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Home  Product Technical Articles   88E1512-A0-NNP2I000 Ethernet Transceiver: Datasheet, Pinout, Circuit [FAQ]

88E1512-A0-NNP2I000 Ethernet Transceiver: Datasheet, Pinout, Circuit [FAQ]

Author: Daisy
Date: 2 Aug 2022
 86
88E1512-A0-NNP2I000 Pinout

Product Overview

The Alaska® 88E1510/88E1518/88E1512/88E1514 device is a physical layer device containing a single 10/100/1000 Gigabit Ethernet transceiver. The transceiver implements the Ethernet physical layer portion of the 1000BASE-T, 100BASE-TX, and 10BASE-T standards. It is manufactured using standard digital CMOS process and contains all the active circuitry required to implement the physical layer functions to transmit and receive data on standard CAT 5 unshielded twisted pair.

 

This blog will introduce 88E1512-A0-NNP2I000 systematically from its features, pinout to its specifications, applications, also including 88E1512-A0-NNP2I000 datasheet and so much more.

 

Catalog

Product Overview

88E1512-A0-NNP2I000 Features

88E1512-A0-NNP2I000 Pinout

88E1512-A0-NNP2I000 CAD Models

88E1512-A0-NNP2I000 Circuit Diagram

88E1512-A0-NNP2I000 Block Diagram

88E1512-A0-NNP2I000 Package

88E1512-A0-NNP2I000 Specification

88E1512-A0-NNP2I000 Manufacturer

88E1512-A0-NNP2I000 Datasheet

Using Warnings

88E1512-A0-NNP2I000 FAQ

 

88E1512-A0-NNP2I000 Features

10/100/1000BASE-T IEEE 802.3 compliant

Multiple Operating Modes

  • RGMII to Copper
  • SGMII to Copper (88E1512/88E1514 deviceonly)
  • RGMII to Fiber/SGMII (88E1512 device only)
  • RGMII to Copper/Fiber/SGMII with Auto-MediaDetect (88E1512 device only)
  • Copper to Fiber (1000BASE-X)(88E1512/88E1514)

Four RGMII timing modes including integrated delays - This eliminates the need for adding trace delays on the PCB

Supports 1000BASE-X and 100BASE-FX on the Fiber interface along with SGMII (88E1512 device only)

Supports LVCMOS I/O Standards on the RGMII

Supports Energy Efficient Ethernet (EEE) - IEEE 802.3az-2010 compliant

  • EEE Buffering
  • Incorporates EEE buffering for seamless supportof legacy MACs

Ultra Low Power

Integrated MDI termination resistors that eliminate

passive components

Integrated Switching Voltage Regulators

Supports Green Ethernet

  • Active Power Save Mode
  • Energy Detect and Energy Detect+ low powermodes

IEEE1588 version 2 Time Stamping

Synchronous Ethernet (SyncE) Clock Recovery

Three loopback modes for diagnostics

“Downshift” mode for two-pair cable installations

Fully integrated digital adaptive equalizers, echo cancellers, and crosstalk cancellers

Advanced digital baseline wander correction

Automatic MDI/MDIX crossover at all speeds of operation

Automatic polarity correction

IEEE 802.3 compliant Auto-Negotiation

Software programmable LED modes including LED testing

MDC/XMDIO Management Interface

CRC checker, packet counter

Packet generation

Wake on LAN (WOL) event detection

Advanced Virtual Cable Tester® (VCT™)

Auto-Calibration for MAC Interface outputs

Temperature Sensor

Supports single 3.3V supply when using internal switching regulator

I/O pads can be supplied with 1.8V, 2.5V, or 3.3V

Commercial grade, Industrial grade (88E1510 and 88E1512 only)

48-Pin QFN 7 mm x 7 mm Green package with EPAD (88E1510 and 88E1518) and 56-Pin QFN 8 mm x 8 mm Green package with EPAD (88E1512/88E1514 device)

 

88E1512-A0-NNP2I000 Pinout

The following figure is the diagram of 88E1512-A0-NNP2I000 pinout.

 

88E1512-A0-NNP2I000 Pinout

88E1512-A0-NNP2I000 Pinout

 

88E1512-A0-NNP2I000 CAD Models

The following are 88E1512-A0-NNP2I000 Symbol, Footprint, and 3D Model.

 

88E1512-A0-NNP2I000 Symbol

88E1512-A0-NNP2I000 Symbol

 

88E1512-A0-NNP2I000 Footprint

88E1512-A0-NNP2I000 Footprint

 

88E1512-A0-NNP2I000 3D Model

88E1512-A0-NNP2I000 3D Model

 

88E1512-A0-NNP2I000 Circuit Diagram

The following is the circuit diagram of 88E1512-A0-NNP2I000.

 

88E1512-A0-NNP2I000 Circuit Diagram

88E1512-A0-NNP2I000 Circuit Diagram

 

88E1512-A0-NNP2I000 Block Diagram

The following figure shows the block diagram of 88E1512-A0-NNP2I000

 

88E1512-A0-NNP2I000 Block Diagram

88E1512-A0-NNP2I000 Block Diagram

 

88E1512-A0-NNP2I000 Package

The following diagram shows the 88E1512-A0-NNP2I000 package.

 

88E1512-A0-NNP2I000 Package

88E1512-A0-NNP2I000 Package

 

88E1512-A0-NNP2I000 Specification

Product Attribute Attribute Value
Manufacturer: Marvell
Product Category: Ethernet ICs
Mounting Style: SMD/SMT
Package / Case: QFN-56
Product: Ethernet Transceivers
Standard: 10/1GBASE-T, 100BASE-TX
Number of Transceivers: 1 Transceiver
Data Rate: 10 Mb/s, 100 Mb/s, 1 Gb/s
Interface Type: RGMII, SGMII
Operating Supply Voltage: 1 V
Minimum Operating Temperature: - 40 C
Maximum Operating Temperature: + 85 C
Series: 88E151x
Packaging: Tray
Brand: Marvell
Moisture Sensitive: Yes
Product Type: Ethernet ICs
Factory Pack Quantity: 260
Subcategory: Communication & Networking ICs
Supply Current - Max: 72 mA
Supply Voltage - Max: 1.05 V
Supply Voltage - Min: 0.95 V

 

88E1512-A0-NNP2I000 Manufacturer

Marvell first revolutionized the digital storage industry by moving information at speeds never thought possible. Today, that same breakthrough innovation remains at the heart of the company’s storage, networking, and connectivity solutions. With leading intellectual property and deep system-level knowledge, Marvell’s semiconductor solutions continue to transform the enterprise, cloud, automotive, industrial, and consumer markets.

 

88E1512-A0-NNP2I000 Datasheet

You can download 88E1512-A0-NNP2I000 datasheet from the link given below:

88E1512-A0-NNP2I000 Datasheet

 

Using Warnings

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

88E1512-A0-NNP2I000 FAQ

What is an Ethernet transceiver?

Ethernet transceivers are used to link electronic devices in Ethernet circuitry. They are also known as media access units. Wireless transceivers combine technology in Ethernet and RF transponders to improve Wi-Fi transmission speed.

 

What are transceivers used for?

The transceiver is an important part of a fiber optics network and is used to convert electrical signals to optical (light) signals and optical signals to electrical signals. It can be plugged into or embedded into another device within a data network that can send and receive a signal.

 

What is the difference between a transponder and transceiver?

Generally speaking, a transceiver is a device that can both transmit and receive signals, whereas the transponder is a component with a processor programmed to monitor incoming signals and with a preprogrammed reply in the fiber optic communication network.

Ordering & Quality

Photo Mfr. Part # Company Description Package PDF Qty Pricing
(USD)
88E1512-A0-NNP2I000 88E1512-A0-NNP2I000 Company:Marvell Semiconductor, Inc. Remark:SING+D22LE-PORT EEE GE PHY WITH Package:QFN56
DataSheet
In Stock:6799
Buy
Price:
1+: $20.83000
10+: $191.46000
25+: $458.80000
100+: $1537.60000
250+: $3596.00000
500+: $6696.00000
1000+: $12697.60000
2500+: $30752.00000
5000+: $59520.00000
Buy

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