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BCW68GLT1G
+NomenclatureTRANS PNP 45V 0.8A SOT23-3
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FabricantSemi - conducteurs
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Pièce fabricant #BCW68GLT1G
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Fiche technique BCW68GLT1G DataSheet
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Package TO-236-3
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En stock16653
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Spécifications
| Attribut | Valeur |
| Supplier | onsemi |
| Package / Case | Tape & Reel (TR),Cut Tape (CT) |
| Part Status | Active |
| Transistor Type | PNP |
| Current - Collector(Ic)(Max) | 800 mA |
| Voltage - Collector Emitter Breakdown(Max) | 45 V |
| Vce Saturation(Max) @ Ib Ic | 1.5V @ 30mA, 300mA |
| Current - Collector Cutoff(Max) | 20nA |
| DC Current Gain(h FE)(Min) @ Ic Vce | 120 @ 10mA, 1V |
| Power - Max | 225 mW |
| Frequency - Transition | 100MHz |
| Operating Temperature | -55°C ~ 150°C (TJ) |
| Mounting Type | Surface Mount |
Présentation
Description
The BCW68GLT1G is characterized by its compact size and surface-mount package, making it suitable for use in modern electronic devices where space is at a premium. It typically features moderate current and voltage ratings, making it a versatile choice for general-purpose applications.
Manufacturers may vary slightly in specifications, but you can generally expect maximum collector-emitter voltage (V_ce) and collector current (I_c) parameters to align with standard requirements for low-power transistors. Always consult the specific datasheet from the manufacturer for precise electrical characteristics and ratings to ensure compatibility with your project's needs. Due to its reliable performance and efficiency, the BCW68GLT1G remains a popular choice among engineers and hobbyists alike.
Equivalent
1. BC548: A general-purpose NPN transistor with similar applications.
2. 2N3904: Another widely used NPN transistor with comparable specifications.
3. BC337: Similar in functionality, often used in low-power applications.
When choosing an equivalent, ensure the replacement matches the specifications, such as current gain, voltage, and package type for the intended application.
Features
1. Package Type: SOT-23, which is a small, surface-mount package ideal for compact designs.
2. Collector-Emitter Voltage (Vce): Maximum of 30V, indicating the maximum voltage it can withstand.
3. Collector Current (Ic): Up to 800 mA, representing the maximum current it can handle.
4. Power Dissipation: Typically around 300 mW, indicating the amount of power it can dissipate without damage.
5. DC Current Gain (hFE): Ranges typically from 100 to 250, reflecting its amplification ability.
6. Transition Frequency (fT): Approximately 100 MHz, which determines the speed at which the transistor can operate effectively.
7. Low Noise: Suitable for low-noise applications, making it ideal for audio amplifiers and other sensitive electronic circuits.
These features make the BCW68GLT1G suitable for various applications, including signal processing and driving loads in electronic circuits.
Pinout
1. Pin 1: Base (B) - This is the control terminal for the transistor. A small current at the base allows a larger current to flow from the collector to the emitter.
2. Pin 2: Emitter (E) - This is the terminal through which current exits the transistor.
3. Pin 3: Collector (C) - This is the terminal through which current enters the transistor.
The BCW68GLT1G is used in amplification and switching applications. Its key characteristics include a high current gain, making it suitable for various low-power electronic circuits.
Manufacturer
ON Semiconductor's focus is on innovative technologies that aim to improve energy efficiency, performance, and overall cost-effectiveness. The company has a significant presence in the global semiconductor market, serving various industries with advanced solutions to meet contemporary technological challenges. Their commitment to sustainability and efficiency drives their product development and business operations, making them a prominent player in the semiconductor industry.
Application
1. Signal Amplification: Ideal for amplifying small signals in audio, radio, and other communication devices.
2. Switching Applications: Used in circuits that require switching loads, such as driving relays or LEDs.
3. Voltage Regulation: Functions within voltage regulator circuits for maintaining stable output.
4. General Purpose Circuits: Employed in various general-purpose electronic circuits due to its reliability and performance.
5. Oscillator Circuits: Utilized in oscillator circuits for generating consistent frequency signals.
Its versatility makes it suitable for consumer electronics, industrial controls, and other low-power applications.