TPS23757
SLVS948D – JULY 2009 – REVISED NOVEMBER 2013
www.ti.com
The PD input, typically an RJ-45 eight-lead connector, is referred to as the power interface (PI). PD input
requirements differ from PSE output requirements to account for voltage drops in the channel and operating
margin. The standard allots the maximum loss to the cable regardless of the actual installation to simplify
implementation. IEEE 802.3-2008 (and IEEE 802.3at type 1) was designed to run over infrastructure including
ISO/IEC 11801 class C (CAT3 per TIA/EIA-568) that may have had AWG 26 conductors and 20 ? power loops.
IEEE 802.3at (type 2) cabling power loss allotments and voltage drops have been adjusted for 12.5 ? power
loops per ISO/IEC11801 class D (CAT5 or higher per TIA/EIA-568, typically AWG #24 conductors). Table 2
shows key operational limits broken out for the two revisions of the standard.
Table 2. Comparison of Operational Limits
POWER LOOP
PSE
PSE STATIC
PD INPUT
STATIC PD INPUT VOLTAGE
STANDARD
'2008 &
RESISTANCE
(max)
20 ?
OUTPUT POWER
(min)
15.4 W
OUTPUT VOLTAGE
(min)
44 V
POWER
(max)
13 W
POWER ≤
13 W
37 V–57 V
POWER >
13 W
N/A
802.3at type 1
802.3at type 2
12.5 ?
30 W
50 V
25.5 W
37 V–57 V
42.5 V–57 V
The PSE can apply voltage either between the RX and TX pairs (pins 1 - 2 and 3 - 6 for 10baseT or 100baseT),
or between the two spare pairs (4 - 5 and 7 - 8) in either polarity. Power application to the same pin combinations
in 1000baseT systems is recognized in IEEE 802.3at. 1000baseT systems can handle data on all pairs,
eliminating the spare pair terminology. The PSE may only apply voltage to one set of pairs at a time. The PD
uses input diode bridges to accept power from any of the possible PSE configurations. The voltage drops
associated with the input bridges create a difference between the standard limits at the PI and the TPS23757
specifications.
A compliant type 1 PD per IEEE 802.3at has the same requirements as a PD per IEEE 802.3-2008.
Threshold Voltages
The TPS23757 has a number of internal comparators with hysteresis for stable switching between the various
states. Figure 19 relates the parameters in the Electrical Characteristics section to the PoE states. The mode
labeled Idle between classification and operation implies that the DEN, CLS, and RTN pins are all high
impedance.
PD Powered
Idle
Classification
Detection
V DD -V SS
V CL_H
V CL_ON
V CU_H
V CU_OFF
V UVLO_H
V UVLO_R
Note: Variable names refer to Electrical Characteristic
Table parameters
Figure 19. Threshold Voltages
PoE Startup Sequence
The waveforms of Figure 20 demonstrate detection, classification, and startup from a PSE with type 1 hardware
classification. The key waveforms shown are V VDD -V VSS , V RTN -V VSS , and I PI . This figure shows two detection
cycles (a minimum of two levels are required), a class cycle (a type 2 PSE need only do 1 hardware class cycle if
it reads class 0 through 3), and startup. V RTN to V SS falls as the TPS23757 charges C IN with inrush-limited current
following application of full voltage. Subsequently, the converter starts up, drawing current as seen in the I PI
waveform.
16
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