FOB Price
Get Latest Price|
Minimum Order
Place of Origin:
Shanghai
Price for Minimum Order:
-
Minimum Order Quantity:
-
Packaging Detail:
-
Delivery Time:
-
Supplying Ability:
18, 000
Payment Type:
-
Contact Person Mr. ivan
Lianhua, Shanghai, China
AOR****0F Outdoor optical receiver is the latest high-end design based on HFC network miniaturization. Using the most advanced technology, such as temperature compensation function, photovoltaic integration modules and potassium arsenide (GaAs) Synthesis technology, CPU-controlled AGC function, intelligent ports control, digital display and sharing fuse plugs, AOR****0F is the first choice for the HFC network transformation for urban area and countryside. ï¬ Unique CPU control technology, real-time random collection and testing of various parameters. ï¬ Optical controlled AGC processing technology, the output unchanged when the input optic power ranges between**0 and *2dBm. ï¬ sharing fuse plugs, easy to construct and maintain. ï¬ sound and light alarm function, help to make accurate judgment. ï¬ Digital display, show the optical power from time to time. ï¬ Potassium arsenide synthesis (GaAs) module, with high targets, high output power, low distortion and low power consumption. ï¬ Unique twice lightning proof system and surge suppression technology. Technical Parameters Items Units Performance Parameters Wavelength nm ***0ï&frac*2;***0 Optical Input Range dBm *7ï&frac*2;*2 Connector Type SC/APCãFC/APC Optical Return Loss dB â¥*5 CNR dB â¥*1ï&frac*4;*1 dBm Optical Power Inputï&frac*4; CTB dB â¥*5ï&frac*4;**0 dBÎ&frac*4;V, Outputï&frac*4; CSO dB â¥*1ï&frac*4;**0 dBÎ&frac*4;V, Outputï&frac*4; Frequency Range MHz *7/*5ï&frac*2;**0/**2 Output Level dBÎ&frac*4;V **4dBÎ&frac*4;Vï&frac*4;*1 dBm Inputï&frac*4; Flatness dB ±0.*5 Return Loss dB *7 MHzï&frac*2;**0 MHzâ¥*6ï&frac*4;**0 M Hzï&frac*2;**0 MHzâ¥*4 Output Impendence Ω *5 RF Test Point dB **0 Supply Voltage V *0V/*0Hzã**0V/**0Hz Power Consumption W *2 Resistance Voltage KV 5 Signal communication Ratio dB â¥*6 Maximum Input Current A *2 Operating Temperature â **5ï&frac*2;**5 Storage Temperature â **0ï&frac*2;**0 Operating Humidity % *5