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TLC876IPWR Datasheet(PDF) 7 Page - Texas Instruments |
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TLC876IPWR Datasheet(HTML) 7 Page - Texas Instruments |
7 / 22 page TLC876M, TLC876I, TLC876C 10-BIT 20 MSPS PARALLEL OUTPUT CMOS ANALOG-TO-DIGITAL CONVERTERS SLAS140E – JULY 1997 – REVISED OCTOBER 2000 7 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 operating characteristics at AVDD = DVDD = 5 V, DRVDD = 3.3 V, VI(REFT) = 3.6 V, VI(REFB) = 1.6 V, fCLK = 20 MSPS (unless otherwise noted) dc accuracy PARAMETER TEST CONDITIONS MIN TYP MAX UNIT Integral nonlinearity (INL) ±1.5 LSB Differential nonlinearity (DNL) (see Note 1) ±0.5 <±1 LSB Offset error –0.4 %FSR Gain error 0.2 %FSR NOTE 1: A differential nonlinearity error of less than ±1 LSB ensures no missing codes. analog input PARAMETER TEST CONDITIONS MIN TYP MAX UNIT Ci Input capacitance 5 pF reference input PARAMETER TEST CONDITIONS MIN TYP MAX UNIT Rref Reference input resistance 350 500 Ω Iref Reference input current 4 mA Reference top offset voltage 35 mV Reference bottom offset voltage 35 mV dynamic performance† PARAMETER TEST CONDITIONS MIN TYP MAX UNIT All suffixes fI = 1 MHz 8.5 Eff ti b f bit (ENOB) All suffixes fI = 3.58 MHz, TA = 25°C 8 8.5 Bit Effective number of bits (ENOB) C and I suffixes fI = 3.58 MHz, 8 8.5 Bits M suffix I , TA = Full Range 7.5 All suffixes fI = 10 MHz 8.1 All suffixes fI = 1 MHz 53 Signal-to-total harmonic distortion+noise All suffixes fI = 3.58 MHz, TA = 25°C 50 53 dB Signal to total harmonic distortion+noise (S/(THD+N)) C and I suffixes fI = 3.58 MHz, 50 53 dB M suffix I , TA = Full Range 47 All suffixes fI = 10 MHz 51 fI = 1 MHz –63 Total harmonic distortion (THD) fI = 3.58 MHz –62 –56 dB fI = 10 MHz –61 Spurious free dynamic range fI = 3.58 MHz –64 dB BW Analog input full-power bandwidth 200 MHz Differential phase 0.5 degrees Differential gain 1% † The voltage difference between AVDD and DVDD cannot exceed 0.5 V to maintain performance specifications. At input clock rise times less than 20 ns, the offset full-scale error increases approximately by a factor of (20/tr)0.5 where tr equals the actual rise time in nanoseconds. |
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