704-399-4248 sales@sethermal.com

A HOLISTIC APPROACH & STRATEGIC VISION FOR PROCESS SOLUTIONS

Providing Thermal Solutions

HOT WATER Temp. CONTROLLERS specs.
Model# Heater Capacity Pump Flow
STM-910W 9 kW 15 GPM @ 30 PSI
STM-12220w 12 kW 15 GPM @ 30 PSI
STM-2440W 24kW 35 GPM @ 30 PSI
description

The Shini USA hot water temperature control module (mold temperature controller) delivers temperature control with a +/-1°F accuracy, self-tuning, non-ferrous piping, full diagnostics and a non-proprietary controller. With its compact size the Shini USA hot water temperature control module will fit anywhere and will stand up to even the harshest of operating conditions.

HOT OIL TEMPERATURE CONTROLLERS SPECS.
Model# Heater Capacity Pump Flow
STM-910- O 9 kW Closed Loop Shell & Tube
STM-12220-0 12 kW Closed Loop Shell & Tube
STM-2440-0 24kW Closed Loop Shell & Tube
350º Porable hot oil unit w/ mag drive seal-less pump SPECS.
Model # Heater Capacity Cooling Method
STM-910-LT-M-O 9kW Closed Loop Shell & Tube
STM-1220-LT-M-O 12k Closed Loop Shell & Loop
STM-2440-LT-M-O 24 kw Closed Loop shell
450º Porable hot oil unit w/ mag drive seal-less pump SPECS.
Model # Heater Capacity Cooling Method
 STM-907-HT 9kw Closed Loop Shell & Tube
STM-1215-HT 12kW Closed Loop Shell & Tube
STM-2440-HT 24 kW Closed Loop Shell & Tube
description

The Shini USA industrial temperature control hot oil systems are fluid circulating units that control the application temperatures. We offer both low-temperature (350°F) hot oil units and high-temperature (500°F) systems.

With a one-gallon capacity, each hot oil unit features an Omron temperature controller to monitor process temperature throughout the heating and cooling process. The units also come equipped with a centrifugal-type pump, discharge pressure gauge and closed loop cooling.

AIR-COOLED PORTABLE CHILLERS
Model# Ton Pump Horsepower
SIC-12A-R2-P 5 1
SIC-24A-R2-P 10 2.5
SIC-38A-R2-P 15 3
description

These newly designed portable air-cooled chillers with a 45-95°F cooling range feature environmentally friendly R410A refrigerant. Designed with a vertical air discharge design that enhances comfort in your plant by carrying heat up and away from your processes and your operators, the air-cooled chillers have a +/-1°F accuracy.

Other standard features of the portable air-cooled chillers we supply include:

  • Finger-safe electrical components
  • Fill diagnostics panel
  • Non-ferrous construction
  • Fully insulated reservoir
  • Brazed plate exchanger
  • 10´ power cord
  • Pressure gauges
  • Hot gas bypass valve
  • Automatic fill valve
  • Fin style condenser
  • Liquid line solenoid valve and shut-off valve
  • Filter dryer and moisture indicator
  • Head pressure control via fan motor cycling

Calculators

Power Flow Rate Temp Calculator

Calculate the electrical power, flow rate or temperature requirement.
airflow in standard cubic feet per minute
temperature rise in degrees F from the inlet to the exhaust
Watts = SCFM x ΔT/2.5

Temperature Conversion Calculator

Calculate the electrical power, flow rate or temperature requirement.
°F = ((( °C * 9) / 5 ) + 32)
°C = ((( °F - 32) * 5 ) / 9)

Three-Phase Unit Calculator

Fill in two values to find the 3rd.
W = LC * (V * √2)
V = (W / LC) / √2
LC = W / (V * √2)

Single Phase Unit Calculator

Fill in two values to find the 3rd.
W = LC * V
V = LC * W
LC = W / V

Ohms Law Calculator

Fill in two values to find the other two.

O = V / A

O = V² / W

O = W / A²

V = A * O = A * (V/A)

V = √(W * O)

V = W / A

A = V / O

A = W/ V

A = √(W / O)

W = A * V

W = V² / O

W = A² * O

Heat Transfer Through Convection Calculator

ρ = density (lb/ft3)

V = volume flow rate (ft3/hour)

Cp = specific heat (Btu/lb°F)

Ta-Tb = temperature differential (°F)

Q = ρ x V x Cp x (Ta-Tb)


Fill in four values

ρ = density (lb/ft3)
V = volume flow rate (ft3/hour)
Cp = specific heat (Btu/lb°F)
Ta-Tb = TD (°F)
Q = ρ x V x Cp x (Ta-Tb)

ACFM to SCFM

ACFM = airflow in actual cubic feet per minute

P = gage pressure (psi)

T = gas temperature °R = 460 + °F

SCFM = airflow in standard cubic feet per minute


Find Standard Cubic Feet per Minute based on data from your Actual Cubic Feet per Minute Rotameter

airflow in actual cubic feet per minute
gage pressure (psi)
gas temperature °R = 460 + °F
airflow in standard cubic feet per minute

Standard Flow Rate (SCFM) Calculator

Calculate the SCFM.
Actual cubic feet per minute
Actual pounds per square inch at Gauge
Actual temperature in °F. °R = 460 + °F
CFM * (PSI actual / 14.7psi)*(528°R / T actual)

Pressure Conversion

Fill in one value to calculate the other.
PSI = Bar * 14.504
Bar = PSI / 14.504

Mass Flow to volume Metric Flow

Fill in one value to calculate the other two
kg/h = Kilogram Per Hour (lb/min multiply by 27.216)
Lbs/min = Pounds per minute (kg/h divide by 27.216)
SCFM = Standard cubic feet per minute

Power Flow Rate Temp Calculator

Calculate the electrical power, flow rate or temperature requirement.
airflow in standard cubic feet per minute
temperature rise in degrees F from the inlet to the exhaust
Watts = SCFM x ΔT/2.5

Temperature Conversion Calculator

Calculate the electrical power, flow rate or temperature requirement.
°C = ((( °F - 32) * 5 ) / 9)
°F = ((( °C * 9) / 5 ) + 32)

Three-Phase Unit Calculator

Fill in two values to find the 3rd.
W = LC * (V * √2)
V = (W / LC) / √2
LC = W / (V * √2)

Single Phase Unit Calculator

Fill in two values to find the 3rd.
W = LC * V
V = LC * W
LC = W / V

Ohms Law Calculator

Fill in two values to find the other two.

O = V / A

O = V² / W

O = W / A²

V = A * O = A * (V/A)

V = √(W * O)

V = W / A

A = V / O

A = W/ V

A = √(W / O)

W = A * V

W = V² / O

W = A² * O

Heat Transfer Through Convection Calculator

ρ = density (lb/ft3)

V = volume flow rate (ft3/hour)

Cp = specific heat (Btu/lb°F)

Ta-Tb = temperature differential (°F)

Q = ρ x V x Cp x (Ta-Tb)


Fill in four values

ρ = density (lb/ft3)
V = volume flow rate (ft3/hour)
Cp = specific heat (Btu/lb°F)
Ta-Tb = TD (°F)
Q = ρ x V x Cp x (Ta-Tb)

ACFM to SCFM

ACFM = airflow in actual cubic feet per minute

P = gage pressure (psi)

T = gas temperature °R = 460 + °F

SCFM = airflow in standard cubic feet per minute


Find Standard Cubic Feet per Minute based on data from your Actual Cubic Feet per Minute Rotameter

airflow in actual cubic feet per minute
gage pressure (psi)
gas temperature °R = 460 + °F
airflow in standard cubic feet per minute

Standard Flow Rate (SCFM) Calculator

Calculate the SCFM.
Actual cubic feet per minute
Actual pounds per square inch at Gauge
Actual temperature in °F. °R = 460 + °F
CFM * (PSI actual / 14.7psi)*(528°R / T actual)

Pressure Conversion

Fill in one value to calculate the other.
PSI = Bar * 14.504
Bar = PSI / 14.504

Mass Flow to volume Metric Flow

Fill in one value to calculate the other two
Kg/h = Kilogram Per Hour (lb/min multiply by 27.216)
Lbs/min = Pounds per minute (kg/h divide by 27.216)
SCFM = Standard cubic feet per minute