FOURTH-GENERATION TEMPERATURE CONTROL

Mold Temperature Control Technology for Stable, Precise Temperature Control.

Topstar mold temperature controllers integrate precision hardware, intelligent control, and application-specific engineering design to meet the process requirements of industries such as injection molding and die-casting.

120 to 320 °C
Topstar oil type mold temperature controller Topstar water type mold temperature controller Water / Oil Single / Dual Zone
±0.1°C Temperature control precision
10% Higher temperature-control efficiency
40% Longer heater service life
1 MHz Ultrasonic flow monitoring

WHY TOPSTAR

One platform. Three layers of control value.

Built for precision injection molding and high-temperature processes, the platform addresses the complete control loop—from circulation hardware and sensing to data visibility and industry adaptation.

02

Intelligent Control

Self-learning PID control, adaptive water-pressure logic, ultrasonic flow monitoring and remote data communication.

  • ±0.1°C temperature precision
  • Real-time flow and pressure curves
  • MODBUS RTU connectivity
03

Application Engineering

Purpose-built configurations for automotive, medical, optical, home-appliance and die-casting production.

  • 120–320°C portfolio
  • Pure-water and high-flow models
  • Single- and dual-zone control

ENGINEERED INSIDE OUT

Fourth-generation technology that protects every degree.

Six upgrades work together to keep heat transfer stable, measurable and easier to maintain. Select a component to inspect the original product image and engineering notes.

Topstar fourth-generation controller technical view

FROM START-UP TO STABLE OUTPUT

Advantages you can see in the molding process.

Each feature is tied to a production outcome—not simply added as a specification.

Discuss Your Process
01

Heat faster

High-conductivity heaters and optimized circulation shorten the path to production temperature.

+10%
02

Hold temperature precisely

Self-learning PID control responds to real mold load instead of relying on a fixed control pattern.

±0.1°C
03

Prevent batch defects

Real-time flow and pressure trends expose blockage, leakage and air bubbles before quality drifts.

LIVE
04

Maintain with less effort

Integrated piping, solid-state relays and easy-access cabinets reduce leak points and service time.

40%

PRODUCT RANGE

Match the heat-transfer medium to the process.

180 °C Topstar water type mold temperature controller

WATER TYPE · TTWP / TTWB

Fast heat transfer for precision injection molding

Choose from 120°C, 160°C and 180°C mold temperature controllers, including Standard, Flagship, Pure Water and High-Flow configurations.

120–180°C Up to 366 L/min ±0.1°C control
Standard Flagship Pure Water High Flow
Check Selection Criteria

QUICK COMPARISON

Water or oil?

Start with temperature, then check speed, cleanliness and operating cost.

Water Type

  • Faster heating and cooling
  • Cleaner shop-floor operation
  • Lower operating cost
  • Practical range: ambient to 180°C

Oil Type

  • Wide operating temperature range
  • Stable at 200°C and 320°C
  • Suited to special high-heat processes
  • Requires closer fluid maintenance

VERIFIED PRODUCT SPECIFICATIONS

Compare representative models using real operating data.

The following is a reference specification table for the various series of mold temperature controllers. Please confirm the voltage, optional accessories, and final configuration with Topstar before placing an order.

01 120°C Water Type · Standard Direct cooling · Representative TTWP models
Model Max. temp. Heater kW Pump kW Max. flow L/min Max. pressure MPa Pump type Dimensions L×W×H mm
TTWP-1210 120°C 8 0.75 58 0.44 Vertical mechanical-seal 767×185×540
TTWP-1220 120°C 12 1.5 85 0.69 Horizontal mechanical-seal 859×320×669
TTWP-1230 120°C 12 2.8 107 0.79 Horizontal mechanical-seal 859×320×669
TTWP-1250 120°C 12×2 4 120 0.79 Horizontal mechanical-seal 1008×324×724
02 120°C Water Type · High Flow Vertical multistage centrifugal pump · Direct cooling
Model Max. temp. Heater kW Pump kW Max. flow L/min Max. pressure MPa Pump type Dimensions L×W×H mm
TTWP-123012F 120°C 12 2.2 266 0.35 Vertical multistage 1110×450×840
TTWP-123024F 120°C 12×2 2.2 266 0.35 Vertical multistage 1110×450×910
TTWP-125024F 120°C 12×2 4 366 0.52 Vertical multistage 1110×450×1010
TTWP-125048F 120°C 16×3 4 366 0.52 Vertical multistage 1200×450×1010
03 160/180°C Water Type · Standard Indirect cooling · Mechanical-seal or magnetic-drive pump
Model Max. temp. Heater kW Pump kW Max. flow L/min Max. pressure MPa Pump type Dimensions L×W×H mm
TTWP-1610 160°C 8 0.75 55 0.44 Horizontal mechanical-seal 976×302×583
TTWP-1620 160°C 12 1.5 85 0.69 Horizontal mechanical-seal 975×322×648
TTWP-1810 180°C 8 1.1 54 0.50 Horizontal magnetic-drive 976×302×583
TTWP-1820 180°C 12 1.5 73 0.51 Horizontal magnetic-drive 975×322×648
04 200/320°C Oil Type · Standard Indirect cooling · Mechanical-seal or magnetic-drive pump
Model Max. temp. Heater kW Pump kW Max. flow L/min Max. pressure MPa Pump type Dimensions L×W×H mm
TTOP-2010 200°C 8 0.75 55 0.44 Vertical mechanical-seal 1025×302×642
TTOP-2020 200°C 12 1.5 85 0.69 Horizontal mechanical-seal 1102×322×707
TTOP-3210 320°C 12 1.1 54 0.50 Horizontal magnetic-drive 1400×420×885
TTOP-3220 320°C 12 1.5 72 0.51 Horizontal magnetic-drive 1400×420×885
Notice

Data source: The listed values ​​represent only selected typical models and do not constitute a complete list of ordering specifications.

SELECTION GUIDE

Select from process conditions—not from maximum temperature alone.

Define the temperature window, heating load, circulation demand and temperature zones before confirming the model.

01

Set the real operating window

Leave capacity margin. If the process runs at 120°C, evaluate a 160°C water unit or 200°C oil unit. A mold temperature controller does not refrigerate; minimum temperature depends on cooling-water conditions.

02

Calculate heating capacity

Consider mold mass, material heat capacity, temperature rise, warm-up time and a safety factor. Example from the guide: a 0.8-ton mold heated from 30°C to 110°C in one hour requires about 10.64 kW—select 12 kW.

03

Confirm pump flow and pressure

Match the mold circuit requirement to the pump curve. High pressure and high flow are different needs, and system pressure is not equal to pump pressure.

04

Define the number of zones

Use a dual-zone unit when fixed and moving molds require different temperatures. For large molds, consider dual-zone or multiple single-zone units.

!

Common selection risk: Voltage, hose material, water quality, ambient conditions and required protection devices must be confirmed before ordering.

APPLICATION-DRIVEN CONFIGURATIONS

Different molds demand different control strategies.

Topstar maps circulation, sensing and temperature range to the real constraints of each industry.

01

AUTOMOTIVE

Thick-walled parts need high flow and fast cooling.

120°C High-Flow Water Type · Up to 366 L/min
02

MEDICAL & OPTICAL

Clean media and precise control protect surface quality.

160/180°C Pure Water · ±0.1°C Control
03

HOME APPLIANCE

Reliable everyday control reduces oil contamination.

120°C Standard Water Type
04

DIE CASTING

High-temperature stability supports demanding tooling.

320°C Oil Type · Magnetic-Drive Pump

FIELD-PROVEN RESULTS

Temperature control translated into production performance.

Application examples summarized from Topstar project experience.

“Dimensional precision reached ±0.01 mm, yield improved by 3%, and cycle time shortened by 2 seconds.”

GALANZ GROUP Water temperature controller + auxiliary system

“A dual-zone water unit replaced conventional mechanical control and increased product yield by 25%.”

JANUS Precision structural parts

“Real-time mold-flow monitoring helps prevent defects caused by blockage, leakage and uneven heating.”

FOXCONN Flagship controller deployment
GALANZ Haier Midea FOXCONN LUXSHARE AMPHENOL

TECHNICAL FAQ

Before you confirm a mold temperature controller.

Short answers to the questions that most often change the final configuration.

Can I select a 120°C mold temperature controller for a 120°C process? +

Do not select only by the nameplate maximum. Topstar recommends leaving capacity margin, so a 120°C process should be evaluated against a 160°C water unit or 200°C oil unit.

Does a mold temperature controller provide refrigeration? +

No. It heats, maintains temperature and transfers heat to cooling water. The minimum controllable temperature depends on the incoming cooling-water temperature and system design.

When should I choose a high-flow model? +

Choose high flow when the mold has large or complex circuits, when thick-walled parts retain more heat, or when faster cooling is critical to cycle time.

When is a dual-zone mold temperature controller required? +

Use dual-zone control when the fixed and moving mold halves require different temperature settings, or when two independent circuits must be controlled separately.

FROM REQUIREMENTS TO CONFIGURATION

Bring us your mold data. Leave with a clear selection.

Share the process temperature, mold weight, target warm-up time, flow, pressure, water quality and zone requirements.

Get A Quick Quote