© PHOENIX CONTACT 2015-01-28
103995_en_02
FOC-M12-MNNA-TC...
Data sheet
1 Description
The FO transceiver is available in two versions.
FOC-M12-MNNA-TC-1300 for applications with
50/125 m, 62.5/125 m or 200/230 m fibers
FOC-M12-MNNA-TC-650 for applications with
980/1000 m fibers
The FO transceiver features a high-speed transmitter and
receiver circuit with a 1310 nm or 650 nm optical wave-
length at high optical power. This makes the M12 trans-
ceiver an ideal alternative in data transmission systems with
fiber optics.
An I2C interface ensures that the transceiver is efficiently
monitored and managed.
Due to the high data transmission rate of 125 Mbps, the op-
tical characteristics, and connection technology for the fiber
optics, the M12 transceiver offers a wealth of application op-
tions:
Optical networks
Fast Ethernet
Industrial electronics
Power electronics
1.1 Properties
125 Mbps
+3.3 V power supply
PECL inputs/outputs
Signal Detect (SD) output
–I
2C management interface
Metal housing
Pin connector pattern in accordance with 61754-27
Ambient temperature: -40°C... +85 °C
RoHS-compliant
FOC-M12-MNNA-TC-1300
1310 nm wavelength
-19°dBm output power (50/125 m)
-30 dBm receiver sensitivity
Suitable for 50/125 m, 62.5/125 m and 200/230 m
FOC-M12-MNNA-TC-650
650 nm wavelength
-4 dBm output power (980/1000 m)
-20 dBm receiver sensitivity
Suitable for 980/1000 m
To optimize transmission performance and to achieve the maximum transmission path, correctly pre-assembled
fiber optic connectors are required.
Loads that exceed the specified limit values can cause permanent damage to the component. The limit values rep-
resent the load limits of the component.
Make sure you always use the latest documentation.
It can be downloaded at phoenixcontact.net/products.
This data sheet is valid for all products listed on the following page:
M12 FO transceivers
FOC-M12-MNNA-TC...
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2 Ordering data
3 Limit values
Loads that exceed the limit values can cause permanent
damage to the component. The limit values represent the
load limits of the component.
Continuous operation with these values is not recom-
mended, as this may jeopardize the reliability of the compo-
nent.
The FO transceiver, connectors, and couplings should only
be mounted finger tight.
Fiber optic transceiver
Description Type Order No. Pcs. / Pkt.
M12 FO transceiver, duplex, wavelength: 650 nm for 125 Mbps, for POF and
PCF fibers, for PCB mounting, M16 fastening thread, with sealing cap, includ-
ing I²C interface for transceiver monitoring and management
FOC-M12-MNNA-TC-650 1416716 1
M12 FO transceiver, duplex, wavelength: 1300 nm for 125 Mbps, for GOF fi-
bers, for PCB mounting, M16 fastening thread, with sealing cap, including I²C
interface for transceiver monitoring and management
FOC-M12-MNNA-TC-1300 1416729 1
Accessories
Description Type Order No. Pcs. / Pkt.
M12 fiber optic coupler, duplex, suitable for all fibers, with wall bracket, IP65
degree of protection
FOC-M12-BU/BU 1416677 1
Assembled FO cable, round cable, 980/1000 μm POF fibers, for in-
stallation inside buildings
M12 FO to M12 FO
1 m FOC-PN-B-1000/M12-C/SCRJ/1
FOC-PN-B-1000/M12-C/SCRJ/2
FOC-PN-B-1000/M12-C/SCRJ/5
1408865
1408864
1416648
1
2 m 1
5 m 1
Assembled FO cable, round cable, 980/1000 μm POF fibers, for in-
stallation inside buildings
M12 FO to SCRJ/IP20
1 m FOC-PN-B-1000/M12-C/M12-C/1
FOC-PN-B-1000/M12-C/M12-C/2
FOC-PN-B-1000/M12-C/M12-C/5
1408871
1408870
1416680
1
2 m 1
5 m 1
Assembled FO cable, round cable, 200/230 μm PCF-GI fibers, for
installation inside buildings
M12 FO to M12 FO
1 m FOC-HCS-GI-1005/M12-C/M12-C/1
FOC-HCS-GI-1005/M12-C/M12-C/2
FOC-HCS-GI-1005/M12-C/M12-C/5
1408873
1408872
1416693
1
2 m 1
5 m 1
Assembled FO cable, round cable, 200/230 μm PCF-GI fibers, for
installation inside buildings
M12 FO to SCRJ/IP20
1 m FOC-HCS-GI-1005/M12-C/SCRJ/1
FOC-HCS-GI-1005/M12-C/SCRJ/2
FOC-HCS-GI-1005/M12-C/SCRJ/5
1408867
1408866
1416651
1
2 m 1
5 m 1
Assembled FO cable, round cable, 50/125 μm GOF-MM fibers, for
installation inside buildings
M12 FO to M12 FO
1 m FOC-M12-M12-GB02/2
FOC-M12-M12-GB02/1
FOC-M12-M12-GB02/5
1408874
1408875
1416703
1
2 m 1
5 m 1
Assembled FO cable, round cable, 50/125 μm GOF-MM fibers, for
installation inside buildings
M12 FO to LC duplex
1 m FOC-M12-LC:A-GB02/1
FOC-M12-LC:A-GB02/2
FOC-M12-LC:A-GB02/5
1408869
1408868
1416664
1
2 m 1
5 m 1
Limit values
Operating temperature -40 °C ... +85°C
Storage temperature -40 °C ... +100°C
Soldering temperature 2 mm from housing, t 5 s 260°C
Supply voltage 4 V
Data input voltage -0.5 V ... 4 V
Differential input voltage 2 V (peak-to-peak with FOC-M12-MNNA-TC-1300)
PECL output current -50 mA ... +50 mA
Electrostatic air discharge in acc. with EN 61000-6-2 8 kV
Electrostatic contact discharge in acc. with EN 61000-6-2 4 kV
Immunity of electrical field in accordance with EN 61000-6-2 10 V/m
FOC-M12-MNNA-TC...
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4 Technical data
General data
Storage temperature -40 °C ... 100 °C
Ambient temperature -40 °C ... 85 °C
Supply voltage 3 V ... 3.6 V, typical 3.3 V
Differential input voltage 1 V ... 1.8 V, typical 1.4 V
Current carrying capacity 50
Data rate 125 Mbps
Humidity 5 % ... 95 %
Transmitter FOC-M12-MNNA-TC-650 FOC-M12-MNNA-TC-1300
Maximum wavelength max 625 nm ... 675 nm, typical 650 nm 1280 nm ... 1340 nm, typical 1310 nm
Average optical output voltage -8 dBm ... -5 dBm
980/1000 m, 50 % DC, NA 0.5
-21 dBm ... -18 dBm
50/125 m, 50 % DC, NA 0.2
Current consumption 70 mA ... 80 mA 90 mA ... 120 mA
Rise time 2.5 ns 1.8 ns
Fall time 2.5 ns 1.8 ns
Data input current for logical “0” at least -50 A at least -50 A
Data input current for logical “1” maximum +50 A maximum +50 A
Data input voltage for logical “0” -1.81 V ... -1.475 V -1.81 V ... -1.475 V
Data input voltage for logical “1” -1.165 V ... -0.88 V -1.165 V ... -0.88 V
Receiver FOC-M12-MNNA-TC-650 FOC-M12-MNNA-TC-1300
Maximum receiver sensitivity -25 dBm -31 dBm
Maximum input power At least 2 dBm at least -3 dBm
Current consumption 70 mA ... 80 mA 70 mA ... 80 mA (no load)
Threshold value for signal detection -20 dBm -29.2 dBm
Signal detection hysteresis 1.5 dB ... 6 dB, typical 3 dB 1.5 dB ... 5 dB, typical 2.5 dB
Maximum response time, signal detection 10 s 10 s
Maximum fall time, signal detection 10 s 10 s
Signal detection output voltage log. 0 -1.83 V ... -1.55 V -1.83 V ... -1.55 V
Signal detection output voltage log. 1 -1.08 V ... -0.88 V -1.08 V ... -0.88 V
Data output voltage log. 0 -1.83 V ... -1.55 V -1.83 V ... -1.55 V
Data output voltage log. 1 -1.08 V ... -0.88 V -1.08 V ... -0.88 V
Data output rise time 20 % ... 80 % 2.2 ns 2.2 ns
Data output fall time 80 % ... 20 % 2.2 ns 2.2 ns
Bit error rate <1E-10
= 650 nm, at 125 Mbps,
Pin = -10 dBm, PRBS23
<1E-10
= 1300 nm, at 125 Mbps,
Pin = -10 dBm, PRBS23
FOC-M12-MNNA-TC...
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5 Dimensions
5.1 Dimensional drawing
Figure 1 Dimensions (in mm)
5.2 Drilling diagram
Figure 2 Drilling diagram (in mm)
6 Pin assignment
Figure 3 View of the component side
7 Notes
Mounting
The FO transceiver, connectors, and couplings should only
be mounted finger tight.
Achievable transmission paths
FOC-M12-MNNA-TC-1300 is designed for 50/125 m fi-
bers. The maximum achievable transmission paths are
2500m.
FOC-M12-MNNA-TC-650 is designed for 980/1000 m fi-
bers. The maximum achievable transmission paths are
75m.
To optimize transmission performance and to achieve the
maximum transmission path, correctly pre-assembled fiber
optic connectors are required.
13,5
M16x1,5
73
22 Ø25
12xØ0,48 3x□1
5
M12x1
23
19
120°
Ø1,6
5x1,778
5,65
11,3
Ø0,8
0,889
Ø23
Pin Name Function
1 RD+ Receive Data Out+
2 RD- Receive Data Out-
3 SD Signal Detect
4 RxVcc +3.3 V Receiver
5 RxGnd GND Receiver
6 SDA I2C Serial Data IO
7 Sclk I2C Serial Clock Input
8 TD- Transmit Data In-
9 TD+ Transmit Data In+
10 TxDis Disable Transmitter Input
11 TxGnd GND Transmitter
12 TxVcc +3.3 V Transmitter
1
2
3
4
5
67
8
9
10
11
12
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8 External wiring
Figure 4 External wiring
Ferrites (La):
Typical impedance: 120 at 100 MHz
Maximum DC resistance: 0.15 at 200 mA
NOTE: To optimize the function of the transceiv-
er, a decoupling of the supply voltage and a cable
termination is required as shown in Figure 4.
NOTE: The decoupling capacitors and termina-
tion resistors should be as close as possible to
the inputs of the transceiver or the LVPECL re-
ceiver.
11 TX GND
9DIN +
8DIN -
12 TX Vcc
5RX GND
2DOUT -
1DOUT +
4RX Vcc
Transceiver
100nF1μF
82Ω82Ω
130Ω130Ω
Vcc = 3,3V
LVPECL
Receiver
LVPECL
Driver
Vcc = 3,3V
82Ω82Ω
130Ω130Ω
100nF
1μF
La
La
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9 Block diagram
Figure 5 Block diagram
10 I2C interface
10.1 I2C addresses
PRE-AMP
POST-AMP
Quantizer
Management
LED
Driver
1
2
3
5
4
6
7
10
12
11
9
8
RD+
RD-
SD
RxGnd
RxVcc
SDA
SCLK
TxDisable
TxVcc
TxGnd
TD+
TD-
Serial address = A0 (hex)
Address (hex) Field size (byte) Name Description
00-5F 96 Serial ID GP NVRAM; R/W under valid OEM password
60-7F 32 Vendor Specific Vendor-specific EEPROM
80-FF 128 Reserved Reserved for future use
Serial address = A2 (hex)
Address (hex) Field size (byte) Name Description
00-27 40 Alarm and Warning
Threshold
High/low limits for warnings and alarms
28-37 16 Reserved Reserved – do not write; reads undefined
38-5B 36 Calibration Constants Numerical constants for external calibration
5C-5E 3 Reserved Reserved – do not write; reads undefined
5F 1 Checksum GP NVRAM; R/W under valid OEM password
60-69 10 Analog Data Real-time analog parameter data
6A-6D 4 Reserved Reserved – do not write; reads undefined
6E 1 Control/Status Bits Control and status bits
6F 1 Reserved Reserved – do not write; reads undefined
70-71 2 Alarm Flags Alarm status bits; read only
72-73 2 Reserved Reserved – do not write; reads undefined
74-75 2 Warning Flags Warning status bits; read only
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76-77 2 Reserved Reserved – do not write; reads undefined
78-7B 4 OEMPW OEM password entry field
7C-7F 4 Reserved Reserved – do not write; reads undefined
80-F7 120 User Scratchpad User writeable EEPROM
F8-F9 2 Reserved Reserved – do not write; reads undefined
FA 1 USRPWSET User password setting; read/write using any password;
returns zero otherwise
FB 1 USRPW Entry field for user password
FC-FD 2 POH Power ON hour meter result; read only;
FE 1 Data Ready Flags Data ready bits for each measured parameter; read only
FF 1 User Control End-user control and status bits
Serial address = A4 (hex)
Address (hex) Field size (byte) Name Description
00-3F 64 APCLUTn APC look-up table
40-7F 64 MODLUTn VMOD look-up table
80-BF 64 IFLTUT Bias current fault threshold look-up table
C0-FF 64 EOLLUTn Bias current high alarm look-up table
Serial address = A6 (hex)
Address (hex) Field size (byte) Name Description
00 1 OEMCFG0 Control and status bits
01 1 OEMCFG1 Control and status bits
02 1 OEMCFG2 Control and status bits
03 1 APCSET0 APC setpoint 0
04 1 APCSET1 APC setpoint 1
05 1 APCSET2 APC setpoint 2
06 1 MODSET DAC setpoint
07 1 IBFLT Bias current fault comparator threshold
08 1 TXPFLT TX power fault threshold
09 1 LOSFLT RX loss fault comparator threshold
0A 1 FLTTMR Fault comparator masking interval timer setting
0B 1 FLTMSK Fault source mask bits
0C-0F 2 OEMPWSET OEM area access password
10 1 OEMCAL0 OEM calibration register 0
11 1 OEMCAL1 OEM calibration register 1
12 1 LUTINDX Look-up table index read-back
13 1 Reserved Reserved for future use
14 1 APCDAC Reads back current APC DAC setting
15 1 MODDAC Reads back current MOD setting
16 1 OEMREAD Reads back OEM calibration data
17 1 LOSFLTn LOS deassert threshold
18 1 RXPOT RX-pot tab selection
19 1 OEMCFG4 Starts selection bits
Serial address = A2 (hex) [...]
Address (hex) Field size (byte) Name Description
FOC-M12-MNNA-TC...
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PHOENIX CONTACT GmbH & Co. KG • 32823 Blomberg • Germany
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10.2 I2C interface
10.3 I2C timing
Figure 6 I²C timing
1A-1F 6 Reserved Reserved for future use
20-27 8 POHDATA Power ON hour meter scratchpad
28-47 32 RXLUT RX Power calibration look-up table
48-49 2 Reserved Reserved for future use
4A-57 18 CAL Internal calibration slope and offset data
59-7D 37 Reserved Reserved for future use
7E-FD 128 SCRATCH Scratchpad area
FE 1 MFG_ID 42
FF 1 DEV_ID Device and die revision
Serial address = A6 (hex) [...]
Address (hex) Field size (byte) Name Description
I²C interface
Parameter Symbol Value Unit
Low output voltage VOL 0.8 V (max.)
High input voltage VIH 2.1 V (min.)
Clock period t1 2.5 s (min.)
Data IN setup time t2 100 ns (min.)
Data OUT stable t3 300 ns (min.)
Data Iow to Clk low t4 100 ns (min.)
Data high to Clk high t5 100 ns (min.)
Data(Output)
Data(Input)
CLK
t4
t2
t1t3
t5