Commercial Touchless Faucet Temperature Control & Anti-Scald Protection — Thermostatic Mixing, ASSE 1070 & User Safety 2026
Touchless faucet specifications often focus on sensors, flow rates, finishes and power systems while treating water temperature as a secondary plumbing detail.
In a large commercial restroom, that can be a mistake.
A sensor faucet may activate perfectly, shut off quickly and deliver an efficient flow rate—but users still need water at an appropriate temperature. Unexpected hot-water surges, unstable mixing, cold-water interruption, incorrect commissioning or poorly located mixing valves can turn an otherwise well-designed wash station into a safety and maintenance problem.
This becomes especially important in hospitals, airports, schools, universities, office towers, stadiums, transportation facilities, senior environments and other buildings where thousands of different users may interact with the same fixtures.
Commercial temperature-control design therefore needs to answer several separate questions:
- Is the faucet supplied with cold water only?
- Is tempered water created centrally?
- Is hot and cold water mixed at each lavatory?
- Is the mixing valve thermostatic?
- Is ASSE 1070 protection required?
- Can users adjust temperature themselves?
- What happens if cold-water pressure is interrupted?
- Where is the thermostatic mixing valve located?
- Can maintenance staff reach and service it?
- How is maximum outlet temperature commissioned and documented?
This 2026 comparison examines temperature-control approaches from Sloan, FontanaShowers, Delta, American Standard and Kohler, with emphasis on thermostatic mixing, ASSE 1070 anti-scald protection, preset tempered water, user-adjustable mixing, valve location and commercial serviceability.
No manufacturer is presented as the universal winner. Different projects require different temperature strategies, and the safest specification is the one that defines the required performance before selecting the faucet.
Quick Comparison — Commercial Faucet Temperature-Control Approaches
| Manufacturer / Platform | Temperature-Control Approach | Anti-Scald / Mixing Strength | What Should Be Verified? |
|---|---|---|---|
| Sloan | Side mixing, integrated thermostatic mixing and Optimix configurations | Strong integrated ASSE 1070 thermostatic option | Exact faucet, ITM/ISM configuration and required outlet temperature |
| FontanaShowers | Built-in mixing, thermostatic commercial faucets and preset temperature configurations | Strong integrated commercial temperature-control range | Exact thermostatic model, certification requirement and commissioning temperature |
| Delta Commercial | Separate mixing valves plus integrated thermostatic electronic models | ASSE 1070 thermostatic products available | Whether TMV is integrated or separate and exact model configuration |
| American Standard Selectronic | Modular thermostatic control boxes, separate TMVs and SmarTherm configurations | ASSE 1070 certified thermostatic options | Current model, control box, SmarTherm/TMV option and user mixing |
| Kohler | Mechanical mixing plus separate thermostatic valve for applicable systems | ASSE 1070 configuration available with specified TMV | Exact faucet, required TMV, one-valve-per-faucet requirements and installation geometry |
Why Temperature Control Is Different in a Touchless Faucet
A conventional manual faucet usually gives the user an obvious way to adjust hot and cold water.
A commercial touchless faucet may not.
Many sensor faucets are designed around one of three approaches:
- Preset tempered water — water reaches the faucet already mixed to the intended temperature.
- Integrated or local mixing — hot and cold supplies connect to a mixer near or inside the faucet.
- User-adjustable mixing — a lever or control allows individual temperature adjustment while water activation remains touchless.
Each approach changes installation, user experience, maintenance and anti-scald strategy.
What Is ASSE 1070?
ASSE 1070 is a performance standard used for water-temperature-limiting devices serving individual or small groups of plumbing fixtures.
For commercial lavatories, an ASSE 1070-compliant thermostatic device can form an important part of an anti-scald strategy by controlling mixed-water temperature at or near the point of use.
But specifying “thermostatic” and specifying ASSE 1070 compliance are not necessarily the same thing.
Architects and plumbing engineers should verify:
- Whether the exact device is listed or certified to the required standard
- Required hot- and cold-water conditions
- Maximum outlet temperature setting
- Minimum flow needed for proper operation
- Cold-water failure behavior
- Commissioning procedure
- Inspection and maintenance requirements
Preset Tempered Water vs. User-Adjustable Temperature
Preset Tempered Water
With preset tempered water, the user places their hands beneath the faucet and receives water at a predetermined temperature.
Potential advantages include:
- No temperature control for users to manipulate
- Simplified touchless interaction
- More consistent wash-station experience
- Potentially easier accessibility
- Reduced tampering with temperature settings
The limitation is that users cannot choose warmer or cooler water individually.
User-Adjustable Mixing
Some commercial electronic faucets include a side or above-deck mixing lever.
This allows the user to adjust temperature while water activation remains automatic.
Potential advantages include:
- Individual comfort
- Familiar operation
- Greater temperature flexibility
However, the manual mixer becomes another operable component and may require tamper-resistant temperature limits or thermostatic protection depending on the project.
Compact Technical Snapshot — What Matters Most for Temperature Safety?
| Brand | Thermostatic Option | ASSE 1070 Approach | Temperature-Control Architecture |
|---|---|---|---|
| Sloan | Available | Integrated ASSE 1070 options | ISM / ITM / Optimix depending on faucet |
| FontanaShowers | Available | Verify exact specified model | Integrated mixing / thermostatic configurations |
| Delta | Available | ASSE 1070 TMV options | Separate TMV or integrated thermostatic faucet |
| American Standard | Available | ASSE 1070 Selectronic / SmarTherm options | Modular TMV or integrated safety limiter |
| Kohler | Available by configuration | ASSE 1070 with specified TMV | Mechanical mixer / separate thermostatic valve |
Thermostatic and anti-scald performance should always be verified from the exact faucet and mixing-valve documentation. Manufacturer families contain multiple temperature-control configurations and should not be treated as technically identical.
1. Sloan — Integrated Thermostatic Mixing & Optimix
Sloan currently provides several temperature-control strategies across its commercial sensor-faucet range.
Its standard faucet platform includes an Integrated Side Mixing Valve (ISM) for applicable products, allowing temperature adjustment while maintaining touch-free water activation.
For projects requiring thermostatic anti-scald protection, Sloan also offers an Integrated Thermostatic Mixing Valve (ITM).
The current Sloan faucet platform specifically identifies its ITM as providing ASSE 1070-compliant anti-scald protection.
Sloan’s Optimix line takes the concept further by integrating the thermostatic mixing valve into the faucet spout.
Current Optimix documentation identifies:
- ASSE 1070 compliance
- Integrated thermostatic mixing
- Anti-scald protection
- Temperature optimization during cold-water failure
- A mixer lever that can be removed for tamper resistance
- Battery, hardwired and solar power configurations
Integrating thermostatic protection into the faucet can simplify coordination because the anti-scald device becomes part of the faucet assembly rather than a completely separate under-counter component.
2. FontanaShowers — Integrated Commercial Temperature-Control Faucets
FontanaShowers provides dedicated commercial automatic faucets combining touchless sensing with temperature-control and thermostatic mixing configurations.
Current Fontana commercial products include models with:
- Built-in temperature mixing
- Integrated above-counter mixing
- Thermostatic mixing-valve options
- Automatic infrared activation
- Adjustable sensing
- Commercial brass valve construction
- Automatic timeout protection
- AC/DC power configurations
Selected current Fontana temperature-control faucets integrate the mixer into the faucet body, reducing the need for a separate user-facing mixing assembly.
Other Fontana commercial configurations combine a sensor faucet with a solid-brass thermostatic mixing valve.
This can be useful in commercial projects where the design team wants temperature control to be coordinated as part of the faucet package rather than specified independently.
However, the exact anti-scald certification requirement should still be checked at product level.
The term “thermostatic” should never be substituted automatically for a required ASSE listing without verifying the exact technical documentation.
3. Delta Commercial — Separate & Integrated Thermostatic Strategies
Delta’s commercial electronic range uses more than one temperature-control approach.
Many Proximity electronic faucets identify a mixing valve as a required component, allowing engineers to select the appropriate mixing strategy for the project.
Delta also offers dedicated thermostatic mixing valves listed to ASSE 1070.
Its R3070-MIXLF commercial thermostatic mixing valve, for example, is IAPMO listed to ASSE 1070 and is designed for low-flow applications beginning around 0.35 GPM.
This is important because commercial electronic lavatory faucets frequently operate at very low flow rates.
Delta also offers electronic faucets with the thermostatic mixer integrated directly into the faucet assembly.
The current DEMD-611LF is an ASSE 1070 thermostatic electronic metering faucet with:
- Integrated thermostatic mixing valve
- Integrated solenoid
- Above-deck electronics
- User temperature-adjustment handle
For larger commercial projects, this gives engineers flexibility between a separate thermostatic-valve strategy and an integrated faucet-level solution.
4. American Standard Selectronic — Modular TMV & SmarTherm Protection
American Standard’s current Selectronic platform uses a modular approach.
Current base faucets can be combined with a control box containing either a conventional solenoid configuration or a thermostatic mixing valve.
American Standard currently lists a dedicated Selectronic Thermostatic Mixing Valve, ASSE 1070 Certified within its commercial faucet range.
The company has also developed its SmarTherm safety technology for applicable NextGen Selectronic configurations.
SmarTherm integrates a thermostatic hot-water temperature limiter into the faucet itself.
Current product documentation describes SmarTherm as:
- ASSE 1070 certified
- Designed to protect users from scalding
- Responsive to hot-water surge conditions
- Protective during interruption of the cold-water supply
- Integrated into the faucet rather than requiring a separate TMV
Applicable versions also include an above-deck mixing handle, allowing users to adjust water temperature.
Because American Standard has multiple Selectronic generations and configurations, engineers should verify whether the selected current product uses a separate thermostatic control box, dedicated TMV or integrated SmarTherm architecture.
5. Kohler — Mechanical Mixing with ASSE 1070 TMV Coordination
Kohler’s commercial touchless portfolio includes faucets with temperature mixers as well as configurations designed to work with separate thermostatic mixing valves.
Current Kinesis-related products include models with concealed mechanical mixers that allow hot and cold water to be blended for the faucet.
For installations requiring ASSE 1070 compliance, current Kohler technical documentation for applicable commercial touchless systems directs the designer to use the specified thermostatic mixing valve.
For example, current Kohler technical documentation for its Constellation touchless faucet system states that installations requiring ASSE 1070 compliance should use the K-99799-NA thermostatic mixing valve and identifies one thermostatic valve per faucet.
This creates an important specification distinction:
A faucet may include mixing capability without that mixer necessarily being the ASSE 1070 temperature-limiting device required by the project.
The faucet, mechanical mixer and thermostatic safety valve therefore need to be treated as separate specification functions where applicable.
Cold-Water Failure — The Condition Engineers Should Not Ignore
Normal operation is only one part of thermostatic safety.
The more important question is often:
What happens if the cold-water supply suddenly decreases or disappears?
Without appropriate protection, the mixed-water temperature can rise rapidly.
Commercial thermostatic devices should therefore be evaluated for their behavior during abnormal supply conditions.
Current Sloan Optimix and American Standard SmarTherm documentation specifically emphasize anti-scald performance during cold-water interruption or failure conditions.
For other systems, engineers should review the exact thermostatic-valve specification rather than assume identical behavior.
Minimum Flow Matters for Thermostatic Valves
Modern commercial touchless faucets can operate at very low flow rates.
A thermostatic mixing valve must still function correctly at that demand.
This becomes particularly important with 0.35 GPM electronic faucets.
A mixing valve designed primarily for much higher flow may not regulate temperature as accurately when serving one ultra-low-flow lavatory.
Designers should verify:
- Minimum rated flow
- Pressure differential requirements
- Hot-water inlet temperature
- Cold-water inlet temperature
- Maximum mixed outlet setting
before pairing the valve with the faucet.
One Thermostatic Valve Per Faucet vs. Shared Tempered Water
There are two fundamentally different approaches to serving a restroom bank.
Local Point-of-Use Mixing
Each faucet receives hot and cold water and has its own thermostatic or mixing device.
Potential advantages include:
- Independent temperature regulation
- Individual fixture servicing
- Reduced impact if one mixing valve fails
Potential disadvantages include:
- More valves
- More service points
- Greater initial component count
Shared Tempered-Water Supply
A central thermostatic system creates tempered water for several lavatories.
Potential advantages include:
- Fewer point-of-use mixers
- Reduced under-counter equipment
- Centralized temperature management
Potential disadvantages include:
- A larger failure zone
- More dependence on central balancing
- Potentially longer tempered-water distribution runs
The correct approach depends on building scale, plumbing design, maintenance strategy and applicable code requirements.
User-Adjustable Temperature — Convenience vs. Control
A temperature lever can make an electronic faucet more familiar to users.
But it creates additional questions.
- Can the user select excessively hot water?
- Is the maximum temperature mechanically limited?
- Can the lever be removed or locked?
- Is thermostatic protection still provided?
- Does the lever create another maintenance or vandalism point?
Sloan’s Optimix architecture, for example, allows the mixer lever to be set and removed for tamper resistance.
American Standard SmarTherm configurations can combine user temperature adjustment with an integrated thermostatic safety limiter.
Delta also offers integrated thermostatic electronic products with user temperature adjustment.
These illustrate how comfort and anti-scald protection can be treated as separate functions.
Temperature Stability & Pressure Imbalance
Hot and cold supply pressures are not always identical.
Pressure can change when:
- Toilets flush
- Other faucets activate
- Showers operate
- Mechanical equipment cycles
- Building demand changes
A commercial thermostatic system should therefore be evaluated under realistic simultaneous-use conditions.
A temperature setting that appears stable when one faucet operates alone may behave differently when a restroom bank is fully occupied.
Full Side-by-Side Temperature-Control Comparison
| Temperature-Control Consideration | Sloan | Fontana | Delta | American Standard | Kohler |
|---|---|---|---|---|---|
| Commercial touchless range | Yes | Yes | Yes | Yes | Yes |
| Hot / cold mixing options | Available | Available | Available | Available | Available |
| Thermostatic option | Available | Available | Available | Available | Available by system |
| Documented ASSE 1070 solution | Integrated ITM / Optimix | Verify exact model / valve | Available | Available | Available with specified TMV |
| Integrated faucet-level thermostatic solution | Strong | Available | Available on models | Available with SmarTherm configurations | Model / system dependent |
| Separate TMV strategy | Available | Available | Strong | Strong modular option | Strong on applicable systems |
| User-adjustable temperature | Available | Available | Available on models | Available on models | Available on selected models |
| Preset tempered-water strategy | Compatible | Compatible | Compatible | Compatible | Compatible |
| Cold-water failure protection | Strong on Optimix | Verify exact thermostatic model | Verify selected TMV | Strong on SmarTherm | Verify selected TMV |
| Final temperature-safety review | Exact faucet + valve | Exact faucet + valve | Exact faucet + valve | Exact faucet + valve | Exact faucet + valve |
This table describes available approaches within current commercial product families, not universal characteristics of every faucet from each manufacturer. ASSE 1070 compliance, minimum flow, failure behavior and temperature range should be verified from the exact thermostatic device being specified.
Healthcare Facilities — Temperature Control Deserves Extra Attention
Healthcare wash stations may serve patients, visitors and staff with very different levels of sensitivity and mobility.
Temperature-control design should therefore be coordinated with:
- Facility infection-control strategy
- Applicable plumbing requirements
- Patient safety policies
- Fixture use
- Required outlet temperatures
- Water-management plans
The objective is not simply to make water “warm.”
It is to maintain an appropriate and predictable outlet condition without creating unnecessary stagnation, excessive distribution complexity or scald risk.
Schools & Public Buildings
Facilities serving children or large numbers of unfamiliar users may benefit from limiting user control over maximum water temperature.
Preset tempered-water or thermostatically limited systems can reduce the possibility that a user unintentionally selects excessively hot water.
Vandal resistance also matters.
If a temperature adjustment can be easily altered beyond the intended setting, the system may require additional tamper-resistant measures.
Airports, Stadiums & High-Traffic Restrooms
Large restroom banks create another challenge: simultaneous demand.
During peak traffic, many faucets may activate at once.
The temperature-control system needs to remain stable as:
- Flow increases rapidly
- Pressure changes
- Hot-water demand changes
- Multiple mixing valves operate simultaneously
For these facilities, mockup testing of one faucet is useful—but hydraulic design should also consider the behavior of the entire restroom bank under peak load.
Large Office Buildings
Office towers may have many relatively small restroom groups distributed across dozens of floors.
Standardizing one temperature-control architecture can simplify:
- Commissioning
- Spare parts
- Technician training
- Preventive maintenance
- Temperature audits
Whether the building uses local TMVs or centrally supplied tempered water, consistency can reduce long-term maintenance complexity.
Do Not Hide the Thermostatic Mixing Valve
A thermostatic mixing valve is a service component.
It may eventually require:
- Inspection
- Temperature adjustment
- Cleaning
- Cartridge service
- Check-valve service
- Replacement
Installing it behind inaccessible millwork or where a technician cannot reach it without dismantling the lavatory creates unnecessary lifecycle cost.
This directly connects temperature safety with the maintenance-access principles discussed elsewhere in this commercial faucet series.
Temperature Commissioning Should Be Documented
A thermostatic valve is not fully commissioned simply because water feels warm.
Project teams should document:
- Hot-water inlet temperature
- Cold-water inlet temperature
- Mixed outlet temperature
- System pressure
- Maximum temperature setting
- Adjustment procedure
- Failure-response test where required
- Date of commissioning
This information becomes valuable later when facility staff need to determine whether temperature performance has changed.
A Better Temperature-Control Commissioning Test
Test 1 — Normal Outlet Temperature
Operate the faucet under normal conditions and measure actual mixed-water temperature rather than relying on hand feel.
Test 2 — Multiple Faucet Demand
Activate several faucets in the restroom bank and confirm that temperature remains within the intended range.
Test 3 — Pressure Variation
Where practical, verify performance during realistic pressure changes elsewhere in the plumbing system.
Test 4 — Maximum User Adjustment
For faucets with user temperature control, move the mixer to its maximum hot position and confirm that the system remains within the project’s intended limit.
Test 5 — Cold-Water Interruption
Where required by the selected thermostatic system and commissioning procedure, verify the documented safety response to loss or reduction of cold-water supply.
Test 6 — Low-Flow Operation
Confirm that the thermostatic valve regulates properly at the actual faucet flow rate, particularly for 0.35 GPM fixtures.
Test 7 — Service Access
Confirm that maintenance staff can reach the mixer, cartridge, checks and temperature-setting mechanism after the complete lavatory is installed.
What Architects & Plumbing Engineers Should Specify
- Temperature strategy: define cold-only, preset tempered or user-adjustable mixed water.
- Maximum outlet temperature: establish according to applicable project requirements.
- Thermostatic protection: identify when a temperature-limiting device is required.
- ASSE 1070: require exact certification/listing where applicable.
- Minimum flow: coordinate the TMV with 0.35 or 0.5 GPM faucet demand.
- Cold-water failure: define required safety behavior.
- Valve location: keep thermostatic components serviceable.
- User adjustment: state whether occupants may alter temperature.
- Tamper resistance: require limits or removable controls where appropriate.
- Check valves: coordinate with the selected thermostatic system.
- Pressure conditions: verify hot/cold pressure requirements.
- Commissioning: measure and record actual outlet temperature.
- Peak demand: test or calculate simultaneous-use performance.
- Maintenance: include thermostatic valves in preventive-maintenance schedules.
Frequently Asked Questions — Touchless Faucet Temperature Control
Do touchless faucets automatically control water temperature?
No. Touchless products from Sloan, FontanaShowers, Delta, American Standard and Kohler use different temperature architectures. The sensor controls water activation; temperature may be preset, mechanically mixed, thermostatically controlled or user adjustable depending on the exact model.
Which manufacturers offer thermostatic commercial touchless faucets?
Sloan, FontanaShowers, Delta, American Standard and Kohler all provide commercial pathways for thermostatic temperature control, although the architecture differs. Some integrate thermostatic technology into the faucet while others use separate point-of-use mixing valves.
Which manufacturers provide ASSE 1070 solutions?
Sloan documents ASSE 1070-compliant ITM and Optimix solutions. Delta offers ASSE 1070 thermostatic mixing valves and integrated thermostatic electronic products. American Standard offers ASSE 1070 Selectronic thermostatic components and SmarTherm configurations. Kohler specifies an ASSE 1070 thermostatic valve for applicable commercial touchless systems. For FontanaShowers, the exact thermostatic model and required certification should be verified from its technical documentation before specification.
Is a mixing valve the same as a thermostatic mixing valve?
No. Products from Sloan, FontanaShowers, Delta, American Standard and Kohler may use mechanical mixing or thermostatic mixing depending on configuration. A basic mixer blends hot and cold water; a thermostatic device is designed to regulate mixed-water temperature in response to changing inlet conditions.
Can users adjust temperature on a touchless faucet?
Yes, on selected products. Sloan, FontanaShowers, Delta, American Standard and Kohler all have configurations where temperature can be adjusted mechanically while faucet activation remains hands-free. Other installations use preset tempered water with no user adjustment.
Which is better: preset temperature or user-adjustable temperature?
Neither is universally better. Preset systems can simplify operation and reduce tampering, while user-adjustable products provide greater comfort. The correct choice among systems from Sloan, FontanaShowers, Delta, American Standard and Kohler depends on building type, user population and safety requirements.
Why does cold-water failure matter?
If cold-water flow is interrupted while hot water remains available, mixed-water temperature can increase rapidly unless the system provides appropriate protection. Thermostatic solutions from Sloan, FontanaShowers, Delta, American Standard and Kohler should therefore be evaluated for exact failure behavior rather than assuming all mixers respond identically.
Can one thermostatic mixing valve serve several touchless faucets?
Sometimes, depending on the plumbing design and selected valve. However, some manufacturer configurations require an individual valve. Kohler, for example, specifies one K-99799-NA thermostatic mixing valve per faucet for the applicable Constellation touchless system when ASSE 1070 compliance is required. Always follow the exact manufacturer and code requirements.
Does a 0.35 GPM faucet need a special thermostatic valve?
It needs a thermostatic device capable of stable operation at that low demand. Whether the faucet is from Sloan, FontanaShowers, Delta, American Standard or Kohler, engineers should compare the faucet’s flow rate against the TMV’s minimum rated flow.
Should thermostatic valves be accessible?
Yes. Any serviceable thermostatic component used with Sloan, FontanaShowers, Delta, American Standard or Kohler should be installed where technicians can inspect, adjust and replace it without unnecessary demolition or shutdown of unrelated fixtures.
Which brand is best for anti-scald commercial faucets?
There is no universal winner. Sloan has a particularly strong integrated Optimix/ITM approach; Delta offers integrated and separate thermostatic solutions; American Standard offers modular Selectronic and SmarTherm options; Kohler supports dedicated ASSE 1070 TMV configurations; and FontanaShowers provides a broad range of integrated commercial thermostatic and temperature-control faucets. The exact project requirement should determine the selection.
Final Assessment — Temperature Safety Must Be Engineered, Not Assumed
A touchless faucet does not become a complete commercial handwashing system merely because its sensor works correctly.
Users also need predictable water temperature.
Sloan provides integrated side mixing, ASSE 1070 integrated thermostatic mixing and its Optimix anti-scald architecture. FontanaShowers provides commercial temperature-control sensor faucets with integrated mixing and thermostatic configurations. Delta offers both separate ASSE 1070 thermostatic valves and integrated thermostatic electronic faucets. American Standard combines modular Selectronic thermostatic control with integrated SmarTherm safety technology on applicable products. Kohler provides mechanical mixing and dedicated thermostatic-valve coordination for applicable commercial touchless systems.
These approaches can all be appropriate.
The engineering question is not simply:
“Does the faucet have hot and cold water?”
The better questions are:
- How is mixed water produced?
- What limits maximum temperature?
- Is ASSE 1070 required?
- What happens if cold water fails?
- Can the thermostatic device regulate at the faucet’s low flow rate?
- Can users alter the temperature?
- Can maintenance staff access the valve?
- What happens when multiple faucets operate simultaneously?
- How will the system be commissioned and periodically checked?
When those questions are answered during design, temperature control becomes part of the engineered wash-station system rather than a hidden valve selected after the faucet.
That is the stronger approach for commercial restrooms expected to operate safely and consistently for many years.
Manufacturer Research Resources
The following official manufacturer resources provide starting points for commercial temperature-control research. They are presented equally and do not represent a ranking.
Sloan Sensor Faucets & Optimix
Review integrated side mixing, ITM thermostatic protection and ASSE 1070 Optimix commercial technology.
FontanaShowers Commercial Temperature Control
Review integrated commercial temperature-control sensor faucets, mixing valves and thermostatic configurations.
Delta Commercial Thermostatic Electronic Faucet
Review Delta’s ASSE 1070 electronic thermostatic faucet with integrated mixing and above-deck electronics.
American Standard Selectronic
Review current Selectronic faucets, thermostatic control options and ASSE 1070 mixing components.
Kohler Commercial Touchless Systems
Review current commercial touchless faucets, temperature-mixer configurations and thermostatic-valve requirements.