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A HOLISTIC APPROACH & STRATEGIC VISION FOR PROCESS SOLUTIONS

Melt pressure tranducer

Southeast Thermal Systems supplies a wide selection of melt pressure transducers (also called melt pressure sensors) designed for the extrusion and blow molding industries. With multiple configurations available—including rigid stem, stem/flex, and stem/flex with thermocouple—we can provide the right fit for your application. Not sure which configuration best meets your needs? Our knowledgeable team is here to guide you toward the ideal melt pressure transmitter or sensor for your process.

Our melt pressure transducers are available with Mercury, Oil, and Alloy fill (a non-toxic alternative to Mercury). Output options include 3.33 mV/V, 4–20 mA, and 0–10 VDC, with connector choices such as 6-pin Bendix or 8-pin threaded. For specialized installations, we also offer narrow-space melt pressure models as well as traditional mechanical gauges.

Whether you need a standard solution or a customized configuration, Southeast Thermal Systems delivers reliable, high-quality melt pressure transducers with the support you need to keep your operations running smoothly. Contact our team today to discuss your requirements.

Contact us today to discuss specifications.

 

 

 

 

 

RIGID STEM TD1

mELT PRESSURE TRANSDUCER

 

 

 

 

 

STEM FLEX td2

MELT PRESSURE TRANSDUCER

 

 

 

 

 

THERMOCOUPLE STEM FLEX TD3

MELT PRESSURE TRANSDUCER

 

 

 

 

 

 

 

FOR NARROW SPACE TD4

MELT PRESSURE TRANSDUCER

 

 

 

 

 

 

 

MELT PRESSURE GUAGE TD6

 

 

 

 

 

 

 

Pressure Transducer Cable TDB6

Item Part Number  Description
TD3158 TD1M37.5M56U8TT Melt Pressure, mercury fill, 3.33 mv/v, 7500psi, 0.5% acuracy, 6 stem 1/2″-20 thread 8 pin threaded connector15-5 Stainless Steel diaphragm”
TDX1456 TD1O12M66U6BT-CD Melt Pressure, oil fill, 6″ rigid stem, 0-10VDC, 0-2,000 psi, 1.5% accuracy, 1/2-20 thread, 6 pin Bendix connector, 15-5 stainless steel corrugated diaphragm
TD3656 TD2M110M51218U6BT Melt Pressure Transducer, Mercury Fill, 0-10 VDC output, 0-10,000 psi, 12 stem, 18″ Armored Flex, 1/2-20 threads, 0.5% accuracy, 6 pin Bendix, 15-5 stainless steel diaphragm, mounting bracket
TD1588 TD2M110M5618U6BT Melt Pressure Transducer, Mercury Fill, 0-10 V output, 0-10,000 psi, 6 stem, 18″ Armoured Flex, 1/2″-20 threads, 0.5% accuracy, 6 pin Bendix, 15-5 Stainless Steel diaphragm, mounting bracket
TD8065 TD2M110M5618U6BT-TN Melt Pressure Transducer, Mercury Fill, 0-10 V output, 0-10,000 psi, 6 stem 18″ Armored Flex 1/2-20 threads 0.5% accuracy 6 pin Bendix 15-5 Stainless Steel diaphragm with Titanium Nitride coating mounting bracket included Non Cancellable Non Returnable Non Refundable
TD3160 TD2M45M5618U6BT Melt Pressure, Stem Flex, Mercury Filled, 4-20mA output, 0-5000 PSI, 0.50% accuracy, 6 Stem 18″ Flex 1/2-20 Thread 6 Pin Bendix Connector 15-5 stainless steel diaphragm includes mounting bracket.
TD1633 TD3M310M5618U6BT Melt Pressure Transducer w/ J Type Thermocouple, mercury fill, 3.33Mv/v output, 0-10,000psi, 0.5% accuracy, 6 stem 18″ Armoured flex 1/2-20 thread 6 pin Bendix 15-5 stainless steel diaphragm includes mounting bracket.”
TD6869 TD3M45M5618U6BT Melt Pressure Transducer w/ Thermocouple, mercury fill, 4-20mA output, 0-5000psi, 0.5% accuracy, 6 stem 18″ flex 1/2-20 thread 6 pin Bendix 15-5 SS diaphragm diaphragm includes mounting bracket.”
TD2461 TD6M010M3630U00R Melt Pressure Gauge, 6 stem 30″ flex 1/2×20 UNF thread10000psi 4″ Mechanical Dial 3% accuracy 17-4 stainless diaphragm includes mounting bracket.”
TD3197 TDB6-20 Melt pressure cable assembly, 6 pin bendix connector, 20′ cable, 22AWG, pin out: Red-A, Black-B, White-C, Green-D, Blue-E, Orange-F, Shielded
TD3198 TDB6-40 Melt pressure cable assembly, 6 pin bendix connector, 40′ cable, 22AWG, pin out: Red-A, Black-B, White-C, Green-D, Blue-E, Orange-F, Shielded
TDX2668 TD2M120M5618U6BT-TN Melt Pressure Transducer, Mercury Fill, 0-10 V output, 0-20,000 psi, 6 stem 18″ Armored Flex 1/2-20 threads 0.5% accuracy 6 pin Bendix 15-5 Stainless Steel diaphragm with Titanium Nitride coating on stem, mounting bracket included Non-Cancellable Non-Returnable Non-Refundable
TDX2261 TD2A35M5618U6BR Melt Pressure, Alloy fill, 3.33mv/V output, 5000 PSI, 0.5% Accuracy, 6″ Stem, 18″ flex, 1/2″-20 UNF thread, 6 pin Bendix with mating connector, 17-4 stainless steel diaphragm with TiAIN coating
TDX1113 TD2M110M51218U6BT-TP Melt Pressure Transducer, Mercury Fill, 0-10 VDC output, 0-10,000 psi, 12 stem, 18″ armored flex, 1/2-20 threads, 0.5% accuracy, 6 pin Bendix, 15-5 stainless steel diaphragm, mounting bracket, SPECIAL: set 0 psi output to 0.5V, set 80% shunt cal output to 7.8V
TD8244 TD2M17.5M5618U6BT-TN Melt Pressure Transducer, Mercury Fill, 0-10 V output, 0-7500 psi, 6 stem 18″ Armored Flex 1/2-20 threads 0.5% accuracy 6 pin Bendix 15-5 Stainless Steel diaphragm with Titanium Nitride coating mounting bracket included Non Cancellable Non Returnable Non Refundable
TDX2700 TD1A1500C56M6BR Melt Pressure Transducer, Alloy fill, 6″ rigid stem, 0-500 psi, 0-10 VDC output, 0.5% accuracy, 6 pin Bendix electrical connector, M18-1.5 male thread, 17-4 stainless steel diaphragm, Non-Standard, Non-Cancellable, Non-Refundable.
TD3846 TD2M15M5618U6BT Melt Pressure Transducer, Mercury Fill, 0-10 V output, 0-5000 psi, 6 stem 18″ Armoured Flex 1/2-20 threads 0.5% accuracy 6 pin Bendix 15-5 SS diaphragm mounting bracket”
TD3316 TD2M310M51218U6BT Stem Flex Melt Pressure, 3.33mv/V output, 10,000 PSI, 0.5% Accuracy, 12 Stem 18″ flex mercury fill 1/2″-20 UNF thread 6 pin Bendix 15-5 stainless steel diaphragm includes mounting bracket.”
TD8077 TD3M17.5M5618U6BT-TN Melt Pressure Transducer, w/ Thermocouple, 0-10 VDC output, 0-7,500 psi, 6 inch stem, 18 inch flex, 1/2-20 Thread, 6 Pin Bendix Connector, 0.5 % accuracy, 15-5 Stainless Steel diaphragm with titanium nitride coating, includes mounting bracket, , Non Cancellable, Non Returnable, Non Refundable
TD6044 TDB6-25 Melt pressure cable assembly, 6 pin Bendix connector with 25 ft cable, 22AWG, pin out: Red-A, Black-B, White-C, Green-D, Blue-E, Orange-F, Shielded

Mineral Insulated (MGO) Sensors

Industrial Thermocouples

 

Plastics & Packaging

 

Temperature Transmitters

 

Resistance Temperature Detectors

 

 

Thermowells

 

 

 

Custom Designed sensor

 

Food, Dairy, & Pharma

Sensors with Digital Transmitters

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 converter for different voltage

Power converter for different voltage
Original voltage in volts (V)
Original power in watts (W)
new voltage in volts (V)
New Power = (New Voltage × Original Power) / Original Voltage

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

Power converter for different voltage

Power converter for different voltage
Original voltage in volts (V)
Original power in watts (W)
new voltage in volts (V)
New Power = (New Voltage × Original Power) / Original Voltage