Persamaan Tr C828

      2N5551 NPN Amplifier Transistor
      2N5551 NPN Amplifier Transistor Pinout

PERSAMAAN IC TRANSISTOR MOSFET. Persamaan Transistor Scribd. Persamaan Transistor C828 Pdf Thebookee Net. Star Electronics PERSAMAAN IC TRANSISTOR MOSFET. Persamaan Transistor Horisontal C6090 Arjun Service. Tabel Daftar Persamaan Transistor Lengkap. PERSAMAAN TRANSISTOR Menangabaris Servis Elektronik. IC 7400 SISTEM DIGITAL – IMe ILearning. TR ini adanya di mesin TV blok HORIZontal. Dan persamaanya; D 1877=D 1555=D 1554=D 2499 2. TR ini adanya di mesin TV di blok REGulator. Dan persamaanya; D 1710=D 1885=D 1884 3.

Pin Configuration:

Persamaan transistor c828

Pin Number

Pin Name

Description

1

Emitter

Current Drains out through emitter, normally connected to ground

2

Base

Controls the biasing of transistor, Used to turn ON or OFF the transistor

3

Collector

Current flows in through collector, normally connected to load

Persamaan tr harizontal TOSHIBA DAN PERSAMAAN 2SD868 persamaan 2SD2599 1500V 2,5A 50W 2SD869 persamaan 2SD2599 1400V 3,5A 50W 2SD870 persamaan 2SD249. DATA PERSAMAAN IC VERTIKAL TV DAN MONETOR. Persamaan transistor C1815. Dengan melihat karakteristik singkat seperti penjelasan di atas, cukup mudah untuk menentukan persamaan transistor C1815. Beberapa transistor yang dapat digunakan sebagai pengganti transistor ini adalah 2N2222, C945, 2N3904, 2SC3198, dan C828. Selain beberapa persamaan transistor diatas, transistor komplementary atau.

Features:

  • Amplifier NPN Transistor
  • High DC Current Gain (hFE), typically 80 when IC=10mA
  • Continuous Collector current (IC) is 600mA
  • Collector-Emitter voltage (VCE) is 160 V
  • Collector-Base voltage (VCB) is 180V
  • Emitter Base Voltage (VBE) is 6V
  • Transition Frequency is 100MHz
  • Available in To-92 Package

Note: Complete Technical Details can be found at the 2N5551 datasheet given at the end of this page.

Alternative NPN Transistors:

BC549, BC636, BC639, BC547, 2N2369, 2N3055, 2N3904, 2N3906, 2SC5200

2N5551 Equivalent Transistors:

NTE194, 2N5833, 2N5088, 2N3055, 2N5401 (PNP)

Pengganti transistor c828

Same Family Transistors:

2N5550

Where to use 2N5551:

The 2N5551 is an NPN amplifier Transistor with an amplification factor (hfe) of 80 when the collector current is 10mA. It also has decent switching characteristics (Transition frequency is 100MHz) hence can amplify low-level signals.

Due to this feature, the transistor is commonly used for amplification of audio or other low power signals. So if you are looking for an NPN transistor for you amplifier circuit then this transistor might be the right choice.

How to use 2N5551:

As told earlier the 2N5551 NPN transistor is widely used for amplification. A very simple bare minimum circuit for a transistor to work as an amplifier is shown below. The simulation graph that shows the amplified output sine wave can also be found.

Here the input sine wave of magnitude 8mV (yellow colour) is amplified to 50mV (Pink colour) as shown in the graph. In the above circuit the resistors R3 and R4 form a potential divider which decides the Emitter -Base voltage (VBE). The Resistor R1 is the load resistor and the resistor R2 is the emitter resistor. Changing the value of RL will affect the amplification of the output wave.

A transistor is normally a current amplifier, meaning the current flowing though the base will be amplified in the current flowing through the collector. This amplification depends on the amplification factor (hfe) which is 80 for 2N5551. This means that the collector current will be amplified by 80 times than that of the base current.

Persamaan

Ic = βIb

Another current that we have bring into consideration is the emitter current (IE), but due to transistor action we assume that Emitter current is almost equal to the value of Collector current, however the difference between the both can be found with the value of α. Normally the value of collector current will e given by

IE = IC + IB

The output is obtained across the collector which is the Collector-Emitter voltage (VCE). This output voltage depends on the Input voltage (Vcc, here 12V) without the voltage drop across the loads resistor (R1). Therefore the output voltage Vout can be given as

Vout = VCE = (Vcc – IcRc)

Applications:

  • Low power amplifiers
  • Current amplifiers
  • Small signal boosters
  • Audio or other signal amplifiers
  • Darlington pair

2D model of the component:

If you are designing a PCD or Perf board with this component then the following picture from the 2N5551 Datasheet will be useful to know its package type and dimensions.

Dalam
2N5551 Datasheet

Pengganti Transistor C828

1. TR horizontal. TR ini adanya di mesin TV blok HORIZontal. dan persamaanya; D 1877=D 1555=D 1554=D 2499 2. TR regulator. TR ini adanya di mesin TV di blok REGulator. dan persamaanya; D 1710=D 1885=D 1884 3. TR penguat power amlifier. TR ini ada 2 jenis yaitu pnp & npn. persamaanya; MJ 2955 & 2N 3055. merk thosiba maks VCC 25v CT. MJ 2955 & 2N 3055. merk malaysia maks VCC 32v CT. TIP 32 & TIP 31/ D313. maks VCC 22v CT Sanken 1410 &S 2922 (4rb) maks VCC 25v CT Sanken 1410 &S 2922 (5dy) maks VCC 45v CT 4 .TR. untuk perangkat power yang kakinya B C E BD 140 & BD 139 A 733 & C 945 A 1015 & C 1815 B 892 & D 400 5. TR untuk perangkat power yang kakinya C B E S 8550 & S 8050 C 9012 & C 9013 C 9014 & C 9014 6. TR untuk perangkat tv yang kakinya B C E C945=C1815=C564 C2483=C2482=C2484=D400