Book Appointment Now


High Voltage Coolant Heater for Electric Vehicles
High-voltage PTC coolant heating for battery preconditioning, cabin comfort and reliable cold-climate operation in electric buses, trucks and off-highway machinery.
Explore EVLINK high voltage coolant heaters for battery preheating, cabin heating and commercial EV thermal management. Compare power, voltage and integration options
Vehicle-ready coolant heating designed around the electrical, hydraulic and control requirements of each platform.
Find the Right High Voltage Coolant Heater by Power and Voltage
Start with the required heating power and the vehicle voltage platform. Final model selection must also consider coolant conditions, ambient temperature, warm-up target, installation space and CAN strategy.
3–5 kW
For lower heating loads and compact coolant circuits. Confirm voltage window, coolant conditions and installation envelope.
6–10 kW
A selection pathway for battery preheating, cabin support and smaller commercial-vehicle thermal loops.
12–18 kW
For higher heating demand in electric buses, trucks and combined battery-and-cabin coolant circuits.
20–25 kW
For demanding duty cycles where heating load, low-temperature operation and available package space must be reviewed together.
30–35 kW
For heavy-duty platforms and project-specific thermal requirements. Model availability and rated conditions require engineering confirmation.
Let EVLINK Calculate the Heating Demand
Send vehicle type, coolant flow, inlet temperature, target temperature, warm-up time and ambient conditions.
Why Rated Conditions Matter
Heating power is not a standalone number. Ask for the rated voltage, coolant type, flow rate, inlet temperature and ambient condition used to define the kW value. Nominal platform voltage must be distinguished from the complete operating-voltage range.
Electrical estimate: current is approximately power divided by voltage. Actual cable, connector, fuse and control-device selection must use the released product data and vehicle requirements.
Confirm the Full Vehicle Operating Window
Choose the nominal platform below, then provide minimum, nominal and maximum DC voltage. EVLINK will confirm a compatible released configuration.
400 V Platform
Provide minimum, nominal and maximum pack voltage. Availability is confirmed by released model.
600 V Platform
Match the complete operating window—not only the nominal vehicle voltage.
800 V Platform
Confirm maximum voltage, current, connector, insulation and control requirements.
Custom HV Range
For platform-specific voltage windows and interface requirements reviewed by EVLINK engineering.
Information Needed for an Accurate Match
Vehicle/application · required kW · min/nominal/max HV · 12/24 V supply · coolant and flow · inlet/target temperature · ambient range · installation envelope · CAN requirements.

800v 35kw
Rated Voltage:Customizable

800v 35kw
Rated Voltage:Customizable

800v 35kw
Rated Voltage:Customizable

800v 35kw
Rated Voltage:Customizable

800v 35kw
Rated Voltage:Customizable

800v 35kw
Rated Voltage:Customizable

800v 35kw
Rated Voltage:Customizable

800v 35kw
Rated Voltage:Customizable

600v 30kw
Rated Voltage:Customizable

600v 30kw
Rated Voltage:Customizable

600v 30kw
Rated Voltage:Customizable

600v 30kw
Rated Voltage:Customizable

600v 30kw
Rated Voltage:Customizable

600v 30kw
Rated Voltage:Customizable

600v 30kw
Rated Voltage:Customizable

600v 30kw
Rated Voltage:Customizable

400v 24kw
Rated Voltage:Customizable

400v 24kw
Rated Voltage:Customizable

400v 24kw
Rated Voltage:Customizable

400v 24kw
Rated Voltage:Customizable

400v 24kw
Rated Voltage:Customizable

400v 24kw
Rated Voltage:Customizable

400v 24kw
Rated Voltage:Customizable

400v 24kw
Rated Voltage:Customizable
Compare Models Using Decision-Critical Data
Every real model card and child page should expose the same fields so engineering and purchasing teams can compare quickly.
Electrical
Rated power; nominal, minimum and maximum HV input; LV supply; current limits; pre-charge; HVIL.
Thermal & Hydraulic
Output at defined conditions; inlet/outlet limits; coolant; flow; pressure drop; dry-run logic.
Mechanical
Dimensions; mass; mounting; orientation; port type and direction; connector and harness clearance.
Control & Safety
CAN messages; command modes; feedback; diagnostics; derating; overtemperature and insulation protection.
Environment
Operating and storage temperature; altitude; vibration; ingress protection and duty cycle.
Validation
Test standards, conditions, reports, sample revision, deviations and acceptance criteria.
Commercial
Prototype availability, lead time, MOQ, forecast volume, change control and release status.
High Voltage Coolant Heater Application Pathways
The application page explains duty and system needs; the model page confirms the exact heater configuration.
Electric Bus
Battery conditioning and passenger/cabin heating around repeated route duty.
Electric Truck
Cold-start and battery preconditioning for long-haul and regional duty.
Electric Mining Truck
Heavy-duty heating designed around dust, vibration and extreme operating conditions.
Construction Machinery
Machine-specific coolant heating for off-highway duty and installation constraints.
Agricultural Machinery
Seasonal, cold-start and mixed-duty thermal management for electric machinery.
Energy Storage
Project-specific liquid-loop heating where the released heater configuration is suitable.
From Heater Selection to Vehicle Release
The heater must work inside the vehicle’s complete thermal, electrical and control architecture. EVLINK can review requirements, sizing, package, interfaces, CAN, prototype integration and validation scope.
01 | Requirement Review
Thermal load, voltage, coolant, environment, standards and project timing.
02 | Product Selection
Match a released heater series to the operating window and installation constraints.
03 | Integration & Validation
Close drawings, interfaces, CAN, samples, tests and release documentation.
Laboratory Testing for Vehicle Integration Confidence
EVLINK has completed Q-series PTC coolant-heater laboratory validation activities at Shanghai University of Engineering Science (SUES), including the documented vibration-test setup and related water-circulation and powered-performance evaluation.
- Vibration test setup for the Q-series heater
- Water-circulation and powered-performance evaluation
- Project-specific validation scope available for review
Ask our engineers for the applicable validation matrix and available evidence for your selected model and operating conditions.
Plan the Heater Before You Freeze the Package
Use engineering articles to answer pre-selection questions and link readers back to this collection page and the correct released model.
How to Size an HVCH
Estimate the thermal load, heat-up time and losses before choosing rated power.
HVCH Wiring and CAN
Define HV, LV, HVIL, commands, feedback, faults and control responsibility.
Coolant Flow and Pressure Drop
Understand how circuit conditions affect delivered heating and protection logic.
HVCH Selection and Model Page FAQ
Clear answers for engineering, purchasing and program teams.
Provide the vehicle type, heating objective, battery or cabin thermal load, nominal and operating high-voltage range, low-voltage supply, coolant, flow and pressure conditions, target inlet and outlet temperatures, installation space, connectors, CAN requirements, ambient conditions and validation standards.
Only when it is a real released model or a technically distinct series with unique specifications, drawings and buyer value. Do not create near-duplicate pages merely by changing a power or voltage keyword.
It may be possible within a coordinated coolant architecture, but the answer depends on thermal load, circuit topology, valves, pump capacity, control strategy and operating priority. EVLINK should review the system conditions before confirming a model.
Confirm the released model, rated and operating voltage, output at the required coolant conditions, flow direction, pressure drop, coolant compatibility, mounting, HV/LV interfaces, HVIL, CAN messages, protection logic and validation plan.
No. Portfolio-level values describe the overall public range and must not be applied to an individual model without its released datasheet. The exact configuration is confirmed during selection.
Send the project requirement package together with the expected prototype timing and forecast volume. A quotation becomes reliable after the technical configuration and scope are confirmed.
Define the Right Electric Compressor Configuration
Share the operating points, voltage window, refrigerant, control interface, installation space, NVH target and validation plan.