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2.4GHZ 100mW Tx / Rx & 1/3-inch CCD Câmara PAL (linha 520TV)

2.4GHZ 100mW Tx / Rx & 1/3-inch CCD Câmara PAL (linha 520TV)

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SKU:
9171000023
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12 sistema de vídeo Canal Tx / Rx com câmera CCD.
A câmera usa um vidro de qualidade lensed SONY CCD sistema de câmera.
Ao contrário de outros sistemas genéricos, temos produzido um feixe de cabos e incluiu-o com a câmera de modo que o Tx e câmera será compatível e com a mesma tensão.
Se você comprar sua câmera e Tx separadamente a polaridade plug and tensões podem ser muito diferentes.
Incluído.
1 x SONY CCD de 1 / Camera 3inch
1 x canal de 2.4GHz 4 Video Transmitter (100mW)
1 x 2.4GHz 12 canais Receiver Vídeo


Especificação da câmera.
CCD tipo de sensor: 1/3 cor SONY CCD
Pixel;
NTSC: 510 (H) * 492 (V)
PAL: 500 (H) * 582 (V) (Incluído)
sistema de digitalização: a digitalização entrelaçada
Sincronização: Sistema: Inter
Resolução Horizontal: Linha 520TV
Iluminação mínima 0.01LUX / F1.2
DSP + CCD: CXD3142R + 405AK
Relação S / N: 48dB
Gamma Modificação: 0,45
balanço de branco: Auto
compensação de contraluz Auto: Auto
Lens: 3,6 milímetros
Áudio: Não
Tensão de entrada: 9 ~ 12,6 V
80MA corrente elétrica
Obturador eletrônico: 1/50 (60) ~ 1 / 100,000s
Saída de vídeo: vídeo composto 1,0 Vp-P
Operação Temp .: -20 ~ 50
Tamanho: 38 * 38 milímetros
O tempo de vôo: Aprox 60min / 3S 100mAh
 
FPV Tx Spec.
Canal: 4-Ch, sincronização AV
Potência: 100 mW
Tensão de entrada: 8 ~ 12V
Peso: 29,9 g
Tamanho: 41x28x16mm
Freqüência: 2.4G 2.410G / 2.430G / 2.450G / 2.470G
  • SKU 9171000023
  • Brand -
  • Capacidade ( mAh) -
  • Peso 409.0000
  • Comprimento 184.00
  • Packaging Width 69.00
  • Altura 150.00
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When testing the system for the first time on my workbench I had some troubles to get it working, I was able to "see" when the TX was powered on and on the correct channel but the image was nothing more than black and white, zebra-style, pattern. After reading the discussion page for the product I was directed into a broken CCD or bad wiring on the camera plug.. which both of them were wrong conclusions; the true problem was the AC to DC transformer I was using to power the video receiver, it was a cheap one from CN with multiple output voltages.. *do not use* such thing ! I replaced it with a proper regulated transformer and everything worked flawlessly. CCD's PCB solderwork is awful with some components barely making contact with the traces and TX's case/heatsink is way too big.. but in the end good bang for the buck, highly recommended and a base kit to start at FPV.

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When testing the system for the first time on my workbench I had some troubles to get it working, I was able to "see" when the TX was powered on and on the correct channel but the image was nothing more than black and white, zebra-style, pattern. After reading the discussion page for the product I was directed into a broken CCD or bad wiring on the camera plug.. which both of them were wrong conclusions; the true problem was the AC to DC transformer I was using to power the video receiver, it was a cheap one from CN with multiple output voltages.. *do not use* such thing ! I replaced it with a proper regulated transformer and everything worked flawlessly. CCD's PCB solderwork is awful with some components barely making contact with the traces and TX's case/heatsink is way too big.. but in the end good bang for the buck, highly recommended and a base kit to start at FPV.

I have been useing this product for a couple years now. you might notice when the AV transmitter is on a vibrating aircraft you will lose picture. this is due to bad connections in the channel selector switch. to solve this I took it apart and soldered it to one specific channel. I've also made an inverted vee dipole antenna for the transmitter which allows me to do rolls and loops without losing picture.

verified_user Quality:
trending_up Value:
playlist_add_check Overall:

I have been useing this product for a couple years now. you might notice when the AV transmitter is on a vibrating aircraft you will lose picture. this is due to bad connections in the channel selector switch. to solve this I took it apart and soldered it to one specific channel. I've also made an inverted vee dipole antenna for the transmitter which allows me to do rolls and loops without losing picture.

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