HFCT5201B Avago Technologies US Inc., HFCT5201B Datasheet - Page 5

HFCT5201B

Manufacturer Part Number
HFCT5201B
Description
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HFCT5201B

Optical Fiber Type
TX/RX
Data Transfer Rate
155Mbps
Operating Temperature Classification
Commercial
Peak Wavelength
1360nm
Operating Supply Voltage (min)
4.75V
Operating Supply Voltage (typ)
5V
Operating Supply Voltage (max)
5.25V
Output Current
30mA
Operating Temp Range
0C to 70C
Pin Count
18
Lead Free Status / RoHS Status
Not Compliant
Figure 6. Package Outline Drawing and Pinout
Regulatory Compliance
The HFCT‑5201 is intended to enable commercial system
designers to develop equipment that complies with the
various regulations governing certification of Information
Technology Equipment. See the Regulatory Compliance
Table 1 for details. Additional information is available
from your Avago sales representative.
Electrostatic Discharge (ESD)
There are two design cases in which immunity to ESD
damage is important.
The first case is during handling of the transceiver prior
to mounting it on the circuit board. It is important to
use normal ESD handling precautions for ESD sensitive
devices. These precautions include using grounded wrist
straps, work benches and floor mats in ESD controlled
areas.
Table 1. Regulatory Compliance - Typical Performance
5
18 x Ø
Feature
Electrostatic Discharge
ESD) to the Electrical Pins
Electrostatic Discharge
ESD) to the Duplex SC
Receptacle
Electromagnetic Interfer‑
ence (EMI)
Immunity
Eye Safety
20.32
(0.8)
Note: SOLDER POSTS AND ELECTRICAL PINS ARE TIN/LEAD PLATED.
DIMENSIONS IN MILLIMETERS (INCHES).
0.46
0.018 +0.010
+0.25
-0.05
-0.002
8 x 2.54
(0.1)
(0.1)
2.54
°
°
°
°
°
°
°
°
°
°
°
°
°
°
°
°
°
°
(0.123)
3.12
33.02
(1.3)
Test Method
MIL‑STD‑883
Method 3015
Variation of IEC 61000‑4‑2 15 kV Air Discharge
FCC Class B
Variation of IEC 61000‑4‑3 Typically show no measurable effect from a 10 V/m field
IEC 60825‑1
CDRH Class 1
+
+
(0.625)
15.88
2 x Ø
1.27
0.050 +0.010
+0.25
-0.05
-0.002
20.32
(0.8)
Performance
Class 1 (>1000 V)
Typically provide 11 dB margin to FCC Class B when tested
in a GTEM cell with the transceiver mounted to a circuit
card without a chassis enclosure at frequencies up to 1 GHz.
Margins above 1 GHz are dependent on customer board
and chassis designs.
swept from 27 MHz to 1 GHz applied to the transceiver
when mounted to a circuit card without a chassis enclosure.
TUV Bauart License: 933/510018/02
CDRH Accession Number: 9521220‑31
The second case to consider is static discharges to the
exterior of the equipment chassis containing the trans‑
ceiver parts. To the extent that the duplex SC connector
is exposed to the outside of the equipment chassis it may
be subject to whatever ESD system level test criteria that
the equipment is intended to meet.
Electromagnetic Interference (EMI)
Most equipment designs utilizing these high‑speed
transceivers from Avago will be required to meet the
requirements of FCC in the United States, CENELEC
EN55022 (CISPR 22) in Europe and VCCI in Japan.
The HFCT‑5201 has been characterized without a chassis
enclosure to demonstrate the robustness of the part’s
integral shielding. Performance of a system contain‑
ing these transceivers within a well designed chassis is
expected to be better than the results of these tests with
no chassis enclosure.
Immunity
Equipment utilizing these HFCT‑5201 transceivers will
be subject to radio‑frequency electromagnetic fields
in some environments. These transceivers, with their
integral shields, have been characterized without the
benefit of a normal equipment chassis enclosure and
the results are reported below. Performance of a system
containing these transceivers within a well designed
chassis is expected to be better than the results of these
tests without a chassis enclosure.

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