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TIP122 Datasheet, PDF

Search Partnumber : Match&Start with "TIP122" - Total : 96 ( 1/5 Page)
ManufacturerPart #DatasheetDescription
logo
ON Semiconductor
TIP122 ONSEMI-TIP122 Datasheet
144Kb/7P
Plastic Medium-Power Complementary Silicon Transistors
November, 2014 ??Rev. 9
TIP122 ONSEMI-TIP122 Datasheet
114Kb/7P
Plastic Medium-Power Complementary Silicon Transistors
November, 2007 - Rev. 7
logo
STMicroelectronics
TIP122 STMICROELECTRONICS-TIP122 Datasheet
616Kb/13P
Complementary power Darlington transistors
25-Nov-2008
TIP122 STMICROELECTRONICS-TIP122 Datasheet
53Kb/4P
COMPLEMENTARY SILICON POWER DARLINGTON TRANSISTORS
Mar-2000
logo
ON Semiconductor
TIP122 ONSEMI-TIP122 Datasheet
91Kb/7P
Plastic Medium-Power Complementary Silicon Transistors
September, 2005 ??Rev. 6
logo
KEC(Korea Electronics)
TIP122 KEC-TIP122 Datasheet
224Kb/2P
EPITAXIAL PLANAR NPN TRANSISTOR (SWITCHING, HAMMER DRIVER,PULSE MOTOR DRIVER)
logo
Fairchild Semiconductor
TIP122 FAIRCHILD-TIP122 Datasheet
45Kb/4P
Medium Power Linear Switching Applications
logo
Unisonic Technologies
TIP122 UTC-TIP122 Datasheet
112Kb/3P
NPN EPITAXIAL TRANSISTOR
logo
Boca Semiconductor Corp...
TIP122 BOCA-TIP122 Datasheet
28Kb/2P
Power Darlingtons for Linear and Switching Applications
logo
Diotec Semiconductor
TIP122 DIOTEC-TIP122 Datasheet
110Kb/2P
Si-Epitaxial Planar Darlington Power Transistors
logo
TRANSYS Electronics Lim...
TIP122 TEL-TIP122 Datasheet
80Kb/3P
PLASTIC POWER TRANSISTORS
TIP122 TEL-TIP122 Datasheet
57Kb/1P
Plastic-Encapsulated Transistors
logo
Multicomp Pro
TIP122 MULTICOMP-TIP122 Datasheet
1Mb/5P
Darlington Transistors
18/12/19 V1.0
logo
TAITRON Components Inco...
TIP122 TAITRON-TIP122 Datasheet
242Kb/4P
Darlington Power Transistors (NPN)
logo
Savantic, Inc.
TIP122 SAVANTIC-TIP122 Datasheet
127Kb/4P
Silicon NPN Darlington Power Transistors
logo
Dc Components
TIP122 DCCOM-TIP122 Datasheet
195Kb/1P
TECHNICAL SPECIFICATIONS OF NPN DARLINGTON TRANSISTOR
logo
Rectron Semiconductor
TIP122 RECTRON-TIP122 Datasheet
76Kb/3P
TO-220 - Power Transistors and Darlingtons
logo
SemiHow Co.,Ltd.
TIP122 SEMIHOW-TIP122 Datasheet
501Kb/5P
Monolithic Construction With Built In Base-Emitter Shunt Resistors
logo
Micro Commercial Compon...
TIP122 MCC-TIP122 Datasheet
359Kb/2P
NPN Silicon Transistors
logo
Power Innovations Ltd
TIP122 POINN-TIP122 Datasheet
157Kb/6P
NPN SILICON POWER DARLINGTONS

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12 3 4 5



TIP122 Datasheet, PDF [Distributor]

DistributorPart # Manufacturer
Datasheet
DescriptionBuy Now
logo
Element14
TIP122

part
MULTICOMP PRO

DARLINGTON TRANS, NPN, 100V, 5A, TO-220;
TIP122

part
ONSEMI

TRANSISTOR, NPN, TO-220; Transistor Polarity:NPN; Collector Emitter Voltage V(br)ceo:100V; Transitio...

TIP122 Distributor

DistributorPart #ManufacturerDescriptionPriceQty.
BuyNow



Brief Description of TIP122


The TIP122 is a popular NPN Darlington transistor that is widely used in electronic circuits, particularly for high-current switching applications. It is part of the TIP series of transistors and is known for its ability to amplify current and control high-power loads. Here are some key features and specifications of the TIP122 transistor:

Polarity: NPN (Negative-Positive-Negative).

The TIP122 is an N-type layer in the middle, sandwiched between P-type layers on the outside.
Maximum Collector Current (Ic): Typically rated at 5A or higher.

This is the maximum current that can flow from the collector to the emitter when the transistor is in the on state. The TIP122 is capable of handling relatively high current loads.
Maximum Collector-Emitter Voltage (Vceo): Typically rated at 100V or higher.

This is the maximum voltage that can be applied between the collector and emitter terminals while the base is open.
Gain (hfe or Beta): Typically around 1000 or higher.

The gain, denoted as hfe or Beta, represents the amplification capability of the transistor. It shows how much the collector current is amplified compared to the base current.
High Gain: The TIP122 features a Darlington pair configuration, which results in very high gain and excellent current amplification.

Package: The TIP122 is typically available in a TO-220 or TO-220AB package, which provides good thermal performance and facilitates mounting to heatsinks for cooling.

Applications: The TIP122 transistor is commonly used in high-current and high-power applications, such as motor control, relay drivers, power amplifiers, and other applications that require high-current switching.

Heat Dissipation: The TIP122 can generate heat during operation, so proper heat management, including heatsinking, may be necessary for high-power applications.

Equivalent for TIP122


The TIP122 is an NPN Darlington power transistor commonly used in switching and amplification applications. It features a maximum collector-emitter voltage of 100V and a continuous collector current of 5A. Suitable replacements include:

TIP120:

An NPN Darlington transistor similar to the TIP122.
Maximum collector-emitter voltage: 60V.
Maximum collector current: 5A.
Suitable for lower voltage applications with similar current requirements.
TIP125:

PNP complement to the TIP122.
Can be used in push-pull configurations with TIP122.
Maximum collector-emitter voltage: 100V.
Maximum collector current: 5A.
BD679:

An NPN Darlington transistor with similar specifications.
Maximum collector-emitter voltage: 80V.
Maximum collector current: 4A.
Slightly lower voltage and current ratings but suitable for many applications.
MJE13007:

NPN transistor designed for high-voltage, high-current applications.
Maximum collector-emitter voltage: 400V.
Maximum collector current: 8A.
Requires adjustments for different pin configuration and characteristics.
IRFZ44N (MOSFET alternative):

N-channel MOSFET suitable for switching applications.
Maximum drain-source voltage: 55V.
Continuous drain current: 49A.
Requires logic-level gate drive in some cases and is more efficient for switching.
IRF540N (MOSFET alternative):

N-channel MOSFET offering higher efficiency for switching.
Maximum drain-source voltage: 100V.
Continuous drain current: 33A.
Suitable for higher power and lower heat dissipation applications.

*This information is for general informational purposes only, we will not be liable for any loss or damage caused by the above information.

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