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Finisar AN-2030 User Manual

Page 19

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AN-2030: Digital Diagnostic Monitoring Interface for Optical Transceivers

F i n i s a r

9/26/02 Revision D

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External Calibration

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Measurements are raw A/D values and must be converted to real units using calibration

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constants stored in EEPROM locations 56 – 95 at 2 wire serial bus address A2h (see

3

Table 3.15). Calibration is valid over specified device operating temperature and

4

voltage. Alarm and warning threshold values should be interpreted in the same manner

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as real time 16 bit data.

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1) Internally measured transceiver temperature. Module temperature, T, is given by the

7

following equation: T(C) = T

slope

* T

AD

(16 bit signed twos complement value) + T

offset

.

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The result is in units of 1/256C, yielding a total range of –128C to +128C. See Table

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3.15 for locations of T

SLOPE

and T

OFFSET

. Temperature measurement is valid from –

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40°C to +125°C with an accuracy of ± 3°C. The temperature sensor is located in the

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center of the module and is typically 5 to 10 degrees hotter than the module case. See

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Tables 3.12 and 3.13 above for examples of temperature format.

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2) Internally measured transceiver supply voltage. Module internal supply voltage, V, is

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given in microvolts by the following equation: V(µV) = V

SLOPE

* V

AD

(16 bit unsigned

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integer)

+ V

OFFSET

. The result is in units of 100µV, yielding a total range of 0 – 6.55V.

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See Table 3.15 for locations of V

SLOPE

and V

OFFSET

. Accuracy is ±100mV.

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3) Measured transmitter laser bias current. Module laser bias current, I, is given by the

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following equation: I(µA) = I

SLOPE

* I

AD

(16 bit unsigned integer) + I

OFFSET

. This result is

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in units of 2 µA, yielding a total range of 0 to 131 mA. See Table 3.15 for locations of

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I

SLOPE

and I

OFFSET

. Accuracy is ± 10%. Early versions of the digital diagnostic standard

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(SFF-8472) used a scale factor of 1µA/AD Count for interpreting laser bias current

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readings. SFF-8472 later changed the scale factor to the current value of 2µA/AD

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Count. All Finisar modules using a scale factor of 2µA/AD Count have an ASCII “A”

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written in byte 56 of the ‘vendor rev’ field (see table 3.1). Legacy Finisar modules using

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a scale factor of 1µA/AD Count contain either zero or ASCII space (20h) or one of two

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place holders: “X1—“, “1A—“, in location 56.

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4) Measured coupled TX output power. Module transmitter coupled output power,

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TX_PWR, is given in µW by the following equation: TX_PWR (µW) = TX_PWR

SLOPE

*

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TX_PWR

AD

(16 bit unsigned integer)

+ TX_PWR

OFFSET

. This result is in units of 0.1µW

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yielding a total range of 0 – 6.5mW. See Table 3.15 for locations of TX_PWR

SLOPE

and

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TX_PWR

OFFSET

. Data is factory calibrated to absolute units using the most

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representative fiber output type. Accuracy is ±3dB. Data is not valid when the

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transmitter is disabled.

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