IDT 89HPES32NT24AG2 Datasheet
22 of 38 December 17, 2013
Recommended Operating Supply Voltages — Industrial Temperature
Power-Up/Power-Down Sequence
During power supply ramp-up, V
DD
CORE must remain at least 1.0V below V
DD
I/O at all times. There are no other power-up sequence require-
ments for the various operating supply voltages. The power-down sequence can occur in any order.
Power Consumption
Typical power is measured under the following conditions: 25°C Ambient, 35% total link usage on all ports, typical voltages defined in Table 16
(and also listed below).
Maximum power is measured under the following conditions: 70°C Ambient, 85% total link usage on all ports, maximum voltages defined in
Table 16 (and also listed below).
Note 1: The above power consumption assumes that all ports are functioning at Gen2 (5.0 GT/S) speeds. Power consumption can be
reduced by turning off unused ports through software or through boot EEPROM. Power savings will occur in V
DD
PEA, V
DD
PEHA, and
V
DD
PETA. Power savings can be estimated as directly proportional to the number of unused ports, since the power consumption of a turned-
off port is close to zero. For example, if 3 ports out of 16 are turned off, then the power savings for each of the above three power rails can be
calculated quite simply as 3/16 multiplied by the power consumption indicated in the above table.
Note 2: Using a port in Gen1 mode (2.5GT/S) results in approximately 18% power savings for each power rail: V
DD
PEA, V
DD
PEHA, and
V
DD
PETA.
Symbol Parameter Minimum Typical Maximum Unit
V
DD
CORE Internal logic supply 0.9 1.0 1.1 V
V
DD
I/O I/O supply except for SerDes 3.125 3.3 3.465 V
V
DD
PEA
1
1.
V
DD
PEA and V
DD
PETA should have no more than 25mV
peak-peak
AC power supply noise superimposed on the 1.0V nominal DC
value.
PCI Express Analog Power 0.95 1.0 1.05 V
V
DD
PEHA
2
2.
V
DD
PEHA should have no more than 50mV
peak-peak
AC power supply noise superimposed on the 2.5V nominal DC value.
PCI Express Analog High Power 2.25 2.5 2.75 V
V
DD
PETA
1
PCI Express Transmitter Analog Voltage 0.95 1.0 1.1 V
V
SS
Common ground 0 0 0 V
Table 17 PES32NT24AG2 Operating Voltages — Industrial Temperature
Number of Active
Lanes per Port
Core Supply
PCIe Analog
Supply
PCIe Analog
High Supply
PCIe
Transmitter
Supply
I/O Supply Total
Typ
1.0V
Max
1.1V
Typ
1.0V
Max
1.1V
Typ
2.5V
Max
2.75V
Typ
1.0V
Max
1.1V
Typ
3.3V
Max
3.465
Typ
Power
Max
Power
x8/x8/x8/x4/x4
(Full Swing)
mA 2535 3400 1627 1855 233 233 687 740 3 5
Watts 2.54 3.74 1.63 2.04 0.58 0.64 0.69 0.81 0.01 0.02 5.45 7.25
x8/x8/x8/x4/x4
(Half Swing)
mA 2535 3400 1399 1595 233 233 357 385 3 5
Watts 2.54 3.74 1.40 1.76 0.58 0.64 0.36 0.42 0.01 .02 4.89 6.58
Table 18 PES32NT24AG2 Power Consumption
IDT 89HPES32NT24AG2 Datasheet
23 of 38 December 17, 2013
Thermal Considerations
This section describes thermal considerations for the PES32NT24AG2 (23mm
2
FCBGA484 package). The data in Table 19 below contains infor-
mation that is relevant to the thermal performance of the PES32NT24AG2 switch.
Note: It is important for the reliability of this device in any user environment that the junction temperature not exceed the T
J(max)
value
specified in Table 19. Consequently, the effective junction to ambient thermal resistance (
JA
) for the worst case scenario must be
maintained below the value determined by the formula:
JA
= (T
J(max)
- T
A(max)
)/P
Given that the values of T
J(max)
, T
A(max)
, and P are known, the value of desired
JA
becomes a known entity to the system designer. How to
achieve the desired
JA
is left up to the board or system designer, but in general, it can be achieved by adding the effects of
JC
(value
provided in Table 19), thermal resistance of the chosen adhesive (
CS
), that of the heat sink (
SA
), amount of airflow, and properties of the
circuit board (number of layers and size of the board). It is strongly recommended that users perform their own thermal analysis for their own
board and system design scenarios.
Symbol Parameter Value Units Conditions
T
J(max)
Junction Temperature 125
o
CMaximum
T
A(max)
Ambient Temperature 70
o
C Maximum for commercial-rated products
85
o
C Maximum for industrial-rated products
JA(effective)
Effective Thermal Resistance, Junction-to-Ambient
15.2
o
C/W Zero air flow
8.5
o
C/W 1 m/S air flow
7.1
o
C/W 2 m/S air flow
JB
Thermal Resistance, Junction-to-Board 3.1
o
C/W
JC
Thermal Resistance, Junction-to-Case 0.15
o
C/W
P Power Dissipation of the Device 7.25 Watts Maximum
Table 19 Thermal Specifications for PES32NT24AG2, 23x23 mm FCBGA484 Package
IDT 89HPES32NT24AG2 Datasheet
24 of 38 December 17, 2013
DC Electrical Characteristics
Values based on systems running at recommended supply voltages, as shown in Table 16.
Note: See Table 10, Pin Characteristics, for a complete I/O listing.
I/O Type Parameter Description
Gen1 Gen2 Unit
Condi-
tions
Min
1
Typ
1
Max
1
Min
1
Typ
1
Max
1
Serial Link PCIe Transmit
V
TX-DIFFp-p
Differential peak-to-peak output
voltage
800 1200 800 1200 mV
V
TX-DIFFp-p-LOW
Low-Drive Differential Peak to
Peak Output Voltage
400 1200 400 1200 mV
V
TX-DE-RATIO-
3.5dB
De-emphasized differential output
voltage
-3 -4 -3.0 -3.5 -4.0 dB
V
TX-DE-RATIO-
6.0dB
De-emphasized differential output
voltage
NA -5.5 -6.0 -6.5 dB
V
TX-DC-CM
DC Common mode voltage 0 3.6 0 3.6 V
V
TX-CM-ACP
RMS AC peak common mode
output voltage
20 mV
V
TX-CM-DC-active-
idle-delta
Abs delta of DC common mode
voltage between L0 and idle
100 100 mV
V
TX-CM-DC-line-
delta
Abs delta of DC common mode
voltage between D+ and D-
25 25 mV
V
TX-Idle-DiffP
Electrical idle diff peak output 20 20 mV
RL
TX-DIFF
Transmitter Differential Return
loss
10 10 dB 0.05 - 1.25GHz
8 dB 1.25 - 2.5GHz
RL
TX-CM
Transmitter Common Mode
Return loss
66dB
Z
TX-DIFF-DC
DC Differential TX impedance 80 100 120 120
VTX-CM-ACpp Peak-Peak AC Common NA 100 mV
V
TX-DC-CM
Transmit Driver DC Common
Mode Voltage
0 3.6 0 3.6 V
V
TX-RCV-DETECT
The amount of voltage change
allowed during Receiver Detec-
tion
600 600 mV
I
TX-SHORT
Transmitter Short Circuit Current
Limit
090 90mA
Table 20 DC Electrical Characteristics (Part 1 of 3)

89H32NT24AG2ZCHLGI

Mfr. #:
Manufacturer:
IDT
Description:
PCI Interface IC PCIE SWITCH
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union