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ADC1175CIMTCX Arkusz danych(PDF) 7 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor.
Numer części ADC1175CIMTCX
Szczegółowy opis  8-Bit, 20MHz, 60mW A/D Converter
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Producent  NSC [National Semiconductor (TI)]
Strona internetowa  http://www.national.com
Logo NSC - National Semiconductor (TI)

ADC1175CIMTCX Arkusz danych(HTML) 7 Page - National Semiconductor (TI)

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Converter Electrical Characteristics (Continued)
The following specifications apply for AV
DD =DVDD = +5.0VDC, OE = 0V, VRT = +2.6V, VRB = 0.6V, CL = 20 pF,
f
CLK = 20MHz at 50% duty cycle. Boldface limits apply for TA =TMIN to TMAX; all other limits TA = 25˚C (Notes 7, 8)
Symbol
Parameter
Conditions
Typical
(Note 9)
Limits
(Note 9)
Units
SINAD
Signal-to- Noise & Distortion
f
IN = 1.31 MHz, VIN = FS-2LSB
f
IN = 4.43 MHz, VIN = FS-2LSB
f
IN = 9.9 MHz, VIN = FS-2LSB
f
IN = 4.43 MHz, fCLK = 30 MHz
47
46
45
40
43
dB(min)
SNR
Signal-to- Noise Ratio
f
IN = 1.31 MHz, VIN = FS-2LSB
f
IN = 4.43 MHz, VIN = FS-2LSB
f
IN = 9.9 MHz, VIN = FS-2LSB
f
IN = 4.43 MHz, fCLK = 30 MHz
47
47
42
45
44
dB(min)
SFDR
Spurious Free Dynamic Range
f
IN = 1.31 MHz, VIN = FS-2LSB
f
IN = 4.43 MHz, VIN = FS-2LSB
f
IN = 9.9 MHz, VIN = FS-2LSB
f
IN = 4.43 MHz, fCLK = 30 MHz
56
58
53
46
dB
THD
Total Harmonic Distortion
f
IN = 1.31 MHz, VIN = FS-2LSB
f
IN = 4.43 MHz, VIN = FS-2LSB
f
IN = 9.9 MHz, VIN = FS-2LSB
f
IN = 4.43 MHz, fCLK = 30 MHz
−55
−57
−52
−47
dB
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is
functional, but do not guarantee specific performance limits. For guaranteed specifications and test conditions, see the Electrical Characteristics. The guaranteed
specifications apply only for the test conditions listed. Some performance characteristics may degrade when the device is not operated under the listed test
conditions.
Note 2: All voltages are measured with respect to GND = AVSS =DVSS = 0V, unless otherwise specified.
Note 3: When the input voltage at any pin exceeds the power supplies (that is, less than AVSS or DVSS, or greater than AVDD or DVDD), the current at that pin should
be limited to 25 mA. The 50 mA maximum package input current rating limits the number of pins that can safely exceed the power supplies with an input current of
25 mA to two.
Note 4: The absolute maximum junction temperatures (TJmax) for this device is 150˚C. The maximum allowable power dissipation is dictated by TJmax, the
junction-to-ambient thermal resistance
θJA, and the ambient temperature, TA, and can be calculated using the formula PDMAX=(TJmax - TA )/θJA. In the 24-pin
TSSOP,
θJA is 92˚C/W, so PDMAX = 1,358 mW at 25˚C and 815 mW at the maximum operating ambient temperature of 75˚C. (Typical thermal resistance, θJA,of
this part is 98˚C/W for the EIAJ SOIC). Note that the power dissipation of this device under normal operation will typically be about 101 mW (60 mW quiescent power
+ 33 mW reference ladder power+8mWdue to 1 TTL loan on each digital output. The values for maximum power dissipation listed above will be reached only when
the ADC1175 is operated in a severe fault condition (e.g. when input or output pins are driven beyond the power supply voltages, or the power supply polarity is
reversed). Obviously, such conditions should always be avoided.
Note 5: Human body model is 100 pF capacitor discharged through a 1.5k
Ω resistor. Machine model is 220 pf discharged through ZERO Ω.
Note 6: See AN450, "Surface Mounting Methods and Their Effect on Product Reliability", or the section entitled "Surface Mount" found in any post 1986 National
Semiconductor Linear Data Book, for other methods of soldering surface mount devices.
Note 7: The analog inputs are protected as shown below. Input voltage magnitudes up to 6.5V or to 500 mV below GND will not damage this device. However, errors
in the A/D conversion can occur if the input goes above VDD or below GND by more than 50 mV. As an example, if AVDD is 4.75VDC, the full-scale input voltage must
be
≤4.80VDC to ensure accurate conversions.
10009210
Note 8: To guarantee accuracy, it is required that AVDD and DVDD be well bypassed. Each supply pin must be decoupled with separate bypass capacitors.
Note 9: Typical figures are at TJ = 25˚C, and represent most likely parametric norms. Test limits are guaranteed to National’s AOQL (Average Outgoing Quality
Level).
Note 10: At least two clock cycles must be presented to the ADC1175 after power up. See Section 4.0 for details.
www.national.com
7


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