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LAN8804/ZMXC1 Datasheet(PDF) 58 Page - Microchip Technology

No. de pieza LAN8804/ZMXC1
Descripción Electrónicos  4-Port Gigabit Ethernet Transceiver with QSGMII Support
PDF  91 Pages
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Fabricante Electrónico  MICROCHIP [Microchip Technology]
Página de inicio  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

LAN8804/ZMXC1 Datasheet(HTML) 58 Page - Microchip Technology

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LAN8804
DS00003591G-page 58
© 2024 Microchip Technology Inc. and its subsidiaries
6.0
OPERATIONAL CHARACTERISTICS
6.1
Absolute Maximum Ratings*
Supply Voltage (
VDDAL_x, VDDTXL_SERDES, VDDCORE) (Note 6-1) ...............................................-0.5V to +1.27V
Supply Voltage (
VDDAH, VDDAH_x, VDD33REF, VDDIO, VDDIO_1) (Note 6-1).................................-0.5V to +3.63V
Input Voltage (all inputs) ..........................................................................................................................-0.5V to +3.63V
Output Voltage (all outputs) .....................................................................................................................-0.5V to +3.63V
Storage Temperature (TS).......................................................................................................................-55°C to +150°C
Lead Temperature (soldering, 10s) .......................................................................................................................+260°C
Maximum Junction Temperature (TJ) ....................................................................................................................+125°C
HBM ESD Performance ..........................................................................................................................................+/-4kV
Note 6-1
When powering this device from laboratory or system power supplies, it is important that the absolute
maximum ratings not be exceeded or device failure can result. Some power supplies exhibit voltage
spikes on their outputs when AC power is switched on or off. In addition, voltage transients on the
AC power line may appear on the DC output. If this possibility exists, it is suggested that a clamp
circuit be used.
*Stresses exceeding those listed in this section could cause permanent damage to the device. This is a stress rating
only. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. Functional
operation of the device at any condition exceeding those indicated in Section 6.2, "Operating Conditions**", Section 6.5,
"DC Specifications", or any other applicable section of this specification is not implied.
6.2
Operating Conditions**
Supply Voltage (
VDDAL_x, VDDTXL_SERDES, VDDCORE) ...........................................(-5%/+5%) +1.15V to +1.27V
Supply Voltage (
VDDAH, VDDAH_x, VDD33REF @ 3.3V) ...........................................(-5%/+5%) +3.135V to +3.465V
Supply Voltage (
VDDAH, VDDAH_x, VDD33REF @ 2.5V) ...........................................(-5%/+5%) +2.375V to +2.625V
Supply Voltage (
VDDIO, VDDIO_1 @ 3.3V) ..................................................................(-5%/+5%) +3.135V to +3.465V
Supply Voltage (
VDDIO, VDDIO_1 @ 2.5V) ..................................................................(-5%/+5%) +2.375V to +2.625V
Supply Voltage (
VDDIO, VDDIO_1 @ 1.8V) ......................................................................(-5%/+5%) +1.71V to +1.89V
Input Voltage (all inputs) ..........................................................................................................................-0.3V to +3.63V
Output Voltage (all outputs) .....................................................................................................................-0.3V to +3.63V
Ambient Operating Temperature in Still Air (TA).................................................................................................. Note 6-2
Note 6-2
0C to +85C for commercial version, -40C to +85C for industrial version.
**Proper operation of the device is guaranteed only within the ranges specified in this section.



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