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MIPI
collaborative alliance devoted to developing mobile interface specfications.
See Also: Interfaces, Serial Interfaces, Parallel Interface, Bus Interfaces, UI, Interface Adapters, I3C
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MIPI I3C Sensor Controller
I3C
The main purpose of MIPI I3C is to standardize sensor communication, reduce the number of physical pins used in sensor system integration and support low-power, high-speed and other critical features supported by I2C and SPI.
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2MP Sony STARVIS® IMX290 ultra-lowlight Camera Module
e-CAM21_CUMI290_MOD
The e-CAM21_CUMI290_MOD is a 2 MP ultra-lowlight RAW MIPI camera module with the S-mount (M12) lens holder. This FHD camera module is based on SONY IMX290, one of the most popular Sony's STARVIS® CMOS sensor. SONY IMX290 is a 1/2.8" rolling shutter CMOS sensor with 2.9µm pixel size. Its effective pixel back-illuminated technology with improved sensitivity in the visible-light and near infrared light enables customers to capture images even in absolute darkness. The e-CAM21_CUMI290_MOD can stream uncompressed FHD @120 fps in 10-bit mode and 60fps in 12-bit mode.
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MIPI Validation License Suite
SW00MIPI
The MIPI Validation License Suite is part of the subscription based Oscilloscope Compliance Test Software Suites. This suite covers Tx Validation licenses for MIPI with coverage across the MIPI technologies M-PHY, D-PHY and C-PHY. Together with the subscription model, this enables the support and coverage continuity as the MIPI technology progresses through revisions.
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5.0 MP Camera For Rockchip RK3399
E-CAM50_CU96
e-CAM50_CU96 is a 5MP Fixed focus MIPI camera for 96Boards compliant Rock960 developer kit featuring Rockchip RK3399 processor. This 4-lane MIPI Camera for Rock960 board is based on our popular low-light camera module, e-CAM55_CUMI0521_MOD which has 1/2.5" AR0521 CMOS Image sensor from ON Semiconductor® and a built-in Image Signal Processor (ISP). It has S-mount (M12) lens holder which allows customers to choose and use the lens according to their requirement.
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Break The Rules Of Power, Size And Cost In Your Connectivity And Acceleration Applications
ECP5 / ECP5-5G
*Up to 3.2 Gbps SERDES rate with ECP5, and up to 5 Gbps with ECP5-5G*Up to 4 channels per device in dual channel blocks for higher granularity*Enhanced DSP blocks provide 2x resource improvement for symmetrical filters*Single event upset (SEU) mitigation support*Programmable IO support for LVCMOS 33/25/18/15/12, XGMII, LVTTL, LVDS, Bus-LVDS, 7:1 LVDS, LVPECL and MIPI D-PHY input/output interfaces
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4K Multi-Camera System (TRICAM)
E-CAM130_TRICUTX2
e-CAM130_TRICUTX2 (TRICamera) is a multiple camera solution for NVIDIA® Jetson TX2 developer kit that consists of three 13 MP 4-Lane MIPI CSI-2 camera board and an base board to interface with the J22 connector on the Jetson TX2. Each camera is based on the camera module e-CAM137_CUMI1335_MOD, 1/3.2" AR1335 color CMOS image sensor from ON Semiconductor® and integrated high performance Image Signal Processor (ISP).
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MIPI SLIMbus
A typical mobile device has many low-speed/bandwidth peripherals connected to the host processor, which include microphones, speakers, sensors and many others. There is a need for a standard bus that enables multiple audio channels, peer-peer communications and lower pin count on the host processor. The MIPI alliance has defined the SLIMbus specification which provides a standard, robust, scalable, low-power, high-speed, cost-effective, two wire multipurpose interface that supports a wide range of digital audio and control solutions for mobile terminals.
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5.0 MP Google Coral Camera
E-CAM50_CUCRL
e-CAM50_CUCRL is a 5MP 4-lane MIPI CSI-2 fixed focus color camera for Google Coral development board. This camera is based on 1/2.5" AR0521 CMOS Image sensor from ON Semiconductor® with built-in Image Signal Processor (ISP). This high performance ISP helps to bring out the best image quality from the sensor and making it ideal for next generation of AI devices.
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MIPI
The MIPI Alliance creates and promotes specifications for the Mobile and Mobile-Influenced markets. These specifications enable and software interfaces that simplify the integration of components built into a device, from the antenna and modem to peripherals and the application processor.
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MIPI C-PHY Receiver Conformance Test Software
N5991MC2A
Maximize the usage of your test instruments with a fast and reliable application to automate system calibration and C-PHY 2.0 receiver conformance tests.
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13MP Jetson TX2/TX1 Camera Board
E-CAM130_CUTX1
e-CAM130_CUTX1 - 13MP Jetson TX2/TX1 camera board is a 4-lane MIPI CSI-2 camera solution for NVIDIA® Jetson TX2/TX1 developer kit. The e-CAM130_CUTX1 Board uses 13MP custom Lens camera module based on AR1820 CMOS Image sensor from ON Semiconductor. This camera daughter board can be directly interfaced to the NVIDIA® Jetson TX2/TX1 developer kit. The e-CAM130_CUTX1 is a 13MP color camera with the S-mount (also known as M12 board lens) lens holder.
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MIPI M-PHY v5.0 Receiver Conformance Test Software
N5991MM5A
The Rx solution including Station Configurator and Valiframe maximizes the usage of test instruments, providing automated system calibration as well as conformance testing according to the M-PHY 5.0 test specification (CTS).
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5.0 MP NVIDIA® Jetson Xavier™ NX/NVIDIA® Jetson Nano™ Camera
E-CAM50_CUNX
e-CAM50_CUNX is a 5.0 MP MIPI CSI-2 fixed focus color camera for NVIDIA® Jetson Xavier™ NX/NVIDIA® Jetson Nano™ developer Kit. This camera is based on 1/2.5" AR0521 CMOS Image sensor from ON Semiconductor® with built-in Image Signal Processor (ISP). This powerful ISP helps to brings out the best image quality from the sensor and making it ideal for next generation of AI devices.
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Total MIPI Solutions
MIPI Standards starting with it's active participation as a Contributor to the MIPI Association in 2004 followed by the launch of the Industry First MIPI IP's the CSI, DSI and D-PHY IP Cores. With over 10 years of MIPI experience, Arasan has the broadest library and foundry history.
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8 Mega Pixel Auto Focus MIPI Camera Module
e-CAM80_MI8865_MOD
e-CAM80_MI8865_MOD is a 8 MP Autofocus MIPI RAW camera module based on Ominivision's OV8865 CMOS image sensor. The 1/3.2-inch OV8865 is a low-power high-performance color CMOS Image Sensor featuring an improved 1.4-micron with BSI technology. OV8865 is already a proven sensor in the market with dynamic range and reduced dark current that enables superior high and low light image capture. Note: You would require an external ISP to process the data. Contact us to purchase the ISP.
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SMARC V2.0 SoM Evaluation Kit With I.MX8M Quad/Dual 1.5 GHz/1.3 GHz (Industrial) SoC, 4GB Memory, 64GB EMMC, CAN, MIPI CSI/DSI, And HDMI 2.0
SCM180-180-EVK
*Ultra-Low Power i.MX8M Dual/Quad A53 Core*Single M4 Core*HDMI 2.0a up to 4K*Dual Channel LVDS*MIPI CSI*10/100/1000 Mbps Ethernet*USB3.0, USB OTG*PCIe 2.0*CAN 2.0B*Audio
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HDMI/DVI Receivers
HDMI® receivers and DVI receivers remain in high demand for professional, consumer, and automotive video applications, with HDMI nodes constantly increasing. Analog Devices offers a range of HDMI/DVI receivers that enable high quality conversion of digital video data to formats such as HDMI, MIPI, and TTL. Applications include video distribution, gaming, and HDMI/DVI consumer device connectivity for automotive infotainment systems. Our portfolio of HDMI receivers and DVI receivers offers competitive advantages such as automotive qualification, superior HDMI/DVI equalizer performance, comprehensive audio extraction, and small packages (6 mm × 6 mm, 0.5 mm pitch BGA).
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MIPI Radio Front-End
RFFE
Mobile phone radios have developed into highly complex, multi-band and multi-standard designs that often have multiple radio frequency (RF) signal chains. The MIPI Alliance Specification for RF Front-End Control Interface (RFFE) was developed to offer a common and widespread method for controlling RF front-end devices. The RFFE Master IP core typically resides in the RFIC in a mobile platform, and utilizes the RFFE bus to identify, program and monitor the registers in RF front end Slave devices through programmed IO. It is designed to support existing standards such as LTE, UMTS, HSPA and EGPRS, and is usable in configurations ranging from single Master/single Slave to multi-Master/multi-Slave.
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4K Autofocus MIPI NVIDIA® Jetson TX2 Camera Board
E-CAM132_TX2
e-CAM132_TX2 - 13MP Autofocus Jetson TX2 camera board is a 4-lane MIPI CSI-2 camera solution for NVIDIA® Jetson TX2 developer kit. This camera is based on 1/3.2" AR1335 CMOS image sensor with advanced 1.1µm pixel BSI technology from ON Semiconductor® and an integrated high-performance image signal processor (ISP) that performs all the Auto functions (Auto White Balance, Auto Exposure control). e-CAM132_TX2 is a two board solution consists of a base board and a 13MP autofocus camera board. This camera board is connected to the base board using 30 cm micro-coaxial cable.
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5.0 MP NVIDIA® Jetson Nano™ Camera
E-CAM50_CUNANO
e-CAM50_CUNANO is a 5.0 MP 2-lane MIPI CSI-2 fixed focus color camera for NVIDIA® Jetson Nano™ developer Kit. This camera is based on 1/2.5" AR0521 CMOS Image sensor from ON Semiconductor® with built-in Image Signal Processor (ISP). This powerful ISP helps to brings out the best image quality from the sensor and making it ideal for next generation of AI devices.
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Envision Analyzer & Generator
MIPI C-PHY/D-PHY
The Envision X14 Analyzer capture utility provides deep analysis for MIPI camera and display protocols over C-PHY and D-PHY layers. The X14 Analyzer can be positioned either as an endpoint to test a CSI-2 or DSI-2 stream or tapped in between a CSI-2 or DSI-2 device and host for passive monitoring and analysis. The Envision X14 ensures fast Time-to-Insight through its rich set of innovative features for debug analysis and identifying and resolving elusive protocol errors.
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3.4 MP NVIDIA® Jetson Nano™ Camera
E-CAM30_CUNANO
e-CAM30_CUNANO is a 3.4 MP 2 lane MIPI CSI-2 custom lens camera board for NVIDIA® Jetson Nano™ developer Kit. This Jetson Nano camera is based on 1/3" AR0330 CMOS Image sensor from ON Semiconductor® with 2.2 µm pixel.
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AI Smart Cameras
Neon Series
Typical AI vision systems with a MIPI sensor and TX2 box can be complex, bulky, and a big hassle with all the cabling, compatibility, and reliability issues involved. NEON smart cameras combine everything you need into an all-in-one hardware solution with an optimized, pre-installed software environment to improve compatibility, speed up installation, and minimize maintenance issues.
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SMARC Short Size Module With Qualcomm® QRB5165 Series Octa-Core SoC
LEC-RB5N
- Qualcomm® Kryo™ 585 CPU (8x Arm Cortex-A77 cores)- Qualcomm® Hexagon™ Tensor Accelerator (HTA) running up to 15 TOPS- 4K HDMI/MIPI DSI display, MIPI CSI cameras- 2x PCIe x2 Gen3- 2x GbE Ethernet- 2x USB 3.1/2.0 and 4x USB 2.0- GPIO/SD and UFS- 5VDC +/-5% voltage input
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13MP Camera Board For I.MX8
E-CAM130_iMX8
e-CAM130_iMX8 is a 13MP 4-lane MIPI CSI-2 autofocus color camera board for iMX8 family of processors. The e-CAM130_iMX8 camera board is interfaced directly to the CSI-2 MIPI interface on the Variscite's DART-MX8M/DART-MX8M-MINI Evaluation kit (VAR-DT8McustomBoard). The iHDR (interlaced High Dynamic Range) support helps to capture good quality images in both high and low illumination. e-CAM130_iMX8 also comes with a high-performance Image Signal Processor (ISP) that performs all the Auto functions (autofocus, auto white balance, auto exposure control). Customer who wants to integrate this camera into their end product can directly purchase e-CAM130_MI1335_MOD camera module.
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13MP MIPI Camera Module
e-CAM130_CUMI1820_MOD –
e-CAM130_CUMI1820_MOD is a 13MP MIPI Camera Module. This small form factor 13MP camera module comes with S-Mount lens holder. It is based on AR1820HS – an 18MP CMOS Image sensor from Aptina™ / ON Semiconductor® and has a dedicated, high-performance Image Signal Processor chip (ISP) on-board that performs all the Auto functions (Auto White Balance, Auto Exposure control) in addition to complete image signal processing pipeline that provides best-in-class images and video and the optional MJPEG compression. Though the AR1820HS is an 18MP image sensor, the e-CAM130_CUMI1820_MOD supports only up to 13MP resolution.
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MIPI Total Display IP Solution
DSI
The Arasan MIPI Display Serial Interface (DSI) Controller IP provides both device and host functionality. Additionally, the DSI Controller provides a high-speed serial interface between an application processor and display and follows a rigorous verification methodology to ensure interoperability of our DSI digital controller with our D-PHY analog IP. Arasan’s DSI solutions are MIPI standards-compliant and are designed to accelerate integration, lower risk and accelerate time to market for developers of display applications. Arasan’s expertise is backed by our unique silicon proven design discipline and product development process that ensures fast silicon success with our analog and digital IP.
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SMARC V1.0 SoM With IMX6 Quad/DualLite 800 MHz (Industrial) SoC, 1GB RAM, 4GB EMMC, GbE LAN, Audio, CAN, MIPI And PCAM
SCM120
*SMARC 1.0 (82 x 50 mm)*Ultra low power consumption Cortex™-A9*2 CAN 2.0B*24-bit TTL signal*LVDS/HDMI 1080P*10/100/1000 Mbps Ethernet*Linux3.0.35/Android 4.3*Audio
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MIPI Receiver Test Solution
M8085A
The M8085A is a software plug-in for M8070A Bit Error Ratio Test system software within the M8000 series of BER test solutions. The M8085A software plug-in controls either the M8190A or the M8195A Arbitrary Waveform Generators to create C-PHY or D-PHY standard compliant test signals. In addition it provides routines for calibration of all signal parameters and for all tests specified in the applicable Conformance Test Suite. Together with the additional available DUT control interface it is possible to read the BER of the receiver under test from the M8070A software and display the BER dependency from test parameters within the M8070A user interface.
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Low Power MIPI Bridging Solution With Integrated Flash
CrossLinkPlus
*Instant-on (< 10 ms) configuration with integrated flash memory*Integrated flash enables flexible reprogramming in the field*Two 4-lane MIPI D-PHY transceivers at 6 Gbps per port*11 programmable, source synchronous I/O pairs for camera and display interfacing*Available in small 3.5 mm x 3.5 mm BGA package with 0.4 mm pitch*Comprehensive library of IP and reference designs, compatible with CrossLink