Skip to product information
1 of 2
Captor Corporation →

Unilok Brass Union Tee, 1/2-inch, 3-Way Tube Fitting

Unilok Brass Union Tee, 1/2-inch, 3-Way Tube Fitting

SKU:HIG-479865

High-quality Unilok Brass Union Tee, 3-way fitting for secure 1/2-inch connections. Durable, precise, and compliant with industry standards.

Regular price $27.36
Regular price Sale price $27.36
Sale

Initiate Order

Unilok Brass Union Tee, 1/2-inch, 3-Way Tube Fitting

Unilok Brass Union Tee, 1/2-inch, 3-Way Tube Fitting

$27.36

Quantity: 1

Claim Your Seller Account

Unilok Brass Union Tee, 1/2-inch, 3-Way Tube Fitting

Unilok Brass Union Tee, 1/2-inch, 3-Way Tube Fitting

$27.36

Quantity: 1

Delivery via Maden

Expect your order to arrive on time.

Secure Payments

All orders are processed through a secure, PCI-compliant checkout.

View full details
Enhance your fluid system with the Unilok Brass Union Tee, a 3-way tube fitting designed for efficiency and durability. Made of high-quality brass, this fitting ensures secure connections at 1/2-inch each, ideal for instrumentation applications. With precise dimensions and a tee-shaped design, it guarantees reliable performance and easy installation. Compliant with industry standards, the Unilok Union Tee is a top choice for various commercial and government procurement needs.

Product Specifications

Electrical Dissipation Factor 1 Khz
< 0.7 %
Electrical Dwv Dc
600 V
Electrical Frequency
DC - 400 Hz
Electrical Min Insulation Resistance 100 Vdc
5000 MΩ
Electrical Rated Ac Voltage
140 V
Electrical Rated Current
25 A
Electrical Rated Dc Voltage
250 V
Environmental Operating Temperature
-55 to +85 ºC
Environmental Storage Temperature
-55 to +105 ºC
Mechanical Case Material
Brass
Mechanical Finish Case And Terminals
Electro Tin-Lead Reflow
Mechanical Line Terminations
8-32UNC-2A Threaded Terminal
Mechanical Load Terminations
8-32UNC-2A Threaded Terminal
Mechanical Maximum Terminal Torque
14 lb·in
Mechanical Threaded Terminal Material
Brass
Mechanical Weight
0.2 lb
Specifications Capacitance
0.009 µF