FTTR-Cxx12-xxxx 1.25G CWDM 1×9光收发模块 1270~1610nm 20/40/60/80km SMF (LV)PECL/(LV)TTL SC/ST/FC

FTTR-Cxx12-xxxx 1.25G CWDM 1×9 Transceiver Module

Product Description

F-tone’s FTTR-Cxx12-xxxx series of transceiver modules are the perfect solution for high-speed communication networks. These transceiver modules support data rates up to 1.5Gbps. The module is fully compliant with the Multi-sourced 1×9 protocol. These transceiver modules provide the system designer with products to implement a range of Fiber Channel and Gigabit Ethernet designs at the 1.06/1.25Gbps rate for communications.

Product Features

  • CWDM Laser Diode Transmitter
  • Up to 80 Km on 9/125μm SMF
  • 3.3V or 5V power supply
  • SC/ST/FC duplex optical interface
  • (LV)PECL Differential Input/Output and (LV)PECL or (LV)TTL signal detect
  • Class 1 Laser International Safety Standard IEC 825 Compliant
  • Operating case temperature range: Standard 0 to +70℃ or Extended -20°C to +85°C
  • Data rates up to 1.5Gbps (100~1500Mbps)
  • Multi-source 1×9 protocol compliant

Product Block Diagram

FTTR-Cxx12-xxxx Block Diagram

Applications

  • Gigabit Ethernet
  • Fiber Channel
  • Digital Video Transmission System
  • Other Optic Link

Absolute Maximum Ratings

Operating of the transceiver beyond the Absolute Conditions listed in Table 1 will degrade or damage the product.

Table 1 — Absolute Maximum Conditions
Parameter Symbol Min Typ Max Units
Storage Temperature TST -40 +85
Relative Humidity RH 5 95 %
Supply Voltage (3.3V) VCC 0 +3.6 V
Supply Voltage (5V) VCC 0 +6.0 V

Recommended Operating Environment

Table 2 — Recommended Operating Environment and Electrical Characteristics
Parameter Symbol Min Typ Max Units Note
Supply Voltage (3.3V) VCC 3.1 3.3 3.5 V
Supply Voltage (5V) VCC 4.75 5.0 5.25 V
Supply Current ICC 260 mA
Operating Case Temp (Standard) TOP 0 +70 1
Operating Case Temp (Extended) TOP -20 +85 2
Data Rate BS 100 1250 1500 Mbps
Soldering Temperature 350 3
Soldering Duration 10 Sec 3

Note 1: Standard level | Note 2: Extended level | Note 3: Not recommended wave soldering

Optical Parameters

Table 3 — FTTR-Cxx12-20xx (1270~1430nm, 20km)

Transceiver Optical Characteristics (Ta=+25±5°C, VCC=3.3 or 5.0±0.2V)
Parameter Symbol Min Typ Max Units Note
Data Rate BS 100 1250 1500 Mbps
Output Center Wavelength λc 1270~1430 (Typ±3) nm
Output Spectral Width (-20dB) Δλ 1 nm
Average Optical Output Power Po -5 0 dBm 1,2
Extinction Ratio ER 8.2 dB 1,2
Receiver Sensitivity Pmin -23 dBm 1,2
Receiver Saturation Pmax -3 dBm 1,2
Operation Center Wavelength λc 1260 1620 nm
SD Deassert PPD -35 dBm
SD Assert PA -23 dBm 1,2
SD Hysteresis SDHYS 0.5 dB

Table 4 — FTTR-Cxx12-40xx (1270~1430nm, 40km)

Transceiver Optical Characteristics (Ta=+25±5°C, VCC=3.3 or 5.0±0.2V)
Parameter Symbol Min Typ Max Units Note
Data Rate BS 100 1250 1500 Mbps
Output Center Wavelength λc 1270~1430 (Typ±3) nm
Output Spectral Width (-20dB) Δλ 1 nm
Average Optical Output Power Po -5 0 dBm 1,2
Extinction Ratio ER 8.2 dB 1,2
Receiver Sensitivity Pmin -25 dBm 1,2
Receiver Saturation Pmax -3 dBm 1,2
Operation Center Wavelength λc 1260 1620 nm
SD Deassert PPD -35 dBm
SD Assert PA -25 dBm 1,2
SD Hysteresis SDHYS 0.5 dB

Table 5 — FTTR-Cxx12-60xx (1270~1430nm, 60km)

Transceiver Optical Characteristics (Ta=+25±5°C, VCC=3.3 or 5.0±0.2V)
Parameter Symbol Min Typ Max Units Note
Data Rate BS 100 1250 1500 Mbps
Output Center Wavelength λc 1270~1430 (Typ±3) nm
Output Spectral Width (-20dB) Δλ 1 nm
Average Optical Output Power Po 0 +5 dBm 1,2
Extinction Ratio ER 8.2 dB 1,2
Receiver Sensitivity Pmin -25 dBm 1,2
Receiver Saturation Pmax -3 dBm 1,2
Operation Center Wavelength λc 1260 1620 nm
SD Deassert PPD -35 dBm
SD Assert PA -25 dBm 1,2
SD Hysteresis SDHYS 0.5 dB

Table 6 — FTTR-Cxx12-20xx (1450~1610nm)

Transceiver Optical Characteristics (Ta=+25±5°C, VCC=3.3 or 5.0±0.2V)
Parameter Symbol Min Typ Max Units Note
Data Rate BS 100 1250 1500 Mbps
Output Center Wavelength λc 1450~1610 (Typ±3) nm
Output Spectral Width (-20dB) Δλ 1 nm
Average Optical Output Power Po -5 0 dBm 1,2
Extinction Ratio ER 8.2 dB 1,2
Receiver Sensitivity Pmin -23 dBm 1,2
Receiver Saturation Pmax -3 dBm 1,2
Operation Center Wavelength λc 1260 1620 nm
SD Deassert PPD -35 dBm
SD Assert PA -23 dBm 1,2
SD Hysteresis SDHYS 0.5 dB

Table 7 — FTTR-Cxx12-40xx (1450~1610nm)

Transceiver Optical Characteristics (Ta=+25±5°C, VCC=3.3 or 5.0±0.2V)
Parameter Symbol Min Typ Max Units Note
Data Rate BS 100 1250 1500 Mbps
Output Center Wavelength λc 1450~1610 (Typ±3) nm
Output Spectral Width (-20dB) Δλ 1 nm
Average Optical Output Power Po -5 0 dBm 1,2
Extinction Ratio ER 8.2 dB 1,2
Receiver Sensitivity Pmin -25 dBm 1,2
Receiver Saturation Pmax -3 dBm 1,2
Operation Center Wavelength λc 1260 1620 nm
SD Deassert PPD -35 dBm
SD Assert PA -25 dBm 1,2
SD Hysteresis SDHYS 0.5 dB

Table 8 — FTTR-Cxx12-80xx (1450~1610nm, 80km)

Transceiver Optical Characteristics (Ta=+25±5°C, VCC=3.3 or 5.0±0.2V)
Parameter Symbol Min Typ Max Units Note
Data Rate BS 100 1250 1500 Mbps
Output Center Wavelength λc 1450~1610 (Typ±3) nm
Output Spectral Width (-20dB) Δλ 1 nm
Average Optical Output Power Po 0 +5 dBm 1,2
Extinction Ratio ER 8.2 dB 1,2
Receiver Sensitivity Pmin -25 dBm 1,2
Receiver Saturation Pmax -3 dBm 1,2
Operation Center Wavelength λc 1260 1620 nm
SD Deassert PPD -35 dBm
SD Assert PA -25 dBm 1,2
SD Hysteresis SDHYS 0.5 dB

Note 1: The optical power is launched into 9/125μm SMF.
Note 2: With a PRBS 2²³⁻¹ test pattern @ 1250Mbps.

Electrical Parameters

Table 9 — Transceiver Electrical Characteristics (Ta=+25±5°C)
Parameter Symbol Min Typ Max Units Note
Supply Voltage (3.3V) VCC 3.1 3.3 3.5 V
Supply Voltage (5V) VCC 4.75 5.0 5.25 V
Supply Current ICC 260 mA
Differential Input Voltage Vin 400 2000 mVP-P
Input Differential Impedance Zin 90 100 110 Ω
Data Input Voltage – Low VIL VCC-1.81 VCC-1.48 V
Data Input Voltage – High VIH VCC-1.17 VCC-0.88 V
Differential Output Voltage VOUT 400 2000 mVP-P
Data Output Voltage – Low VOL VCC-1.83 VCC-1.56 V 1
Data Output Voltage – High VOH VCC-1.09 VCC-0.88 V 1
SD Output Voltage – Low (PECL) VOL VCC-2.0 VCC-1.56 V 2
SD Output Voltage – High (PECL) VOH VCC-1.1 VCC-0.75 V 2
SD Output Voltage – Low (TTL) VOL 0 0.8 V 3
SD Output Voltage – High (TTL) VOH 2.0 VCC V 3

Note 1: Outputs terminated with 50Ω to VCC-2V & Related to VCC
Note 2: (LV)PECL signal detect
Note 3: (LV)TTL signal detect

Pin Definitions

Table 10 — Connector Pin Assignment
Pin # Pin Name Description Note
1 RX VEE Receiver Signal Ground
2 RD+ Receiver Data Out
3 RD- Receiver Data Out Bar
4 SD Signal Detect 1
5 RX VCC Receiver Power Supply
6 TX VCC Transmitter Power Supply
7 TD- Transmitter Data In Bar
8 TD+ Transmitter Data In
9 TX VEE Transmitter Ground

Note 1: (LV)PECL — Normal optical input levels result in logic “1” output, pull-down 130Ω or 270Ω resistor;
(LV)TTL — Normal optical input levels result in logic “1” output, pull-up 10kΩ resistor.

Recommended Circuit Schematics

Recommended Circuit Overview

Recommended Circuit Overview

3.3V SD LVPECL Circuit

3.3V SD LVPECL Circuit

5V SD PECL Circuit

5V SD PECL Circuit

3.3V SD LVTTL Circuit

3.3V SD LVTTL Circuit

5.0V SD TTL Circuit

5.0V SD TTL Circuit

Ordering Information

Part Number Description
FTTR-Cxx12-20 1×9 Transceiver, CWDM, 1270~1430nm, 1.25Gbps, 20km, ST receptacle, 0°C~+70°C
FTTR-Cxx12-20E 1×9 Transceiver, CWDM, 1270~1430nm, 1.25Gbps, 20km, ST receptacle, -20°C~+85°C
FTTR-Cxx12-40 1×9 Transceiver, CWDM, 1270~1430nm, 1.25Gbps, 40km, ST receptacle, 0°C~+70°C
FTTR-Cxx12-40E 1×9 Transceiver, CWDM, 1270~1430nm, 1.25Gbps, 40km, ST receptacle, -20°C~+85°C
FTTR-Cxx12-60 1×9 Transceiver, CWDM, 1450~1610nm, 1.25Gbps, 60km, ST receptacle, 0°C~+70°C
FTTR-Cxx12-60E 1×9 Transceiver, CWDM, 1450~1610nm, 1.25Gbps, 60km, ST receptacle, -20°C~+85°C
FTTR-Cxx12-80 1×9 Transceiver, CWDM, 1470~1610nm, 1.25Gbps, 80km, ST receptacle, 0°C~+70°C
FTTR-Cxx12-80E 1×9 Transceiver, CWDM, 1470~1610nm, 1.25Gbps, 80km, ST receptacle, -20°C~+85°C

Note: Specifications subject to change without notice.

Product Declaration

本产品为【1.25G CWDM 1×9 光收发模块】产品线,详细信息,请联系我们的销售人员,谢谢!

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.