs and IEERs for units with a heating section other than electric resistance heat. c. Applicable test procedure and reference year are provided under the definitions.

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Copyright © 2019 ICC. ALL RIGHTS RESERVED. Accessed by Kevin Day (kevin.day@dgs.ca.gov), (California Building Standards Commission) Order Number #100735044 on Jul 24, 2019 03:54 PM (PDT) pursuant to License Agreement with ICC. No further reproduction or distribution authorized. Single user only, copying and networking prohibited. ANY UNAUTHORIZED REPRODUCTION OR DISTRIBUTION IS A VIOLATION OF THE FEDERAL COPYRIGHT ACT AND THE LICENSE AGREEMENT, AND SUBJECT TO CIVIL AND CRIMINAL PENALTIES THEREUNDER.

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TABLE 110.2-C

AIR-COOLED GAS-ENGINE HEAT PUMPS

EQUIPMENT TYPE SIZE CATEGORY SUBCATEGORY OR
RATING CONDITION
EFFICIENCY TEST PROCEDUREa
Air-cooled gas-engine heat pump
(cooling mode)
All capacities 95°F db outdoor air 0.6 COP ANSI Z21.40.4A
Air-cooled gas-engine heat pump
(heating mode)
All capacities 47°F db/43°F wb outdoor air 0.72 COP ANSI Z21.40.4A

a. Applicable test procedure and reference year are provided under the definitions.

TABLE 110.2-D WATER CHILLING PACKAGES—MINIMUM EFFICIENCY REQUIREMENTS a, b

EQUIPMENT TYPE SIZE CATEGORY PATH A
EFFICIENCYa, b
PATH A
EFFICIENCYa, b
TEST
PROCEDUREc
Air cooled, with condenser
electrically operated
< 150 tons ≥ 10.100 EER
≥ 13.700 IPLV
≥ 9.700 EER
≥ 15.800 IPLV
AHRI 550/590
Air cooled, with condenser
electrically operated
≥ 150 tons ≥ 10.100 EER
≥ 14.000 IPLV
≥ 9.700 EER
≥ 16.100 IPLV
≥ 9.700 EER
≥ 16.100 IPLV
Air cooled, without condenser
electrically operated
All capacities Air-cooled chillers without condensers must be
rated with matching condensers and comply with
the aircooled chiller efficiency requirements.
Air-cooled chillers without condensers must be
rated with matching condensers and comply with
the aircooled chiller efficiency requirements.
Air-cooled chillers without condensers must be
rated with matching condensers and comply with
the aircooled chiller efficiency requirements.
Water cooled, electrically
operated reciprocating
All capacities Reciprocating units must comply with the watercooled
positive displacement efficiency requirements.
Reciprocating units must comply with the watercooled
positive displacement efficiency requirements.
AHRI 550/590
Water cooled, electrically operated,
positive displacement
< 75 tons ≤ 0.750 kW/ton
≤ 0.600 IPLV
≤ 0.780 kW/ton
≤ 0.500 IPLV
AHRI 550/590
Water cooled, electrically operated,
positive displacement
≥ 75 tons
and < 150 tons
≤ 0.720 kW/ton
≤ 0.560 IPLV
≤ 0.750 kW/ton
≤ 0.490 IPLV
≤ 0.750 kW/ton
≤ 0.490 IPLV
Water cooled, electrically operated,
positive displacement
≥ 150 tons
and < 300 tons
≤ 0.660 kW/ton
≤ 0.540 IPLV
≤ 0.680 kW/ton
≤ 0.440 IPLV
≤ 0.680 kW/ton
≤ 0.440 IPLV
Water cooled, electrically operated,
positive displacement
≥ 300 tons
and < 300 tons
≤ 0.610 kW/ton
≤ 0.520 IPLV
≤ 0.625 kW/ton
≤ 0.410 IPLV
≤ 0.625 kW/ton
≤ 0.410 IPLV
Water cooled, electrically operated,
positive displacement
≥ 600 tons ≤ 0.560 kW/ton
≤ 0.500 IPLV
≤ 0.585 kW/ton
≤ 0.380 IPLV
≤ 0.585 kW/ton
≤ 0.380 IPLV
Water cooled, electrically operated,
centrifugal
> 150 ton ≤ 0.610 kW/ton
≤ 0.550 IPLV
≤ 0.695 kW/ton
≤ 0.440 IPLV
≤ 0.695 kW/ton
≤ 0.440 IPLV
Water cooled, electrically operated,
centrifugal
≥ 150 tons
and < 300 tons
≤ 0.610 kW/ton
≤ 0.550 IPLV
≤ 0.635 kW/ton
≤ 0.400 IPLV
≤ 0.635 kW/ton
≤ 0.400 IPLV
Water cooled, electrically operated,
centrifugal
≥ 300 tons
and < 400 tons
≤ 0.560 kW/ton
≤ 0.520 IPLV
≤ 0.595 kW/ton
≤ 0.390 IPLV
≤ 0.595 kW/ton
≤ 0.390 IPLV
Water cooled, electrically operated,
centrifugal
≥ 400 tons
and < 600 tons
≤ 0.560 kW/ton
≤ 0.500 IPLV
≤ 0.585 kW/ton
≤ 0.380 IPLV
≤ 0.585 kW/ton
≤ 0.380 IPLV
Water cooled, electrically operated,
centrifugal
≥ 600 tons ≤ 0.560 kW/ton
≤ 0.500 IPLV
≤ 0.585 kW/ton
≤ 0.380 IPLV
Air cooled absorption single effect All capacities ≥ 600 COP N.A.d ANSI/
AHRI 560
Water cooled absorption single effect All capacities ≥ 700 COP N.A.d N.A.d
Absorption double effect,
indirect-fired
All capacities ≥ 1,000 COP
≥ 1,050 IPLV
N.A.d N.A.d
Absorption double effect,
direct-fired
All capacities ≥ 1,000 COP
≥ 1,000 IPLV
N.A.d N.A.d
Water cooled gas engine
driven chiller
All capacities ≥ 1.2 COP
≥ 2.0 IPLV
N.A.d ANSI Z21.40.4

a. No requirements for:

  • Centrifugal chillers with design leaving evaporator temperature < 36°F; or

  • Positive displacement chillers with design leaving fluid temperatures ≤ 32°F; or

  • Absorption chillers with design leaving fluid temperature < 40°F.

b. Must meet the minimum requirements of Path A or Path B. However, both the full load (COP) and IPLV must be met to fulfill the requirements of the

applicable path. c. See Section 100.1 for definitions. d. NA means not applicable.

Copyright © 2019 ICC. ALL RIGHTS RESERVED. Accessed by Kevin Day (kevin.day@dgs.ca.gov), (California Building Standards Commission) Order Number #100735044 on Jul 24, 2019 03:54 PM (PDT) pursuant to License Agreement with ICC. No further reproduction or distribution authorized. Single user only, copying and networking prohibited. ANY UNAUTHORIZED REPRODUCTION OR DISTRIBUTION IS A VIOLATION OF THE FEDERAL COPYRIGHT ACT AND THE LICENSE AGREEMENT, AND SUBJECT TO CIVIL AND CRIMINAL PENALTIES THEREUNDER.

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TABLE 110.2-E

PACKAGED TERMINAL AIR CONDITIONERS AND PACKAGED TERMINAL HEAT PUMPS— MINIMUM EFFICIENCY REQUIREMENTS

EQUIPMENT TYPE SIZE CATEGORY (Input) SUBCATEGORY OR
RATING CONDITION
EFFICIENCYa TEST PROCEDUREc
EQUIPMENT TYPE SIZE CATEGORY (Input) SUBCATEGORY OR
RATING CONDITION
PTAC (cooling mode) Newly
constructed or newly conditioned
buildings or additions
All capacities 95°F db outdoor air 14.0 - (0.213 × Cap/
1000)a EER
ANSI/AHRI/
CSA 310/380
PTAC (cooling mode) Replacementsb All capacities 95°F db outdoor air 10.9 - (0.213 × Cap/
1000)a EER
10.9 - (0.213 × Cap/
1000)a EER
PTHP (cooling mode) Newly
constructed or newly conditioned
buildings or additions
All capacities 95°F db outdoor air 14.0 - (0.213 × Cap/
1000)a EER
14.0 - (0.213 × Cap/
1000)a EER
PTHP (cooling mode) Replacementsb All capacities 95°F db outdoor air 10.8 - (0.213 × Cap/
1000)a EER
10.8 - (0.213 × Cap/
1000)a EER
PTHP (heating mode) Newly
constructed or newly conditioned
buildings or additions
All capacities — 3.7 - (0.026 ×
Cap/1000)a COP
3.7 - (0.026 ×
Cap/1000)a COP
PTHP (heating mode) Replacementsb All capacities — 2.9 - (0.026 ×
Cap/1000)a COP
2.9 - (0.026 ×
Cap/1000)a COP
SPVAC (cooling mode) < 65,000 Btu/h 95°F db/75°F wb
outdoor air
11.0 EER ANSI/AHRI 390
SPVAC (cooling mode) ≥ 65,000 Btu/h and
< 135,000 Btu/h
95°F db/75°F wb
outdoor air
10.0 EER 10.0 EER
SPVAC (cooling mode) ≥ 135,000 Btu/h and
< 240,000 Btu/h
95°F db/75°F wb
outdoor air
10.0 EER 10.0 EER
SPVAC (Cooling Mode)
nonweatherized space constrained
≤ 30,000 Btu/h 95°F db/75°F wb
outdoor air
9.20 EER 9.20 EER
SPVAC (Cooling Mode)
nonweatherized space constrained
> 30,000 Btu/h
and≤ 36,000 Btu/h
95°F db/75°F wb
outdoor air
9.00 EER 9.00 EER
SPVHP (cooling mode) < 65,000 Btu/h 95°F db/75°F wb
outdoor air
11.0 EER 11.0 EER
SPVHP (cooling mode) ≥ 65,000 Btu/h and
< 135,000 Btu/h
95°F db/75°F wb
outdoor air
10.0 EER 10.0 EER
SPVHP (cooling mode) ≥ 135,000 Btu/h and
< 240,000 Btu/h
95°F db/75°F wb
outdoor air
10.0 EER 10.0 EER
SPVHP (Cooling Mode)
nonweatherized space constrained
≤ 30,000 Btu/h 95°F db/75°F wb
outdoor air
9.20 EER 9.20 EER
SPVHP (Cooling Mode)
nonweatherized space constrained
> 30,000 Btu/h
and≤ 36,000 Btu/h
95°F db/75°F wb
outdoor air
9.00 EER 9.00 EER
SPVHP (heating mode) < 65,000 Btu/h 47°F db/43°F wb
outdoor air
3.3 COP 3.3 COP
SPVHP (heating mode) ≥ 65,000 Btu/h and
< 135,000 Btu/h
47°F db/43°F wb
outdoor air
3.0 COP 3.0 COP
SPVHP (heating mode) ≥ 135,000 Btu/h and
< 240,000 Btu/h
47°F db/43°F wb
outdoor air
3.0 COP 3.0 COP
SPVHP (Heating Mode)
nonweatherized space constrained
≤ 30,000 Btu/h 47°F db/43°F wb
outdoor air
3.0 COP 3.0 COP
SPVHP (Heating Mode)
nonweatherized space constrained
> 30,000 Btu/h
and≤ 36,000 Btu/h
47°F db/43°F wb
outdoor air
3.0 COP 3.0 COP

a. Cap means the rated cooling capacity of the product in Btu/h. If the unit’s capacity is less than 7,000 Btu/h, use 7,000 Btu/h in the calculation. If the unit’s

capacity is greater than 15,000 Btu/h, use 15,000 Btu/h in the calculation. b. Replacement units must be factory labeled as follows: “MANUFACTURED FOR REPLACEMENT APPLICATIONS ONLY; NOT TO BE INSTALLED

IN NEWLY CONSTRUCTED BUILDINGS.” Replacement efficiencies apply only to units with existing sleeves less than 16 inches high or less than 42 inch wide and having a cross-sectional area less than 670 square inches. c. Applicable test procedure and reference year are provided under the definitions.

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Copyright © 2019 ICC. ALL RIGHTS RESERVED. Accessed by Kevin Day (kevin.day@dgs.ca.gov), (California Building Standards Commission) Order Number #100735044 on Jul 24, 2019 03:54 PM (PDT) pursuant to License Agreement with ICC. No further reproduction or distribution authorized. Single user only, copying and networking prohibited. ANY UNAUTHORIZED REPRODUCTION OR DISTRIBUTION IS A VIOLATION OF THE FEDERAL COPYRIGHT ACT AND THE LICENSE AGREEMENT, AND SUBJECT TO CIVIL AND CRIMINAL PENALTIES THEREUNDER.

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Exceptions & meaning →

TABLE 110.2-F

HEAT TRANSFER EQUIPMENT

EQUIPMENT TYPE SIZE CATEGORY MINIMUM EFFICIENCY TEST PROCEDUREb
Liquid-to-liquid heat exchangers Plate type NR ANSI/AHRI 400

a. NR = no requirement. b. Applicable test procedure and reference year are provided under the definitions.

TABLE 110.2-G PERFORMANCE REQUIREMENTS FOR HEAT REJECTION EQUIPMENT

EQUIPMENT TYPE TOTAL SYSTEM HEAT
REJECTION CAPACITY AT
RATED CONDITIONS
SUBCATEGORY OR
RATING CONDITION
PERFORMANCE
REQUIREDa, b, c, d
TEST PROCEDUREe
Propeller or axial fan open-
circuit cooling towers
All 95°F entering water
85°F leaving water
75°F entering air wb
≥ 42.1 gpm/hp CTI ATC-105
and
CTI STD-201
RS
Centrifugal fan
open-circuit cooling towers
All 95°F entering water
85°F leaving water
75°F entering air wb
≥ 20.0 gpm/hp ≥ 20.0 gpm/hp
Propeller or axial fan closed-
circuit cooling towers
All 102°F entering water
90°F leaving water
75°F entering air wb
≥ 16.1 gpm/hp ≥ 16.1 gpm/hp
Centrifugal fan closed-circuit
cooling towers
All 102°F entering water
90°F leaving water
75°F entering air wb
≥ 7.0 gpm/hp ≥ 7.0 gpm/hp
Propeller or axial fan
evaporative condensers
All R-507A test fluid
165°F entering gas temp
105°F condensing temp
75°F entering air wb
≥ 157,000
Btu/h**·** hp
CTI ATC-106
Propeller or axial fan
evaporative condensers
All Ammonia test fluid
140°F entering gas temp
96.3°F condensing temp
75°F entering air wb
≥ 134,000
Btu/h**·** hp
≥ 134,000
Btu/h**·** hp
Centrifugal fan evaporative
condensers
All R-507A test fluid
165°F entering gas temp
105°F condensing temp
75°F entering air wb
≥ 135,000
Btu/h**·** hp
≥ 135,000
Btu/h**·** hp
Centrifugal fan evaporative
condensers
All Ammonia test fluid
140°F entering gas temp
96.3°F condensing temp
75°F entering air wb
≥ 110,000
Btu/h**·** hp
≥ 110,000
Btu/h**·** hp
Air cooled condensers All 125°F condensing temperature
R22 test fluid
190°F entering gas temperature
15°F subcooling
95°F entering drybulb
176,000 Btu/h·hp ANSI/AHRI 460

a. For purposes of this table, open-circuit cooling tower performance is defined as the water flow rating of the tower at the given rated conditions divided by the

fan motor nameplate power. b. For purposes of this table, closed-circuit cooling tower performance is defined as the process water flow rating of the tower at the given rated conditions

divided by the sum of the fan motor nameplate rated power and the integral spray pump motor nameplate power. c. For purposes of this table air-cooled condenser performance is defined as the heat rejected from the refrigerant divided by the fan motor nameplate power. d. Open cooling towers shall be tested using the test procedures in CTI ATC-105. Performance of factory-assembled open cooling towers shall be either

certified as base models as specified in CTI STD-201 or verified by testing in the field by a CTI approved testing agency. Open factory assembled cooling towers with custom options added to a CTI certified base model for the purpose of safe maintenance or to reduce environmental or noise impact shall be rated at 90 percent of the CTI certified performance of the associated base model or at the manufacturer’s stated performance, whichever is less. Base models of open factory-assembled cooling towers are open cooling towers configured in exact accordance with the Data of Record submitted to CTI as specified by CTI STD-201. There are no certification requirements for field-erected cooling towers. e. Applicable test procedure and reference year are provided under the definitions.

For refrigerated warehouses or commercial refrigeration applications, condensers shall comply with requirements specified by Section 120.6(a) or Section 120.6(b).

Copyright © 2019 ICC. ALL RIGHTS RESERVED. Accessed by Kevin Day (kevin.day@dgs.ca.gov), (California Building Standards Commission) Order Number #100735044 on Jul 24, 2019 03:54 PM (PDT) pursuant to License Agreement with ICC. No further reproduction or distribution authorized. Single user only, copying and networking prohibited. ANY UNAUTHORIZED REPRODUCTION OR DISTRIBUTION IS A VIOLATION OF THE FEDERAL COPYRIGHT ACT AND THE LICENSE AGREEMENT, AND SUBJECT TO CIVIL AND CRIMINAL PENALTIES THEREUNDER.

100735044

ALL OCCUPANCIES—MANDATORY REQUIREMENTS FOR THE MANUFACTURE, CONSTRUCTION AND INSTALLATION OF SYSTEMS, EQUIPMENT AND BUILDING COMPONENTS

Exceptions & meaning →

TABLE 110.2-H

ELECTRICALLY OPERATED VARIABLE REFRIGERANT FLOW (VRF) AIR CONDITIONERS MINIMUM EFFICIENCY REQUIREMENTS

EQUIPMENT TYPE SIZE CATEGORY HEATING
SECTION TYPE
SUBCATEGORY OR
RATING CONDITION
MINIMUM
EFFICIENCY
TEST
PROCEDUREa
VRF Air
conditioners,
Air cooled
< 65,000 Btu/h All VRF multisplit system 13.0 SEER ANSI/
AHRI 1230
VRF Air
conditioners,
Air cooled
≥ 65,000 Btu/h and
< 135,000 Btu/h
Electric resistance
(or none)
VRF multisplit system 11.2 EER
15.5 IEERb
11.2 EER
15.5 IEERb
VRF Air
conditioners,
Air cooled
≥ 135,000 Btu/h and
< 240,000 Btu/h
Electric resistance
(or none)
VRF multisplit system 11.0 EER
14.9 IEERb
11.0 EER
14.9 IEERb
VRF Air
conditioners,
Air cooled
≥ 240,000 Btu/h Electric resistance
(or none)
VRF multisplit system 10.0 EER
13.9 IEERb
10.0 EER
13.9 IEERb

a. Applicable test procedure and reference year are provided under the definitions. b. IEERs are only applicable to equipment with capacity control as specified in ANSI/AHRI 1230 test procedures.

40 2019 CALIFORNIA ENERGY CODE

Copyright © 2019 ICC. ALL RIGHTS RESERVED. Accessed by Kevin Day (kevin.day@dgs.ca.gov), (California Building Standards Commission) Order Number #100735044 on Jul 24, 2019 03:54 PM (PDT) pursuant to License Agreement with ICC. No further reproduction or distribution authorized. Single user only, copying and networking prohibited. ANY UNAUTHORIZED REPRODUCTION OR DISTRIBUTION IS A VIOLATION OF THE FEDERAL COPYRIGHT ACT AND THE LICENSE AGREEMENT, AND SUBJECT TO CIVIL AND CRIMINAL PENALTIES THEREUNDER.

100735044

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Exceptions & meaning →

TABLE 110.2-I

ELECTRICALLY OPERATED VARIABLE REFRIGERANT FLOW AIR-TO-AIR AND APPLIED HEAT PUMPS—MINIMUM EFFICIENCY REQUIREMENTS

EQUIPMENT TYPE SIZE CATEGORY HEATING
SECTION TYPE
SUBCATEGORY OR
RATING CONDITION
MINIMUM
EFFICIENCY
TEST
PROCEDUREa, b
VRF Air cooled
(cooling mode)
< 65,000 Btu/h All VRF multisplit system 13.0 SEER AHRI 1230
VRF Air cooled
(cooling mode)
≥ 65,000 Btu/h and
< 135,000 Btu/h
Electric resistance
(or none)
VRF multisplit systema 11.2 EER
14.6 IEERc
11.2 EER
14.6 IEERc
VRF Air cooled
(cooling mode)
≥ 135,000 Btu/h and
< 240,000 Btu/h
Electric resistance
(or none)
VRF multisplit systema 10.6 EER
13.9 IEERc
10.6 EER
13.9 IEERc
VRF Air cooled
(cooling mode)
≥ 240,000 Btu/h Electric resistance
(or none)
VRF multisplit systema 9.5 EER
12.7 IEERc
9.5 EER
12.7 IEERc
VRF Water source
(cooling mode)
< 65,000 Btu/h All VRF multisplit systema
86ºF entering water
12.0 EER
15.8 IEERc
AHRI 1230
VRF Water source
(cooling mode)
≥ 65,000 Btu/h and
< 135,000 Btu/h
All VRF multisplit systema
86ºF entering water
12.0 EER
15.8 IEERc
VRF Water source
(cooling mode)
≥ 135,000 Btu/h and
< 240,000 Btu/h
All VRF multisplit systema
86ºF entering water
10.0 EER
13.8 IEERc
VRF Water source
(cooling mode)
≥ 240,000 Btu/h All VRF multisplit systema
86ºF entering water
10.0 EER
12.0 IEER
VRF Groundwater
source
(cooling mode)
< 135,000 Btu/h All VRF multisplit systema
59ºF entering water
16.2 EER AHRI 1230
VRF Groundwater
source
(cooling mode)
≥ 135,000 Btu/h All VRF multisplit systema
59ºF entering water
13.8 EER 13.8 EER
VRF Ground source
(cooling mode)
< 135,000 Btu/h All VRF multisplit systema
77ºF entering water
13.4 EER AHRI 1230
VRF Ground source
(cooling mode)
≥ 135,000 Btu/h All VRF multisplit systema
77ºF entering water
11.0 EER 11.0 EER
VRF Air cooled
(heating mode)
> 65,000 Btu/h
(cooling capacity)
— VRF multisplit system 7.7 HSPF AHRI 1230
VRF Air cooled
(heating mode)
> 65,000 Btu/h and
< 135,000 Btu/h
(cooling capacity)
— VRF multisplit system
47ºF db/43ºF wb outdoor air
3.3 COP 3.3 COP
VRF Air cooled
(heating mode)
> 65,000 Btu/h and
< 135,000 Btu/h
(cooling capacity)
— VRF multisplit system
47ºF db/43ºF wb outdoor air
2.25 COP 2.25 COP
VRF Air cooled
(heating mode)
> 135,000 Btu/h
(cooling capacity)
— VRF multisplit system
47ºF db/43ºF wb outdoor air
3.2 COP 3.2 COP
VRF Air cooled
(heating mode)
> 135,000 Btu/h
(cooling capacity)
— VRF multisplit system
17ºF db/15ºF wb outdoor air
2.05 COP 2.05 COP
VRF Water source
(heating mode)
< 65,000 Btu/h
(cooling capacity)
— VRF multisplit system
68ºF entering water
4.3 COP AHRI 1230
VRF Water source
(heating mode)
≥ 65,000 Btu/h and
< 135,000 Btu/h
(cooling capacity)
— VRF multisplit system
68ºF entering water
4.3 COP 4.3 COP
VRF Water source
(heating mode)
≥ 135,000 Btu/h and
< 240,000 Btu/h
(cooling capacity)
— VRF multisplit system
68ºF entering water
4.0 COP 4.0 COP
VRF Water source
(heating mode)
≥ 240,000 Btu/h
(cooling capacity)
— VRF multisplit system
68ºF entering water
3.9 COP 3.9 COP
VRF Groundwater
source
(heating mode)
< 135,000 Btu/h
(cooling capacity)
— VRF multisplit system
50ºF entering water
3.6 COP AHRI 1230
VRF Groundwater
source
(heating mode)
≥ 135,000 Btu/h
(cooling capacity)
— VRF multisplit system
50ºF entering water
3.3 COP 3.3 COP
VRF Groundwater
source (heating
mode)
< 135,000 Btu/h
(cooling capacity)
— VRF multisplit system
32ºF entering water
3.1 COP AHRI 1230
VRF Groundwater
source (heating
mode)
≥ 135,000 Btu/h
(cooling capacity)
— VRF multisplit system
32ºF entering water
2.8 COP 2.8 COP

a. Deduct 0.2 from the required EERs and IEERs for variable refrigerant flow (VRF) multisplit system units with a heating recovery section. b. Applicable test procedure and reference year are provided under the definitions. c. IEERs are only applicable to equipment with capacity control as specified in ANSI/AHRI 1230 test procedures.

Copyright © 2019 ICC. ALL RIGHTS RESERVED. Accessed by Kevin Day (kevin.day@dgs.ca.gov), (California Building Standards Commission) Order Number #100735044 on Jul 24, 2019 03:54 PM (PDT) pursuant to License Agreement with ICC. No further reproduction or distribution authorized. Single user only, copying and networking prohibited. ANY UNAUTHORIZED REPRODUCTION OR DISTRIBUTION IS A VIOLATION OF THE FEDERAL COPYRIGHT ACT AND THE LICENSE AGREEMENT, AND SUBJECT TO CIVIL AND CRIMINAL PENALTIES THEREUNDER.

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Exceptions & meaning →

TABLE 110.2-J

WARM-AIR FURNACES AND COMBINATION WARM-AIR FURNACES/AIR-CONDITIONING UNITS, WARM-AIR DUCT FURNACES, AND UNIT HEATERS c, f

EQUIPMENT
TYPE
SIZE CATEGORY
(Input)
SUBCATEGORY OR
RATING CONDITIONb
MINIMUM
EFFICIENCYd, e
TEST
PROCEDUREa
Warm-Air furnace, gas-fired ≥ 225,000 Btu/h Maximum capacity 80%Et Section 2.39, Thermal Efficiency, ANSI Z21.47
Warm-Air furnace, oil-fired ≥ 225,000 Btu/h Maximum capacity 81%Et Section 42, Combustion, UL 727
Warm-Air duct furnaces, gas-fired All capacities Maximum capacity 80%Et Section 2.10, Efficiency, ANSI Z83.8
Warm-Air unit heaters, gas-fired All capacities Maximum capacity 80%Et Section 2.10, Efficiency, ANSI Z83.8
Warm-Air unit heaters, oil-fired All capacities Maximum capacity 80%Et Section 40, Combustion, UL 731

a. Applicable test procedure and reference year are provided under the definitions. b. Compliance of multiple firing rate units shall be at maximum firing rate. c. Combustion units not covered by the U.S. Department of Energy Code of Federal Regulations 10 CFR 430 (3-phase power or cooling capacity greater than or

equal to 19 kW) may comply with either rating. d. Et = thermal efficiency. Units must also include an interrupted or intermittent ignition device (IID), have jacket losses not exceeding 0.75% of the input rating,

and have either power venting or a flue damper. A vent damper is an acceptable alternative to a flue damper for those furnaces where combustion air is drawn from the conditioned space. e. Ec = combustion efficiency (100% less flue losses). See test procedure for detailed discussion. f. As of August 8, 2008, according to the Energy Policy Act of 2005, units must also include interrupted or intermittent ignition device (IID) and have either

power venting or an automatic flue damper.

Exceptions & meaning →

TABLE 110.2-K

GAS- AND OIL-FIRED BOILERS, MINIMUM EFFICIENCY REQUIREMENTS

EQUIPMENT
TYPE
SIZE CATEGORY
(Input)
SUBCATEGORY OR
RATING CONDITIONb
MINIMUM EFFICIENCYb, c TEST
PROCEDUREa
EQUIPMENT
TYPE
SIZE CATEGORY
(Input)
SUBCATEGORY OR
RATING CONDITIONb
Before 3/2/2020 After 3/2/2020 After 3/2/2020
Boiler, hot water Gas-Fired < 300,000 Btu/h 82% AFUE 82% AFUE DOE 10 CFR Part 430
Boiler, hot water Gas-Fired ≥ 300,000 Btu/h and
≤ 2,500,000 Btu/hd
80%Et 80%Et DOE 10 CFR Part 431
Boiler, hot water Gas-Fired > 2,500,000 Btu/he 82%Et 82%Et 82%Et
Boiler, hot water Oil-Fired < 300,000 Btu/h 84% AFUE 84% AFUE DOE 10 CFR Part 430
Boiler, hot water Oil-Fired ≥ 135,000 Btu/h and
≤ 240,000 Btu/hd
82%Et 82%Et DOE 10 CFR Part 431
Boiler, hot water Oil-Fired > 2,500,000 Btu/he 84%Et 84%Et 84%Et
Boiler, steam Gas-Fired < 300,000 Btu/h 82% AFUE 82% AFUE DOE 10 CFR Part 430
Boiler, steam Gas-Fired all,
except natural draft
≥ 300,000 Btu/h and
≤ 2,500,000 Btu/hd
79%Et 79%Et DOE 10 CFR Part 431
Boiler, steam Gas-Fired all,
except natural draft
> 2,500,000 Btu/he 79%Et 79%Et DOE 10 CFR Part 431
Boiler, steam Gas-Fired,
natural draft
≥ 300,000 Btu/h and
≤ 2,500,000 Btu/hd
77%Et 79%Et DOE 10 CFR Part 431
Boiler, steam Gas-Fired,
natural draft
> 2,500,000 Btu/he 77%Et 79%Et DOE 10 CFR Part 431
Boiler, steam Oil-Fired < 300,000 Btu/h 82% AFUE 82% AFUE DOE 10 CFR Part 431
Boiler, steam Oil-Fired ≥ 300,000 Btu/h and
≤ 2,500,000 Btu/hd
81%Et 81%Et DOE 10 CFR Part 431
Boiler, steam Oil-Fired > 2,500,000 Btu/he 81%Et 81%Et DOE 10 CFR Part 431

a. Applicable test procedure and reference year are provided under the definitions. b. Ec = combustion efficiency (100% less flue losses). See reference document for detailed information. c. Et = thermal efficiency. See test procedure for detailed information. d. Maximum capacity—minimum and maximum ratings as provided for and allowed by the unit’s controls. e. Included oil-fired (residual).

Note: Authority: Sections 25213, 25218, 25218.5, 25402 and 25402.1, Public Resources Code . Reference: Sections 25007, 25008, 25218.5, 25310, 25402, 25402.1, 25402.4, 25402.8, and 25943, Public Resources Code .

42 2019 CALIFORNIA ENERGY CODE

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(d) Gas-fired and oil-fired furnace standby loss con- trols. Gas-fired and oil-fired forced-air furnaces with input ratings ≥ 225,000 Btu/hr shall also have an intermittent ignition or interrupted device (IID), and have either power venting or a flue damper. A vent damper is an acceptable alternative to a flue damper for furnaces where combustion air is drawn from the conditioned space. All furnaces with input ratings ≥ 225,000 Btu/hr, including electric furnaces, that are not located within the conditioned space shall have jacket losses not exceeding 0.75 percent of the input rating.

(e) Open and closed circuit cooling towers. All open and closed circuit cooling tower installations shall comply with the following:

  1. Be equipped with conductivity or flow-based controls that maximize cycles of concentration based on local water quality conditions. Controls shall automate system bleed and chemical feed based on conductivity, or in proportion to metered makeup volume, metered bleed volume, recirculating pump run time, or bleed time. Conductivity controllers shall be installed in accordance with manufacturer’s specifications in order to maximize accuracy.

  2. Documentation of maximum achievable cycles of concentration. Building owners shall document the maximum cycles of concentration based on local water supply as reported annually by the local water supplier, and using the calculator approved by the Energy Commission. The calculator is intended to determine maximum cycles based on a Langelier Saturation Index (LSI) of 2.5 or less. Building owner shall document maximum cycles of concentration on the mechanical compliance form which shall be reviewed and signed by the Professional Engineer (P.E.) of Record.

  3. Be equipped with a flow meter with an analog output for flow either hardwired or available through a gateway on the makeup water line.

  4. Be equipped with an overflow alarm to prevent overflow of the sump in case of makeup water valve failure. Overflow alarm shall send an audible signal or provide an alert via the energy management control system to the tower operator in case of sump overflow.

  5. Be equipped with efficient drift eliminators that achieve drift reduction to 0.002 percent of the circulated water volume for counter-flow towers and 0.005 percent for cross-flow towers.

Exception to Section 110.2(e): Towers with rated capacity < 150 tons.

(f) Low leakage air-handling units. To qualify as a low leakage air-handling unit for use for meeting the requirements for applicable low leakage air-handling unit compliance credit(s) available in the performance standards set forth in Sections 150.1(b) and 140.1, the manufacturer shall certify to the Energy Commission that the air-handling unit meets the specifications in Reference Joint Appendix JA9.

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