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NB2308AI4D

Onsemi

NB2308AI4D by Onsemi

NB2308AI4D Clock Driver by Onsemi operates at 3.3V, with 16 terminals and a max I (ol) of 8A. It features a small outline package style, suitable for industrial applications requiring a CMOS technology clock driver with 8 true outputs and an output characteristic of 3-STATE.

Median Price

-

Lifecycle Status

Suppliers In-Stock

2

In-Stock Inventory

1k+

Distributors (In-Stock)

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Vyrian

USA . 4,018 parts In-Stock

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Digiode

USA . 1,715 parts In-Stock

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AZTECH Wire

Italy . 974 parts In-Stock

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$19.990

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Component Stockers USA

USA . 311 parts In-Stock

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$99.990

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311

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Kulean Microsystems

USA . 7,144 parts In-Stock

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SupplyDigital Components

Austria . 4,238 parts In-Stock

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Corphita

USA . 2,379 parts In-Stock

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Problanco Electronics

Mexico . 1,922 parts In-Stock

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TANS Electronics

Latvia . 1,274 parts In-Stock

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UHIMA Technologies

Türkiye . 512 parts In-Stock

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Corohmni

South Africa . 196 parts In-Stock

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Microchip USA

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Overview

Enhance the efficiency and performance of your electronic devices with the NB2308AI4D clock driver & buffer from Onsemi. Manufactured with precision and quality in mind, this product ensures reliable operation and seamless integration into various applications. With its advanced technology and industrial-grade components, customers can experience unparalleled value and benefits. From reducing signal skew to enhancing signal integrity, the NB2308AI4D offers a compact design and robust features that cater to a wide range of electronic systems. Upgrade your devices today with Onsemi's innovative clock driver & buffer for optimal results.

Feature Benefit Bullets

Package Body Material: PLASTIC/EPOXY

Plastic/Epoxy material provides durability and protection for the internal components of the clock driver, ensuring a longer lifespan.

Surface Mount: YES

Surface mount capability allows for easy installation onto PCBs, saving space and reducing assembly time.

Nominal Supply Voltage / Vsup (V): 3.3

Operating at a low supply voltage of 3.3V makes this clock driver more energy efficient and suitable for low power applications.

Maximum Operating Temperature: 85 °C

With a high maximum operating temperature of 85 °C, this clock driver can withstand elevated temperatures without performance degradation.

Output Characteristics: 3-STATE

3-STATE output characteristics allow for high flexibility in controlling the output signal, enabling efficient communication and signal routing.

Technology: CMOS

Utilizing CMOS technology ensures low power consumption and high noise immunity, making this clock driver reliable and efficient.

Minimum fmax: 133.3 MHz

With a minimum fmax of 133.3 MHz, this clock driver can support high-frequency operations, making it suitable for demanding applications.

Technical Specifications

Clock Drivers & Buffers NB2308AI4D attributes and parameters. Explore more Clock Drivers & Buffers devices from Onsemi

Specs

Family:

2308

Input Conditioning:

STANDARD

JESD-30 Code:

R-PDSO-G16

JESD-609 Code:

e0

Length:

9.9 mm

Logic IC Type:

Maximum I (ol):

8 Amp

No. of Functions:

1

No. of Inverted Outputs:

0

No. of Terminals:

16

No. of True Outputs:

8

Maximum Operating Temperature:

85 Cel

Minimum Operating Temperature:

-40 Cel

Output Characteristics:

3-STATE

Package Body Material:

PLASTIC/EPOXY

Package Code:

SOP

Package Equivalence Code:

SOP16,.25

Package Shape:

Package Style (Meter):

SMALL OUTLINE

Peak Reflow Temperature (C):

235

Power Supplies (V):

3.3

Qualification:

Not Qualified

Maximum Same Edge Skew (tskwd):

.2 ns

Maximum Seated Height:

1.75 mm

Sub-Category:

Clock Drivers

Maximum Supply Voltage (Vsup):

3.6 V

Minimum Supply Voltage (Vsup):

3 V

Nominal Supply Voltage / Vsup (V):

3.3

Surface Mount:

YES

Technology:

CMOS

Temperature Grade:

Terminal Finish:

TIN LEAD

Terminal Form:

Terminal Pitch:

1.27 mm

Terminal Position:

DUAL

Width:

3.9 mm

Minimum fmax:

133.3 MHz

Trade Compliance

NB2308AI4D Logic ICs trade compliance attributes, and parameters.

HTS

8542.39.00.01

SB

8542.39.00.00

Manufacturer Highlights

Onsemi

Established in 1999, Onsemi is a leading global provider of power and image-sensing technologies. They are dedicated to building a better future for the automotive, industrial, cloud, medical, and IoT markets. Onsemi's core technologies include analog, digital, and mixed-signal products that offer innovative solutions for advanced automotive systems; highly reliable power management products for industrial applications; low-cost imaging solutions for medical equipment and consumer electronics; and robust communication architectures for the Internet of Things (IoT).

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Management team

President, CEO

Hassane El-Khoury

Executive VP, CFO, Treasurer

Thad Trent

Senior VP

Ross F. Jatou

Manufacturer fab locations 15

Fab name Location Fab Initiation Wafer Capacity

Aizu Fab

Fabrication

Fab Initiation

1995

Japan

Aizu Wakamatsu

Wafer Capacity

52,000

1995

52,000

Si/EPI Fab

Fabrication

Fab Initiation

2018

Czech Republic

Rožnov pod Radhoštěm

Wafer Capacity

10,000

2018

10,000

Expansion Phase 1 for SiC / EPI

Fabrication

Fab Initiation

2019

Czech Republic

Rožnov pod Radhoštěm

Wafer Capacity

14,500

2019

14,500

Expansion Phase 2 for SiC / EPI

Fabrication

Fab Initiation

2024

Czech Republic

Rožnov pod Radhoštěm

Wafer Capacity

2024

SiC Fab

Fabrication

Fab Initiation

2022

USA

Hudson

Wafer Capacity

2022

Bucheon

Fabrication

Fab Initiation

2013

South Korea

Bucheon

Wafer Capacity

61,000

2013

61,000

ISMF - Malaysia

Fabrication

Fab Initiation

1990

Malaysia

Seremban

Wafer Capacity

95,000

1990

95,000

Roznov Device Fab

Fabrication

Fab Initiation

1987

Czech Republic

Rožnov pod Radhoštěm

Wafer Capacity

80,000

1987

80,000

Fab 10

Fabrication

Fab Initiation

2002

USA

East Fishkill

Wafer Capacity

15,000

2002

15,000

Burlington

Fabrication

Fab Initiation

1986

Canada

Burlington

Wafer Capacity

1986

Gresham

Fabrication

Fab Initiation

1998

USA

Gresham

Wafer Capacity

45,000

1998

45,000

Bucheon 150mm

Fabrication

Fab Initiation

2000

South Korea

Bucheon

Wafer Capacity

50,000

2000

50,000

Rochester

Fabrication

Fab Initiation

1983

USA

Rochester

Wafer Capacity

10,000

1983

10,000

Nampa

Fabrication

Fab Initiation

1995

USA

Nampa

Wafer Capacity

1995

Pennsylvania

Fabrication

Fab Initiation

1997

USA

Mountain Top

Wafer Capacity

36,000

1997

36,000

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