MAX1171 datasheet - 12-bit, 20msps, Ttl-output ADC

Details, datasheet, quote on part number: MAX1171
PartMAX1171
CategoryData Conversion => ADC (Analog to Digital Converters) => 10-14 bit
Description12-bit, 20msps, Ttl-output ADC
CompanyMaxim Integrated Products
DatasheetDownload MAX1171 Datasheet
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Features, Applications

o Monolithic, 12-Bit, 20Msps Converter o On-Chip Track/Hold o �2.0V Analog Input Range o 66dB SNR at 1MHz Input o Low Power: o 5pF Input Capacitance o TTL-Compatible Outputs

The MAX1171 analog-to-digital converter (ADC) a 12-bit monolithic ADC capable of sample rates greater than 20Msps. An on-board input buffer and track/hold function ensure excellent dynamic performance without the need for external components. A 5pF input capacitance minimizes development problems. Logic inputs and outputs are TTL compatible. An overrange output signal is provided to indicate overflow conditions. Output data format is straight binary. Power dissipation is a very low 1.1W with power-supply voltages of +5.0V and -5.2V. The MAX1171 also provides a wide input voltage range of �2.0V. The MAX1171 is available a 32-lead ceramic sidebrazed package and a 44-lead surface-mount CERQUAD package.

PART TEMP. RANGE to +70�C PIN-PACKAGE 32 Ceramic SB 44 CERQUAD

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VCC.......................................................................................+6V VEE.........................................................................................-6V Analog Input........................................................VFB VIN VFT VFB, VFT................................................................. -3.0V, +3.0V Reference Ladder Current..................................................12mA CLK IN...................................................................................VCC Digital to -30mA Operating Temperature to +70�C Junction Temperature (Tj)................................................+175�C Storage Temperature to +150�C Lead Temperature (soldering, 10sec).............................+300�C

Stresses beyond those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.

(VCC = +5.0V, VEE = -5.2V, DVCC = +5.0V, VIN = �2.0V, VSB = -2.0V, VST = +2.0V, fCLK 20MHz, 50% clock duty cycle, TA = TMIN to TMAX, unless otherwise noted.) PARAMETER Resolution DC ACCURACY (TA = +25�C) Integral Nonlinearity Differential Nonlinearity No Missing Codes ANALOG INPUT Input Voltage Range Input Bias Current Input Resistance Input Capacitance Input Bandwidth Positive Full-Scale Error Negative Full-Scale Error REFERENCE INPUT Reference Ladder Resistance Reference Ladder Tempco TIMING CHARACTERISTICS Maximum Conversion Rate Overvoltage Recovery Time Pipeline Delay (Latency) Output Delay Aperture Delay Time Aperture Jitter Time VI V MHz ns Clock Cycle ns ps-RMS 800 0.8 /�C 3dB small signal = +25�C VIN k pF MHz LSB � full scale 250kHz sample rate �2.0 �0.8 Guaranteed LSB CONDITIONS TEST LEVEL MIN 12 TYP MAX UNITS Bits

(VCC = +5.0V, VEE = -5.2V, DVCC = +5.0V, VIN = �2.0V, VSB = -2.0V, VST = +2.0V, fCLK 20MHz, 50% clock duty cycle, TA = TMIN to TMAX, unless otherwise noted.) PARAMETER DYNAMIC PERFORMANCE fIN = 500kHz Effective Number of Bits fIN = 1MHz fIN = 3.58MHz fIN = 500kHz Signal-to-Noise Ratio (without Harmonics) fIN = 1MHz fIN = 3.58MHz fIN = 500kHz Harmonic Distortion fIN = 1MHz fIN = 3.58MHz fIN = 500kHz Signal-to-Noise and Distortion fIN = 1MHz fIN = 3.58MHz Spurious-Free Dynamic Range Differential Phase Differential Gain DIGITAL INPUTS Logic "1" Voltage Logic "0" Voltage Maximum Input Current Low Maximum Input Current High Pulse Width Low (CLK) Pulse Width High (CLK) DIGITAL OUTPUTS Logic "1" Voltage Logic "0" Voltage TA = TMIN to TMAX TA = TMIN to TMAX TA = TMIN to TMAX TA = TMIN to TMAX TA = TMIN to TMAX TA = TMIN to TMAX TA = TMIN to TMAX TA = TMIN to TMAX TA = TMIN to TMAX IV V dBc Degrees % dB Bits CONDITIONS TEST LEVEL MIN TYP MAX UNITS


 

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