Leader SxE Portable 3G/HD/SD Generation, Analysis & Monitoring withAdvanced Physical Layer Analysis

Advanced Physical Layer Toolset

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Description

With advanced SDI physical layer analysis (Eye & Jitter), the SxE is ideal for applications such as video technology manufacturing and live production.The instant, RTE™ (Real-Time Eye) technology speeds physical layer testing, and delivers automated measurements and logging for key parameters such as: rise time, fall time, delta, overshoot, undershoot and cable length. The Jitter analysis instrument enables an engineer to quickly analyze the nature of jitter present using a graph of jitter versus time.The SxE also now offers automatic link detection of single links of multi-link 3G and HD based UHD formats.

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Monitor Details
Display resolution480 x 272 pixels auto scaling
Display type16:9 24 bit color TFT
Display size95 x 54 mm
ProcessingAll digital
Video
SDI3G-SDI, HD-SDI SD-SDI
Outputs/Inputs1 x 75 Ohm BNC
GenlockBi/Tri/SDI with cross lock
Adjustable timing0 to 1 Frame
Text IdentYes with font, color and point size
Logo identYes
EDHYes (SD-SDI)
Video Test Signal
Resolution10 bits
Static Test patterns32+ including full frame
Moving Zone PlateYes
User definedDPX,YUV,TGA,BM
FormatsTo be supplied on request
Eye bit rates3Gbps, 1.485Gbps, 270 Mbps
JitterSMPTE specification filters
Jitter thermometersAlignment, Timing
Audio
Internal speaker0.5 watts
Audio DAC24 bit stereo
Headphone socket3.5 mm with auto line out
Generator/Monitor48 kHz 20-bit (SD-SDI) 24-bit (HD-SDI)
16 channel embedded audioYes
AES Output/Input1 x 75 Ohm BNC
Audio Test Signal
Fixed tones17
Variable tones1 Hz-24 Khz in 1Hz steps
Intermittent ToneYes
White noise generationYes
Audio levels variable0 to -100dB in 1dB steps
Audio phase invertYes
General
Navigation panel5 menu keys 8 custom select/program
Integral battery supplyYes
Internal Storage8GB (upgradable)
Remote controlWeb browser interface
Ethernet/USBYes
Carry caseIncluded
AC power supplyIncluded
SecurityKensington lock fitting
Size/Weight0.7kgs, H:92mm W:225mm D:42mm

Quick Comparison

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DescriptionAdvanced Physical Layer ToolsetHDR Waveform, Histogram and Vectorscope MonitoringUltraHD UI for native-resolution picture display including PQ support for HDR capable displaysConfigurable layouts allow you to put the tool you need in the window you need it Support for display referred SDR (Rec.709), HDR ST2084/PQ, and HLG analysisSupport for scene referred ARRI, Canon, Panasonic, RED and Sony camera color spaces Precision CIE graph, vectorscope, waveform, and histogram supportFalse color mode to easily spot out of gamut/out of brightness pixels NIT levels and audio phase meteringLine mode to focus a region of interest onto a single horizontal or vertical lineFile base error logging with timecodeThree year warranty
Content
With advanced SDI physical layer analysis (Eye & Jitter), the SxE is ideal for applications such as video technology manufacturing and live production.The instant, RTE™ (Real-Time Eye) technology speeds physical layer testing, and delivers automated measurements and logging for key parameters such as: rise time, fall time, delta, overshoot, undershoot and cable length. The Jitter analysis instrument enables an engineer to quickly analyze the nature of jitter present using a graph of jitter versus time.The SxE also now offers automatic link detection of single links of multi-link 3G and HD based UHD formats.

SFR-Fit is software for measuring the MTF (Modulation Transfer Function), which indicates the spatial frequency characteristics of a camera. MTF expresses how faithfully the contrast of the subject being imaged can be reproduced, and is the most important measurement item in evaluating camera performance. Until now, the most commonly used methods for measuring MTF were the slanted edge method based on ISO12233 and the sine wave contrast method using a Siemens star chart. SFR-Fit is a completely new MTF measurement method that uses a unique algorithm to handle images with large distortions, which have been difficult to measure in the past, and image processing such as sharpness and compression. It is ideal for evaluating cameras used in fields such as automobiles, surveillance, and medicine.

Features

  • Resistant to noise and image processingOne problem with the slanted edge method, which is generally used to measure MTF, is that the measured values in the high-frequency region are unstable when there is significant image noise. Also, when image processing such as sharpness and compression is applied, the linearity of the MTF calculation, which is the basis of the slanted edge method, is not satisfied, and the validity of the measured value may be lost. SFR-Fit adopts the sinusoidal contrast method and measures the contrast by the least-squares method. With this method, even if the captured image contains noise or harmonic components due to image processing, the fundamental component can be extracted and measured producing stable results that are not affected by noise or image processing.

  • Compatible with fisheye and ultra-wide-angle camerasThe sine wave contrast method was generally measured using a Siemens star chart, but this measurement method was not compatible with images with large distortions such as those obtained with an ultra-wide-angle camera using a fisheye lens. SFR-Fit solves the problem of the sine wave contrast method using the Siemens star chart by analyzing the distortion of the image and then measuring the MTF on the undistorted test pattern. This function enables MTF measurement that is resistant to noise and image processing and also accommodates distortion. In addition, since the process from image distortion analysis to measurement is automatically executed, it contributes to labor saving in inspection work.

  • Free placement of test chartsSFR-Fit uses a display as a test chart to measure the MTF with a test pattern aligned with the camera and test chart positions. The optimum test pattern is generated on a display placed in the desired test location, and accurate MTF is then measured. This allows for simple measurement of the periphery of an ultra-wide-angle camera. *1*1*1 Exact placement has conditions. For details, please refer to the instruction manual.

  • Can measure localized MTF in a region of interest (ROI)Since the test pattern is switched for each spatial frequency, the measurement area (ROI) is miniaturized and partial MTF can be measured. For example, you can arbitrarily set the measurement points such as the center of the image and the image height of 40% or 80%. The measurement area can be easily set by clicking and dragging with a mouse or entering numerical values.

  • Simple system configurationThe equipment required for measurement is only a PC with SFR-Fit installed and a display used as a test chart. After connecting the camera to be inspected and completing the software settings, simply press the start button and the MTF measurement results will be displayed. MTF plot data and MTF values will be saved as a CSV format file. It is also possible to save images and test patterns during measurement.

function

  • Display channel selection functionMeasurement results can be displayed for each luminance and R.G.B channel. It is possible to display all components at the same time as well as independent display for each component.

  • Graph unit selection functionThere are three selectable result units: line pair per millimeter (LP/mm), cycle per pixel (cycle/pixel), and line width per picture height (LW/PH). Line Pairs Per Millimeter indicates the number of black and white line pairs displayed per millimeter. Cycles per pixel is the unit of spatial frequency normalized by the pixel pitch of the image sensor, indicating the number of cycles of the pattern displayed per pixel. For example, if a sine wave pattern is drawn with 10 horizontal pixels, there is 0.1 cycle per pixel, so 0.1 cycle per pixel. Since at least 2 pixels are required to represent one cycle, the highest frequency is 0.5 cycles per pixel. Per Picture Height indicates the number of scans per image height.

  • Selectable Data PointsYou can display the measured values in the graph of the measurement results. Just click anywhere on the graph to display the measured value, so you can easily read the MTF value. In addition, since it is possible to display multiple points at the same time, the measurement value of each point can be checked instantaneously.

  • Bar chart sampling waveform displayIt is possible to display sampling waveforms for each spatial frequency, brightness, and R.G.B channel of the generated bar chart. The horizontal axis of the graph is the sampling point (resolution varies with spatial frequency). The vertical axis is the luminance level after linearization. The sampling waveform display of SFR-Fit corresponds to the edge profile of the slanted edge method, and can be used, for example, to check the influence of image processing, the occurrence of aliasing, and the saturation of luminance.

Introduction Video

Introducing the SFR-Fit(YouTube)

CES2023 Leader Electronics Corporation Exhibit Report

The LR2731 is a rack mount adapter used to install a LV7300 rasterizer in a 19-inch EIA standard rack.

Because one side is a blank panel, use it to install a single LV7300.

Transmission Distance:Max 300mWave ength:850nmCompliant standards:25GBASE-SRConnector:LCSupported options:LV5600-SER06,LV7600-SER06

The LR 2478 is a dual rack mount adapter used to install Leader’s 1U half-rack size products in a 19-inch EIA standard rack.

It allows two Leader products to be installed side by side.

Features

  • HDR Waveform, Histogram and Vectorscope Monitoring
  • UltraHD UI for native-resolution picture display including PQ support for HDR capable displays
  • Configurable layouts allow you to put the tool you need in the window you need it 
  • Support for display referred SDR (Rec.709), HDR ST2084/PQ, and HLG analysis
  • Support for scene referred ARRI, Canon, Panasonic, RED and Sony camera color spaces 
  • Precision CIE graph, vectorscope, waveform, and histogram support
  • False color mode to easily spot out of gamut/out of brightness pixels 
  • NIT levels and audio phase metering
  • Line mode to focus a region of interest onto a single horizontal or vertical line
  • File base error logging with timecode
  • Three year warranty

8K/UltraHD2 Analysis

HDR Image Analyzer 12G provides the necessary connectivity to support advanced 8K/UltraHD2 HDR and SDR production monitoring and analysis workflows. 

Providing the same high quality and precision analysis tools available for all other video formats, this powerful analyzer is a smart investment for today's needs as well as ensuring you are ready for tomorrow's.

HDR Monitoring with HDR Image Analyzer 12G

HDR production demands a reliable and predictable tool for monitoring and analyzing all the steps in the process, to ensure that your artistic vision is followed from camera to the end user's final display.

AJA's HDR Image Analyzer 12G ensures that you are fully in control of your technical choices as you capture, pass on and deliver your HDR/SDR materials.

HDR Image Analyzer 12G offers powerful monitoring and analysis for:

  • Live Production
  • DIT Pipelines
  • Broadcast Monitoring
  • Postproduction
  • QC (Quality Control)
  • Final HDR Mastering

HDR Image Analyzer 12G:Features Spotlight with Colorist Samuel Bilodeau

Colorist Samuel Bilodeau from Mystery Box offers practical and personal insights as a power user of the HDR Image Analyzer from AJA Video Systems. Based on his on-set and in the post suite experiences, he shares his favorite features and why the HDR Image Analyzer is vital to their workflow from end-to-end.

Input Support:From Cameras to HDR/SDR

Modern cameras are inherently HDR capable with their wide dynamic ranges, and for live events, recording and broadcasts, it’s crucial to monitor their dynamic range and gamut outputs being employed for HDR delivery.

With input support for both leading camera LOG formats as well as SDR, HLG and PQ monitoring from a range of sources, HDR Image Analyzer 12G takes the pain out of HDR monitoring. With a wide range of analysis tools and automatic error logging with timecode stamping, HDR Image Analyzer 12G ensures your production achieves the desired final results.

ACES Support

The Academy Color Encoding System (ACES) is becoming an industry standard for managing color throughout the life cycle of a motion picture or television production. From capture through editing, VFX, mastering, public presentation, archiving and future remastering, ACES ensures a consistent color experience that preserves the creative vision.

HDR Image Analyzer 12G supports an ACES Grading Colorspace and offers ACEScct signal analysis for realtime integration with ACES workflows.

HDR Image Analyzer Overview Video

AJA's HDR Image Analyzer 12G offers an elegant interface for accessing all its powerful setup, monitoring and analysis tools. Watch this video for a full run through of all of HDR Image Analyzer 12G 's key features.

Configurable Layouts

HDR Image Analyzer 12G’s interface provides a quadrant layout for viewing your tools and footage as you work. Quick key shortcuts provide pre-configured common layouts for how your tools and views are presented.

For further customization, you can also choose a particular tool to be shown in any of the quadrants by either right clicking on the quadrant itself and choosing your preferred tool, or by accessing quadrant choices from the Analyzer Mode menu.

Key Tools and Interface Details

HDR Analysis Tools

Included in AJA’s HDR Image Analyzer 12G’s toolsets are waveform, histogram and vectorscope monitoring, plus a host of essential image analysis tools:

  • Automated Color Space switching over SDI for SDR/PQ/HLG
  • Waveform
  • Histogram
  • Vectorscope
  • Color Gamut
  • Nit Light Level
  • Frame average Light Level bar
  • File Based Error Logging with Timecode
  • Data Analyzer with Advanced Pixel Picker
  • Advanced, Out of Gamut and Out of Brightness Detection with Error Tolerance 
  • Out of Gamut MAX warning: Provides notice if color goes outside of P3d65

Footage from courtesy of Nanosys

Workflow

Working with the HDR Image Analyzer 12G is simple and flexible with its 4x 12G-SDI bidirectional connections.

Connect your sources to one or more of the 12G-SDI connections and loop through to monitors or further in your pipeline with the remaining 12G-SDI connections.

For 8K/UltraHD2 workflows, simply connect your source to all four of the 12G-SDI connections.

Connect an UltraHD display (up to 60p) from a DisplayPort connection for best viewing of both the footage and the HDR Image Analyzer 12G interface - if necessary the DisplayPort can drive an HDMI monitor with a DisplayPort to HDMI adapter.

Extended Features

High raster imagery deserves a high raster interface for keeping a critical eye on your aesthetic elements as you analyze your materials for HDR. HDR Image Analyzer 12G provides pristine imagery and the ability to hone in on the smallest details for an accurate analysis of your materials:

  • High quality, ultra precise UltraHD user interface for native resolution picture display including PQ support for HDR capable displays.
  • The ability to arrange tools at will in the four quadrants of the interface
  • Line Mode: Focus Region of Interest onto a single Horizontal or Vertical line.
  • Still Store.
  • Audio Peak Metering
  • Out of Gamut, Brightness, False Color Mode, Audio Levels, and Phase Metering.

Industry-Leading Support

AJA’s technical support is recognized as among the best in the industry and is available to all AJA customers. If you need assistance with any aspect of your HDR Image Analyzer 12G installation, configuration, operation or encounter any technical issue,   will work with you to get up and running.

HDR Image Analyzer 12G is covered by a generous three year warranty. Please see the individual Product’s Manual for additional specifics around warranty conditions for the product itself.

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