MAX9482

Features: ` Dissipate Only 655mW While Driving 20.4dBm ADSL Full-Rate DMT-Modulated Signal` Operate with ±5.0V and ±2.5V Power Supplies` Complete ADSL Central-Office Line Interface (MAX9480/MAX9482) Two Preamplifiers plus Class-G Rail-to-Rail Buffers Active Line Termination plus Integrated Hybrid ...

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SeekIC No. : 004412691 Detail

MAX9482: Features: ` Dissipate Only 655mW While Driving 20.4dBm ADSL Full-Rate DMT-Modulated Signal` Operate with ±5.0V and ±2.5V Power Supplies` Complete ADSL Central-Office Line Interface (MAX9480/MAX9482)...

floor Price/Ceiling Price

Part Number:
MAX9482
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/11/27

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Product Details

Description



Features:

` Dissipate Only 655mW While Driving 20.4dBm ADSL Full-Rate DMT-Modulated Signal
` Operate with ±5.0V and ±2.5V Power Supplies
` Complete ADSL Central-Office Line Interface (MAX9480/MAX9482) Two Preamplifiers plus Class-G Rail-to-Rail Buffers Active Line Termination plus Integrated Hybrid (MAX9480)Low-Noise Uncommitted Receive Amplifiers (MAX9482) Fixed-Gain Receive Amplifiers (MAX9480) Low-Output-Impedance Shutdown Mode
` Preamplifiers, Buffers, and Active Line Termination Functions (MAX9481)
` High-Output-Drive Capability 15VP-P Differential Output Voltage Swing at RL = 16 500mA Output-Drive
` Low Distortion: -71dBc Highest Harmonic at 1MHz and 14VP-P
` High Speed: 250V/s Slew Rate, 80MHz -3dB Bandwidth (G = -3)
` Thermal Shutdown
` Exposed Pads Improve Thermal Performance



Application

·Full-Rate ADSL
·HDSL
·Central Office
·DSLAM



Pinout

  Connection Diagram


Specifications

VCC to VEE .........................................................................+12V
VLP to VLM..........................................................................+12V
VCC or VLP to DGND ...............................................-0.3V to +6V
VCC to VLP .............................................................-0.3V to +6V
VEE or VLM to DGND ...............................................-6V to +0.3V
VEE to VLM .............................................................-6V to +0.3V
Current into VLP or VLM ................................................±250mA
IN1+, IN1-, IN2+, IN2-....................(VCC + 0.3V) to (VEE - 0.3V)
SHDN .............................................(VCC + 0.3V) to (VEE - 0.3V)
BOUT1/BOUT2 Output Short-Circuit Duration to
VCC/VEE/VLP/VLM.................................................... Momentary
BOUT1/BOUT2 Output Current.......................................... 20mA
OUT1/OUT2 Output Short-Circuit Duration to
VCC/VEE/VLP/VLM.................................................... Momentary
OUT1/OUT2 Output Current ...................................................1A
OUT1 to OUT2 Short-Circuit Duration .......................Continuous
POUT1/POUT2 Output Short-Circuit Duration to
VCC/VEE/VLP/VLM................................................................10s
POUT1/POUT2 Output Current.........................................100mA
RXP/RXM Output Short-Circuit Duration to
 VCC/VEE/VLP/VLM................................................................10s
RXP/RXM Output Current..................................................100mA
Continuous Power Dissipation (TA = +70°C)
20-Pin TSSOP with Pad Connected to VEE
  (derate 21.7mW/°C above +70°C)..............................1739mW
20-Pin TSSOP with Floating Pad
  (derate 11.0mW/°C above +70°C)................................879mW
28-Pin TSSOP with Pad Connected to VEE
  (derate 23.8mW/°C above +70°C)..............................1905mW
28-Pin TSSOP with Floating Pad
  (derate 12.8mW/°C above +70°C)..............................1026mW
   32-Pin QFN (derate 23.3mW/°C above +70°C).........1860mW*
Operating Temperature Range
  (TMIN, TMAX) .....................................................-40°C to +85°C
 Junction Temperature......................................................+150°C
Storage Temperature Range .............................-65°C to +150°C
 Lead Temperature (soldering, 10s) .................................+300°C



Description

The MAX9480/MAX9481/MAX9482 low-power, low-distortion, class-G, high-current asymmetric digital subscriber line (ADSL) drivers offer Rail-to-Rail® output and are ideal for ADSL in central-office applications. Operating from ±5V and ±2.5V supplies, the drivers incorporate two high-speed current-feedback preamplifiers driving two fixed-gain class-G buffers. The buffers can deliver 20.4dBm average line power with a signal crest factor of 5.3, and are designed to be directly DC or AC bridged across a 1:2.5 transformer.

The MAX9480/MAX9481/MAX9482 employ an active line termination scheme for incoming signals that eliminates the need for back-match resistors, reducing line-card power consumption at full rate to less than half of that required by conventional class-AB line-driver circuits. The MAX9480 includes a hybrid network and two lownoise, fixed-gain-of-4.6V/V receive amplifiers. The part is designed to recover the receive signal to the same level as that of a conventional line interface circuit that incorporates a 1:2 transformer and standard back-matched hybrid, without degrading signal-to-noise ratio (SNR) or line-impedance sensitivity. The MAX9481 provides only the preamplifiers and buffers without the hybrid or receivers. The MAX9482 provides preamplifiers, buffers, and uncommitted receive amplifiers. MAX9482 have a low-output-impedance shutdown function for saving power when not transmitting.

At full-rate 20.4dBm discrete multitone data transmission (DMT), the total dynamic power dissipation is only 680mW (MAX9480/MAX9482) or 655mW (MAX9481).

The MAX9480/MAX9481 are available in a 20-pin TSSOP package and the MAX9482 is available in 28-pin TSSOP and 32-pin QFN packages. All devices operate over the extended -40°C to +85°C temperature range.




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