Specifications
| Attribute | Value |
| Package / Case | Tube,Tube |
| Part Status | Obsolete |
| Transistor Type | NPN |
| Current - Collector(Ic)(Max) | 10 A |
| Voltage - Collector Emitter Breakdown(Max) | 80 V |
| Vce Saturation(Max) @ Ib Ic | 1V @ 400mA, 8A |
| Current - Collector Cutoff(Max) | 10µA |
| DC Current Gain(h FE)(Min) @ Ic Vce | 40 @ 4A, 1V |
| Power - Max | 2 W |
| Frequency - Transition | 50MHz |
| Operating Temperature | -55°C ~ 150°C (TJ) |
| Mounting Type | Through Hole |
Overview
Description
"D44H11" isn't a standard term or reference in widely recognized literature or fields as of my last update. It could be a specific code or identifier relevant to a particular context, such as a product model, a course code, or an experimental designation. Without additional context, it's difficult to provide a precise introduction.
If "D44H11" refers to a specific subject or item, understanding its purpose or function would require more context. For example:
- In Technology: It might be a model number for a device or software, needing details about its features or specifications.
- In Academia: If it's a course code, it would relate to the subject matter being taught, requiring information on the curriculum or topics covered.
- In Research: As a project code, it might pertain to the aims, methods, and outcomes of a particular study.
For a comprehensive introduction, providing more information or checking with the relevant sources or documentation related to "D44H11" is advisable.
If "D44H11" refers to a specific subject or item, understanding its purpose or function would require more context. For example:
- In Technology: It might be a model number for a device or software, needing details about its features or specifications.
- In Academia: If it's a course code, it would relate to the subject matter being taught, requiring information on the curriculum or topics covered.
- In Research: As a project code, it might pertain to the aims, methods, and outcomes of a particular study.
For a comprehensive introduction, providing more information or checking with the relevant sources or documentation related to "D44H11" is advisable.
Equivalent
The D44H11 is an NPN power transistor. Equivalent products include:
1. TIP41
2. TIP31
3. 2N3055 (similar function but different package)
4. BD139(lower power)
5. MJE13009 (higher voltage)
When selecting an equivalent, ensure that the voltage, current ratings, and package type are compatible with your application requirements. Always consult the datasheets for precise specifications and pin configurations.
1. TIP41
2. TIP31
3. 2N3055 (similar function but different package)
4. BD139(lower power)
5. MJE13009 (higher voltage)
When selecting an equivalent, ensure that the voltage, current ratings, and package type are compatible with your application requirements. Always consult the datasheets for precise specifications and pin configurations.
Pinout
The D44H11 is an NPN power transistor commonly used for medium power switching and amplifier applications. It is typically housed in a TO-220 package. The D44H11 has three pins with the following functions:
1. Collector (C): This is the primary terminal for the main current flow in the transistor. It is connected to the positive side of the load.
2. Base (B): This pin is used to control the transistor's operation. A small current at the base allows a larger current to flow from the collector to the emitter.
3. Emitter (E): This is the terminal through which the current exits the transistor. It is connected to the negative side of the power supply or ground.
The D44H11 is known for its high current capability and voltage ratings, making it suitable for various power applications.
1. Collector (C): This is the primary terminal for the main current flow in the transistor. It is connected to the positive side of the load.
2. Base (B): This pin is used to control the transistor's operation. A small current at the base allows a larger current to flow from the collector to the emitter.
3. Emitter (E): This is the terminal through which the current exits the transistor. It is connected to the negative side of the power supply or ground.
The D44H11 is known for its high current capability and voltage ratings, making it suitable for various power applications.
Manufacturer
The D44H11 is a power transistor manufactured by ON Semiconductor, known as onsemi. Onsemi is a leading semiconductor supplier and is well-regarded for designing and producing a wide range of semiconductor components, including integrated circuits, discrete devices, and custom solutions. These components are used in various applications across automotive, industrial, consumer, communications, and computing industries. The company focuses on energy-efficient innovations, helping to improve the technology infrastructure and support sustainable development.
Application
D44H11 refers to a classification in the Mathematics Subject Classification system, specifically related to the study of diffusive representations and functional calculus related to differential equations. The application areas for D44H11 primarily include:
1. Control Theory: Enhancing the modeling and control of dynamic systems.
2. Signal Processing: Improving techniques for filtering and analyzing signals.
3. Mathematical Physics: Solving various physical system models that incorporate diffusion processes.
4. Financial Mathematics: Modeling and simulating stochastic processes in finance.
5. Engineering: Designing systems that require precise mathematical modeling of diffusion phenomena.
These applications leverage the mathematical frameworks and theories associated with diffusive representations to solve complex problems in various scientific and engineering disciplines.
1. Control Theory: Enhancing the modeling and control of dynamic systems.
2. Signal Processing: Improving techniques for filtering and analyzing signals.
3. Mathematical Physics: Solving various physical system models that incorporate diffusion processes.
4. Financial Mathematics: Modeling and simulating stochastic processes in finance.
5. Engineering: Designing systems that require precise mathematical modeling of diffusion phenomena.
These applications leverage the mathematical frameworks and theories associated with diffusive representations to solve complex problems in various scientific and engineering disciplines.
Package
The package type for D44H11 is TO-220. This type of package is commonly used for power semiconductors and is characterized by its three leads and a metal tab for heat dissipation.