IC Phoenix logo

Home ›  N  › N2 > NBSG86AMNG

NBSG86AMNG from ON,ON Semiconductor

Fast Delivery, Competitive Price @IC-phoenix

If you need more electronic components or better pricing, we welcome any inquiry.

NBSG86AMNG

Manufacturer: ON

2.5V/3.3V SiGe Differential Smart Gate with Output Level Select

Partnumber Manufacturer Quantity Availability
NBSG86AMNG ON 85 In Stock

Description and Introduction

2.5V/3.3V SiGe Differential Smart Gate with Output Level Select The **NBSG86AMNG** is a high-performance differential clock and data driver designed for demanding applications in telecommunications, networking, and high-speed computing. This electronic component is part of the **NBSG** series, known for its low jitter and high-speed signal integrity, making it ideal for precision timing and data transmission.  

Featuring differential PECL (Positive Emitter-Coupled Logic) inputs and outputs, the **NBSG86AMNG** ensures robust signal handling with minimal distortion. It operates at frequencies up to **12 GHz**, supporting high-bandwidth requirements in advanced digital systems. The device is optimized for low power consumption while maintaining exceptional performance, making it suitable for power-sensitive designs.  

Key attributes include **low propagation delay**, **high common-mode rejection**, and **excellent noise immunity**, ensuring reliable operation in noisy environments. The component is housed in a compact **32-pin QFN package**, facilitating efficient PCB integration in space-constrained applications.  

Engineers often utilize the **NBSG86AMNG** in clock distribution networks, high-speed serial interfaces, and fiber-optic communication systems. Its precision and reliability make it a preferred choice for applications requiring consistent signal fidelity.  

With its combination of speed, efficiency, and signal integrity, the **NBSG86AMNG** stands as a critical component in modern high-speed digital designs.

Application Scenarios & Design Considerations

2.5V/3.3V SiGe Differential Smart Gate with Output Level Select
Partnumber Manufacturer Quantity Availability
NBSG86AMNG QFN16 152 In Stock

Description and Introduction

2.5V/3.3V SiGe Differential Smart Gate with Output Level Select The **NBSG86AMNG** is a high-performance differential clock and data driver designed for demanding applications in telecommunications, networking, and high-speed data transmission. Manufactured using advanced silicon-germanium (SiGe) technology, this component delivers exceptional signal integrity with low jitter and high-speed operation, making it ideal for systems requiring precise timing and data synchronization.  

Featuring differential inputs and outputs, the NBSG86AMNG supports data rates up to **12.5 Gbps**, ensuring reliable performance in high-frequency environments. Its robust design minimizes skew and propagation delay, critical for maintaining signal accuracy in high-speed interfaces. The device operates over a wide supply voltage range and includes internal termination resistors, simplifying PCB layout and reducing external component count.  

Key applications include **clock distribution, fiber-optic transceivers, and high-speed serial links**, where signal fidelity is paramount. The NBSG86AMNG is housed in a compact, surface-mount package, offering both space efficiency and thermal performance.  

Engineers value this component for its **low power consumption, high noise immunity, and consistent performance across varying temperatures**, making it a dependable choice for next-generation communication systems. With its combination of speed, precision, and reliability, the NBSG86AMNG stands as a critical enabler for modern high-speed digital designs.

Application Scenarios & Design Considerations

2.5V/3.3V SiGe Differential Smart Gate with Output Level Select

Request Quotation

For immediate assistance, call us at +86 533 2716050 or email [email protected]

Part Number Quantity Target Price($USD) Email Contact Person
We offer highly competitive channel pricing. Get in touch for details.

Specializes in hard-to-find components chips