Electrical dc characteristics – Finisar Single Mode XENPAK Transponder FTLX1461E2 User Manual

Page 5

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FTLX1461E2 Product Specification – October 2008

© Finisar Corporation – October 2008

Rev B

Page 5

III. Electrical Characteristics

Recommended Operating Conditions

Values

Parameter Symbol

min. typ. max. Unit

Operating Case Temperature

1)

T

C

0 70

°C

Transponder Total Power
Consumption

P

3.5

W

Supply Voltage +5.0 V

V

CC5

4.75 5.0 5.25 V

Supply Current +5.0 V

I

CC5

300

mA

Supply Voltage +3.3 V

V

CC3

3.14 3.3 3.47 V

Supply Current +3.3 V

I

CC3

300

mA

Supply Voltage APS

V

CC aps

1.152 1.2 1.248 V

Supply Current APS

I

CC aps

1000

mA

1)

Worst case thermal location, see Figure 2.

See also Environmental Performance.




Electrical DC Characteristics

(V

CC5

= 4.75 V to 5.25 V, V

CC3

= 3.14 V to 3.47 V, V

CC aps

= 1.152 V to 1.248 V, T

C

= 0°C to 70°C)

Values

Parameter Symbol

min. typ. max. Unit

1.2 V CMOS (1.8 V CMOS Compatible

1)

) I/O DC Characteristics

(PRTAD; LASI; RESET; TX_ONOFF)
External Pull-up Resistor for Open Drain

R

pullup

10 22 kΩ

Output High Voltage

2)

V

oh

1 V

Output Low Voltage

2)

V

ol

0.15

V

Input High Voltage

V

ih

0.84 1.5 V

Input Low Voltage

V

il

0.36

V

Input Pull-down Current

3)

I

pd

20 120 µA

XAUI I/O DC Characteristics (TXLANE[0..3]; RXLANE[0..3])
Differential Input Amplitude (pk-pk)

4)

V

in_xaui

200 2500 mV

Differential Output Amplitude (pk-pk)

4)

V

out_xaui

800

1600 mV

MDIO I/O DC Characteristics (MDIO; MDC)

Output Low Voltage

5)

V

OL

–0.3 0.2 V

Output Low Current

I

OL

4 mA

Input High Voltage

V

IH

0.84 1.5 V

Input Low Voltage

V

IL

–0.3 0.36 V

Pull-up Supply Voltage

V

PU

1.152 1.2 1.248 V

Input Capacitance

C

IN

10 pF

Load Capacitance

C

LOAD

470 pF

External Pull-up Resistance

R

LOAD

200

1)

For 1.8 V CMOS V

oh

= 1.65 V min., V

ol

= 0.15 V max., V

ih

= 1.17 V min., V

il

= 0.63 V max.

2)

R

pull-up

= 10 kΩ to 1.8 V.

3)

V

in

= 1.2 V.

4)

AC coupled.

5)

I

OL

= 100 µA.

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