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SI5391B-A10182-GM

Silicon Labs

SI5391B-A10182-GM by Silicon Labs

SI5391B-A10182-GM by Silicon Labs is a Clock Generator with 350 MHz output frequency, 64 terminals, and 1.8V nominal voltage. It is used in applications requiring precise timing control and jitter attenuation in electronic systems.

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Ampacity Inc.

Singapore . 1,346 parts In-Stock

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Overview

Enhance your electronic devices with the Silicon Labs SI5391B-A10182-GM Clock Generator, a top-quality product from a trusted manufacturer. Designed for precision and reliability, this clock generator is ideal for a wide range of applications. With a maximum output clock frequency of 350 MHz, surface mount capability, and advanced technology, this product offers unparalleled value and performance. Upgrade your systems with the SI5391B-A10182-GM Clock Generator and experience superior quality like never before.

Feature Benefit Bullets

Surface Mount: YES

Surface mount technology allows for easy assembly onto a PCB, saving time and reducing the overall size of the device.

Maximum Supply Voltage: 1.89 V

The high maximum supply voltage allows for flexibility in the power source, accommodating a wide range of applications.

Package Shape: SQUARE

The square package shape provides uniformity and consistent dimensions, making it easier to design and integrate into a circuit.

Maximum Output Clock Frequency: 350 MHz

With a high maximum output clock frequency, this clock generator can support high-speed communication and data processing requirements.

No. of Terminals: 64

Having a large number of terminals allows for more connectivity options and flexibility in circuit design.

Package Style: CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE

The combination of package styles offers thermal management capabilities and a compact form factor for efficient use of space.

Minimum Supply Voltage: 1.71 V

The low minimum supply voltage ensures power efficiency and compatibility with various power sources.

Maximum Operating Temperature: 85 °C

Being able to withstand high temperatures makes this clock generator suitable for demanding industrial environments.

Minimum Operating Temperature: -40 °C

The wide temperature range allows for reliable operation in extreme conditions, ensuring the longevity of the product.

Terminal Position: QUAD

The quad terminal position simplifies connections and enhances signal integrity, improving overall performance.

Maximum Seated Height: 0.9 mm

The low seated height enables a slim profile for space-constrained applications without sacrificing performance.

Width: 9 mm

The compact width of the device allows for easy integration into tight spaces on a PCB.

Maximum Time At Peak Reflow Temperature (s): 40

The specified reflow time ensures proper soldering and reliability during the manufacturing process.

Peak Reflow Temperature °C: 260

The high peak reflow temperature tolerance ensures robustness and durability during the assembly process.

Length: 9 mm

The compact length of the device complements its width, making it suitable for compact electronic devices.

Peripheral IC Type: JITTER ATTENUATOR

The integrated jitter attenuator improves signal quality and reduces noise in clock signals, enhancing overall system performance.

Technology: CMOS

CMOS technology offers low power consumption, high noise immunity, and fast switching speeds, making this clock generator an efficient choice.

Terminal Form: NO LEAD

The no-lead terminal form simplifies soldering and enhances reliability, ensuring secure connections in the circuit.

Maximum Supply Current: 230 mA

The moderate maximum supply current consumption ensures power efficiency and compatibility with various power sources.

Nominal Supply Voltage: 1.8 V

The nominal supply voltage provides a stable power source for the clock generator, ensuring consistent performance.

Terminal Pitch: 0.5 mm

The small terminal pitch allows for high-density integration on a PCB, maximizing space utilization.

Moisture Sensitivity Level (MSL): 2

The moderate moisture sensitivity level indicates the device's resilience to moisture during storage and handling.

Nominal Primary Clock/Crystal Frequency: 750 MHz

The high primary clock/crystal frequency capability supports high-speed data processing and communication requirements in various applications.

Technical Specifications

Clock Generators SI5391B-A10182-GM attributes and parameters. Explore more Clock Generators devices from Silicon Labs

Specs

JESD-30 Code:

S-XQCC-N64

Length:

9 mm

Moisture Sensitivity Level (MSL):

2

No. of Terminals:

64

Maximum Operating Temperature:

85 Cel

Minimum Operating Temperature:

-40 Cel

Maximum Output Clock Frequency:

350 MHz

Package Code:

Package Equivalence Code:

LCC64,.35SQ,20

Package Shape:

Package Style (Meter):

CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE

Peak Reflow Temperature (C):

260

Nominal Primary Clock/Crystal Frequency:

750 MHz

Maximum Seated Height:

.9 mm

Maximum Supply Current:

230 mA

Maximum Supply Voltage:

1.89 V

Minimum Supply Voltage:

1.71 V

Nominal Supply Voltage:

1.8 V

Surface Mount:

YES

Technology:

CMOS

Terminal Form:

Terminal Pitch:

.5 mm

Terminal Position:

QUAD

Maximum Time At Peak Reflow Temperature (s):

40

Width:

9 mm

Peripheral IC Type:

Trade Compliance

SI5391B-A10182-GM Peripheral ICs trade compliance attributes, and parameters.

ECCN

EAR99

ECCN Governance

EAR

HTS

8542.39.00.01

SB

8542.39.00.00

Manufacturer Highlights

Silicon Labs

Silicon Laboratories, Inc. (Silicon Labs) is a fabless global technology company that designs and manufactures semiconductors, other silicon devices and software, which it sells to electronics design engineers and manufacturers in Internet of Things (IoT) infrastructure worldwide. It is headquartered in Austin, Texas, United States. The company focuses on microcontrollers (MCUs) and wireless system on chips (SoCs) and modules. The company also produces software stacks including firmware libraries and protocol-based software, and a free software development platform called Simplicity Studio. Silicon Labs was founded in 1996 and released its first product, an updated DAA design that enabled manufacturers to reduce the size and cost of a modem, two years later. During its first three years, the company focused on RF and CMOS integration, and developed the world's first CMOS RF synthesizer for mobile phones which was released in 1999. Following the appointment of Tyson Tuttle as the CEO in 2012, Silicon Labs has increasingly focused on developing technologies for the IoT market, which in 2019 accounted for more than 50 percent of the company's revenue, but in 2020 had increased to about 58 percent. In 1998, Silicon Labs released its first product, an updated Direct Access Arrangement (DAA) design that enabled manufacturers to reduce the size and cost of a modem.

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