China 200G 400G DCI supplier

SFP 1.25G TX 1550 RX 1490 CWDM 180KM DDM Optical Transceiver

Features:                                              

Up to 1.25Gb/s Data Links
Hot-Pluggable
Single LC connector
Up to 180km on 9/125μm SMF
1550nm DFB laser transmitter
APD Receiver
Single +3.3V Power Supply
Monitoring Interface Compliant with SFF-8472
Power dissipation<1.5W
operating temperature range: 0°C to 70°C 
RoHS compliant and Lead Free

Applications:
1000Base-ZX Ethernet
Metro/Access Networks
1×Fibre Channel
Other Optical Links

  • Product Detail

RSPD-03BD180-5549

1.25Gb/s 180km LC BiDi SFP Transceiver                                                      

Hot Pluggable, Single LC, +3.3V, 1550nm Tx/1490nm Rx, DFB-LD&APD, Single-mode, DDM



Description:

FIBERWDM RSPD-03BD180-5549 Transceivers are a high performance, cost effective module which have a single LC optics interface. They are compatible with the Small Form Factor Pluggable Multi-Sourcing Agreement (MSA) and Digital diagnostics functions are available via the 2-wire serial bus specified in SFF-8472.The receiver section uses a PIN receiver and the transmitter uses a 1550 nm DFB laser, more than 40dB link budge ensure this module 1000Base-ZX Ethernet 180km application.


Absolute Maximum Ratings

Parameter

Symbol

Min.

Typical

Max.

Unit

StorageTemperature

TS

-40


+85

°C

Supply Voltage

VCC

-0.5


4

V

Relative Humidity

RH

0


85

%


Recommended Operating Environment:

Parameter

Symbol

Min.

Typical

Max.

Unit

Case operating Temperature

TC

0


+70

°C

Supply Voltage

VCC

3.1


3.6

V

Supply Current

Icc



300

mA

Inrush Current

Isurge



Icc+30

mA

Power dissipation

Pmax



1.5

W


Electrical Characteristics TOP=(TOP=-30 to70°C, VCC = 3.1 to 3.6 Volts)

Parameter

Symbol

Min.

Typical

Max.

Unit

Note

Transmitter Section:


Input differential impedance

Rin

90

100

110



Single ended data input swing

Vin PP

250


1200

mVp-p


Transmit Disable Voltage

VD

Vcc – 1.3


Vcc

V

2

Transmit Enable Voltage

VEN

Vee


Vee+ 0.8

V


Transmit Disable Assert Time

Tdessert



10

us


Receiver Section:


Single ended data output swing

Vout,pp

300


800

mv

3

LOS Fault

Vlosfault

Vcc – 0.5


VCC_host

V

5

LOS Normal

Vlos norm

Vee


Vee+0.5

V

5

Power Supply Rejection

PSR

100



mVpp

6

Note:

1.AC coupled.

2.Or open circuit.

3.Into 100 ohm differential termination.

4.20 – 80 %

5.LOS is LVTTL. Logic 0 indicates normal operation; logic 1 indicates no signal detected.

6. All transceiver specifications are compliant with a power supply sinusoidal modulation of 20 Hz to 1.5MHz up to specified value applied through the power supply filtering network shown on page 23 of the Small Form-factor Pluggable (SFP) Transceiver Multi-Source Agreement (MSA), September 14, 2000.


Optical Parameters(TOP=-30 to70°C, VCC = 3.1 to 3.6 Volts)

Parameter

Symbol

Min.

Typical

Max.

Unit

Note

Transmitter Section:

Center Wavelength

λc

1530

1550

1570

nm


Spectral Width(RMS)

σRMS



4

nm


Optical Output Power

Pout

+3


+6

dBm

1

Extinction Ratio

ER

8.2



dB


Optical Rise/Fall Time

tr/ tf



260

ps

2

Relative Intensity Noise

RIN



-120

dB/Hz


Total Jitter Contribution

TXΔ TJ



0.284

UI

3

Eye Mask for Optical Output

Compliant with IEEE802.3 z (class 1 laser safety)


Receiver Section:


Optical Input Wavelength

λc

1470

1490

1510

nm


Receiver Overload

Pol

-7



dBm

4

RX Sensitivity

Sen



-37

dBm

4

RX_LOS Assert

LOSA

-45



dBm


RX_LOS De-assert

LOSD



-37

dBm


RX_LOS Hysteresis

LOSH

0.5



dB


General Specifications:

Data Rate

BR


1.25


Gb/s


Bit Error Rate

BER



10-12



Max. Supported Link Length on 9/125μm SMF@1.25Gb/s

LMAX


180


km


Total System Budget

LB

40



dB


Note

1.The optical power is launched into SMF.

2.20-80%.

3.Contributed total jitter is calculated from DJ and RJ measurements using TJ = RJ + DJ. Contributed RJ is calculated for 1x10-12 BER by multiplying the RMS jitter (measured on a single rise or fall edge) from the oscilloscope by 14. Per FC-PI (Table 9 - SM jitter output, note 1), the actual contributed RJ is allowed to increase above its limit if the actual contributed DJ decreases below its limits, as long as the component output DJ and TJ remain within their specified FC-PI maximum limits with the worst case specified component jitter input.

4.Measured with PRBS 27-1at 10-12BER


Pin Assignment

Diagram of Host Board Connector Block Pin Numbers and Name



Diagram of Host Board Connector Block Pin Numbers and Names


Pin Function Definitions

Pin No

Name

Function

Plug Seq

Notes

1

VeeT

Transmitter Ground

1

1

2

TX Fault

Transmitter Fault Indication

3


3

TX Disable

Transmitter Disable

3

2

4

MOD-DEF2

Module Definition

2

3

5

MOD-DEF1

Module Definition 1

3

3

6

MOD-DEF0

Module Definition 0

3

3

7

Rate Select

Not Connected

3

4

8

LOS

Loss of Signal

3

5

9

VeeR

Receiver Ground

1

1

10

VeeR

Receiver Ground

1

1

11

VeeR

Receiver Ground


1

12

RD-

Inv. Received Data Out

3

6

13

RD+

Received Data Out

3

6

14

VeeR

Receiver Ground

3

1

15

VccR

Receiver Power

2

1

16

VccT

Transmitter Power

2


17

VeeT

Transmitter Ground

1


18

TD+

Transmit Data In

3

6

19

TD-

Inv. Transmit In

3

6

20

VeeT

Transmitter Ground

1


Notes:

1. Circuit ground is internally isolated from chassis ground.

2. Laser output disabled on TDIS >2.0V or open, enabled on TDIS <0.8V.

3. Should be pulled up with 4.7k - 10 kohms on host board to a voltage between 2.0V and 3.6V.MOD_DEF(0) pulls line low to indicate module is plugged in.

4. Rate select is not used

5. LOS is open collector output. Should be pulled up with 4.7k – 10 kohms on host board to a voltage between 2.0V and 3.6V. Logic 0 indicates normal operation; logic 1 indicates loss of signal.

6. AC Coupled



Recommended Circuit



SFP Host Recommended Circuit



Mechanical Dimensions


Mechanical Drawing





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