unter dem folgenden Thread hatte ich meine Problematik schon mal erklärt. Da ich immer wieder denke, das ich den Fehler gefunden habe bzw ausgemerzt habe aber er dann an gänzlich anderer Stelle wieder auftritt und der Übersicht halber jetzt nochmal hier mit allem was ich geben kann. Ich stolper ja immer mal wieder über andere User die ähnliche Probleme haben, vielleicht findet sich endlich eine Lösung
Kurz was ich im Vorfeld nochmal gemacht habe ->
- Alles neu verlötet und teils LED´s ausgetaucht
- Software komplett neu aufgesetzt
1. Welche LEDs du verwendest, ggf. den Link zum gekauften Produkt
Ich habe alles nach der Anleitung hier gekauft bzw eingerichtet -> Sprich http://powerpi.de/aliexpress-ws2801-strip WS2801
2. deutliche Fotos deiner Verkabelung, vor allem so das man die Verbindungen vom PI zum Stripe durchgehend (!) erkennen kann
Im ersten Thred wurde gesagt ich soll an beiden Anfängen/Enden den Strom anschließen , hab ich gemacht bei 1 und 2
3,4,5,6 sind hervorgehoben (6 hatte ich fälschlicherweise mit ner 4 bezeichnet, das rote hat nichts zu sagen )
Der Raspi wird durch ein USB Kabel vom gleichen Netzteil gespeist. Angeschlossen wie hier auf der Seite in der Anleitung beschrieben... Einfach drauf klicken und zoomen, dann kann man es ganz gut erkennen.
3. deine /boot/config.txt
An die komme ich gerade nur schwer ran da ich den NOOBS Bootloader verwende. Falls unbedingt erwünscht fummel ich die SD Karte raus etc -> Hab Autostart direkt ins KODI configuriert (aber da es generell ja läuft?!)
4. deine hyperion.config.json
Code: Alles auswählen
// Automatically generated configuration file for 'Hyperion daemon'
// Generated by: HyperCon (The Hyperion deamon configuration file builder)
// Created with HyperCon V1.02.3 (09.04.2016)
{
/// Device configuration contains the following fields:
/// * 'name' : The user friendly name of the device (only used for display purposes)
/// * 'type' : The type of the device or leds (known types for now are
/// ---------SPI---------, APA102, WS2801, P9813, LPD6803, LPD8806, ---------PWM---------, WS2812b (just RPi1), WS281X (RPi1, RPi2, RPi3), --------OTHER--------, PhilipsHUE, AtmoOrb, PiBlaster, Tinkerforge, FadeCandy, UDP, RawHID (USB), SEDU, Adalight, AdalightAPA102, TPM2, USBASP-WS2801, USBASP-WS2812, ------3rd PARTY------, AmbiLed, Atmo, Lightpack, Multi-Lightpack, Paintpack, Test (file), None)
/// * [device type specific configuration]
/// * 'colorOrder' : The order of the color bytes ('rgb', 'rbg', 'bgr', etc.).
"device" :
{
"name" : "MyHyperionConfig",
"type" : "ws2801",
"output" : "/dev/spidev0.0",
"rate" : 1000000,
"colorOrder" : "bgr"
},
/// Color manipulation configuration used to tune the output colors to specific surroundings.
/// The configuration contains a list of color-transforms. Each transform contains the
/// following fields:
/// * 'channelAdjustment'
/// * 'id' : The unique identifier of the channel adjustments (eg 'device_1')
/// * 'leds' : The indices (or index ranges) of the leds to which this channel adjustment applies
/// (eg '0-5, 9, 11, 12-17'). The indices are zero based.
/// * 'pureRed'/'pureGreen'/'pureBlue' : The manipulation in the Red-Green-Blue color domain with the
/// following tuning parameters for each channel:
/// * 'temperature'
/// * 'id' : The unique identifier of the temperature (eg 'device_1')
/// * 'leds' : The indices (or index ranges) of the leds to which this temperature applies
/// (eg '0-5, 9, 11, 12-17'). The indices are zero based.
/// * 'red'/'green'/'blue' : The temperature manipulation in the Red-Green-Blue color domain with the
/// following tuning parameters for each channel:
/// * 'transform'
/// * 'id' : The unique identifier of the color transformation (eg 'device_1')
/// * 'leds' : The indices (or index ranges) of the leds to which this color transform applies
/// (eg '0-5, 9, 11, 12-17'). The indices are zero based.
/// * 'hsv' : The manipulation in the Hue-Saturation-Value color domain with the following
/// tuning parameters:
/// - 'saturationGain' The gain adjustement of the saturation
/// - 'luminanceGain' The gain adjustement of the luminance
/// * 'red'/'green'/'blue' : The manipulation in the Red-Green-Blue color domain with the
/// following tuning parameters for each channel:
/// - 'threshold' The minimum required input value for the channel to be on
/// (else zero)
/// - 'gamma' The gamma-curve correction factor
///
/// Next to the list with color transforms there is also a smoothing option.
/// * 'smoothing' : Smoothing of the colors in the time-domain with the following tuning
/// parameters:
/// - 'type' The type of smoothing algorithm ('linear' or 'none')
/// - 'time_ms' The time constant for smoothing algorithm in milliseconds
/// - 'updateFrequency' The update frequency of the leds in Hz
/// - 'updateDelay' The delay of the output to leds (in periods of smoothing)
"color" :
{
"channelAdjustment" :
[
{
"id" : "default",
"leds" : "*",
"pureRed" :
{
"redChannel" : 255,
"greenChannel" : 0,
"blueChannel" : 0
},
"pureGreen" :
{
"redChannel" : 0,
"greenChannel" : 245,
"blueChannel" : 0
},
"pureBlue" :
{
"redChannel" : 0,
"greenChannel" : 0,
"blueChannel" : 250
}
}
],
"temperature" :
[
{
"id" : "default",
"leds" : "*",
"correctionValues" :
{
"red" : 245,
"green" : 255,
"blue" : 225
}
}
],
"transform" :
[
{
"id" : "default",
"leds" : "*",
"hsl" :
{
"saturationGain" : 0.8500,
"luminanceGain" : 1.0500
},
"red" :
{
"threshold" : 0.0000,
"gamma" : 2.5000
},
"green" :
{
"threshold" : 0.0000,
"gamma" : 2.5000
},
"blue" :
{
"threshold" : 0.0000,
"gamma" : 2.5000
}
}
],
"smoothing" :
{
"type" : "linear",
"time_ms" : 100,
"updateFrequency" : 25.0000,
"updateDelay" : 0
}
},
/// The black border configuration, contains the following items:
/// * enable : true if the detector should be activated
/// * threshold : Value below which a pixel is regarded as black (value between 0.0 and 1.0)
/// * unknownFrameCnt : Number of frames without any detection before the border is set to 0 (default 600)
/// * borderFrameCnt : Number of frames before a consistent detected border gets set (default 50)
/// * maxInconsistentCnt : Number of inconsistent frames that are ignored before a new border gets a chance to proof consistency
/// * blurRemoveCnt : Number of pixels that get removed from the detected border to cut away blur (default 1)
/// * mode : Border detection mode (values=default,classic,osd)
"blackborderdetector" :
{
"enable" : true,
"threshold" : 0.01,
"unknownFrameCnt" : 600,
"borderFrameCnt" : 50,
"maxInconsistentCnt" : 10,
"blurRemoveCnt" : 1,
"mode" : "default"
},
/// The configuration of the effect engine, contains the following items:
/// * paths : An array with absolute location(s) of directories with effects
/// * color : Set static color after boot -> set effect to "" (empty) and input the values [R,G,B] and set duration_ms NOT to 0 (use 1) instead
/// * effect : The effect selected as 'boot sequence'
/// * duration_ms : The duration of the selected effect (0=endless)
/// * priority : The priority of the selected effect/static color (default=990) HINT: lower value result in HIGHER priority!
"effects" :
{
"paths" :
[
"/storage/hyperion/effects"
]
},
"bootsequence" :
{
"color" : [0,0,0],
"effect" : "Rainbow swirl",
"duration_ms" : 6000,
"priority" : 990
},
/// The configuration of the Json/Proto forwarder. Forward messages to multiple instances of Hyperion on same and/or other hosts
/// 'proto' is mostly used for video streams and 'json' for effects
/// * proto : Proto server adress and port of your target. Syntax:[IP:PORT] -> ["127.0.0.1:19447"] or more instances to forward ["127.0.0.1:19447","192.168.0.24:19449"]
/// * json : Json server adress and port of your target. Syntax:[IP:PORT] -> ["127.0.0.1:19446"] or more instances to forward ["127.0.0.1:19446","192.168.0.24:19448"]
/// HINT: If you redirect to "127.0.0.1" (localhost) you could start a second hyperion with another device/led config!
/// Be sure your client(s) is/are listening on the configured ports. The second Hyperion (if used) also needs to be configured! (HyperCon -> External -> Json Server/Proto Server)
// "forwarder" :
// {
// "proto" : ["127.0.0.1:19447"],
// "json" : ["127.0.0.1:19446"]
// },
/// The configuration for the frame-grabber, contains the following items:
/// * width : The width of the grabbed frames [pixels]
/// * height : The height of the grabbed frames [pixels]
/// * frequency_Hz : The frequency of the frame grab [Hz]
/// * priority : The priority of the frame-gabber (Default=890) HINT: lower value result in HIGHER priority!
/// * ATTENTION : Power-of-Two resolution is not supported and leads to unexpected behaviour!
"framegrabber" :
{
"width" : 64,
"height" : 64,
"frequency_Hz" : 10.0,
"priority" : 890
},
/// The configuration of the Kodi connection used to enable and disable the frame-grabber. Contains the following fields:
/// * xbmcAddress : The IP address of the Kodi-host
/// * xbmcTcpPort : The TCP-port of the Kodi-server
/// * grabVideo : Flag indicating that the frame-grabber is on(true) during video playback
/// * grabPictures : Flag indicating that the frame-grabber is on(true) during picture show
/// * grabAudio : Flag indicating that the frame-grabber is on(true) during audio playback
/// * grabMenu : Flag indicating that the frame-grabber is on(true) at the Kodi menu
/// * grabScreensaver : Flag indicating that the frame-grabber is on(true) when Kodi is on screensaver
/// * enable3DDetection : Flag indicating that the frame-grabber should switch to a 3D compatible modus if a 3D video is playing
"xbmcVideoChecker" :
{
"xbmcAddress" : "127.0.0.1",
"xbmcTcpPort" : 9090,
"grabVideo" : true,
"grabPictures" : true,
"grabAudio" : true,
"grabMenu" : false,
"grabScreensaver" : true,
"enable3DDetection" : true
},
/// The configuration of the Json server which enables the json remote interface
/// * port : Port at which the json server is started
"jsonServer" :
{
"port" : 19444
},
/// The configuration of the Proto server which enables the protobuffer remote interface
/// * port : Port at which the protobuffer server is started
"protoServer" :
{
"port" : 19445
},
/// The configuration of the boblight server which enables the boblight remote interface
/// * port : Port at which the boblight server is started
/// * priority: Priority of the boblight server (Default=900) HINT: lower value result in HIGHER priority!
// "boblightServer" :
// {
// "port" : 19333,
// "priority" : 900
// },
/// Configuration for the embedded V4L2 grabber
/// * device : V4L2 Device to use [default="/dev/video0"]
/// * input : V4L2 input to use [default=0]
/// * standard : Video standard (no-change/PAL/NTSC) [default="no-change"]
/// * width : V4L2 width to set [default=-1]
/// * height : V4L2 height to set [default=-1]
/// * frameDecimation : Frame decimation factor [default=2]
/// * sizeDecimation : Size decimation factor [default=8]
/// * priority : Hyperion priority channel [default=900]
/// * mode : 3D mode to use 2D/3DSBS/3DTAB (note: no autodetection) [default="2D"]
/// * cropLeft : Cropping from the left [default=0]
/// * cropRight : Cropping from the right [default=0]
/// * cropTop : Cropping from the top [default=0]
/// * cropBottom : Cropping from the bottom [default=0]
/// * redSignalThreshold : Signal threshold for the red channel between 0.0 and 1.0 [default=0.0]
/// * greenSignalThreshold : Signal threshold for the green channel between 0.0 and 1.0 [default=0.0]
/// * blueSignalThreshold : Signal threshold for the blue channel between 0.0 and 1.0 [default=0.0]
// "grabber-v4l2" :
// {
// "device" : "/dev/video0",
// "input" : 0,
// "standard" : "PAL",
// "width" : -1,
// "height" : -1,
// "frameDecimation" : 2,
// "sizeDecimation" : 4,
// "priority" : 800,
// "mode" : "2D",
// "cropLeft" : 6,
// "cropRight" : 6,
// "cropTop" : 2,
// "cropBottom" : 2,
// "redSignalThreshold" : 0.1,
// "greenSignalThreshold" : 0.1,
// "blueSignalThreshold" : 0.1
// },
/// The configuration for each individual led. This contains the specification of the area
/// averaged of an input image for each led to determine its color. Each item in the list
/// contains the following fields:
/// * index: The index of the led. This determines its location in the string of leds; zero
/// being the first led.
/// * hscan: The fractional part of the image along the horizontal used for the averaging
/// (minimum and maximum inclusive)
/// * vscan: The fractional part of the image along the vertical used for the averaging
/// (minimum and maximum inclusive)
"leds" :
[
{
"index" : 0,
"hscan" : { "minimum" : 0.5313, "maximum" : 0.5625 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 1,
"hscan" : { "minimum" : 0.5625, "maximum" : 0.5938 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 2,
"hscan" : { "minimum" : 0.5938, "maximum" : 0.6250 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 3,
"hscan" : { "minimum" : 0.6250, "maximum" : 0.6563 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 4,
"hscan" : { "minimum" : 0.6563, "maximum" : 0.6875 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 5,
"hscan" : { "minimum" : 0.6875, "maximum" : 0.7188 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 6,
"hscan" : { "minimum" : 0.7188, "maximum" : 0.7500 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 7,
"hscan" : { "minimum" : 0.7500, "maximum" : 0.7813 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 8,
"hscan" : { "minimum" : 0.7813, "maximum" : 0.8125 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 9,
"hscan" : { "minimum" : 0.8125, "maximum" : 0.8438 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 10,
"hscan" : { "minimum" : 0.8438, "maximum" : 0.8750 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 11,
"hscan" : { "minimum" : 0.8750, "maximum" : 0.9063 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 12,
"hscan" : { "minimum" : 0.9063, "maximum" : 0.9375 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 13,
"hscan" : { "minimum" : 0.9375, "maximum" : 0.9688 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 14,
"hscan" : { "minimum" : 0.9688, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.9500, "maximum" : 1.0000 }
},
{
"index" : 15,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.9444, "maximum" : 1.0000 }
},
{
"index" : 16,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.8889, "maximum" : 0.9444 }
},
{
"index" : 17,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.8333, "maximum" : 0.8889 }
},
{
"index" : 18,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.7778, "maximum" : 0.8333 }
},
{
"index" : 19,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.7222, "maximum" : 0.7778 }
},
{
"index" : 20,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.6667, "maximum" : 0.7222 }
},
{
"index" : 21,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.6111, "maximum" : 0.6667 }
},
{
"index" : 22,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.5556, "maximum" : 0.6111 }
},
{
"index" : 23,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.5000, "maximum" : 0.5556 }
},
{
"index" : 24,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.4444, "maximum" : 0.5000 }
},
{
"index" : 25,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.3889, "maximum" : 0.4444 }
},
{
"index" : 26,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.3333, "maximum" : 0.3889 }
},
{
"index" : 27,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.2778, "maximum" : 0.3333 }
},
{
"index" : 28,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.2222, "maximum" : 0.2778 }
},
{
"index" : 29,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.1667, "maximum" : 0.2222 }
},
{
"index" : 30,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.1111, "maximum" : 0.1667 }
},
{
"index" : 31,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.0556, "maximum" : 0.1111 }
},
{
"index" : 32,
"hscan" : { "minimum" : 0.9700, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0556 }
},
{
"index" : 33,
"hscan" : { "minimum" : 0.9688, "maximum" : 1.0000 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 34,
"hscan" : { "minimum" : 0.9375, "maximum" : 0.9688 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 35,
"hscan" : { "minimum" : 0.9063, "maximum" : 0.9375 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 36,
"hscan" : { "minimum" : 0.8750, "maximum" : 0.9063 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 37,
"hscan" : { "minimum" : 0.8438, "maximum" : 0.8750 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 38,
"hscan" : { "minimum" : 0.8125, "maximum" : 0.8438 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 39,
"hscan" : { "minimum" : 0.7813, "maximum" : 0.8125 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 40,
"hscan" : { "minimum" : 0.7500, "maximum" : 0.7813 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 41,
"hscan" : { "minimum" : 0.7188, "maximum" : 0.7500 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 42,
"hscan" : { "minimum" : 0.6875, "maximum" : 0.7188 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 43,
"hscan" : { "minimum" : 0.6563, "maximum" : 0.6875 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 44,
"hscan" : { "minimum" : 0.6250, "maximum" : 0.6563 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 45,
"hscan" : { "minimum" : 0.5938, "maximum" : 0.6250 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 46,
"hscan" : { "minimum" : 0.5625, "maximum" : 0.5938 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 47,
"hscan" : { "minimum" : 0.5313, "maximum" : 0.5625 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 48,
"hscan" : { "minimum" : 0.5000, "maximum" : 0.5313 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 49,
"hscan" : { "minimum" : 0.4688, "maximum" : 0.5000 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 50,
"hscan" : { "minimum" : 0.4375, "maximum" : 0.4688 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 51,
"hscan" : { "minimum" : 0.4063, "maximum" : 0.4375 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 52,
"hscan" : { "minimum" : 0.3750, "maximum" : 0.4063 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 53,
"hscan" : { "minimum" : 0.3438, "maximum" : 0.3750 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 54,
"hscan" : { "minimum" : 0.3125, "maximum" : 0.3438 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 55,
"hscan" : { "minimum" : 0.2813, "maximum" : 0.3125 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 56,
"hscan" : { "minimum" : 0.2500, "maximum" : 0.2813 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 57,
"hscan" : { "minimum" : 0.2188, "maximum" : 0.2500 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 58,
"hscan" : { "minimum" : 0.1875, "maximum" : 0.2188 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 59,
"hscan" : { "minimum" : 0.1563, "maximum" : 0.1875 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 60,
"hscan" : { "minimum" : 0.1250, "maximum" : 0.1563 },
"vscan" : { "minimum" : 0.0000, "maximum" : 0.0500 }
},
{
"index" : 61,
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5. Screenshots des Hyperion GUI Tools womit du deine LEDs konfiguriert hast (von jedem Tab einen)
6. Angabe wo deine erste LED am TV montiert ist (von vorne Betrachtet)
Wie auf dem Screenshot zu sehen ist unten rechts gegen den Uhrzeigersinn
Ich habe hier ein paar Bilder die das Problem genauer beleuchten.
Passt zb. Grün, dann passt Blau nicht mehr, passt Rot, passt grün nicht mehr, passen alle Farben, passt der Grau bzw. Gammawert nicht mehr. Egal wie ich die Farbwerte etc, anpasse. Auch mit 0,01 Schritten nicht. Mal passt alles ne Weile bis es dann irgendwann wieder nicht mehr passt?! Meist wenn man etwas gänzlich anderes schaut zb. mit viel Schnee oder irgendwas dunkles
So sehen die Farben mit der Config derzeit aus. Ich schreibe extra zu jeder Farbe etwas da meine Cam nicht alles perfekt einfangen konnte
Das Blau auf dem Fernseher sieht lila aus. Ist aber genau so blau wie an den Rändern. Nur sind die LEDs etwas kräftiger als am Fernseher aber blau passt zu 95%
gelb passt zu 100%, kommt auf dem Bild leider nicht so rüber
Wirkt auf dem Bild passend, das grün der LED ist aber deutlich heller, greller, einfach sättigender als auf dem Fernseher. Passt so aber zu ca 90%
Lila ist super, passt wirklich 1a
Rot sieht auf dem Screenshot passend aus und ist es auch fast. Nur sind die LEDs leicht heller. Passt zu 98% aber wohl
Bei tuerkis ist es zu grünstichig. Passt aber zu 90%
Das sollte weiß sein. Weiß wirkt sehr kalt, ganz leicht bläulich, passt aber ganz gut eigentlich. Kommt auf dem Bild leider überhaupt nicht so rüber
OK - Soweit die Farben. Wenn ich diese anpasse das alles wirklich gut aussieht, dann passt Gamma überhaupt nicht mehr.
Sieht fast aus wie das Weißbild, ist aber grau. Optisch passt das aber, leicht blautsichig aber dazu gleich mehr.
Denn was ich überhaupt nicht verstehe ist folgendes ->
Bei 1 ist das grau stark grünstichig (sieht man leider nicht so gut)
Bei 2 ist es blau/lilastichig (erkennt man schon etwas besser)
dreht man nun das Bild ->
Ist es genau umgekehrt - 2 grün / 1 blau/lila
Das bekomme ich auch gar nicht, überhaupt nicht in den Griff, egal was ich einstelle, es ist immer unterschiedlich auf beiden Seiten. Aber wie kann das?
Nächstes Phänomen ->
ich habe immer wieder, obwohl eigentlich keine da sein düfte, genau mittig eine dunkle Kante?! Die taucht häufiger mal auf obwohl, vom Bild gesehen, dieses nicht sollte?!
Das ist ganz gut getroffen. Die Szene ist sehr dunkel aber die Farben viel zu grell und unpassend. Vor allem mit Rottönen und dunklem Holz hab ich da Probleme.
Hier nochmal ein Beispiel. Alles sehr dunkel, der grau bereich ist sehr grünlich und unten links ist es bläulich/lila
Also ich weiß definitv nicht mehr weiter. Bin ich zu pingelig? Übersehe ich etwas? Ich bin ein Lötanfänger, ich hab gedacht, vielleicht passt irgendwo was nicht und das Signal wird irgendwo gestört?! Aber ich hab wirklich alles nochmal neu gemacht und meiner Meinung und der Bilder nach sollte das OK sein?! Mich persönlich stört es so stark, das ich tatsächlich das Ambilight mehr aus als an habe und das ist einfach nicht Sinn der Sache und zu teuer. Außerdem geht es an mein persönliches Ego, ich will das hinbekommen. Das muss doch einfach klappen