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NBVSPA019LU1TAG

Onsemi

NBVSPA019LU1TAG by Onsemi

NBVSPA019LU1TAG by Onsemi is a VCXO Clock Oscillator with 50% Frequency Stability, operating at 125 MHz. It features LVDS Oscillator Type, 100 Ohm Output Load, and a compact size of 5.0mm x 3.2mm x 1.35mm. Ideal for applications requiring precise timing such as telecommunications and networking equipment due to its high frequency stability and low rise time of 0.4 ms.

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Problanco Electronics

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Corphita

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TANS Electronics

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UHIMA Technologies

Türkiye . 692 parts In-Stock

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Overview

Discover the unparalleled precision and reliability of the NBVSPA019LU1TAG VCXO Clock Oscillator by Onsemi. Crafted with top-tier ceramic materials, this oscillator boasts a frequency stability of 50% and operates at a nominal frequency of 125 MHz. Perfect for applications requiring precise timing control, this LVDS oscillator offers customers unrivaled performance and quality. Trust in Onsemi's expertise to deliver a product that exceeds expectations and enhances your projects with seamless synchronization. Elevate your designs with the NBVSPA019LU1TAG and experience the difference today.

Feature Benefit Bullets

Package Body Material: CERAMIC

Ceramic material provides durability and stability for the oscillator, making it reliable for long-term use.

Frequency Stability: 50 %

High frequency stability ensures accurate and consistent output, important for precision timing applications.

Maximum Supply Voltage: 3.63 V

With a high maximum supply voltage, this oscillator can handle varying input voltages without risking damage.

Output Load: 100 OHM

The output load specification ensures compatibility with different circuits, allowing for easy integration.

Maximum Supply Current: 100 mA

Low supply current consumption helps in reducing power usage and overall energy efficiency.

Nominal Supply Voltage: 3.3 V

The nominal supply voltage ensures stable operation within the specified voltage range.

Oscillator Type: LVDS

LVDS technology offers high speed and noise immunity, ideal for applications where signal integrity is crucial.

No. of Terminals: 6

The number of terminals indicates easy connectivity and integration with other components in a system.

Maximum Rise Time: 0.4 ms

Fast rise time enables quick signal transition, necessary for high-speed data transmission.

Linearity: 10 %

Good linearity ensures stable and accurate frequency output over a wide range of operating conditions.

Physical Dimension: 5.0mm x 3.2mm x 1.35mm

Compact size makes it suitable for space-constrained applications without compromising performance.

Minimum Supply Voltage: 2.97 V

With a low minimum supply voltage, the oscillator can operate effectively even with lower power sources.

Maximum Operating Temperature: 85 °C

High operating temperature range allows for reliable performance in various environmental conditions.

Minimum Control Voltage: 0.65 V

Low control voltage requirement simplifies the control interface and supports compatibility with different systems.

Frequency Deviation or Pullability: 100 ppm

The frequency deviation spec indicates the tuning range of the oscillator, offering flexibility in frequency adjustment.

Nominal Operating Frequency: 125 MHz

The high nominal operating frequency makes it suitable for high-performance applications that require precise timing.

Maximum Control Voltage: 2.65 V

The maximum control voltage limits ensure safe operation and prevent overloading the control circuit.

Maximum Fall Time: 0.4 ns

Fast fall time complements the rise time specification for quick and efficient signal transitions.

Maximum Symmetry (%): 55/45

High symmetry percentage ensures balanced output signals, crucial for maintaining signal integrity in communication systems.

Minimum Operating Frequency: 60 MHz

The wide frequency range allows for versatile use in different applications requiring varying operating frequencies.

Mounting Feature: SURFACE MOUNT

Surface mount design simplifies installation and soldering, enhancing ease of use and reducing assembly time.

Maximum Operating Frequency: 700 MHz

High maximum operating frequency provides flexibility for use in high-speed communication and data processing systems.

Technical Specifications

VCXO Clock Oscillators NBVSPA019LU1TAG attributes and parameters. Explore more VCXO Clock Oscillators devices from Onsemi

Specs

Additional Features:

TRI-STATE; ENABLE/DISABLE FUNCTION; TAPE AND REEL

Maximum Control Voltage:

2.65 V

Minimum Control Voltage:

.65 V

Maximum Fall Time:

.4 ns

Frequency Adjustment (Mechanical):

NO

Frequency Deviation or Pullability:

100 ppm

Frequency Stability:

Linearity:

10 %

Manufacturer Series:

NBVSPA015

Mounting Feature:

No. of Terminals:

6

Maximum Operating Frequency:

700 MHz

Minimum Operating Frequency:

60 MHz

Nominal Operating Frequency:

125 MHz

Maximum Operating Temperature:

85 Cel

Minimum Operating Temperature:

-40 Cel

Oscillator Type:

Output Load:

100 OHM

Package Body Material:

CERAMIC

Package Equivalence Code:

SOLCC6,.12

Physical Dimension:

5.0mm x 3.2mm x 1.35mm

Power Supplies (V):

3.3

Qualification:

Not Qualified

Maximum Rise Time:

.4 ms

Sub-Category:

Other Oscillators

Maximum Supply Current:

100 mA

Maximum Supply Voltage:

3.63 V

Minimum Supply Voltage:

2.97 V

Nominal Supply Voltage:

3.3 V

Maximum Symmetry (%):

55/45

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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