
The STMicroelectronics TN1205H-6G-TR is a high-performance thyristor designed for industrial and electronics applications. It offers reliable switching for high voltage and high current environments. Engineers favor this SCR (Silicon Controlled Rectifier) due to its durability, compact surface-mount package, and precise electrical characteristics. In this comprehensive article, we'll delve into the intricacies of the TN1205H-6G-TR, uncovering its definition, key features, specifications, applications, and a closer look at its manufacturer.
Catalog
The TN1205H-6G-TR is a Thyristor SCR rated at 600V and 126A. It comes in a 3-pin (2+Tab) D2PAK surface-mount package. This device is used to control power in circuits requiring high current handling and fast switching. It belongs to STMicroelectronics’ industrial-grade components, ensuring long-term reliability in extreme temperature ranges.
Let's delve into the standout features that make the TN1205H-6G-TR a standout in the world of electronics:
· The TN1205H-6G-TR has a repetitive peak reverse voltage rating of 600V.
· It supports a surge current rating of up to 126A.
· The device offers a maximum gate trigger voltage of 1.3V.
· Maximum gate trigger current is rated at 5mA.
· Peak on-state voltage is 1.6V at 24A.
· The maximum rate of rise of off-state voltage is 200V/µs.
· Maximum rate of rise of on-state current is 100A/µs.
· The SCR has a minimum operating temperature of -40°C.
· Maximum operating temperature is 150°C.
· It comes in a D2PAK surface-mount package with a gull-wing lead shape.
Now, let's take a closer look at the technical specifications that define the capabilities of the TN1205H-6G-TR:
Type | Parameter |
Maximum Rate of Rise of Off-State Voltage (V/us) | 200(Min) |
Maximum Rate of Rise of On-State Current (A/us) | 100 |
Maximum Gate Trigger Voltage (V) | 1.3 |
Maximum Gate Trigger Current (mA) | 5 |
Surge Current Rating (A) | 126 |
Maximum Holding Current (mA) | 20 |
Repetitive Peak Reverse Voltage (V) | 600 |
Maximum Gate Peak Inverse Voltage (V) | 5 |
Peak On-State Voltage (V) | 1.6@24A |
Repetitive Peak Forward Blocking Voltage (V) | 600 |
Rated Average On-State Current (A) | 7.6 |
Repetitive Peak Off-State Current (mA) | 0.005 |
Phase Control | No |
Minimum Operating Temperature (°C) | -40 |
Maximum Operating Temperature (°C) | 150 |
Supplier Temperature Grade | Industrial |
Mounting | Surface Mount |
Package Height | 4.6(Max) mm |
Package Width | 9.35(Max) mm |
Package Length | 10.28(Max) mm |
PCB changed | 2 |
Tab | Tab |
Standard Package Name | TO |
Supplier Package | D2PAK |
Pin Count | 3 |
Lead Shape | Gull-wing |
The TN1205H-6G-TR is suitable for applications where high current control is essential. Typical use cases include:
· Industrial motor drives and controllers.
· Power conversion systems such as AC/DC and DC/AC circuits.
· Overcurrent protection in power electronics.
· Solid-state relays and switching circuits.
· Load control in automation and smart devices.
STMicroelectronics, often abbreviated as ST, is a global semiconductor manufacturer with a long-standing reputation for producing innovative and high-quality electronic components. With headquarters in eneva, Switzerland, and a strong international presence, STMicroelectronics is a leading player in the semiconductor industry. They specialize in designing and manufacturing a wide range of semiconductor devices, including microcontrollers, sensors, power management solutions, and more. STMicroelectronics is trusted by industries worldwide, including automotive, consumer electronics, industrial, and telecommunications, for their cutting-edge technology and commitment to advancing the field of electronics.
The TN1205H-6G-TR is a durable and high-performance SCR designed for industrial electronics. Its 600V, 126A rating, fast switching, and robust thermal performance make it ideal for a wide range of applications. Engineers seeking a reliable surface-mount thyristor will find this device a strong choice for high-power circuits. Its industrial-grade quality ensures long-term reliability in demanding environments.