LCP-155B4HDRT [DELTA]

RoHS Compliant SFP Transceiver for ATM, SONET OC-3/SDH STM-1 with Digital Diagnostic Monitoring Function; RoHS符合SFP收发器,用于ATM, SONET OC - 3 / SDH STM - 1与数字诊断监控功能
LCP-155B4HDRT
型号: LCP-155B4HDRT
厂家: DELTA ELECTRONICS, INC.    DELTA ELECTRONICS, INC.
描述:

RoHS Compliant SFP Transceiver for ATM, SONET OC-3/SDH STM-1 with Digital Diagnostic Monitoring Function
RoHS符合SFP收发器,用于ATM, SONET OC - 3 / SDH STM - 1与数字诊断监控功能

光纤 监控 异步传输模式 放大器 ATM 通信
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RoHS Compliant SFP Transceiver for ATM, SONET OC-3/SDH STM-1  
with Digital Diagnostic Monitoring Function  
FEATURES  
z Compliant with SFP transceiver SFF-8472  
MSA specification with internal calibration  
z LCP-155A4HDR compliant with Intra-office  
SONET OC-3/ SDH STM-1 (I-1)  
z LCP-155B4JDR compliant with Short-haul  
SONET OC-3 / SDH STM-1 (S-1.1)  
z LCP-155B4MDR compliant with Long-haul  
SONET OC-3 / SDH STM-1 (L-1.1)  
z Multirate operation from 100Mb/s to 155Mb/s  
z Single + 3.3V power supply and TTL logic  
interface  
z EEPROM with Serial ID functionality  
z Laser Class 1 product which comply with the  
requirements of IEC 60825-1 and IEC 60825-2  
z Duplex LC connector interface  
Description  
Applications  
z SONET OC-3/SDH STM-1  
z ATM Network  
The LCP-155 series is a hot pluggable 3.3V  
Small-Form-Factor transceiver module designed  
expressly for high-speed communication  
z Fast Ethernet  
applications that require rates of up to  
155Mbit/sec. It is compliant with the ATM, SONET  
OC-3/SDH STM-1 standards, as well as the  
SFF-8472 SFP Multisource Agreement (MSA).  
The LCP-155 series are designed to be  
compliant with SFF-8472 SFP Multi-source  
Agreement (MSA) with digital diagnostic  
monitoring functions: Temperature, VCC, TX  
optical power, TX laser bias current, and RX  
received optical power.  
z Switch to Switch interface  
z Switched backplane applications  
z File server interface  
Performance  
z LCP-155A4HDR Data Link up to 2km in  
62.5/125μm in Multi-Mode Fiber  
z LCP-155B4JDR Data Link up to 15km in  
9/125μm Single Mode Fiber  
z LCP-155B4MDR Data Link up to 40km in  
9/125μm Single Mode Fiber  
The post-amplifier of the LCP-155 series also  
includes a Loss of Signal (LOS) circuit that  
provides a TTL logic-high output when the  
received optical level is below a preset LOS  
Assert threshold.  
1
Nov., 2006  
Rev. 1E  
www.deltaww.com  
DELTA ELECTRONICS, INC.  
Absolute Maximum Ratings  
Parameter  
Storage Temperature  
Supply Voltage  
Symbol  
Ts  
VCC  
Min.  
-40  
0
Typ.  
Typ.  
Max.  
85  
5
Unit  
ºC  
V
Note  
Recommended Operating Conditions  
Parameter  
Case Operating Temperature  
Supply Voltage  
Symbol  
Tc  
VCC  
Min.  
-5  
3.135  
Max.  
70  
3.465  
Unit  
ºC  
V
Note  
1
Note 1: See order information  
Electrical Characteristics  
(VCC=3.3V ± 5%)  
Parameter  
Total Supply Current  
Symbol  
ICCT  
Min.  
Typ.  
Max.  
300  
Unit  
mA  
Note  
Transmitter  
Transmitter Differential Input Voltage  
Transmitter Disable Input-High  
Transmitter Disable Input-Low  
Transmitter Fault Pull up Resistor  
Transmitter Fault Output-High  
Transmitter Fault Output-Low  
Receiver  
VDT  
VDISH  
VDISL  
RTX_FAULT  
VTXFH  
VTXFL  
0.5  
2
0
4.7  
2
0
2.4  
VCC+0.3  
0.8  
10  
VCC+0.3  
0.8  
V
V
V
k  
V
V
1
2
Receiver Differential Output Voltage  
Receiver LOS Load  
LOS Output Voltage-High  
LOS Output Voltage-Low  
Output Data Rise/Fall Time  
Notes:  
VDR  
RRXLOS  
VLOSH  
VLOSL  
tr / tf  
0.35  
4.7  
2
2
10  
VCC+0.3  
0.8  
V
kΩ  
V
V
nsec  
3
2
0
2.5  
4
1. Internally AC coupled and terminated to 100Ohm differential load.  
2. Pull up to VCC on host Board.  
3. Internally AC coupled, but requires a 100Ohm differential termination at or internal to Serializer/  
Deserializer.  
4. These are 20%~80% values.  
2
Nov., 2006  
Rev. 1E  
www.deltaww.com  
DELTA ELECTRONICS, INC.  
Optical Characteristics  
(VCC=3.3V ± 5%, Data Rate=155Mb/sec, PRBS=223-1 NRZ)  
Parameter  
Symbol  
Min.  
Typ.  
Max.  
Unit  
Note  
Transmitter  
Output Optical Power (Avg.)  
LCP-155A4HDR  
LCP-155B4JDR  
-20  
-15  
-5  
-14  
-8  
0
PO  
ER  
λC  
dBm  
dB  
LCP-155B4MDR  
Optical Extinction Ratio  
Center Wavelength  
LCP-155A4HDR  
LCP-155B4JDR  
LCP-155B4MDR  
10  
1260  
1261  
1263  
1360  
1360  
1360  
nm  
Spectral Width (RMS)  
LCP-155A4HDR  
LCP-155B4JDR  
7.7  
7.7  
3
σ
nm  
LCP-155B4MDR  
Optical Rise/ Fall Time  
tr/tf  
2
nsec  
1
Compliant with Bellcore TR-NWT-000253 and ITU recommendation  
G.957  
Output Eye  
Receiver  
Sensitivity (Avg.)  
LCP-155A4HDR  
LCP-155B4JDR  
LCP-155B4MDR  
Input Optical Wavelength  
-31  
-31  
-34  
PIN  
λ
dBm  
nm  
2
1100  
1600  
LOS-Deasserted (Avg.)  
LCP-155A4HDR  
LCP-155B4JDR  
-31  
-31  
-34  
PA  
dBm  
LCP-155B4MDR  
LOS-Asserted (Avg.)  
LOS-Hysteresis  
Overload  
PD  
PA-PD  
-45  
0.5  
dBm  
dB  
LCP-155A4HDR  
LCP-155B4JDR  
LCP-155B4MDR  
-14  
-8  
-10  
PO  
dBm  
Notes:  
1. These are unfiltered 10%~90% values  
2. The sensitivity is provided at a BER of 1×10-10 or better with an input signal consisting of 155Mb/s,  
223-1 PRBS and ER=9dB.  
3
Nov., 2006  
Rev. 1E  
www.deltaww.com  
DELTA ELECTRONICS, INC.  
Mask of the eye diagram for the optical transmit signal  
SFP Transceiver Electrical Pad Layout  
4
Nov., 2006  
Rev. 1E  
www.deltaww.com  
DELTA ELECTRONICS, INC.  
Pin Function Definitions  
Pin Num.  
Name  
VeeT  
TX Fault  
Function  
Transmitter Ground  
Transmitter Fault Indication  
Plug Seq.  
Notes  
1
2
1
3
Note 1  
Note 2  
3
TX Disable  
Transmitter Disable  
3
Module disables on high or open  
4
5
6
7
8
9
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
20  
MOD-DEF2  
MOD-DEF1  
MOD-DEF0  
Rate Select  
LOS  
Module Definition 2  
Module Definition 1  
Module Definition 0  
Not Connect  
3
3
3
3
3
1
1
1
3
3
1
2
2
1
3
3
1
Note 3, 2 wire serial ID interface  
Note 3, 2 wire serial ID interface  
Note 3, Grounded in Module  
Function not available  
Note 4  
Note 5  
Note 5  
Note 5  
Note 6  
Note 7  
Note 5  
3.3 ± 5%, Note 7  
3.3 ± 5%, Note 7  
Note 5  
Note 8  
Note 8  
Note 5  
Loss of Signal  
VeeR  
VeeR  
VeeR  
RD-  
RD+  
VeeR  
VccR  
VccT  
VeeT  
TD+  
TD-  
VeeT  
Receiver Ground  
Receiver Ground  
Receiver Ground  
Inv. Received Data Out  
Received Data Out  
Receiver Ground  
Receiver Power  
Transmitter Power  
Transmitter Ground  
Transmit Data In  
Inv. Transmit Data In  
Transmitter Ground  
Plug Seq.: Pin engagement sequence during hot plugging.  
Notes:  
1) TX Fault is an open collector/drain output, which should be pulled up with a 4.7K – 10Kresistor on the host  
board. Pull up voltage between 2.0V and 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.  
2) TX disable is an input that is used to shut down the transmitter optical output. It is pulled up within the module  
with a 4.7 – 10 K resistor. Its states are:  
Low (0 – 0.8V):  
(>0.8, < 2.0V):  
High (2.0 – 3.465V):  
Open:  
Transmitter on  
Undefined  
Transmitter Disabled  
Transmitter Disabled  
3) Mod-Def 0,1,2. These are the module definition pins. They should be pulled up with a 4.7K – 10Kresistor on the  
host board. The pull-up voltage shall be VccT or VccR (see Section IV for further details). Mod-Def 0 is grounded  
by the module to indicate that the module is present Mod-Def 1 is the clock line of two wire serial interface for  
serial ID Mod-Def 2 is the data line of two wire serial interface for serial ID  
4) LOS (Loss of Signal) is an open collector/drain output, which should be pulled up with a 4.7K – 10Kresistor.  
Pull up voltage between 2.0V and 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.  
5) VeeR and VeeT may be internally connected within the SFP module.  
6) RD-/+: These are the differential receiver outputs. They are AC coupled 100differential lines which should be  
terminated with 100(differential) at the user SERDES. The AC coupling is done inside the module and is thus  
not required on the host board. The voltage swing on these lines will be between 370 and 2000 mV differential  
(185 – 1000 mV single ended) when properly terminated.  
5
Nov., 2006  
Rev. 1E  
www.deltaww.com  
DELTA ELECTRONICS, INC.  
7) VccR and VccT are the receiver and transmitter power supplies. They are defined as 3.3V ±5% at the SFP  
connector pin. Maximum supply current is 300mA. Recommended host board power supply filtering is shown  
below. Inductors with DC resistance of less than 1 ohm should be used in order to maintain the required voltage  
at the SFP input pin with 3.3V supply voltage. When the recommended supply-filtering network is used, hot  
plugging of the SFP transceiver module will result in an inrush current of no more than 30mA greater than the  
steady state value. VccR and VccT may be internally connected within the SFP transceiver module.  
8) TD-/+: These are the differential transmitter inputs. They are AC-coupled, differential lines with 100ꢀ  
differential termination inside the module. The AC coupling is done inside the module and is thus not  
required on the host board. The inputs will accept differential swings of 500 – 2400 mV (250 – 1200  
mV single-ended), though it is recommended that values between 500 and 1200 mV differential (250 –  
600 mV single-ended) be used for best EMI performance.  
Recommend Circuit Schematic  
1uH  
1uH  
VCC  
3.3V  
Protocol Vcc  
DELTA SFP Module  
RES1  
10uF  
0.1uF  
VccT  
0.1uF  
10k Ohms  
Tx_Disable  
Tx_Fault  
Tx_Disable  
Tx_Fault  
TD +  
0.01uF  
Laser Driver  
100 Ohms  
Laser Diode  
TD -  
0.01uF  
VeeT  
Protocol IC  
SerDes IC  
VccR  
RES1  
10uF  
0.1uF  
RD +  
0.01uF  
0.01uF  
Preamp &  
Quantizer  
100 Ohms*  
Photo Diode  
RD -  
Rx_LOS  
VeeR  
Rx_LOS  
3.3V  
RES1  
RES1  
RES1  
Mod_def 2  
Mod_def 1  
Mod_def 0  
PLD / PAL  
EEPROM  
RES1 = 4.7k to 10k Ohms  
* Depands on SerDes IC used  
6
Nov., 2006  
Rev. 1E  
www.deltaww.com  
DELTA ELECTRONICS, INC.  
Package Outline Drawing  
7
Nov., 2006  
Rev. 1E  
www.deltaww.com  
DELTA ELECTRONICS, INC.  
SFP timing parameters for SFP management  
Parameter  
TX_DISABLE Assert time  
TX_DISABLE Negate time  
Time to initialize, including  
reset of TX_FAULT  
TX Fault Assert Time  
TX_DISABLE to reset  
LOS Assert Time  
Symbol  
t_off  
t_on  
Min.  
Max.  
10  
1
Unit  
μsec  
msec  
Note  
1
2
t_init  
300  
100  
msec  
3
t_fault  
t_rest  
t_loss_on  
t_loss_off  
f_serial_clock  
μsec  
μsec  
μsec  
μsec  
kHz  
4
5
6
7
10  
100  
100  
100  
LOS Deassert Time  
Serial ID Clock Rate  
Notes:  
1) Time from rising edge of TX_DISABLE to when the optical output falls below 10% of nominal  
2) Time from falling edge of TX_DISABLE to when the modulated optical output rises above 90% of  
nominal  
3) From power on or negation of TX_Fault using TX Disable  
4) Time from fault to TX fault on.  
5) Time TX Disable must be held high to reset TX_Fault  
6) Time from LOS state to Rx LOS assert  
7)  
Time from non-LOS state to Rx LOS deassert  
8
Nov., 2006  
Rev. 1E  
www.deltaww.com  
DELTA ELECTRONICS, INC.  
Enhanced Digital Diagnostic Interface  
The memory map in the following describes an extension to the memory map defined in SFP MSA.  
The enhanced interface uses the two wire serial bus address 1010001X(A2h) to provide diagnostic  
information about the module’s present operating conditions.  
2 wire address 1010000 X (A0h)  
2 wire address 1010001 X (A2h)  
0
0
Alarm and Warning Thresholds  
(56 bytes)  
Serial ID Defined by SFP MSA  
(96 bytes)  
55  
56  
Cal Constants  
(40 bytes)  
95  
96  
95  
96  
Real Time Diagnostic Interface  
(24 bytes)  
Vender Specific  
(32 bytes)  
119  
120  
Vender Specific  
127  
128  
127  
128  
User Writable EEPROM  
(120 bytes)  
Reserved in SFP MSA  
(128 bytes)  
247  
248  
255  
Vender Specific  
(8 bytes)  
255  
Digital Diagnostic Memory Map Specific Data Field Descriptions  
9
Nov., 2006  
Rev. 1E  
www.deltaww.com  
DELTA ELECTRONICS, INC.  
EEPROM Serial ID Memory Contents (2-Wire Address A0h)  
Address  
Hex  
ASCII  
Address  
Hex  
ASCII  
Address  
Hex  
ASCII  
00  
01  
02  
03  
04  
05  
06  
07  
08  
09  
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
20  
21  
22  
23  
24  
25  
26  
27  
28  
29  
30  
31  
32  
33  
34  
35  
36  
37  
38  
39  
40  
41  
42  
03  
04  
07  
00  
xx  
43  
44  
45  
46  
47  
48  
49  
50  
51  
52  
53  
54  
55  
56  
57  
58  
59  
60  
61  
62  
63  
64  
65  
66  
67  
68  
69  
70  
71  
72  
73  
74  
75  
76  
77  
78  
79  
80  
81  
82  
83  
84  
85  
PN  
PN  
PN  
PN  
PN  
PN  
PN  
PN  
PN  
PN  
PN  
PN  
PN  
30  
30  
30  
0A  
CW  
CW  
00  
CS1  
00  
86  
87  
88  
89  
90  
91  
92  
93  
94  
95  
96  
97  
98  
DC  
DC  
DC  
DC  
DC  
DC  
68  
B0  
02  
CS2  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
00  
Note 1  
xx  
xx  
00  
00  
00  
00  
03  
02  
00  
xx  
Note 9  
99  
Note 2  
Note 3  
100  
101  
102  
103  
104  
105  
106  
107  
108  
109  
110  
111  
112  
113  
114  
115  
116  
117  
118  
119  
120  
121  
122  
123  
124  
125  
126  
127  
128  
xx  
00  
00  
00  
00  
44  
45  
4C  
54  
41  
20  
20  
20  
20  
20  
20  
20  
20  
20  
20  
20  
00  
00  
00  
00  
PN  
PN  
PN  
Note 5  
Note 5  
D
E
L
T
A
Note 6  
1A  
05  
05  
SN  
SN  
SN  
SN  
SN  
SN  
SN  
SN  
SN  
SN  
SN  
SN  
SN  
SN  
SN  
SN  
DC  
DC  
Note 7  
Note 4  
Note 8  
Note 10  
Notes:  
1) Byte 3~10: Code for electronic compatibility or optical compatibility.  
2) Byte 14:Transmission distance in km  
3) Byte 15: Transmission distance in 100m, distance >25.5km: FFh  
4) Byte 40-55: Delta part number  
5) Byte 60-61: The center wavelength of transmitter  
6) Byte 63: Check sum of bytes 0-62.  
7) Byte 68-83: Serial number.  
10  
Nov., 2006  
Rev. 1E  
www.deltaww.com  
DELTA ELECTRONICS, INC.  
8) Byte 84-91: Date code.  
9) Byte 95: Check sum of bytes 64-94.  
10) Byte 128 to 255 had been set hex 00.  
Digital Diagnostic Monitoring Interface  
Alarm and Warning Thresholds (2-Wire Address A2h)  
#
Address  
Name  
Temp High Alarm  
Value (Dec.)  
Unit  
Note  
Bytes  
00-01  
02-03  
04-05  
06-07  
08-09  
10-11  
12-13  
14-15  
16-17  
18-19  
20-21  
22-23  
24-25  
26-27  
28-29  
30-31  
32-33  
34-35  
36-37  
38-39  
40-45  
56-91  
92-94  
95  
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
16  
36  
3
1
2
2
2
2
2
4
1
1
8
TC (MAX.)+15  
TC (MIN.)  
TC (MAX.)+10  
TC (MIN.)+10  
Vcc+5%  
1
Temp Low Alarm  
Temp High Warning  
Temp Low Warning  
Voltage High Alarm  
Voltage Low Alarm  
Voltage High Warning  
Voltage Low Warning  
Bias High Alarm  
Bias Low Alarm  
Bias High Warning  
Bias Low Warning  
TX Power High Alarm  
TX Power Low Alarm  
TX Power High Warning  
TX Power Low Warning  
RX Power High Alarm  
RX Power Low Alarm  
RX Power High Warning  
RX Power Low Warning  
Reversed  
External Calibration Constants  
Reversed  
Checksum  
Real Time Temperature  
Real Time Supply Voltage  
Real Time Tx Bias Current  
Real Time Tx Optical Power  
Real Time Rx Received Power  
Reserved  
Volt  
mA  
Vcc-5%  
Vcc+3%  
Vcc-3%  
IOP*2+20  
2
3
4
IOP-20  
I
OP *2+10  
IOP -10  
P+3  
dBm  
dBm  
P-3  
P+2  
P-2  
P0+3  
PS-2  
P0+2  
PS  
5
96-97  
98-99  
100-101  
102-103  
104-105  
106-109  
110  
Optional Status/ Control Bits  
Reserved  
Optional Set of Alarm and Warning  
6
7
111  
112-119  
Notes:  
1) TC: Case Operating temperature  
2) IOP: Operating current at room temperature. The min. setting current is 0 mA.  
3) P: Operating optical power of transmitter at room temperature.  
4) P0: Overload optical power of receiver  
11  
Nov., 2006  
Rev. 1E  
www.deltaww.com  
DELTA ELECTRONICS, INC.  
PS: Sensitivity optical power of receiver  
5) Byte 95 contains the low order 8bits of sum of bytes 0-94  
6)  
State/ Control Bits  
Byte  
110  
110  
110  
110  
110  
110  
110  
110  
Bit  
7
6
5
4
3
2
1
0
Name  
Tx Disable State  
Soft Tx Disable  
Reserved  
Rate Select tate  
Soft Rate Select  
Tx Fault  
Description  
Digital state of the Tx disable input pin  
Read/ Write bit that allow software disable of laser  
NA  
NA  
Digital state of the Tx fault output pin  
Digital state of the LOS output pin.  
NA  
LOS  
Data_Ready_Bar  
7)  
Optional Set of Alarm and Warning  
Byte  
112  
112  
112  
112  
112  
112  
112  
112  
113  
113  
113  
116  
116  
116  
116  
116  
116  
116  
116  
117  
117  
117  
Bit  
7
6
5
4
3
2
1
0
7
6
5-0  
7
6
5
4
3
2
Name  
Temp High Alarm  
Temp Low Alarm  
Vcc High Alarm  
Vcc Low Alarm  
Description  
Set when internal temperature exceeds high alarm level  
Set when internal temperature is below low alarm level  
Set when internal supply voltage exceeds high alarm level  
Set when internal supply voltage is below low alarm level  
Set when Tx Bias current exceeds high alarm level  
Set when Tx Bias current is below low alarm level  
Set when Tx output power exceeds high alarm level  
Set when Tx output power is below low alarm level  
Set when received power exceeds high alarm level  
Set when received power is below low alarm level  
Tx Bias High Alarm  
Tx Bias Low Alarm  
Tx Power High Alarm  
Tx Power Low Alarm  
Rx Power High Alarm  
Rx Power Low Alarm  
Reserved  
Temp High Warning  
Temp Low Warning  
Vcc High Warning  
Vcc Low Warning  
Tx Bias High Warning  
Tx Bias Low Warning  
Tx Power High Warning  
Tx Power Low Warning  
Rx Power High Warning  
Rx Power Low Warning  
Reserved  
Set when internal temperature exceeds high warning level  
Set when internal temperature is below low warning level  
Set when internal supply voltage exceeds high warning level  
Set when internal supply voltage is below low warning level  
Set when Tx Bias current exceeds high warning level  
Set when Tx Bias current is below low warning level  
Set when Tx output power exceeds high warning level  
Set when Tx output power is below low warning level  
Set when received power exceeds high warning level  
Set when received power is below low warning level  
1
0
7
6
5-0  
Digital Diagnostic Monitor Accuracy  
Parameter  
Typical Value  
Note  
± 3  
± 3%  
± 10%  
± 1.5dB  
± 3dB  
Transceiver Temperature  
Power Supply Voltage  
TX Bias Current  
TX Optical Power  
RX Optical Power  
1
2
Notes:  
12  
Nov., 2006  
Rev. 1E  
www.deltaww.com  
DELTA ELECTRONICS, INC.  
1) Temperature is measured internal to the transceiver  
2) Voltage is measured internal to the transceiver  
Regulatory Compliance  
Test Item  
Reference  
FCC Class B  
EN 55022 Class B  
CISPR 22  
Qty’  
5
Evaluation  
(#1)  
Electromagnetic Interference  
EMC  
(#2) Immunity:  
Radio Frequency  
Electromagnetic Field  
EN 61000-4-3  
IEC 1000-4-3  
5
5
(1) Satisfied with electrical characteristics of  
product spec.  
(#3) Immunity:  
Electrostatic Discharge to the  
Duplex SC Receptacle  
EN 61000-4-2  
IEC 1000-4-2  
IEC 801.2  
(2) No physical damage  
(#4) Electrostatic Discharge to  
the Electrical Pins  
MIL-STD-883C  
Method 3015.4  
EIAJ#1988.3.2B  
Version 2,  
5
Machine model  
Ordering information for SFP modules  
LCP-155X1X2X3X4X5X6  
X1: Fiber  
X4: Digital Diagnostic Function  
A: Multi-mode 1310nm  
B: Single-mode 1310nm  
D: DDM series, with digital diagnostic  
function  
X2: Power Supply Voltage and SD Level  
X5: Housing Type  
4: 3.3V, TTL SD Level  
R: RoHS compliant  
X3: Distance  
X6: Temperature  
H: 2km  
J: 15km  
M: 40km  
Blank: -5 to +70 degree C  
H: -10 to +85 degree C  
T: -40 to +85 degree C  
13  
Nov., 2006  
Rev. 1E  
www.deltaww.com  
DELTA ELECTRONICS, INC.  

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