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stock items

Thermocouple Wire Part Number KX-20-UPFAPF

This specification covers a two-conductor single pair, Extension Grade, Standard Limits, Type K, 20 awg solid, insulated with PFA. Singles are twisted with an aluminum mylar shield and drain. Bundle is jacketed with PFA. ANSI color code and UL PLTC rated.

Available in 200ft spools

 

Conductor:
Size: 20 Awg Solid
Nominal OD: .032”
Positive Leg: KP NiCr
Negative Leg: KN NiAl
Cable:
Nominal Lay Length: 2.50”
Shield: Aluminum mylar tape, nom 25% overlap, foil side against drain
Drain Wire: 22 Awg (730) stranded tinned copper
Nominal OD: .110”
Insulation:
Material: Extruded PFA, 500°F
Nominal Wall: .010”
Nominal OD: .052”
Color Code: (+) Yellow, (-) Red
Jacket:
Material: Extruded PFA, 500°F
Nominal Wall: .012”
Nominal Diameter: .134”
Color: Yellow

Thermocouple Wire Part Number J-20S-GG

Thermocouple extension wire, 20 gauge stranded, type J, glass over glass.

Available in 100ft spools

Safety Limit control SLC-3-0-2300K

Safety Limit control, FM Approved, cUR us, 120Vac, Outpu SPDT relay rated 3 amps, Lathcing with integral reset button, Input Type K thermocouple, Temperature range 0°F to 2300°F, Din Rail Mount/Surface Mount.

Safety Limit control SLC-3-0-850 RTD

Safety Limit Control, P/N SLC-3-0-850 RTD, cUR us, FM Approved, 120 VAC, Output SPDT Relay rated 3 AMPS, Latching with integral reset button, RTD Input, temperature range 0°F to 850°F, Din Rail/Surface Mount

3 Phase Solid State Relay P/N TSR-75AA-H

Three Phase Solid State Relay, P/N TSR-75AA-H, Rated Load Current: 75 Amps; Input Voltage: 80-250 VAC 50/60 Hertz;Operating Voltage: 90-480 VAC; CE Certified.

Thermocouple part number m1jou-kt03a-48

Thermocouple, P/N M1J0U-KT03A-48, screw cover cast aluminum head, Type “J” calibration, ungrounded junction,, 1/4″ dia. sheath 3″ of sheath.

Thermocouple part number MRK0E-IW06A-(A04L)/1A

Inline Sensor P/N MRK0E-IW06A-(A04L)/1A, MgO Thermocouple Type K, Single Element, Exposed Junction, 3/16″ Dia. x 6″L 316 SST Sheath, 90 Degree Bend at 4 1/2″ From Sheath Tip, 1/8″ NPT SST One-Time Adjustable Compression Fitting.

Thermocouple part number MDK0U-IW06A-3D-N180K

MGO Thermocouple, P/N MDK0U-IW06A-3D-N180K, Type K, Ungrounded Junction, 3/16″ Dia. x 6″ Length, 180″ Stranded Teflon Cable W/SST Flex Armor Cable W/ Standard Male Plug, 1/2″ NPT Re-Adjustable SST Compression Fitting.

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