MAX109

Features: ` Ultra-High-Speed, 8-Bit, 2.2Gsps ADC` 2.8GHz Full-Power Analog Input Bandwidth` Excellent Signal-to-Noise Performance44.6dB SNR at fIN = 300MHz44dB SNR at fIN = 1600MHz` Superior Dynamic Range at High-IF61.7dBc SFDR at fIN = 300MHz50.3dBc SFDR at fIN = 1600MHz-60dBc IM3 at fIN1 = 1590M...

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SeekIC No. : 004408455 Detail

MAX109: Features: ` Ultra-High-Speed, 8-Bit, 2.2Gsps ADC` 2.8GHz Full-Power Analog Input Bandwidth` Excellent Signal-to-Noise Performance44.6dB SNR at fIN = 300MHz44dB SNR at fIN = 1600MHz` Superior Dynamic...

floor Price/Ceiling Price

Part Number:
MAX109
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:

` Ultra-High-Speed, 8-Bit, 2.2Gsps ADC
` 2.8GHz Full-Power Analog Input Bandwidth
` Excellent Signal-to-Noise Performance
44.6dB SNR at fIN = 300MHz
44dB SNR at fIN = 1600MHz
` Superior Dynamic Range at High-IF
61.7dBc SFDR at fIN = 300MHz
50.3dBc SFDR at fIN = 1600MHz
-60dBc IM3 at fIN1 = 1590MHz and fIN2 = 1610MHz
` 500mVP-P Differential Analog Inputs
` 6.8W Typical Power Including the Demultiplexer
` Adjustable Range for Offset, Full-Scale, and ampling Instance
` 50 Differential Analog Inputs
` 1:4 Demultiplexed LVDS Outputs
` Interfaces Directly to Common FPGAs with DDR nd QDR Modes



Application

Radar Warning Receivers (RWR)
Light Detection and Ranging (LIDAR)
Digital RF/IF Signal Processing
Electronic Warfare (EW) Systems
High-Speed Data-Acquisition Systems
Digital Oscilloscopes
High-Energy Physics Instrumentation
ATE Systems



Pinout

  Connection Diagram


Specifications

VCCA to GNDA ....................................................... -0.3V to +6V
VCCD to GNDD ....................................................... -0.3V to +6V
VCCI to GNDI.......................................................... -0.3V to +6V
VCCO to GNDO ................................................... -0.3V to +3.9V
VEE to GNDI .......................................................... -6V to +0.3V
Between Grounds (GNDA, GNDI, GNDO,
GNDD, GNDR) ................................................      -0.3V to +0.3V
VCCA to VCCD .....................................................-0.3V to +0.3V
VCCA to VCCI ......................................................-0.3V to +0.3V
Differential Voltage between INP and INN ........................ ±1V
INP, INN to GNDI ................................................................±1V
Differential Voltage between CLKP and CLKN.....................±3V
CLKP, CLKN, CLKCOM to GNDI ...............................   -3V to +1V
Digital LVDS Outputs to GNDO ..............  -0.3V to (VCCO - 0.3V)
REFIN, REFOUT to GNDR .....................  . -0.3V to (VCCI + 0.3V)
REFOUT Current ...............................................-100A to +5mA
RSTINP, RSTINN to GNDA ..................   . -0.3V to (VCCO + 0.3V)
RSTOUTP, RSTOUTN to GNDO ...........    .-0.3V to (VCCO + 0.3V)
VOSADJ, SAMPADJ,
TEMPMON to GNDI.........................    .....-0.3V to (VCCI + 0.3V)
PRN, DDR, QDR to GNDD...................  ...-0.3V to (VCCD + 0.3V)
DELGATE0, DELGATE1 to GNDA ..........   -0.3V to (VCCA + 0.3V)
Continuous Power Dissipation (TA = +70°C)
256-Ball SBGA (derate 74.1mW/°C above +70°C for
a multilayer board) ................................................ 5925.9mW
Operating Temperature Range
MAX109EHF ..................................................-40°C to +85°C
Thermal Resistance JA (Note 1) ..................................3°C/W
Operating Junction Temperature.................................+150°C
Storage Temperature Range ......................-65°C to +150°C
Note 1: Thermal resistance is based on a 5in x 5in multilayer board. The data sheet assumes a thermal environment of 3°C/W.Thermal resistance may be different depending on airflow and heatsink cooling capabilities.



Description

The MAX109, 2.2Gsps, 8-bit, analog-to-digital converter ADC) enables the accurate digitizing of analog signals ith frequencies up to 2.5GHz. Fabricated on an dvanced SiGe process, the MAX109 integrates a highperformance rack/hold (T/H) amplifier, a quantizer, and  1:4 demultiplexer on a single monolithic die. The AX109 also features adjustable offset, full-scale voltage via REFIN), and sampling instance allowing multiple DCs to be interleaved in time.

he innovative design of the internal T/H amplifier, hich has a wide 2.8GHz full-power bandwidth, nables a flat-frequency response through the second yquist region. This results in excellent ENOB performance f 6.9 bits. A fully differential comparator design nd decoding circuitry reduce out-of-sequence code rrors (thermometer bubbles or sparkle codes) and rovide excellent metastability performance (1014 clock ycles). This design guarantees no missing codes.

The analog input of MAX109 is designed for both differential and ingle-ended use with a 500mVP-P input-voltage range.The output data is in standard LVDS format, and is emultiplexed by an internal 1:4 demultiplexer. The VDS outputs operate from a supply-voltage range of V to 3.6V for compatibility with single 3V-reference ystems. Control inputs are provided for interleaving dditional MAX109 devices to increase the effective ystem-sampling rate.

The MAX109 is offered in a 256-pin Super Ball-Grid Array SBGA) package and is specified over the extended ndustrial temperature range (-40°C to +85°C).




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