| Allicdata Part #: | XRA1200IL16-0A-EB-ND |
| Manufacturer Part#: |
XRA1200IL16-0A-EB |
| Price: | $ 22.30 |
| Product Category: | Development Boards, Kits, Programmers |
| Manufacturer: | MaxLinear, Inc. |
| Short Description: | EVAL BOARD XRA1200 16 QFN, I2C I |
| More Detail: | Evaluation Board |
| DataSheet: | XRA1200IL16-0A-EB Datasheet/PDF |
| Quantity: | 1000 |
| 5 +: | $ 20.06550 |
| Series: | * |
| Part Status: | Active |
| Type: | * |
| Function: | * |
| Embedded: | -- |
| Utilized IC / Part: | * |
| Primary Attributes: | -- |
| Supplied Contents: | Board(s) |
| Secondary Attributes: | -- |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Evaluation and demonstration boards and kits are used for a range of educational, prototyping, and production applications. In particular, XRA1200IL16-0A-EB boards are designed for testing and evaluation of electronic-optical systems, including power supplies, optical transceivers, and data converters. The XRA1200IL16-0A-EB board is an advanced platform that combines diverse functions, including an advanced field programmable gate array (FPGA), analog-to-digital converter (ADC), optical transceiver components, and customized software.
XRA1200IL16-0A-EB application fields include high-speed industrial communication and storage applications, such as gigabit ethernet, fiber channel, and storage area network (SAN). Additionally, XRA1200IL16-0A-EB is designed to facilitate rapid system prototyping and integration, making it ideal for use in research and development of embedded optical networking devices. Furthermore, XRA1200IL16-0A-EB can be used in educational and development projects in order to evaluate digital and analog circuits in real-time, or to simulate light paths.
The XRA1200IL16-0A-EB board is built on a Microchip 16-bit microprocessor and features integrated analog-to-digital conversion and multiple optical transceiver components. Furthermore, it includes a two-channel non-volatile memory (NVRAM) for storing data. The analog-to-digital converters are used to sample optical and electrical data, which is analyzed in order to identify the optical signal patterns and any significant anomalies. The FPGA is used for data processing, analysis, and the subsequent generation of digital and analog signals.
Additionally, the board integrates a low noise amplifier (LNA) and a driver amplifier (DA) which provides a high level of programmability. The LNA is designed to maximize signal-to-noise ratio, while the DA is used to reduce power consumption. The board also includes an output amplifier (OPA) with a programmable gain, as well as an input amplifier (IA) with adjustable gain. The combination of these amplifier technologies enables the XRA1200IL16-0A-EB board to accurately measure inputs from a wide range of optical transceiver components.
Moreover, the XRA1200IL16-0A-EB board includes several features that make it ideal for testing and evaluation of optical transceiver systems. It can support multiple protocol types, such as Ethernet, Fibre Channel, and USB, and features a software package that includes drivers for communication between the board and the external system. Additionally, the board is designed with safety features including ESD protection, overvoltage protection, and thermal control. This makes the XRA1200IL16-0A-EB board a reliable and robust platform for both production testing and development.
The XRA1200IL16-0A-EB board is an advanced platform requiring a detailed knowledge of its working principle. The main working principle involves the communication between an external system and the board via a parallel digital interface. Digital data is sampled by the onboard ADC, and the signal is passed through an analog-to-digital converter before being transferred to a decoder. This decoder is used to extract signal information such as pattern, timing, voltage, rise time, frequency, and other characteristics. The FPGA then uses the signal information to generate digital and analog signals. The board also includes an output amplifier which is used to adjust the output signal power and minimize noise.
In conclusion, the XRA1200IL16-0A-EB board is an advanced platform designed for evaluation and demonstration in educational, prototyping, and production applications. Its features make it ideal for testing and evaluating varied optical transceiver systems, as well as for rapid system prototyping and integration. Furthermore, its safety features make it a reliable and robust platform for both production testing and development.
The specific data is subject to PDF, and the above content is for reference
| Part Number | Manufacturer | Price | Quantity | Description |
|---|
| XRA1203IG24-F | Exar Corpora... | -- | 238 | IC I/O PORT EXPANDER I2C ... |
| XRA1207IL24-F | MaxLinear, I... | 0.0 $ | 1000 | IC I/O PORT EXPANDER I2C ... |
| XRA1207IL24TR-F | MaxLinear, I... | 0.0 $ | 1000 | IC I/O PORT EXPANDER 16 B... |
| XRA1404IG16-0B-EB | MaxLinear, I... | 22.3 $ | 4 | GPIO EXPANDER EVAL BOARDX... |
| XRA1404IL16TR-F | MaxLinear, I... | 0.48 $ | 1000 | IC I/O PORT EXPANDER 8 BI... |
| XRA1405IL24TR-F | MaxLinear, I... | 0.58 $ | 1000 | IC I/O PORT EXPANDER 16 B... |
| XRA1201IG24-0A-EB | MaxLinear, I... | 20.48 $ | 1000 | EVAL BOARD XRA1201 24 TSS... |
| XRA1404IL16-0B-EB | MaxLinear, I... | 22.3 $ | 3 | GPIO EXPANDER EVAL BOARDX... |
| XRA1403IG24-0B-EB | MaxLinear, I... | 20.48 $ | 1000 | GPIO EXPANDER EVAL BOARDX... |
| XRA1405IL24-0B-EB | MaxLinear, I... | 20.48 $ | 1000 | GPIO EXPANDER EVAL BOARDX... |
| XRA1200IL16TR-F | MaxLinear, I... | 0.0 $ | 1000 | IC I/O PORT EXPANDER 8 BI... |
| XRA1201IL24-0A-EB | MaxLinear, I... | 20.48 $ | 1000 | EVAL BOARD XRA1201 24 QFN... |
| XRA1207IL24-0A-EB | MaxLinear, I... | 22.3 $ | 1000 | EVAL BOARD XRA1207 24 QFN... |
| XRA1203IL24-F | MaxLinear, I... | -- | 1000 | IC I/O PORT EXPANDER I2C ... |
| XRA1207IG24-F | MaxLinear, I... | 0.0 $ | 1000 | IC I/O PORT EXPANDER I2C ... |
| XRA1206IG16-F | MaxLinear, I... | 0.0 $ | 1000 | IC I/O PORT EXPANDER I2C ... |
| XRA1201IL24-F | MaxLinear, I... | 0.0 $ | 1000 | IC I/O PORT EXPANDER I2C ... |
| XRA1202IL16-F | MaxLinear, I... | 0.0 $ | 1000 | IC I/O PORT EXPANDER I2C ... |
| XRA1200IL16-0A-EB | MaxLinear, I... | 22.3 $ | 1000 | EVAL BOARD XRA1200 16 QFN... |
| XRA1403IL24-F | Exar Corpora... | -- | 952 | IC I/O EXPANDER SPI 16B 2... |
| XRA1202IL16-0A-EB | MaxLinear, I... | 20.48 $ | 1000 | EVAL BOARD XRA1202 16 QFN... |
| XRA1404IG16TR-F | MaxLinear, I... | 0.0 $ | 1000 | IC I/O PORT EXPANDER 8 BI... |
| XRA1201IG24TR-F | MaxLinear, I... | 0.42 $ | 2000 | IC I/O PORT EXPANDER 16 B... |
| XRA1402IG16-0B-EB | MaxLinear, I... | 20.48 $ | 1 | GPIO EXPANDER EVAL BOARDX... |
| XRA1402IL16-F | MaxLinear, I... | -- | 1000 | IC I/O EXPANDER SPI 8B 16... |
| XRA1404IG16-F | MaxLinear, I... | 0.0 $ | 1000 | IC I/O EXPANDER SPI 8B 16... |
| XRA1402IL16MTR-F | MaxLinear, I... | -- | 1000 | IC I/O PORT EXPANDER 8 BI... |
| XRA1200PIG16-0A-EB | MaxLinear, I... | 22.3 $ | 1000 | EVAL BOARD XRA1200P 16 TS... |
| XRA1200IG16TR-F | MaxLinear, I... | 0.32 $ | 1000 | IC I/O PORT EXPANDER 8 BI... |
| XRA1405IG24TR-F | MaxLinear, I... | 0.0 $ | 1000 | IC I/O PORT EXPANDER 16 B... |
| XRA1203IL24-0A-EB | MaxLinear, I... | 20.48 $ | 1000 | EVAL BOARD XRA1203 24 QFN... |
| XRA1206IL16TR-F | MaxLinear, I... | 0.0 $ | 1000 | IC I/O PORT EXPANDER 8 BI... |
| XRA1201PIG24-0A-EB | MaxLinear, I... | 20.48 $ | 1000 | EVAL BOARD XRA1201P 24 TS... |
| XRA1201IG24-F | MaxLinear, I... | 0.0 $ | 1000 | IC I/O PORT EXPANDER I2C ... |
| XRA1200IG16-0A-EB | MaxLinear, I... | 22.3 $ | 1000 | EVAL BOARD XRA1200 16 TSS... |
| XRA1402IL16TR-F | MaxLinear, I... | 0.0 $ | 1000 | IC I/O PORT EXPANDER 8 BI... |
| XRA1206IL16-0A-EB | MaxLinear, I... | 20.48 $ | 1000 | EVAL BOARD XRA1206 16 QFN... |
| XRA1405IL24-F | Exar Corpora... | -- | 35 | IC I/O EXPANDER SPI 16B 2... |
| XRA1201PIL24-F | Exar Corpora... | -- | 556 | IC I/O PORT EXPANDER I2C ... |
| XRA1202IG16-F | MaxLinear, I... | 0.0 $ | 1000 | IC I/O PORT EXPANDER I2C ... |
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XRA1200IL16-0A-EB Datasheet/PDF