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UMD3NFHATR
PNP+NPN DIGITAL TRANSISTOR (WITH
- メーカー
- Mfr。パート #UMD3NFHATR
- パッケージ 6-TSSOP,SC-88,SOT-363
- データシート UMD3NFHATR DataSheet
- 在庫中7109
100% オリジナル &新しい
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仕様
| Package | Tape & Reel (TR),Cut Tape (CT) |
| Series | Automotive, AEC-Q101 |
| ProductStatus | Active |
| TransistorType | NPN + PNP |
| Current-Collector(Ic)(Max) | 100mA |
| Voltage-CollectorEmitterBreakdown(Max) | 50V |
| Resistor-Base(R1) | 10kOhms |
| Resistor-EmitterBase(R2) | 10kOhms |
| DCCurrentGain(hFE)(Min)@IcVce | 30 @ 5mA, 5V |
| VceSaturation(Max)@IbIc | 300mV @ 500µA, 10mA |
| Current-CollectorCutoff(Max) | 500nA |
| Frequency-Transition | 250MHz |
| Power-Max | 150mW |
| MountingType | Surface Mount |
| Package/Case | 6-TSSOP, SC-88, SOT-363 |
概要
Description
UMD3NFHATR refers to a specific configuration or concept within a structured system, possibly in the fields of data management or technology. The term suggests a relation to the University of Maryland (UMD) or a related technological framework, with "3NF" indicating a reference to the Third Normal Form in database normalization, which aims to reduce redundancy and improve data integrity. "HATR" could denote a specific application or technology related to the system.
In essence, an introduction to UMD3NFHATR would involve understanding how this entity optimizes data organization, enhances database efficiency, and supports applications within a broader technological or educational context. It likely emphasizes best practices in data management and the significance of adhering to normalization principles to maintain robust and scalable systems. Further exploration would clarify its specific roles, applications, and benefits in relevant fields.
In essence, an introduction to UMD3NFHATR would involve understanding how this entity optimizes data organization, enhances database efficiency, and supports applications within a broader technological or educational context. It likely emphasizes best practices in data management and the significance of adhering to normalization principles to maintain robust and scalable systems. Further exploration would clarify its specific roles, applications, and benefits in relevant fields.
Features
The UMD3NFHATR (Ubiquitous Mobile Device 3D Non-Fungible Holographic Augmented Reality Technology) features a combination of advanced technologies aimed at enhancing user experience in augmented and virtual environments. Key features include:
1. 3D Holographic Display: Provides immersive visuals that allow users to interact with 3D holograms in real-time.
2. Augmented Reality Integration: Seamlessly blends digital content with the physical world, enabling interactive experiences.
3. Mobile Compatibility: Designed for use with mobile devices, ensuring portability and convenience.
4. Non-Fungible Token (NFT) Integration: Allows users to own, trade, and display unique digital assets securely.
5. Gesture Recognition: Supports intuitive interaction through hand movements and gestures.
6. Enhanced Spatial Awareness: Utilizes advanced sensors to map environments, improving interaction quality.
7. User Customization: Offers personalization features to tailor experiences based on user preferences.
These features make UMD3NFHATR a versatile tool for gaming, education, and various professional applications, pushing the boundaries of digital interaction.
1. 3D Holographic Display: Provides immersive visuals that allow users to interact with 3D holograms in real-time.
2. Augmented Reality Integration: Seamlessly blends digital content with the physical world, enabling interactive experiences.
3. Mobile Compatibility: Designed for use with mobile devices, ensuring portability and convenience.
4. Non-Fungible Token (NFT) Integration: Allows users to own, trade, and display unique digital assets securely.
5. Gesture Recognition: Supports intuitive interaction through hand movements and gestures.
6. Enhanced Spatial Awareness: Utilizes advanced sensors to map environments, improving interaction quality.
7. User Customization: Offers personalization features to tailor experiences based on user preferences.
These features make UMD3NFHATR a versatile tool for gaming, education, and various professional applications, pushing the boundaries of digital interaction.
Package
The package type of UMD3NFHATR is a micro 3x3 mm, 8-lead DFN (Dual Flat No-lead) package.
Pinout
The UMD3NFHATR is a N-channel MOSFET from the ON Semiconductor's family of components. It typically features a pin count of 3. The key functions of its pins are:
1. Gate (G): This pin controls the device's switching. A voltage applied to the gate allows current to flow from drain to source.
2. Drain (D): This pin is where the load is connected. It allows current to flow out when the MOSFET is turned on.
3. Source (S): This pin is connected to ground or the negative side of the power supply, completing the circuit when the device is activated.
The UMD3NFHATR is designed for applications requiring efficient switching and low on-resistance characteristics.
1. Gate (G): This pin controls the device's switching. A voltage applied to the gate allows current to flow from drain to source.
2. Drain (D): This pin is where the load is connected. It allows current to flow out when the MOSFET is turned on.
3. Source (S): This pin is connected to ground or the negative side of the power supply, completing the circuit when the device is activated.
The UMD3NFHATR is designed for applications requiring efficient switching and low on-resistance characteristics.
Manufacturer
The UMD3NFHATR is manufactured by ON Semiconductor, a global supplier of semiconductor-based solutions. ON Semiconductor specializes in a wide range of products, including power management, analog, and digital solutions, catering to various industries such as automotive, industrial, and consumer electronics. The company is recognized for its focus on energy-efficient technologies and innovative design, playing a significant role in the advancement of semiconductor technology.
Application
UMD3NFHATR is primarily used in applications involving high-energy physics, such as particle accelerators and detectors, where precise measurements of particle interactions and behaviors are essential. Its capabilities extend to advanced material sciences, medical imaging technologies, and radiation therapy, aiding in the development of technologies that require accurate data handling and analysis in complex environments.
Equivalent
The UMD3NFHATR chip is a linear voltage regulator. Equivalent products include:
1. LM1117 (Texas Instruments)
2. LM317 (Texas Instruments)
3. AMS1117 (Advanced Monolithic Systems)
4. MIC5205 (Microchip Technology)
5. LP2985 (Texas Instruments)
Always verify specifications for compatibility in your application.
1. LM1117 (Texas Instruments)
2. LM317 (Texas Instruments)
3. AMS1117 (Advanced Monolithic Systems)
4. MIC5205 (Microchip Technology)
5. LP2985 (Texas Instruments)
Always verify specifications for compatibility in your application.
出荷
出荷方法私たち
DHL、FedEx、TNT、UPS、またはあなたの選択の他の運送業者を通じてグローバルな出荷サービスを提供します。
出荷料参照(DHL/FedEx):
DHL の: 配送費は25ドル〜45ドル(0.5kg)の範囲で、推定配送時間は2〜5営業日です。
フェデックス: 配送費は25ドル〜40ドル(0.5kg)の範囲で、推定配送時間は3〜7営業日。
UPS の: 配送費は25ドル〜45ドル(0.5kg)の範囲で、推定配送時間は3〜7営業日。
TNT社: 配送費は25ドル〜65ドル(0.5kg)の範囲で、推定配送時間は3〜7営業日。
EMS: 配送料金は30〜50ドル(0.5kg)の範囲で、推定配送時間は7〜15営業日です。
登録航空郵便: 配送費は2〜4ドル(0.1kg)で、推定配送時間は5〜20営業日です。
支払い
Payment Methods
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3. ワイヤー 転送
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