NX7303BA-CC
NX7303BA-CC is LASER DIODE manufactured by CEL.
FEATURES
- CENTER WAVELENGTH: λC = 1310 nm
- OPTICAL OUTPUT POWER: Pf = 1.0 m W
- LOW THRESHOLD CURRENT: ITH = 9 m A
- HIGH CUTOFF FREQUENCY: f C = 2.0 GHz
- In Ga As MONITOR PIN-PD
- WITH SC-UPC CONNECTOR
- WIDE OPERATING TEMPERATURE RANGE: -40 to +85°C
- BASED ON TELCORDIA RELIABILITY
DESCRIPTION
NEC's NX7303BA-CC and NX7303CA-CC are 1310 nm Fabry Perot (FP) laser diode coaxial modules with single mode fiber. They have a Multiple Quantum Well (MQW) structure and a built-in In Ga As monitor photo diode. These modules are ideal as a light source for Synchronous Digital Hierarchy (SDH) systems, STM-1 and long-haul L-1.1 ITU-T remendations.
ELECTRO-OPTICAL CHARACTERISTICS (TC = -40 to +85°C, unless otherwise specified)
PART NUMBER SYMBOLS Pf VOP ITH PTH IMOD ηd ∆ηd PARAMETERS AND CONDITIONS Optical Output Power from Fiber Operating Voltage, Pf = 1.0 m W Threshold Current Threshold Output Power, IF = ITH Modulation Current Differential Efficiency Pf = 1.0 m W, TC = 25°C Pf = 1.0 m W TC = +25°C UNITS m W V m A m A µW m A m A W/A W/A d B 4 2 8 5 0.030 0.018 -3 MIN NX7303BA-CC, NX7303CA-CC TYP 1.0 1.2 9 1.5 20 50 75 35 60 0.100 0.150 MAX
15 0.070 -2
Pf = 1.0 m W, TC = 25°C Pf = 1.0 m W Temperature Dependence of Differential Efficiency,
ηd (@ TC °C) ∆ηd = 10 log ηd (@ 25 °C)
Kink λc ∆λ/∆T σ f C tr tf Im ID Ct LINm γ Kink, Pf = Up to 1.2 m W (Refer to Definitions) Center Wavelength, Pf = 1.0 m W, RMS (-20 d B) Temperature Dependence of Center Wavelength Spectral Width, Pf = 1.0 m W, RMS (-20 d B) Cut-off Frequency, -3 d B Rise Time, 10 to 90%, Ppk = 1.0 m W, IF = ITH Fall Time, 90 to 10%, Ppk = 1.0 m W, IF = ITH Monitor Current, VR = 5 V, Pf = 1.0 m W Dark Current VR = 5 V, TC = 25 °C VR = 5 V % nm nm/°C nm GHz ns ns µA n A n A p F % d B 0.5 100 1263 1310 0.4 1.3 2.0 0.2 0.3 700 0.1 10 0.5 0.5 1200 50 500 20 ±10 1.0 ±20 1360 0.5 4.0
Applicable to Monitor PD: TC = -40 to +85 °C unless otherwise specified
Terminal Capacitance, VR = 5 V, f = 1 MHz Linearity, VR = 5 V, Pf = 0.1 to 1.0 m W (Refer to...