| Image | Part Number | Manufacturer | Description | Series | Manufacturer Part Number | Capacitance | Wavelength | Voltage - DC Reverse (Vr) (Max) | Current - DC Forward (If) (Max) | Connector Type | Voltage - Forward (Vf) (Typ) | Spectral Bandwidth |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| HFBR-1712TZ | Avago Technologies (Broadcom Limited) | XMITTER OPT VCSEL HI PERF IND ST | - | - | - | 850nm | 2V | 20mA | ST | 2.3V | 0.85nm | |
| OPF692-1 | Optek Technology / TT Electronics | LED PHOTOSENSOR PAIR SIDE LOOK | - | - | 100pF | 850nm | 1.8V | 100mA | ST | 2V | 35nm | |
| HFBR-1414TZ | Avago Technologies (Broadcom Limited) | XMITTER FIBER OPTIC HIGH PWR ST | - | - | 55pF | 820nm | 1.8V | 100mA | ST | 1.7V | - | |
| OPF1412T | Optek Technology / TT Electronics | TRANSMITTER FIBER OPTIC HS ST | - | - | 55pF | 840nm | 1.8V | 100mA | ST | 2.09V | - | |
| HFBR-1505AFZ | Avago Technologies (Broadcom Limited) | XMITTER FIBER OPTIC SERCOS SMA | - | - | 60pF | 650nm | 3V | 60mA | SMA | 2.1V | 21nm | |
| HFBR-1412TMZ | Avago Technologies (Broadcom Limited) | XMITTER FIBER OPTIC STD PWR ST | - | - | 55pF | 820nm | 1.8V | 100mA | ST | 1.7V | - | |
| OPF390C | Optek Technology / TT Electronics | LED FIBER OPTC GAAIAS HS TO18 ST | - | - | - | 850nm | 1V | 100mA | - | 2V | 35nm | |
| HFBR-1531ETZ | Avago Technologies (Broadcom Limited) | TX OPT HIGH PERFORMANCE 5MBD | Versatile Link | - | 86pF | 660nm | 5V | 60mA | Versatile Link | 1.67V | - | |
| OPF397A | Optek Technology / TT Electronics | LED FIBR OPTC HS GAAIAS TO-18 ST | - | - | - | 850nm | 1V | 100mA | ST | 2V | 35nm | |
| HFBR-1524 | Avago Technologies (Broadcom Limited) | XMITTER VERSATILE LINK HORZ | - | - | 86pF | 600nm | 5V | 60mA | Versatile Link | 1.67V | - |
Discrete fiber optic transmitters are individual components used in fiber optic communication systems to generate optical signals from electrical signals. These transmitters may consist of semiconductor lasers or LEDs that emit light into optical fibers for data transmission. Discrete transmitters offer flexibility and modularity in system design and can be tailored to specific performance and application requirements.