Zarlink

Zarlink

Zarlink, now known as Microsemi Corporation, was a leading semiconductor company that specialized in the design and development of integrated circuits and advanced communications solutions. The company was founded in 1971 and quickly gained recognition for its innovative technologies and high-quality products. Zarlink's product portfolio encompassed a wide range of applications, including telecommunications, networking, medical, and industrial sectors. Their offerings included semiconductor devices such as digital signal processors, radio frequency components, and power management solutions. These products played a crucial role in enabling reliable and efficient communication systems and electronic devices. One area where Zarlink excelled was in the field of telecommunications. The company developed cutting-edge solutions for voice and data communication networks, including carrier-grade switches, line cards, and packet-based platforms. Their technologies were instrumental in transforming traditional telephony into more advanced digital and IP-based communications. Additionally, Zarlink had a strong focus on the medical industry, providing integrated circuits for various medical devices and equipment. Their solutions enabled improved patient monitoring, diagnostic imaging, and therapeutic devices, contributing to advancements in healthcare technology. Throughout its history, Zarlink prioritized research and development, investing heavily in innovation to stay ahead of market demands. The company collaborated with industry leaders and actively participated in standards organizations to drive technological advancements and promote interoperability. In 2011, Zarlink was acquired by Microsemi Corporation, a leading provider of semiconductor and system solutions. This acquisition further expanded Microsemi's product offerings and strengthened their position in the market. In conclusion, Zarlink was a prominent semiconductor company known for its innovative integrated circuits and advanced communications solutions. With a strong focus on telecommunications and medical industries, Zarlink contributed significantly to the advancement of communication technology and healthcare applications. Today, its legacy lives on under the Microsemi Corporation brand.

RF Receivers

Results:
2
Series
Applications
Supplier Device Package
Sensitivity
Voltage - Supply
Data Rate (Max)
Frequency
Operating Temperature
Data Interface
Grade
Mounting Type
Antenna Connector
Modulation or Protocol
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Memory Size
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Zarlink
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ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeFeaturesOperating TemperatureVoltage - SupplyPackage / CaseFrequencyApplicationsModulation or ProtocolData Rate (Max)Data InterfaceAntenna ConnectorMemory SizeSupplier Device PackageSensitivityCurrent - ReceivingGradeSeriesQualification
KESRX01G/IG/QP2Q
ZARLINK TELECOM CIRCUIT 1-FUNC
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
-40°C ~ 85°C
5V
-
434MHz
RKE, Remote Control Systems
ASK
50kbps
-
On-Board, Chip
-
24-QSOP
-105dBm
-
-
KESRX01
-
KESRX04C/IG/QP1S
ZARLINK CCD DRIVER
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
-40°C ~ 85°C
3V ~ 6V
-
470MHz
General Data Transfer
ASK
-
-
On-Board, Chip
-
28-SSOP
-103dBm
-
-
KESRx04
-

About  RF Receivers

RF Receivers play a vital role in capturing modulated radio frequency signals, demodulating the received signal to extract the original data, and subsequently forwarding the data for further processing within the system. These receivers operate across a wide frequency range, encompassing AM (Amplitude Modulation), FM (Frequency Modulation), and WB (Wideband) frequencies, spanning from 0Hz to 64GHz. The data rates supported by RF Receivers vary significantly, ranging from 250 bps (bits per second) to 16Gbps (gigabits per second). This wide range of data rates enables the reception and processing of diverse types of information, from low-speed data to high-speed broadband signals. RF Receivers feature multiple data interface options to facilitate connectivity with other system components. These interface options include connectors, I2C (Inter-Integrated Circuit), I2S (Inter-IC Sound), pads for pins, parallel interfaces, PCB (Printed Circuit Board) connections, serial interfaces, solder pads, SPI (Serial Peripheral Interface), UART (Universal Asynchronous Receiver-Transmitter), and USB (Universal Serial Bus). Each interface type is tailored to accommodate specific integration requirements and communication protocols, ensuring seamless interoperability within the system architecture. In summary, RF Receivers serve as critical components for capturing, demodulating, and processing modulated radio frequency signals across a broad spectrum of frequencies and data rates. Their versatile data interface options and wide frequency coverage make them essential for various applications, including telecommunications, broadcasting, wireless networking, and data transmission.