SOURCE FTM-9723P-KGHG

Jun.7, 2006
2x10 SFF G-PON OLT Transceiver
FTM-9723P-KGH(G)
Members of FlexonTM Family
Standard
‹
Compliant with ITU-T G.984.2 Amendment 1
‹
Compliant with FCC 47 CFR Part 15, Class B
‹
Compliant with FDA 21 CFR 1040.10 and 1040.11,
Class
Description
FTM-9723P-KGH(G) is Optical Line Terminal (OLT)
Features
‹
Single
compliant with ITU-T Rec.G.984.2 Amendment 1.
fiber
asymmetric
‹
‹
bi-directional
2488.32Mbps
links
with
The transceiver is the high performance module for
downstream
and
2488.32Mbps downstream and 1244.16Mbps upstream
data
1244.16Mbps upstream
data
Integrated with micro-optics WDM filter for dual
continuous-mode transmitter and 1310nm burst-mode
wavelength Tx/Rx operation at 1490/1310nm
receiver.
1490nm continuous-mode transmitter with DFB
laser
‹
1310nm burst-mode receiver with APD-TIA
‹
Optical isolator built in for extreme Return Loss
link
in
single
fiber
by
using
1490nm
The transmitter section uses a multiple quantum well
1490nm DFB laser and is Class Ⅰ laser compliant
product according to international safety standard
IEC-60825.
tolerance
‹
Resetless burst-mode receiver design
The receiver section uses an integrated 1310nm APD
‹
Support Class B+ attenuation range 13-28dB
(Avalanche Photo Diode) and preamplifier mounted in
‹
Support more than 20dB dynamic range
an optical header and limiting post-amplifier IC. Unlike
‹
0 to 70°C operating temperature
the conventional burst-mode receiver, the receiver does
‹
2 x10 SF F package with SC/UPC pigtail
not require reset pulse to receive optical data packets
‹
Digital diagnostic monitoring interface
with different optical power.
‹
Analog RSSI (Received Signal Strength Indication)
for monitoring on received optical power.
‹
Single 3.3V power supply
‹
LVPECL compatible data input/output interface
‹
LVTTL transmitter disable control
‹
LVTTL transmitter fault alarm
The optical output can be disabled by a LVTTL logic
high-level input of TX_DIS. LAS_FAIL is provided to
indicate that degradation of the laser. Signal Detected
(SD) output is provided to indicate the detection of an
input optical signal of receiver.
‹
LVTTL receiver signal-detected indication
Digital diagnostic monitoring interface is incorporated
‹
Low EMI and excellent ESD protection
into the transceivers and allows real time access to the
‹
ClassⅠlaser safety standard IEC-60825 compliant
transceiver operating parameters such as power supply,
operating temperature, laser bias current, transmitter
Applications
optical power by reading a built-in memory with I2C
interface. Analog RSSI signal indicate the received
‹
Gigabit-capable Passive Optical Networks
optical power value and the calibration parameters are
(G-PON) – OLT side
stored in the memory.
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Page 1 of 16
Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Jul.7,2006
Regulatory Compliance
The transceivers have been tested according to American and European product safety and electromagnetic
compatibility regulations (See Table 1). For further information regarding regulatory certification, please refer to
FlexonTM regulatory specification and safety guidelines, or contact with Fiberxon, Inc. America sales office listed at
the end of documentation.
Table 1 - Regulatory Compliance
Feature
Standard
Electrostatic Discharge
MIL-STD-883E
(ESD) to the Electrical Pins
Method 3015.7
Performance
Class Ⅰ(>500 V)
FCC Part 15 Class B
Electromagnetic
EN55022 Class B (CISPR 22B)
Interference (EMI)
Compliant with standards
VCCI Class B
Immunity
IEC 61000-4-3
Compliant with standards
FDA 21CFR 1040.10 and 1040.11
Laser Eye Safety
Compliant with Class I laser product
EN60950, EN (IEC) 60825-1,2
Component Recognition
UL and CSA
Compliant with standards
Pigtail Integrity
GR326 and GR468
Compliant with standards
Absolute Maximum Ratings
Absolute Maximum Ratings are those values, beyond which, some damage may occur to the devices. Exposure to
conditions above the Absolute Maximum Ratings listed in Table 2 may negatively impact the reliability of the
products.
Table 2- Absolute Maximum Ratings
Parameter
Symbol
Min.
Max.
Unit
Storage Ambient Temperature
TSTG
-40
85
°C
Operating Case Temperature
TC
0
70
°C
Operating Humidity
HOPR
5
95
%
Power Supply Voltage
VCC
0
4
V
GND
Vcc
V
Input Voltage
Receiver Damaged Threshold
0
Soldering Temperature
dBm
400
Bending Radius
30
Pigtail Fiber Contact Temperature
Note
°C
1
mm
85
°C
Note 1: Only for soldering by iron and 10 seconds on leads only
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Page 2 of 16
Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Jul.7,2006
Recommended Operating Conditions
Table 3 - Recommended Operating Conditions
Parameter
Symbol
Min.
Typ.
Max.
Unit
Note
Power Supply Voltage
VCC
3.13
3.3
3.47
V
3.3V±5%
Operating Case Temperature
TC
0
70
°C
HOPR
5
95
%
Operating Humidity Range
Data Rate(Upstream/Downstream)
1244.16/2488.32
Mbit/s
Optical and Electrical Characteristics
Table 4 - Transmitter Optical and Electrical Characteristics (0°C <TC<70°C and 3.13V<VCC<3.47V)
Parameter
Symbol
Min.
Optical Center Wavelength
λC
1480
Optical Spectrum Width (-20dB)
∆λ
Side Mode Suppression Ratio
Average Launch Power (BOL)
Average Launch Power (EOL)
Average Launch Power-OFF Transmitter
Extinction Ratio
SMSR
POUT
Typ.
Max.
Unit
1500
nm
1
nm
30
dB
+2.0
+5
dBm
+1.5
+5
dBm
-39
dBm
POFF
ER
10
Transmitter Eye Diagram
dB
Compliant With ITU-T G.984.2
VIN
200
Input Differential Impedance
ZIN
90
2
2,3
dB
0.5
dB
4
1600
mV
5
110
Ω
180
mA
TDP
Data Input Differential Swing
1
15
Optical Return Loss Tolerance
Optical Path Penalty
Note
100
Power Supply Current
ICC_TX
Transmitter Disable Voltage - Low
VTDIS, L
0
0.8
V
Transmitter Disable Voltage - High
VTDIS, H
2.0
VCC
V
Transmitter Failure Alarm Voltage - Low
VLFA, L
0
0.4
V
Transmitter Failure Alarm Voltage - High
VLFA, H
2.4
VCC
V
6
7
Note 1: Launched into 9/125um Single Mode Fiber.
Note 2: Measured with PRBS 223-1 plus 72bits CID test [email protected]/s, and the Bessel-Thompson filter is
turned on.
Note 3: Transmitter eye mask definition is shown as below.
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Page 3 of 16
Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Jul.7,2006
2488.32Mbit/s
x1/x4
---
x2/x3
---
x3-x2
0.2
y1/y2
0.25/0.75
Note 4: Maximum sensitivity penalty due to transmitter and dispersion effect through 20km of SMF optical fiber.
Note 5: Compatible with LVPECL/CML input, AC coupled internally. (See Recommended Interface Circuit)
Note 6: TX_DIS (See Pin Function Definitions)
Note 7: LAS_FAIL (See Pin Function Definitions)
Table 5 - Receiver Optical and Electrical Characteristics (0°C <TC<70°C and 3.13V<VCC<3.47V)
Parameter
Symbol
Operating Wavelength
Min.
1260
Sensitivity
PSEN
Saturation
PSAT
Amplitude Recovery Time
Typical
Max.
Unit
1360
nm
-28
dBm
-8
dBm
TRECOVERY
Dynamic Range
PSDA
Signal-Detected Deassert Level
PSDD
-45
PSDA- PSDD
0.5
Signal-Detected Hysteresis
Optical Return Loss Tolerance
Power Supply Current
ICC_RX
1
1
Bit
1,2
-8
dBm
1,3
-30
dBm
4
dBm
5
-28
Signal-Detected Assert Level
Notes
6
dBm
10
dB
250
mA
Data Output Voltage - Low
VOL-VCC
-1.81
-1.62
V
Data Output Voltage - High
VOH-VCC
-1.02
-0.88
V
Signal-Detected Voltage - Low
VSD, L
0
0.4
V
Signal-Detected Voltage - High
VSD, H
2.4
VCC
V
6
7
Note 1: Measured with Fiberxon GPON ONT and a PRBS 223-1 Plus 72CID test pattern @1.25Gbit/s, BER =10-10.
Note 2: See Figure 1,2. Measured with the Fiberxon GPON ONT and the TGUARD=25.6ns
Note 3: See Figure 3.TRECOVERY be less than 1 bit is guaranteed. Measured with the Fiberxon GPON ONT and the
TGUARD=25.6ns.
Note 4: An increase in optical power above the specified level will cause Signal-Detected (SD) output to switch
from a low state to a high state.
Note 5: A decrease in optical power below the specified level will cause Signal-Detected (SD) output to switch from
a high state to a low state.
Note 6: LVPECL output, DC coupled internally, guaranteed in the full range of input optical power (-8dBm to
-30dBm) (See Recommended Interface Circuit)
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Page 4 of 16
Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Jul.7,2006
Note 7: SD (See Pin Function Definitions)
Optical Signal
(1-Level)
Optical Signal Output
(at ONT side)
Optical Signal
(0-Level)
Dark Level
TON
TOFF
Upstream Data
(TD+/TD- at ONT side)
Tx_BRST
(at ONT side)
TRECOVERY
Upstream Data
(RD+/RD- at OLT side)
Valid Packet
Data
Figure 1 Timing Parameter Definition in Burst Mode Sequence (Sole ONT Application)
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Page 5 of 16
Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Jul.7,2006
TX_BRST(Soft ONT)
TEN_DUR
TDIS_DUR
TX_BRST(Loud ONT)
Optical Signal Output(Soft ONT)
1-Level
OFF-Level
TON1
TOFF1
0-Level
Optical Signal Output(Loud ONT)
1-Level
TGUARD
TOFF2
TON2
0-Level
OFF-Level
TRECOVERY(SOFT)
TRECOVERY(Loud)
Electrical Signal(OLT)
Figure 2 Timing Parameter Definitions in Burst Mode Sequence (Dual ONTs Application)
From Strong ONT(P O = -8dBm)
20dB Optical Power
Dynamic Range
Optical Signal Input
(At OLT Side)
From Weak ONT(P O= -28dBm)
Figure 3 Burst Mode Receiver Dynamic Range in G-PON System
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Page 6 of 16
Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Jul.7,2006
Recommended Interface Circuit
Figure 4 shows the recommended interface schemes.
VEET(12,16)
+3.3V
2x1uH
10uF
0.1uF
VCCT(11)
VCCR(7)
0.1uF
10uF
+3.3V
0.1uF
FTM-9723P-KGH(G)
+3.3V
VEER(3,6)
10K
TX_DIS(13)
PON_TX_DISABLE
4.7-10K
LAS_FAIL(19)
Tx_Fault(CPU IO)
Z=50
TXP
TXN
TD+(14)
Z=50
TD-(15)
Z=50
RD-(9)
Z=50
RD+(10)
100
CM
Laser
Driver
2x150
G-PON MAC
SerDes
+3.3V
2x130
RXN
RXP
BM
Limiting
Amplifier
+3.3V
2x82
10K
SD(8)
PON_LOS
Pmon(2)
Monitoring
VCC(+3.3V)
2x4.7-10K
Temperature
Supply Voltage
TX Bias Current
TX Optical Power
SCL (17)
SDA (18)
EEPROM
Figure 4 Recommended Interface Circuit
Pin Definitions
2×10 SFF planform in Figure 5 below shows the pin information of electrical interface and mounting studs.
Functions are described in Table 6 with some accompanying notes.
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Page 7 of 16
Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Jul.7,2006
Figure 5 2×10 SFF Planform
Table 6 - Pin Function Definitions
Pin No.
Name
Description
Notes
1
NC
2
Pmon
Analog Received Optical Power Monitoring
3
VEER
Receiver Signal Ground
4
NC
No Function Definition
Not connected
5
NC
No Function Definition
Not connected
6
VEER
Receiver Signal Ground
7
VCCR
Receiver Power Supply
8
SD
Receiver Signal-Detected Indication
9
RD-
Inverted Receiver Data Output
10
RD+
Non-inverted Receiver Data Output
11
VCCT
Transmitter Power Supply
12
VEET
Transmitter Signal Ground
13
TX_DIS
14
TD+
Transmitter Non-inverted Data Input
15
TD-
Transmitter Inverted Data Input
16
VEET
Transmitter Signal Ground
17
SCL
Clock Line of the I2C interface
18
SDA
Data Line of the I2C interface
19
LAS_FAIL
Laser Failure Alarm Indication
20
NC
No Function Definition
F
MS
Mounting Studs
No Function Definition
Not connected
1
2
3
Transmitter Disable
4
5
6
7
Not connected
8
Note 1: Analog RSSI signal indicate the received average optical power value, which is calculate by the following
equation:
Rx_PWR (0.1μ W) = Rx_PWR(4)*Rx_RSSI 4 (mV) + Rx_PWR(3)*Rx_RSSI3 (mV) +
Rx_PWR(2)*Rx_RSSI 2 (mV) + Rx_PWR(1)*Rx_RSSI (mV)+ Rx_PWR(0)
Rx_RSSI is the test value of the output RSSI signal with the unit of the millivolt; Rx_PWR(0-4) is the
calibration parameters for the Rx received optical power calculation, which is stored in the EEPROM.
(See Monitoring Specification)
Note 2: LVTTL logic output, with internal 10KΩ pull-up resistor.
Optical Signal-Detected: High; Optical Signal Loss: Low
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Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Jul.7,2006
Note 3: LVPECL logic output, DC coupled internally (See Recommended Interface Circuit)
Note 4: LVTTL logic input, with internal 10KΩ pull-up resistor.
Transmitter Disabled: High; Transmitter Enabled: Low
Note 5: LVPECL logic input, AC coupled with internal termination (See Recommended Interface Circuit)
Note 6: I2C interface, they should be pulled up with two 4.7K-10KΩ resistors on the host board.
Note 7: TTL logic output, pulled up by a 4.7-10KΩ resistor on the host board.
Laser Normal State: Low; Laser Failure State: High
Note 8:The mounting studs are provided for transceiver mechanical attachment to circuit board. They may also
provide an optional connection of the transceiver to the equipment chassis ground. The holes in the circuit
board must be tied to chassis ground. It is not recommended that the mounting studs be connected to
signal ground.
Mechanical Design Outline
The form factor is 2×10 SFF with pigtail fiber. The pigtail fiber has a length of 520 - 550mm and 30mm minimum
bending radius. The fiber connector type is SC/UPC. The mechanical design diagram is shown in Figure 6.
(Dimension in mm)
4.81± 0.05
19.3
10.16
8.89
φ0.9
12.31±0.3
MAX40.5
0
3.1-0.1
0.5
5.4±0.3
9.9± 0.1
0
20-φ0.50 -0.05
2.9±0.3
1.778
520~550
2-φ1
9x1.778(=16.002)
13.5
49.0± 0.1
Label
Figure 6 Mechanical Design Outline
Table 7- Pigtail Fiber Characteristics
Parameter
Min.
Mode Field Diameter
Typical
Max.
Unit
9
μm
Cladding Diameter
125
μm
Jacket Diameter
0.9
mm
Bending Radius of Pigtail Fiber
30
Tension Force on Pigtail Fiber
Pigtail Fiber Length
520
Optical Return Loss (SC/UPC type) -1490nm
50
mm
1
Kg
550
mm
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dB
Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Jul.7,2006
EEPROM Information
The SFP MSA defines a 256-byte memory map in EEPROM describing the transceiver’s capabilities, standard
interfaces, manufacture, and other information, which is accessible over a 2 wire serial interface at the 8-bit
address 1010000X(A0h). The memory contents refer to Table 8.
Table 8 – EEPROM Serial ID Memory Contents(A0h)
Addr.
Field Size
(Bytes)
Name of Field
Hex
Description
0
1
Identifier
02
Module soldered to motherboard
1
1
Ext. Identifier
04
MOD4
2
1
Connector
0B
Optical pigtail
3-10
8
Transceiver
XX XX XX XX XX XX XX XX
(Transmitter Code, not defined for G-PON)
11
1
Encoding
03
NRZ
12
1
BR, Nominal
19
2488.32Gbps transmission
13
1
Reserved
00
14
1
Length (9um)-km
14
20(km)
15
1
Length (9um)
C8
200(100m)
16
1
Length (50um)
00
Not Support MMF
17
1
Length (62.5um)
00
Not Support MMF
18
1
Length (Copper)
00
Not Support Copper
19
1
Reserved
00
20-35
16
Vendor name
36
1
Reserved
37-39
3
Vendor OUI
46 49 42 45 52 58 4F 4E
20 49 4E 43 2E 20 20 20
00
00 00 00
46 54 4D 2D 39 37 32 33
40-55
16
Vendor PN
“FIBERXON INC.” (ASCII)
50 2D 4B 47 48 20 20 20
46 54 4D 2D 39 37 32 33
50 2D 4B 47 48 47 20 20
“FTM-9723P-KGH” (ASCII)
“FTM-9723P-KGHG” (ASCII)
56-59
4
Vendor Rev
XX XX 20 20
ASCII(“31 30 20 20” means 1.0 Revision)
60-61
2
Wavelength
05 D2
1490nm Laser Wavelength
62
1
Reserved
00
63
1
CC_BASE
XX
Check sum of byte 0-62
64-65
2
Options
00 1A
LOS,TX_FAULT and TX_DISABLE
66
1
BR, max
00
67
1
BR, min
00
68-83
16
Vendor SN
84-91
8
Date code
XX XX XX XX XX XX XX XX
XX XX XX XX XX XX XX XX
XX XX XX XX XX XX 20 20
ASCII
Year(2 bytes),Month(2 bytes),Day(2 bytes)
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Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Jul.7,2006
Compliant with SFF-8472 V9.5
92
1
Diagnostic
Monitoring Type
Externally Calibrated
58
Received power measurement type
-Average Power
Diagnostics (Optional Alarm/warning flags)
93
1
Enhanced Options
94
1
95
1
CC_EXT
96-255
64
Vendor Specific
SFF-8472
Compliance
A0
Soft TX_FAULT monitoring implemented
02
Diagnostics Compliance(SFF-8472 V9.5)
XX
Check sum of byte 64-94
Monitoring Specification
The digital diagnostic monitoring interface defines 256-byte memory map in EEPROM, which makes use of the 8
bit address 1010001X(A2h). Please see Figure 7. Table 9~11 show the EEPROM definition from 0 to 119 byte,
please refer to the SFF-8472 Rev 9.5 for the data format of these tables. The monitoring specification of this
product is described in Table 12.
Figure 7 EEPROM Memory Map Specific Data Field Descriptions
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Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Jul.7,2006
Table 9 - EEPROM Serial ID Memory of the Alarm and Warning Thresholds Contents in A2h
Addr.
Field Size
(Bytes)
Name of Field
Hex
Description
00-01
2
Temp High Alarm
55 00
85 Centigrade
02-03
2
Temp Low Alarm
FB 00
-5 Centigrade
04-05
2
Temp High Warning
50 00
80 Centigrade
06-07
2
Temp Low Warning
00 00
0 Centigrade
08-09
2
Voltage High Alarm
94 70
3.8 V
10-11
2
Voltage Low Alarm
6D 60
2.8 V
12-13
2
Voltage High Warning
8D CC
3.6 V
14-15
2
Voltage Low Warning
74 04
3.0 V
16-17
2
Bias High Alarm
75 30
60 mA
18-19
2
Bias Low Alarm
05 DC
3 mA
20-21
2
Bias High Warning
61 A8
50 mA
22-23
2
Bias Low Warning
07 D0
4 mA
24-25
2
TX Power High Alarm
9B 82
+6 dBm
26-27
2
Tx Power Low Alarm
27 10
0 dBm
28-29
2
Tx Power High Warning
7B 87
+5 dBm
30-31
2
TX Power Low Warning
31 2D
+1 dBm
32-55
24
Reserved
00 00
0
Table 10 – EEPROM Serial ID Memory of the Calibration Constants Contents in A2h
Addr.
Field Size
(Bytes)
Name of Field
Hex
Description
56-59
4
Rx_PWR(4)
XX XX XX XX
60-63
4
Rx_PWR(3)
XX XX XX XX
Single precision floating point calibration
64-67
4
Rx_PWR(2)
XX XX XX XX
data (various values at each device for
68-71
4
Rx_PWR(1)
XX XX XX XX
incompatibility with “internal calibration”)
72-75
4
Rx_PWR(0)
XX XX XX XX
76-77
2
Tx_I(Slope)
01 00
1
78-79
2
Tx_I(Offset)
00 00
0
80-81
2
Tx_PWR(Slope)
01 00
1
82-83
2
Tx_PWR(Offset)
00 00
0
84-85
2
T (Slope)
01 00
1
86-87
2
T (Offset)
00 00
0
88-89
2
V (Slope)
01 00
1
90-91
2
V (Offset)
00 00
0
92-94
3
Reserved
00 00
0
95
1
Checksum
XX
Check sum of byte 0-94
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Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Jul.7,2006
Table 11 – EEPROM Serial ID Memory of the A/D Values and Status Bits Contents in A2h
Addr.
Bit
Name of Field
Hex
96-97
7-0
Temperature
XX XX
98-99
7-0
Vcc
XX XX
100-101
7-0
TX Bias
XX XX
102-103
7-0
TX Power
XX XX
104-109
7-0
Reserved
00 00 00 00 00 00
110
7
TX Disable State
110
6~3
Reserved
110
2
Laser Failure State
110
1
Reserved
110
0
Data_Ready_Bar
111
7-0
Reserved
112
7
Temp High Alarm
112
6
Temp Low Alarm
112
5
Vcc High Alarm
112
4
Vcc Low Alarm
112
3
TX Bias High Alarm
112
2
TX Bias Low Alarm
112
1
TX Power High Alarm
112
0
TX Power Low Alarm
113-115
7-0
Reserved
116
7
Temp High Warning
116
6
Temp Low Warning
116
5
Vcc High Warning
116
4
Vcc Low Warning
116
3
TX Bias High Warning
116
2
TX Bias Low Warning
116
1
TX Power High Warning
116
0
TX Power Low Warning
117-119
0-7
Reserved
Description
0
XX
00
0
XX
00 00 00
0
XX
00 00 00
0
Note: The “XX” byte should be filled in according to practical case. For more information, please refer to the related
document of SFF-8472 Rev 9.5.
Table 12- Monitoring Specification
Parameter
Range
Accuracy
Calibration
Temperature
-20 to 80°C
±3°C
External
Voltage
3.0 to 3.6V
±3%
External
Bias Current
0 to 100mA
±10%
External
TX Power
0 to 6dBm
±3dB
External
RX Power
-29 to -7dBm
±3dB
External
Fiberxon Proprietary and Confidential, Do Not Copy or Distribute
Page 13 of 16
Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Jul.7,2006
Ordering Information
FTM
9
7
Wavelength
9: Multiwave in Single Fiber
2
3
P
K
G
H
Connetor Type
P: Pigtail SC /UPC
Package
Function
7: Burst 1490nm Tx/1310nm Rx
Distance
23: 1244.16M/2488.32M
GH: G-PON Class B +
FTM-9723P-KGH
FTM-9723P-KGHG
RoHS
K: SFF 2 x10
Bit Rate(U)/(D)
Part No.
X
G: RoHS compliant
Product Description
1490nm(TX)/1310nm(RX), SC/UPC Pigtailed 2×10 SFF for G-PON OLT
Class B+ attenuation range (13-28dB), 0°C ~70°C.
1490nm(TX)/1310nm(RX), SC/UPC Pigtailed 2×10 SFF for G-PON OLT
Class B+ attenuation range (13-28dB), 0°C ~70°C, RoHS compliance
Related Documents
For further information, please refer to the following documents:
„
SFF-8472 Rev 9.5
„
ITU-T G984.2
„
ITU-T G984.2 Amendment 1
Obtaining Document
You can visit our website:
http://www.fiberxon.com
Or contact with Fiberxon, Inc. America Sales Office listed at the end of documentation to get the latest documents.
Revision History
Fiberxon Proprietary and Confidential, Do Not Copy or Distribute
Page 14 of 16
Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Reversion
Initiate
Review
Jul.7,2006
Approve
Subject
Release
Date
Pre 1a
Frank Zeng
Peter Tang
Peter Tang
Initial datasheet (temporary)
Nov.18, 2005
(Doc No. DS3633001-1a)
1)
Replace the Operating Ambient Temperature
Spec. with the Operating Case Temperature
Spec. in the Table 2~3.
2)
Update the Average Launch Power, Optical
Path Penalty spec. in the Table 4.
3)
Pre 1b
Frank Zeng
Peter Tang
Peter Tang
Update
the
Saturation,
Sensitivity,
and
Dynamic Range Spec. in the Table 5;
4)
Replace the Receiver Threshold Settling Time
Dec.1, 2005
Spec. with the Amplitude Recovery Time
Spec. in the Table 5.
5)
Update the Power Supply Current spec. in the
Table 5.
6)
Update the Figure 1~3.
(Doc No. DS3633001-1b) (temporary)
1)
Modify “Transmitter Failure Alarm Voltage” in
Table 4, and “Signal-Detected Voltage” in
Table 5.
Pre 1c
Frank Zeng
Peter Tang
Peter Tang
Dec.15, 2005
2)
Modify Figure 1, 2.
3)
Append EEPROM Serial ID Memory Contents
(A0) in Table 8.
(Doc No. DS3633001-1c) (temporary)
Revise datasheet(temporary)
Pre 1d
Frank Zeng
Peter Tang
Peter Tang
Append new P/N: FTM-9723P-KGHG
Jul.7, 2006
(Doc No. DS3633001-1d)
© Copyright Fiberxon Inc. 2006
Fiberxon Proprietary and Confidential, Do Not Copy or Distribute
Page 15 of 16
Doc No: DS3633001-1d
2x10 SFF G-PON OLT Transceiver (Temporary Version)
Class B+ attenuation range: 13-28dB
Jul.7,2006
All Rights Reserved.
All information contained in this document is subject to change without notice. The products described in this
document are NOT intended for use in implantation or other life support applications where malfunction may result
in injury or death to persons.
The information contained in this document does not affect or change Fiberxon’s product specifications or
warranties. Nothing in this document shall operate as an express or implied license or indemnity under the
intellectual property rights of Fiberxon or third parties. All information contained in this document was obtained in
specific environments, and is presented as an illustration. The results obtained in other operating environment may
vary.
THE INFORMATION CONTAINED IN THIS DOCUMENT IS PROVIDED ON AN ”AS IS” BASIS. In no event will
Fiberxon be liable for damages arising directly from any use of the information contained in this document.
Contact
U.S.A. Headquarter:
5201 Great America Parkway, Suite 350
Santa Clara, CA 95054
U. S. A.
Tel: 408-562-6288
Fax: 408-562-6289
Or visit our website: http://www.fiberxon.com/
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Page 16 of 16
Doc No: DS3633001-1d