CYP15G0101DXB-BBXC Cypress Semiconductor Corp, CYP15G0101DXB-BBXC Datasheet - Page 24

IC TXRX HOTLINK 100-LBGA

CYP15G0101DXB-BBXC

Manufacturer Part Number
CYP15G0101DXB-BBXC
Description
IC TXRX HOTLINK 100-LBGA
Manufacturer
Cypress Semiconductor Corp
Series
HOTlink II™r
Type
Transceiverr

Specifications of CYP15G0101DXB-BBXC

Package / Case
100-LBGA
Protocol
Fibre Channel
Voltage - Supply
3.135 V ~ 3.465 V
Mounting Type
Surface Mount
Product
PHY
Data Rate
1500 MBd
Supply Voltage (max)
3.465 V
Supply Voltage (min)
3.135 V
Supply Current
0.5 A
Maximum Operating Temperature
+ 70 C
Minimum Operating Temperature
0 C
Mounting Style
SMD/SMT
Number Of Channels
1
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
CYP15G0101DX-EVAL - EVAL BRD FOR HOTLINK II
Number Of Drivers/receivers
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
428-2920
CYP15G0101DXB-BBXC

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Document #: 38-02031 Rev. *J
DC Electrical Characteristics
AC Test Loads and Waveforms
CYP(V)(W)15G0101DXB AC Characteristics
Transmitter LVTTL Switching Characteristics
f
t
t
t
t
Notes:
I
I
21. The common mode range defines the allowable range of INPUT+ and INPUT− when INPUT+ = INPUT−. This marks the zero-crossing between the true and
22. Not applicable for AC-coupled interfaces. For AC-coupled interfaces, V
23. Maximum I
24. Typical I
25. Cypress uses constant current (ATE) load configurations and forcing functions. This figure is for reference only. 5pF differential load reflects tester capacitance,
26. The LVTTL switching threshold is 1.4V. All timing references are made relative to the point where the signal edges crosses this threshold voltage.
27. This parameter is 154 MHz for CYW15G0101DXB.
28. This parameter is 6.49 ns for CYW15G0101DXB.
29. Tested initially and after any design or process changes that may affect these parameters, but not 100% tested.
30. The ratio of rise time to falling time must not vary by greater than 2:1.
31. For a given operating frequency, neither rise or fall specification can be greater than 20% of the clock-cycle period or the data sheet maximum time.
V
V
V
V
V
I
I
V
TS
TXCLK
TXCLKH
TXCLKL
TXCLKR
CC
CC
IHE
ILE
Power Supply
Differential Serial Line Receiver Inputs: IN1±, IN2±
Parameter
OLC
ODIF
DIFFS
IHE
ILE
COM
Parameter
complement inputs as the signal switches between a logic-1 and a logic-0.
Driver sending a continuous alternating 01 pattern to the Serial Input Receiver.
and is recommended at low data rates only.
GND
[21, 22]
V
[29]
[19]
[29]
[29, 30, 31]
th
≤ 1 ns
= 1.4V
CC
CC
is measured under similar conditions except with V
is measured with V
R1 = 590Ω
R2 = 435Ω
C
(Includes fixture and
probe capacitance)
Power Supply Current
REFCLK= Max.
Power Supply Current
REFCLK= 125 MHz
Output LOW Voltage
(V
Output Differential Voltage
|(OUT+) − (OUT−)|
Input Differential Voltage |(IN+) − (IN−)|
Highest Input HIGH Voltage
Lowest Input LOW Voltage
Input HIGH Current
Input LOW Current
Common Mode Input Range
L
TXCLK Clock Frequency
TXCLK Period
TXCLK HIGH Time
TXCLK LOW Time
TXCLK Rise Time
(c) LVTTL Input Test Waveform
(a) LVTTL Output Test Load
CC
≤ 7 pF
referenced)
2.0V
0.8V
CC
Description
3.0V
=
C
MAX, with all Serial Drivers enabled, parallel outputs unloaded, sending a alternating 01 pattern to the Serial Input Receiver.
L
Over the Operating Range (continued)
2.0V
0.8V
3.3V
[25]
R1
R2
[26]
Description
V
th
≤ 1 ns
CC
= 1.4V
=
Over the Operating Range
3.3V, T
Commercial
Industrial
Commercial
Industrial
100Ω differential load
150Ω differential load
100Ω differential load
150Ω differential load
V
V
DIFFS
IN
IN
= V
= V
A
requirement still needs to be satisfied.
=
IHE
ILE
25°C, parallel outputs unloaded, RXCKSEL
V
V
Test Conditions
Min.
Max.
IHE
ILE
≤ 270 ps
20%
(d) CML/LVPECL Input Test Waveform
(b) CML Output Test Load
R
L
= 100Ω
80%
V
V
CYW15G0101DXB
IHE
V
ILE
V
CYV15G0101DXB
CYP15G0101DXB
V
V
Typ.
CC
CC
CC
CC
–700
390
390
Min.
6.66
450
560
100
R
− 1.95 V
Min.
19.5
L
– 2.0
2.2
2.2
0.2
=
− 1.4
− 1.4
80%
[24]
MID, and with one Serial Line
[28]
[25]
V
V
Max.
CC
CC
CC
150
Max.
1000
1200
1350
500
510
500
510
51.28
900
V
20%
Max.
Page 24 of 39
≤ 270 ps
1.7
− 0.05
CC
− 0.7
− 0.7
[23]
[27]
Unit
Unit
MHz
Unit
mA
mA
mA
mA
mV
mV
mV
µA
µA
ns
ns
ns
ns
V
V
V
V
V
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