MAX104

Features: ` 1Gsps Conversion Rate` 2.2GHz Full-Power Analog Input Bandwidth` >7.5 Effective Bits at fIN = 500MHz (Nyquist Frequency)` ±0.25LSB INL and DNL` 50 Differential Analog Inputs` ±250mV Input Signal Range` On-Chip, +2.5V Precision Bandgap Voltage Reference` Latched, Differential PECL Di...

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SeekIC No. : 004408412 Detail

MAX104: Features: ` 1Gsps Conversion Rate` 2.2GHz Full-Power Analog Input Bandwidth` >7.5 Effective Bits at fIN = 500MHz (Nyquist Frequency)` ±0.25LSB INL and DNL` 50 Differential Analog Inputs` ±250mV I...

floor Price/Ceiling Price

Part Number:
MAX104
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:

` 1Gsps Conversion Rate
` 2.2GHz Full-Power Analog Input Bandwidth
` >7.5 Effective Bits at fIN = 500MHz (Nyquist
    Frequency)
` ±0.25LSB INL and DNL
` 50 Differential Analog Inputs
` ±250mV Input Signal Range
` On-Chip, +2.5V Precision Bandgap Voltage
    Reference
` Latched, Differential PECL Digital Outputs
` Low Error Rate: 10-16 Metastable States at 1Gsps
` Selectable 8:16 Demultiplexer
` Internal Demux Reset Input with Reset Output
` 192-Contact ESBGA Package



Application

Digital RF/IF Signal Processing
Direct RF Downconversion
High-Speed Data Acquisition
Digital Oscilloscopes
High-Energy Physics
Radar/Sonar/ECM Systems
ATE Systems



Specifications

VCCA to GNDA ..............................................................-0.3V to +6V
VCCD to GNDD..............................................................-0.3V to +6V
VCCI to GNDI................................................................-0.3V to +6V
VCCO to GNDD.............................................-0.3V to (VCCD + 0.3V)
AUXEN1, AUXEN2 to GND ............................-0.3V to (VCCD + 0.3V)
VEE to GNDI.................................................................-6V to +0.3V
Between GNDs.........................................................-0.3V to +0.3V
VCCA to VCCD .........................................................-0.3V to +0.3V
VCCA to VCCI...........................................................-0.3V to +0.3V
PECL Digital Output Current .................................................50mA
REFIN to GNDR ............................................-0.3V to (VCCI + 0.3V)
REFOUT Current ...................................................+100A to -5mA
ICONST, IPTAT to GNDI ...........................................-0.3V to +1.0V
TTL/CMOS Control Inputs (DEMUXEN,
DIVSELECT)................................................-0.3V to (VCCD + 0.3V)
RSTIN+, RSTIN- .........................................-0.3V to (VCCO + 0.3V)
VOSADJ Adjust Input ..................................-0.3V to (VCCI + 0.3V)
CLK+ to CLK- Voltage Difference.............................................±3V
CLK+, CLK-.........................................(VEE - 0.3V) to (GNDD + 1V)
CLKCOM.............................................(VEE - 0.3V) to (GNDD + 1V)
VIN+ to VIN- Voltage Difference ............................................±2V
VIN+, VIN- to GNDI.................................................................±2V
Continuous Power Dissipation (TA = +70)
192-Contact ESBGA (derate 61mW/ above +70) ..........4.88W
(with heatsink and 200 LFM airflow,
derate 106mW/ above +70) .........................................8.48W
Operating Temperature Range
MAX104CHC...............................................................0 to +70
Operating Junction Temperature........................................+150
Storage Temperature Range .............................-65°C to +150



Description

The MAX104 PECL-compatible, 1Gsps, 8-bit analog-todigital converter (ADC) allows accurate digitizing of analog signals with bandwidths to 2.2GHz. Fabricated on Maxim's proprietary advanced GST-2 bipolar process, the MAX104 integrates a high-performance track/hold (T/H) amplifier and a quantizer on a single monolithic die.

The innovative design of the internal T/H, which has an exceptionally wide 2.2GHz full-power input bandwidth, results in high performance (greater than 7.5 effective bits) at the Nyquist frequency. A fully differential comparator design and decoding circuitry reduce out-ofsequence code errors (thermometer bubbles or sparkle codes) and provide excellent metastable performance of one error per 1016 clock cycles. Unlike other ADCs that can have errors resulting in false full- or zero-scale outputs, the MAX104 limits the error magnitude to
1LSB.

The analog input is designed for either differential or single-ended use with a ±250mV input voltage range. Dual, differential, PECL-compatible output data paths ensure easy interfacing and include an 8:16 demultiplexer feature that reduces output data rates to one-half the sampling clock rate. The PECL outputs can be operated from any supply between +3V to +5V for compatibility with +3.3V or +5V referenced systems. Control inputs are provided for interleaving additional MAX104 devices to increase the effective system sampling rate.

The MAX104 is packaged in a 25mm x 25mm, 192-contact Enhanced Super-Ball Grid Array (ESBGA™) and is specified over the commercial (0 to +70) temperature range.




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