
Broadcom
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HFBR-14xxZ and HFBR-24xxZ Series Data Sheet
HFBR-14x4Z Output Power Measured out of 1 Meter of Cable
Parameter Symbol Min. Typ. [2] Max. Unit Conditions Reference
50/125 μm Fiber Cable
NA = 0.2
PT50 –18.8 –15.8 –13.8 dBm peak TA = +25°C, IF = 60 mA Notes 5, 6, 9
Figure 10
–19.8 –12.8 dBm peak TA = –40°C to +85°C, IF = 60 mA
–17.3 –13.8 –11.4 dBm peak TA = +25°C, IF = 100 mA
–18.9 –10.8 dBm peak TA = –40°C to +85°C, IF = 100 mA
62.5/125 μm Fiber Cable
NA = 0.275
PT62 –15.0 –12.0 –10.0 dBm peak TA = +25°C, IF = 60 mA
–16.0 –9.0 dBm peak TA = –40°C to +85°C, IF = 60 mA
–13.5 –10.0 –7.6 dBm peak TA = +25°C, IF = 100 mA
–15.1 –7.0 dBm peak TA = –40°C to +85°C, IF = 100 mA
100/140 μm Fiber Cable
NA = 0.3
PT100 –11.5 –8.5 –6.5 dBm peak TA = +25°C, IF = 60 mA
–12.5 –5.5 dBm peak TA = –40°C to +85°C, IF = 60 mA
–10.0 –6.5 –4.1 dBm peak TA = +25°C, IF = 100 mA
–11.6 –3.5 dBm peak TA = –40°C to +85°C, IF = 100 mA
200 μm PCS Fiber Cable
NA = 0.37
PT200 –7.5 –4.5 –2.5 dBm peak TA = +25°C, IF = 60 mA
–8.5 –1.5 dBm peak TA = –40°C to +85°C, IF = 60 mA
–6.0 –2.5 –0.1 dBm peak TA = +25°C, IF = 100 mA
–7.6 0.5 dBm peak TA = –40°C to +85°C, IF = 100 mA
HFBR-14x5Z Output Power Measured out of 1 Meter of Cable
Parameter Symbol Min. Typ. Max. Unit Conditions Reference
50/125 μm Fiber Cable
NA = 0.2
PT50 –16.5 –14.3 –11.5 dBm peak TA = +25°C, IF = 60 mA Notes 5, 6, 9
Figure 10
–17.5 –10.5 dBm peak TA = –40°C to 85°C, IF = 60 mA
62.5/125 μm Fiber Cable
NA = 0.275
PT62 –12.0 –10.5 –8.0 dBm peak TA = +25°C, IF = 60 mA
–13.0 –7.0 dBm peak TA = –40°C to 85°C, IF = 60 mA
200 μm Fiber Cable
NA = 0.37
PT200 –6.0 –3.6 0.0 dBm peak TA = +25°C, IF = 60 mA
–7.0 1.0 dBm peak TA = –40°C to 85°C, IF = 60 mA
14x2Z/14x4Z/14x5Z Dynamic Characteristics
Parameter Symbol Min. Typ. [2] Max. Unit Conditions Reference
Rise Time, Fall Time
(10% to 90%)
tr, tf4.0 6.5 ns
No pre-bias
IF = 60 mA
Figure 11
Note 7
Rise Time, Fall Time
(10% to 90%)
tr, tf3.0 ns IF = 10 to 100 mA Figure 12
Pulse Width Distortion PWD 0.5 ns Figure 12
Notes:
1. For IFPK > 100 mA, the time duration should not exceed 2 ns.
2. Typical data at TA = +25°C.
3. Thermal resistance is measured with the transmitter coupled to a connector assembly and mounted on a printed circuit board.
4. D is measured at the plane of the ber face and denes a diameter where the optical power density is within 10 dB of the maximum.
5. PT is measured with a large area detector at the end of 1 meter of mode stripped cable, with an ST precision ceramic ferrule (MILSTD- 83522/13) for HFBR-
141xZ, and with an SMA 905 precision ceramic ferrule for HFBR-140xZ.
6. When changing mW to dBm, the optical power is referenced to 1 mW. Optical Power P(dBm) = 10log (P(mW) / 1 mW)
7. Pre-bias is recommended if signal rate >10 MBaud, see recommended drive circuit in Figure 11.
8. Pins 2, 6, and 7 are welded to the anode header connection to minimize the thermal resistance from junction to ambient. To further reduce the thermal
resistance, the anode trace should be made as large as is consistent with good RF circuit design.
9. Fiber NA is measured at the end of 2 meters of mode stripped ber, using the far-eld pattern. NA is dened as the sine of the half angle, determined at 5% of
the peak intensity point. When using other manufacturer’s ber cable, results will vary due to diering NA values and specication methods.
10. Only valid for HFBR-141xPxZ (Protection improved option).