
400G QSFP-DD ZR+ Coherent Transceiver
Description
The 400G QSFP-DD ZR Transceiver is a high performance, cost effective module for optical data communication applications from 100G to 400G. The 400G QSFP-DD ZR+ is designed to 100G/200G long haul and 300G/400G Metro IP over DWDM applications without inline chromatic dispersion compensation.
The 400G QSFP-DD ZR+ is a C-Band optical frequency tunable coherent optical module, combines 7nm coherent DSP ASIC functionality with best in class ultra-narrow line-width tunable lasers, high speed modulators and high responsively coherent receivers to deliver high performance at 100G DP-QPSK / 200G DP-QPSK / 300G DP-8QAM / 400G DP-16QAM modulation format. With one VOA inside the TX optical path the out output optical power has 4dB attenuation window.
The 400G QSFP-DD ZR+ coherent transceiver Compliant with the OIF QSFP-DD MSA. Digital diagnostics functions are available via an I2C interface as specified by the QSFP-DD MSA. Mechanical dimensions, connectors and footprint conform to QSFP-DD MSA. The module is 18.35mm x93.26mmx8.50mmin size and hot pluggable by 76 PIN PAD and host connector.
Features
¡ñ Compliant with QSFP-DD MSA, Type 2B package
¡ñ Compliant with Open ZR+ MSA and OIF 400ZR MSA, support OFEC and CFEC FEC
¡ñ Line rate 100G/200G/300G/400G
¡ñ Client rate 1/2/3/4x100GbE or 1x400GbE
¡ñ C-band tunable, supports 100/75/50GHz grid spacing, support 0.1GHz fine turning
¡ñ TX VOA inside, with 4dB attenuation window
¡ñ Support ingress LF hold-off time configure
¡ñ Support hitless firmware upgrade
¡ñ Compact size (18.35 mm x 93.26 mm x 8.50 mm)
¡ñ Duplex LC connector
¡ñ Operating case temperature: 0¡æ to 75¡ãC
¡ñ Single 3.3 V power supply
¡ñ Typical power consumption 21W (400GbE),maximum power consumption 22.5W(400GbE)
¡ñ RoHS 2 compliant
Applications
¡ñ Edge DCI with extended Reach or with OLP protection
¡ñ IP Over Metro or Long Haul DWDM
Compliance
¡ñ Open ZR+ MSA 2.0 and OIF-400ZR-02.0
¡ñ OIF-CMIS-05.2
¡ñ IA OIF-C-CMIS-01.2
¡ñ QSFP-DD-Hardware-Rev6.3
¡ñ IEEE Std 802.3-2018
Absolute Maximum Ratings
Table1-Absolute Maximum Ratings
|
Parameter |
Symbol |
Min. |
Typ. |
Max. |
Unit |
Note |
|
Storage temperature |
Ts |
-40 |
85 |
¡æ |
||
|
Power supply |
Vcc |
-0.3 |
3.3 |
3.6 |
V |
not damaged |
|
Relative humidity |
RH |
5 |
85 |
% |
Non-condensing |
|
|
Receiver damage threshold |
PRdmg |
10 |
dBm |
Total optical power |
||
|
ESD Sensitivity |
1000 |
V |
Recommended Operating Conditions
Table2-Recommended Operating Conditions
|
Parameter |
Symbol |
Min. |
Typ. |
Max. |
Unit |
Note |
|
|
Operating Case Temperature |
TC |
0 |
75 |
¡æ |
|||
|
Power supply voltage |
VCC |
3.135 |
3.3 |
3.465 |
V |
||
|
ICC |
7.2 |
A |
Note1 |
||||
|
Maximum sustained peak Current(<500ms) |
7.4 |
A |
|||||
|
Maximum Instantaneous peak current(<50us) |
9 |
A |
|||||
|
Electro-Static discharge |
ESD |
1000 |
V |
||||
|
Power Consumption(400ZR+) |
PD |
21 |
22.5 |
W |
Note1 |
||
|
Relative humidity |
RH |
15 |
85 |
% |
|||
|
Client Mode |
400G (400ZR) |
1 x 400GAUI-8 |
|||||
|
4 x 100GAUI-2 |
|||||||
|
400G (400ZR+) |
1 x 400GAUI-8 |
||||||
|
4 x 100GAUI-2 |
|||||||
|
300G (300ZR+) |
3 x 100GAUI-2 |
||||||
|
200G (200ZR+) |
2 x 100GAUI-2 |
||||||
|
2 x CAUI-4 |
Note2 |
||||||
|
100G (100ZR+) |
1 x 100GAUI-2 |
||||||
|
1 x CAUI-4 |
Note2 |
||||||
|
Transmissi on Distance |
400G (OIF 400ZR app code 0x01) |
120 |
Km |
||||
|
400G (OIF 400ZR app code 0x02) |
30~40 |
||||||
|
400G (400ZR+) |
450 |
||||||
|
300G (300ZR+) |
600 |
||||||
|
200G (200ZR+) |
1000 |
||||||
|
100G (100ZR+) |
2000 |
||||||
|
Power Supply Noise |
Vrip |
1% |
DC-1MHz |
||||
|
2% |
1-10MHz |
||||||
Notes
[1] In 400GbE mode, the typical power consumption is 21W and the maximum power consumption is 22.5W .When switching to 4¡Á100GbE mode , the typical power consumption will be 22W and the maximum power consumption will be 23W, the current will also change accordingly.
[2] Not tested in standard PN. Will be supported upon customer request.
Optical £¬Electrical Characteristic
Tested under recommended operating conditions, unless otherwise noted Table3-Transmitter Operating Characteristic-Optical £¬Electrical
|
Parameters |
Unit |
Min. |
Type |
Max. |
Note |
|
|
Modulation format |
400G |
ZR400-CFEC-16QAM |
CFEC FEC, NCG 10.8dB |
|||
|
ZR400-OFEC-16QAM |
OFEC FEC, NCG 11.6dB |
|||||
|
300G |
ZR300-OFEC-8QAM |
|||||
|
200G |
ZR200-OFEC-QPSK |
|||||
|
100G |
ZR100-OFEC-QPSK |
|||||
|
Baud Rate |
400G |
GBd |
59.843750000¡À20ppm |
400ZR,SFF-8024 Media ID 3Eh/3Fh |
||
|
60.138546798¡À20ppm |
400ZR+,SFF-8024 Media ID 46h |
|||||
|
300G |
60.138546798¡À20ppm |
300ZR+,SFF-8024 Media ID 47h |
||||
|
200G |
60.138546798¡À20ppm |
200ZR+,SFF-8024 Media ID 48h |
||||
|
100G |
30.069273399¡À20ppm |
100ZR+, SFF-8024 Media ID 49h |
||||
|
Transmitter frequency range |
THz |
191.3 |
196.1 |
For OIF 400ZR app code 0x02 the frequency is fixed at 193.7THz and not configurable. |
||
|
Flexible DWDM Grid |
GHz |
3.125 |
||||
|
Frequency Fine Tuning range |
GHz |
-5 |
5 |
bright tuning |
||
|
Frequency Fine Tuning step |
GHz |
0.1 |
||||
|
Laser frequency accuracy |
GHz |
-1.8 |
1.8 |
|||
|
TX spectral Upper Mask |
(GHz,dB ) |
(30.0,0.0) (37.0,-10.0) (39.2,-15.0) (40.4,-20.0) |
Refer to OIF-400ZR-02.0 13.3.201a Refer to openzrplus_2p0 11.4.10 |
|||
|
TX spectral Lower Mask |
(GHz,dB ) |
(30.0,-9.0) (31.3,-20.0) (31.3,-3 |
Refer to OIF-400ZR-02.0 13.3.201b Refer to openzrplus_2p0 11.4.10 |
|||
|
5.0) |
||||||
|
Transmitter laser disable time |
ms |
100 |
||||
|
Transmitter wavelength switching time |
s |
60 |
||||
|
Transmitter laser enable time |
s |
10 |
||||
|
Tx output power |
400G |
dBm |
-10 |
-6 |
At Programmed Output Power Max, Transmit output power over wavelength, temperature, and aging. |
|
|
300G |
dBm |
-10 |
-6 |
|||
|
200G |
dBm |
-9 |
-5 |
|||
|
100G |
dBm |
-8 |
-4 |
|||
|
Transmit Output Power at 400G ZR Gray |
dBm |
-9 |
-6 |
For OIF 400ZR app code 0x02 |
||
|
Transmit Output Power Adjustable Range |
400G 300G |
dBm |
-13 |
-9 |
The absolute accuracy is ¡À1dB For OIF 400ZR app code 0x02 the output power is not configurable. |
|
|
Transmit Output Power Adjust step |
dB |
0.1 |
||||
|
Optical power setting accuracy |
dB |
-1 |
1 |
Diff between setting and reporting |
||
|
Output power monitor accuracy |
dB |
-1 |
1 |
|||
|
Power stability |
dB |
-0.5 |
0.5 |
At fixed wavelength, room temp |
||
|
-1 |
1 |
At fixed wavelength |
||||
|
Total output power with Tx disabled |
dBm |
-20 |
||||
|
Total output power during wavelength switching |
dBm |
-20 |
||||
|
Transmitter reflectance |
dB |
-20 |
Looking into the Tx |
|||
|
Inband (IB) OSNR |
dB |
40 |
||||
|
Out-of-band (OOB) OSNR |
dB |
35 |
||||
|
Lorentzian linewidth |
kHz |
300 |
Tx and LO |
|||
|
Relative intensity noise |
dB/Hz |
-140 |
||||
|
Mean I-Q amplitude imbalance |
dB |
1 |
||||
|
Transmitter polarization dependent power |
dB |
1.5 |
||||
|
DC I-Q offset (mean perpolarization) |
dB |
-26 |
||||
|
I-Q instantaneous offset |
dB |
-20 |
||||
Table4- Receiver Operating Characteristic-Optical
|
Parameters |
Unit |
Min. |
Type |
Max. |
Note |
|||
|
Modulation format |
400G |
ZR400-CFEC-16QAM |
CFEC FEC,Net Coding Gain(NCG) 10.8dB,Theoretical Max Pre-FEC BER 1.25E-2 |
|||||
|
ZR400-OFEC-16QAM |
OFEC FEC,Net CodingGain(NCG) 11.6dB £¬Theoretical |
|||||||
|
300G |
ZR300-OFEC-8QAM |
|||||||
|
200G |
ZR200-OFEC-QPSK |
Max Pre-FEC BER 2.0E-2 |
||||||
|
100G |
ZR100-OFEC-QPSK |
|||||||
|
Baud Rate |
400G |
GBd |
59.843750000¡À20ppm |
400ZR,SFF-8024 Media ID 3Eh/3Fh |
||||
|
60.138546798¡À20ppm |
400ZR+,SFF-8024 Media ID 46h |
|||||||
|
300G |
60.138546798¡À20ppm |
300ZR+,SFF-8024 Media ID 47h |
||||||
|
200G |
60.138546798¡À20ppm |
200ZR+,SFF-8024 Media ID 48h |
||||||
|
100G |
30.069273399¡À20ppm |
100ZR+,SFF-8024 Media ID 49h |
||||||
|
Frequency offset between received carrier and LO |
GHz |
-3.6 |
+3.6 |
|||||
|
Input power range |
400G |
dBm |
-12 |
0 |
Signal power,OSNR>26dB,400ZR |
|||
|
-12 |
0 |
Signal power,OSNR>24dB, 400ZR+ |
||||||
|
300G |
-15 |
0 |
Signal power,OSNR>21dB, 300ZR+ |
|||||
|
200G |
-18 |
0 |
Signal power, OSNR>16dB, 200ZR+ |
|||||
|
100G |
-18 |
0 |
Signal power, OSNR>12.5dB,100ZR+ |
|||||
|
OSNR Tolerance |
400G |
dB/0.1n m |
26 |
400ZR |
Measured back-to-back with short optical channel |
|||
|
24 |
400ZR+ |
|||||||
|
300G |
21 |
300ZR+ |
||||||
|
200G |
16 |
200ZR+ |
||||||
|
100G |
12.5 |
100ZR+ |
||||||
|
RX sensitivity |
400G |
dBm |
-20 |
400ZR |
Inband (IB) OSNR ¡Ý 34dB, OIF 400ZR app code 0x02 |
|||
|
-22 |
400ZR+ |
Point to point |
||||||
|
non-damaging input power |
dBm |
10 |
Total power |
|||||
|
Optical input power monitor accuracy |
dB |
-2 |
2 |
Total power |
||||
|
MAX Pre-FEC BER |
0.017 |
0.020 |
||||||
|
Chromatic dispersion tolerance |
400G |
ps/nm |
2,400 |
400ZR |
Tolerance to CD with ¡Ü 0.5 dB penalty to OSNR sensitivity when change in SOP is ¡Ü 1rad/ms |
|||
|
20,000 |
400ZR+ |
|||||||
|
300G |
40,000 |
300ZR+ |
||||||
|
200G |
50,000 |
200ZR+ |
||||||
|
100G |
100,000 |
100ZR+ |
||||||
|
CD monitor accuracy |
ps/nm |
-200 |
+200 |
|||||
|
DGD tolerance |
400G |
ps |
33 |
400ZR |
OSNR penalty<0.5dB |
|||
|
66 |
400ZR+ |
|||||||
|
300G |
83 |
300ZR+ |
||||||
|
200G |
83 |
200ZR+ |
||||||
|
100G |
100 |
100ZR+ |
||||||
|
DGD monitor accuracy |
ps |
-15 |
15 |
0~40ps for 400ZR |
||||
|
Peak PDL tolerance |
dB |
3.0 |
Tolerance to peak PDL with ¡Ü1.3dB additional OSNR penalty when change in SOP is ¡Ü1 rad/ms |
|||||
|
3.5 |
Tolerance to peak PDL with ¡Ü1.8dB additional OSNR penalty when change in SOP is ¡Ü1 rad/ms |
|||||||
|
Tolerance to change in SOP |
krad/s |
50 |
With ¡Ü0.5dB additional OSNR penalty over all PMD and PDL values |
|||||
|
Optical return loss |
dB |
20 |
Optical reflectance at Rx connector input. |
|||||
|
Optical Rx_LOS Assert Threshold |
400G |
dBm |
-28 |
-26 |
-24 |
OIF 400ZR app code 0x01 £¬0x02, 0x03, |
||
|
400G |
-30 |
-28 |
-26 |
400ZR+ |
||||
|
300G |
-32 |
-30 |
-28 |
|||||
|
200G |
-32 |
-30 |
-28 |
|||||
|
100G |
-32 |
-30 |
-28 |
|||||
|
Optical Rx_LOS Hysteresis |
dB |
1 |
1.5 |
2.5 |
||||
|
Optical input power transient tolerance |
dB |
-2 |
2 |
Tolerance to change in input power with<0.5dB penalty to OSNR tolerance. The 20% to 80% rise/fall times for the input power change shall be no faster than 50 ?s. |
||||
|
Service recovery time |
ms |
40 |
||||||
The transmitter and receiver comply with the 400GAUI-8 C2M and CEI-56G-VSR-PAM4 electrical specification, electrical interface definitions refer to IEEE Std 802.3-2018 Annex 120E. The data lines are AC-coupled and terminated in the module per the following figure from the QSFP-DD MSA.
Table5-Operating Characteristic-Electrical highspeed
|
Parameter |
Symbol |
Min |
Max |
Unit |
note |
|
400GAUI-8 C2M and 100GAUI-2 C2M Electrical Characteristics |
|||||
|
Transmitter(module output) |
|||||
|
Signaling Rate, each lane |
26.5625 ¡À 100 ppm |
GBd |
PAM-4 |
||
|
AC common-mode output voltage (RMS) |
RMS |
17.5 |
mV |
||
|
Differential Voltage pk-pk |
Vin, pp |
750 |
900 |
mV |
|
|
Near-end ESMW (Eye symmetry mask width) |
0.265 |
UI |
|||
|
Near-end Eye height, differential |
70 |
mV |
|||
|
Far-end ESMW |
0.2 |
UI |
|||
|
Far-end Eye height£¬differential |
30 |
mV |
|||
|
Far-end pre-cursor ISI ratio |
-4.5 |
2.5 |
% |
||
|
Differential output return loss |
Equation (83E-2) |
IEEE Std 802.3-2018 Annex 120E |
|||
|
Common to differential mode conversion return loss |
Equation (83E-3) |
IEEE Std 802.3-2018 Annex 120E |
|||
|
Differential termination mismatch |
- |
10 |
% |
At 1 MHz |
|
|
Transition time(20% to 80%) |
Trise/Tfall |
9.5 |
Ps |
20% to 80% |
|
|
DC common mode voltage |
Vcm |
-350 |
2850 |
mV |
|
|
Receiver (module input) |
|||||
|
Signaling rate per lane |
26.5625 ¡À 100 ppm |
GBd |
PAM-4 |
||
|
Differential pk-pk input voltage tolerance |
Vout, pp |
900 |
mV |
||
|
Differential input return loss (min) |
Equation (83E¨C5) |
IEEE Std 802.3-2018 Annex 120E |
|||
|
Differential to common-mode input return loss (min) |
Equation (83E¨C6) |
IEEE Std 802.3-2018 Annex 120E |
|||
|
Differential termination mismatch |
10 |
% |
|||
|
Module stressed input test |
See 120E.3.4.1 |
IEEE Std 802.3-2018 Annex 120E |
|||
|
Single-ended voltage tolerance range (min) |
-0.4 |
3.3 |
V |
||
|
DC common mode voltage(min) |
-350 |
2850 |
mV |
||
|
CAUI-4 C2M Electrical Characteristics |
|||||
|
Transmitter(module output) |
|||||
|
Signaling Rate, each lane |
25.78125 ¡À 100 ppm |
GBd |
NRZ |
||
|
AC common-mode output voltage (RMS) |
RMS |
17.5 |
mV |
||
|
Differential Voltage pk-pk |
Vin, pp |
750 |
900 |
mV |
|
|
Eye width |
UI |
0.57 |
|||
|
Eye height, differentia |
mV |
228 |
|||
|
Vertical eye closure |
dB |
5.5 |
|||
|
Differential output return loss |
Equation (83E-2) |
IEEE Std 802.3-2018 Annex 83E |
|||
|
Common to differential mode conversion return loss |
Equation (83E-3) |
IEEE Std 802.3-2018 Annex 83E |
|||
|
Differential termination mismatch |
- |
10 |
% |
At 1 MHz |
|
|
Transition time(20% to 80%) |
Trise/Tfall |
12 |
Ps |
20% to 80% |
|
|
DC common mode voltage |
Vcm |
-350 |
2850 |
mV |
|
|
Receiver (module input) |
|||||
|
Signaling rate per lane |
25.78125 ¡À 100 ppm |
GBd |
NRZ |
||
|
Differential pk-pk input voltage tolerance |
Vout, pp |
900 |
mV |
||
|
Differential input return loss (min) |
Equation (83E¨C5) |
IEEE Std 802.3-2018 Annex 83E |
|||
|
Differential to common-mode input return loss (min) |
Equation (83E¨C6) |
IEEE Std 802.3-2018 Annex 83E |
|||
|
Differential termination mismatch |
10 |
% |
IEEE Std 802.3-2018 Annex 83E |
||
|
Module stressed input test |
See 83E.3.4.1 |
||||
|
Single-ended voltage tolerance range (min) |
-0.4 |
3.3 |
V |
||
|
DC common mode voltage(min) |
-350 |
2850 |
mV |
||
Table6-Operating Characteristic-Electrical Lowspeed
|
Parameters |
Symbol |
Unit |
Min. |
Max. |
Note |
|
SCL and SDA |
VOL |
0 |
0.4 |
V |
IOL(max)=3mA for fast mode, 20ma for Fast-mode plus |
|
VOH |
Vcc-0.5 |
Vcc+0.3 |
V |
||
|
SCL and SDA |
VIL |
-0.3 |
Vcc*0.3 |
V |
|
|
VIH |
VCC*0.7 |
Vcc+0.5 |
V |
||
|
Capacitance for SCL and SDA I/O signal |
Ci |
14 |
pF |
||
|
Total bus capacitivel oad for SCL and SDA |
Cb |
100 |
pF |
For 400kHz clock rate, use 3.0 k Ohms pull up resistor max. For 1000kHz clock rate, refer to Figure 45 (QSFP-DD-Hardware-rev5p0) |
|
|
200 |
pF |
For 400kHz clock rate, use 1.6 k Ohms pull up resistor max. For 1000kHz clock rate, refer to Figure 45 (QSFP-DD-Hardware-rev5p0) |
|||
|
InitMode, ResetL and ModSelL IntL |
VIL |
-0.3 |
0.8 |
V |
|
|
VIH |
2 |
VCC+0.3 |
V |
||
|
|Iin| |
360 |
uA |
0V<Vin<Vcc |
||
|
VOL |
0 |
0.4 |
V |
IOL=2.0mA |
|
|
VOH |
VCC-0.5 |
VCC+0.3 |
V |
10k ohms pull up to Host Vcc |
|
|
ModPrsL |
VOL |
0 |
0.4 |
V |
IOL=2.0mA |
|
VOH |
ModPrsL can be implemented as a short-circuit to GND on the module |
Dimensions
Ordering Information
|
Part No. |
Specification |
Application |
||||||
|
Pack |
Rate |
Tx/RX |
Pout |
Top |
Reach |
Others |
||
|
FTQD-4H-ZR |
QSFP-DD |
400G1 |
ICTR |
-10~-6dBm |
0¡«75¡æ |
450km1 |
DDM/ RoHS |
400G ZR+ |
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Important Notice
Performance figures, data and any illustrative material provided in this data sheet are typical and must be specifically confirmed in writing by F-tone Networks before they become applicable to any particular order or contract. In accordance with the F-tone Networks policy of continuous improvement specifications may change without notice.
The publication of information in this data sheet does not imply freedom from patent or other protective rights of F-tone Networks or others. Further details are available from any F-tone Networks sales representative.