美國Discovery Semiconductors Inc
Discovery Semiconductors, Inc.是一家制造超快,高光功率處理 InGaAs 光電探測器,射頻過光纖接收器,平衡光接收器,和一些定制產(chǎn)品的行業(yè)領導者。產(chǎn)品應用范圍從模擬射頻連接到超快數(shù)字通信。Discovery成立于1993年,并憑借使用在10,40和100Gb應用的高科技產(chǎn)品稱為全球型企業(yè)。Discovery的儀器和系統(tǒng)包含Lab Buddy和光學相干接收機系統(tǒng)。
10G接收機:
InGaAs PIN Photodiodes | ||
u High Optical Power Handling u Low Group Delay u Low Harmonic Distortion u Lowest PDL (typical 0.05 dB) u Useable spectral wavelength range of 800-1650 nm u Telcom, Military and Space Qualified | u DSC100/100S - InGaAs Photodiodes: 6 GHz, Highly Linear, Optical Power Handling u DSC30S/40S/50S - InGaAs PIN Photodiodes to 20 GHz with High Optical Power Handling | |
(PIN or APD) + TIA Optical Receivers | ||
u Low-Noise, High-Gain u Low Group Delay u Lowest PDL (typical 0.05 dB) u Useable spectral wavelength range of 800-1650 nm | u DSC-R402PIN - 10 GHz Linear InGaAs PIN+TIA Optical Receiver with Optional CDR u DSC-R402APD - 10G InGaAs APD Optical Receiver with Optional CDR u DSC-R401HG - 20 GHz Linear InGaAs Optical Receiver | |
(PIN or APD) + TIA + LIM Digital Optical Receivers | ||
u High Sensitivity u Differential Outputs for Common Mode Rejection (R602PIN or R602APD) u Lowest PDL (typical 0.05 dB) u Useable spectral wavelength range of 800-1650 nm | u DSC-R603 - 10 Gb/s High-Sensitivity Limiting PIN + TIA Optical Receiver u DSC-R604APD - 10 Gb/s High-Sensitivity High-Gain APD Optical Receiver with Optional CDR | |
Balanced PIN Photodiodes | ||
u Lowest PDL (typical 0.05 dB) u CMRR exceeds 30 dB u Useable spectral wavelength range of 800-1650 nm u RIN and ASE noise cancellation u Suppression of Even Order Harmonics u High optical power handling | u DSC710 and DSC720 - Balanced InGaAs Photodiodes to 20 GHz | |
Balanced PIN + (TIA or LNA) Optical Receivers | ||
u High Common Mode Rejection u Lowest PDL (typical 0.05 dB) u Useable spectral wavelength range of 800-1650 nm u RIN and ASE noise cancellation u Optical Delay Line Option available | u DSC-R405/R405ER - 20 GHz Linear Balanced Photoreceivers with Optional CDR |