NXP USA Inc. IP4283CZ10-TB,115
- IP4283CZ10-TB,115
- NXP USA Inc.
- TVS DIODE 5.5VWM 9.5VC 10UXSON
- TVS - Diodes
- IP4283CZ10-TB,115 Datasheet
- 10-XFDFN
- 10-XFDFN
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What is IP4283CZ10-TB,115
NXP USA Inc. Part Number IP4283CZ10-TB,115(TVS - Diodes), developed and manufactured by NXP USA Inc., distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.
IP4283CZ10-TB,115 is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately [email protected] Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.
IP4283CZ10-TB,115 Specifications
- Part NumberIP4283CZ10-TB,115
- CategoryTVS - Diodes
- ManufacturerNXP USA Inc.
- DescriptionTVS DIODE 5.5VWM 9.5VC 10UXSON
- Package10-XFDFN
- Series-
- TypeSteering (Rail to Rail)
- Operating Temperature-40°C ~ 85°C (TA)
- Mounting TypeSurface Mount
- Package / Case10-XFDFN
- Supplier Device Package10-XSONU (2.5x1)
- ApplicationsHDMI
- Unidirectional Channels4
- Voltage - Reverse Standoff (Typ)5.5V
- Voltage - Breakdown (Min)6V
- Voltage - Clamping (Max) @ Ipp9.5V (Typ)
- Power Line ProtectionYes
Application of IP4283CZ10-TB,115
IP4283CZ10-TB,115 Datasheet
IP4283CZ10-TB,115 Datasheet , 10-XFDFN,Steering (Rail to Rail),-40°C ~ 85°C (TA),Surface Mount,10-XFDFN,10-XSONU (2.5x1),HDMI,4,5.5V,6V,9.5V (Typ),Yes
IP4283CZ10-TB,115 Classification
TVS - Diodes
FAQ about TVS - Diodes
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1. TVS is the abbreviation of diode. What does it mean?
TVS is the abbreviation of Transient Voltage Suppressor, also known as Transient Voltage Suppression Diode.
How TVS diodes work
TVS diodes work using the avalanche breakdown effect. When the TVS diode receives a reverse voltage, the depletion layer near its PN junction will increase, causing the electric field intensity to increase, which in turn triggers the avalanche effect and causes the reverse current to increase sharply. Unlike ordinary diodes, TVS diodes can recover after avalanche breakdown and continue to work normally. -
2. What is the difference between TVS diodes and MOVs?
The main differences between TVS diodes and MOV varistors lie in their working principles, application scenarios and performance parameters.
Working principle
TVS diode: TVS diode (Transient Voltage Suppressor) is a semiconductor device with a high-sensitivity N/P junction. When the reverse voltage exceeds its breakdown voltage, the TVS diode will conduct quickly and introduce the surge current into the ground, thereby protecting the subsequent circuit. The response speed of TVS diodes is very fast, usually within nanoseconds.
MOV varistor: MOV varistor (Metal-Oxide Varistor) is a multi-layer varistor made of multi-layer zinc oxide material. When the voltage exceeds its varistor voltage, the MOV will conduct, absorb the surge energy, and clamp the voltage within a safe range. MOV has a long response time, usually completing the response within microseconds.
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3. How fast are TVS diodes?
TVS diodes are very fast and can respond within 10^-12 seconds (i.e. 1 nanosecond). When the two poles of the TVS diode are impacted by reverse transient high energy, it can change the high impedance between its two poles into low impedance in a very short time, while absorbing surge power up to several kilowatts, reducing the voltage between the two poles. It is clamped to a predetermined safe value, thereby effectively protecting precision components in electronic circuits from damage by various surge pulses.
This fast response characteristic of TVS diodes allows them to play an important role in various electronic systems, especially where precision electronic components need to be protected from transient voltage impacts. For example, in the fields of computer systems, communication equipment, automotive electronics, household appliances, etc., TVS diodes are widely used to protect circuits from electrostatic discharge, surge voltage, and electromagnetic interference.
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