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40G QSFP+

FSANAA34-M(L)xxC

QSFP+ 40Gb/s Parallel Breakout Active Optical Cable DDM

Product Features:
l Multi rate of up to 10.3125 Gb/s per channel;
l Four-channel full-duplex active optical cable;
l with breakout from QSFP+ to four SFP+;
l Complies with QSFP+ and SFP+ MSA form factors;
l Reliable VCSEL array technology using multimode fiber;
l Hot-pluggable;
l +3.3V Single power supply;
l Low power consumption;
l RoHS-6 Compliant;
l Case operating temperature;
Commercial: 0°C to +70°C

Overview


I. Pin Descriptions

QSFP+ end

image 

 

QSFP MSA-compliant 38-pinconnector

Pin

Symbol

Name/Description

Notes

1

GND

Ground

1

2

Tx2n

Transmitter Inverted Data Input


3

Tx2p

Transmitter Non-Inverted Data Input


4

GND

Ground

1

5

Tx4n

Transmitter Inverted Data Input


6

Tx4p

Transmitter Non-Inverted Data Input


7

GND

Ground

1

8

ModSelL

Module Select


9

ResetL

Module Reset


10

VccRx

+3.3 V Power supply receiver


11

SCL

2-wire serial interface clock


12

SDA

2-wire serial interface data


13

GND

Ground

1

14

Rx3p

Receiver Non-Inverted Data Output


15

Rx3n

Receiver Inverted Data Output


16

GND

Ground

1

17

Rx1p

Receiver Non-Inverted Data Output


18

Rx1n

Receiver Inverted Data Output


19

GND

Ground

1

20

GND

Ground

1

21

Rx2n

Receiver Inverted Data Output


22

Rx2p

Receiver Non-Inverted Data Output


23

GND

Ground

1

24

Rx4n

Receiver Inverted Data Output


25

Rx4p

Receiver Non-Inverted Data Output


26

GND

Ground

1

27

ModPrsL

ModulePresent


28

IntL

Interrupt


29

VccTx

+3.3 V Power supply transmitter


30

Vcc1

+3.3 V Power Supply


31

LPMode

Low Power Mode


32

GND

Ground

1

33

Tx3p

Transmitter Non-Inverted Data Input


34

Tx3n

Transmitter Inverted Data Input


35

GND

Ground

1

36

Tx1p

Transmitter Non-Inverted Data Input


37

Tx1n

Transmitter Inverted Data Input


38

GND

Ground

1

Notes:

1. Circuit ground is internally isolated from chassis ground.

 

SFP+ end

image 

Pin out of Connector Block on Host Board

Pin

Symbol

Name/Description

Ref.

1

V

EET

Transmitter Ground (Common with Receiver Ground)

1

2

T

FAULT

Transmitter Fault.

2

3

T

DIS

Transmitter Disable. Laser output disabled on high or open.

3

4

SDA

2-wire Serial Interface Data Line

4

5

SCL

2-wire Serial Interface Clock Line

4

6

MOD_ABS

Module Absent. Grounded within the module

4

7

RS0

No connection required


8

LOS

Loss of Signal indication. Logic “0” indicates normal operation.

5

9

RS1

No connection required


10

V

EER

Receiver Ground (Common with Transmitter Ground)

1

11

V

EER

Receiver Ground (Common with Transmitter Ground)

1

12

RD-

Receiver Inverted DATA out. AC Coupled


13

RD+

Receiver Non-inverted DATA out. AC Coupled


14

V

EER

Receiver Ground (Common with Transmitter Ground)

1

15

V

CCR

Receiver Power Supply


16

V

CCT

Transmitter Power Supply


17

V

EET

Transmitter Ground (Common with Receiver Ground)

1

18

TD+

Transmitter Non-Inverted DATA in. AC Coupled.


19

TD-

Transmitter Inverted DATA in. AC Coupled.


20

V

EET

Transmitter Ground (Common with Receiver Ground)

1

Notes:

1. Circuit ground is internally isolated from chassis ground.

2. TX Fault is an open drain output, which should be pulled up with 4.7K – 10KΩ resistor on the host board. Pull up voltage between 2.0V to VccT/R+0.3V. When high, output indicates a laser fault of some kind. Low indicates normal operation. In the low state, the output will be pulled to < 0.8V. When sensing an improper power level in the laser driver, the SFP sets this signal high and turns off the laser. TX-FAULT can be reset with the TX-DISABLE line. The signal is in LVTTL level.

3. TX disable is an input that is used to shut down the transmitter optical output. It is pulled up within the module with 4.7K – 10KΩ resistor. Its states are: Low (0 – 0.8V): Transmitter on; (>0.8, < 2.0V): Undefined;  High  (2.0V  to VccT/R+0.3V): Transmitter  Disabled;  Open: Transmitter  Disabled.  The TX-DISABLE signal is high (LVTTL logic “1”) to turn off the laser output. The laser will turn on when TX-DISABLE is low (LVTTL logic “0”).

4. Should be pulled up with 4.7K - 10KΩ on host board to a voltage between 2.0V to VccT/R+0.3V. MOD_ ABS pulls line low to indicate module is plugged in.

5. LOS (Loss of Signal) is an open collector/drain output, which should be pulled up with 4.7K – 10KΩ resistor. Pull up voltage between 2.0V to VccT/R+0.3V. When high, this output indicates the received optical power is below the worst-case receiver sensitivity (as defined by the standard in use). Low indicates normal operation. In the low state, the output will be pulled to < 0.8V.

6. The RX-LOS is high (LVTTL logic “1”) when there is no incoming light from the companion transceiver. This signal is normally used by the system for the diagnostic purpose. The signal is operated in LVTTL level.

II. Absolute Maximum Ratings

Parameter

Symbol

Min

Type

Max

Unit

Ref.

 

 

Maximum Supply Voltage

 

Vcc1,

VccT,

VccRx

 

 

-0.5


 

 

3.6

 

 

V


Storage Temperature

TS

-40


85

1

Case Operating Temperature

TOP

0


70


Relative Humidity

RH

0


85

%

2

Notes:

1.Limited by the fiber cable jacket, not the activeends.

2.Non-condensing.

III.Electrical Characteristics (TOP = 0 to 70   C, VCC = 3.3 ±5% Volts)

Parameter

Symbol

Min.

Typ.

Max.

Unit

Ref.

 

Supply Voltage

VCC 1,

VCCTX,

VCCRX

 

3.15


 

3.45

 

V


Power Dissipation per QSFP+

Pd



1.5

W


Power Dissipation per SFP+

Pd



1.0

W


Transmitter(per Lane)

Input different impedance

Rin

90

100

110

Ω

1

Single ended input voltage tolerance

VinT

-0.3


4.0

V


Single ended data input swing

Vin,pp

200


1000

mV

2

Receiver (per Lane)

Output different impedance

Rout

90

100

110

Ω

1

Single ended data output swing

Vout,pp

200


1000

mV

3

Single-ended output voltage

VoutR

-0.3


4.0

V


IV. Memory Map and Control Registers

Compatible with SFF-8436.

 

V. Recommended Interface Circuit

QSFP+

 image

SFP+

image 

VI. Mechanical Specifications

The  Quadwire  mechanical  specifications  are  based  on  QSFP+  and  SFP+  transceiver module specifications, substituting the optical connectors with a cable connecting both ends.

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Cable Length

Parameter

Value

Units

Diameter

3

mm

Minimum bend radius

30

mm

 

 

 

Length tolerance

Length<1m:      +5/-0

cm

1Length4.5m:      +15/-0

cm

5Length14.5m:      +30/-0

cm

Length15.0m  +2/-0

m

Cable color

Orange(OM2),Aqua(OM3),Megenta(OM4)

 

Breakout Cable Nominal Length

 

Total Length

X

(Unit:mm)

 

Breakout Point Measured From QSFP

LQ(Unit:m)

 

Breakout Piont Measured from SFP

LS(Unit:m)

1

0.3

0.7

2

0.6

1.4

3

1

2

5

2

3

7

4

3

10

7

3

15

12

3

20

17

3

25

22

3

30

27

3

40

37

3

50

47

3

feature


Product Features

Multi rate of up to 10.3125 Gb/s per channel

Four-channel full-duplex active optical cable

with breakout from QSFP+ to four SFP+

Complies with QSFP+ and SFP+ MSA form factors

Reliable VCSEL array technology using multimode fiber

Hot-pluggable

+3.3V Single power supply

Low power consumption

RoHS-6 Compliant

Case operating temperature

            Commercial: 0°C to +70°C

Applications

Compliance

4x10G Ethernet

QSFP+   SFF-8436


SFP+   SFF-8431


QSFP+ MSA and SFP+ MSA


RoHS

Specifications


Ordering Information

Package

Product part NO.

Distance

Temperature Range

QSFP+

FSANAA34-M01C

1-metercable

Commercial:0~70

QSFP+

FSANAA34-M01C

3-metercable

Commercial:0~70

QSFP+

FSANAA34-M05C

5-metercable

Commercial: 0~70

QSFP+

FSANAA34-M06C

6-metercable

Commercial: 0~70

QSFP+

FSANAA34-M10C

10-metercable

Commercial: 0~70

QSFP+

FSANAA34-M15C

15-metercable

Commercial: 0~70

QSFP+

FSANAA34-M20C

20-metercable

Commercial: 0~70

QSFP+

FSANAA34-M25C

25-metercable

Commercial: 0~70

QSFP+

FSANAA34-M30C

30-metercable

Commercial: 0~70

QSFP+

FSANAA34-M50C

50-metercable

Commercial: 0~70

*For availability of additional cable lengths, please contact Fibridge.