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ADC0804LCWM 数据表(PDF) 5 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor.
部件名 ADC0804LCWM
功能描述  8-Bit 關P Compatible A/D Converters
PDF  41 Pages
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制造商  NSC [National Semiconductor (TI)]
网页  http://www.national.com
标志 NSC - National Semiconductor (TI)

ADC0804LCWM 数据表(HTML) 5 Page - National Semiconductor (TI)

  ADC0804LCWM Datasheet HTML 1Page - National Semiconductor (TI) ADC0804LCWM Datasheet HTML 2Page - National Semiconductor (TI) ADC0804LCWM Datasheet HTML 3Page - National Semiconductor (TI) ADC0804LCWM Datasheet HTML 4Page - National Semiconductor (TI) ADC0804LCWM Datasheet HTML 5Page - National Semiconductor (TI) ADC0804LCWM Datasheet HTML 6Page - National Semiconductor (TI) ADC0804LCWM Datasheet HTML 7Page - National Semiconductor (TI) ADC0804LCWM Datasheet HTML 8Page - National Semiconductor (TI) ADC0804LCWM Datasheet HTML 9Page - National Semiconductor (TI) Next Button
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AC Electrical Characteristics (Continued)
Note 7: The CS input is assumed to bracket the WR strobe input and therefore timing is dependent on the WR pulse width. An arbitrarily wide pulse width will hold
the converter in a reset mode and the start of conversion is initiated by the low to high transition of the WR pulse (see timing diagrams).
Note 8: None of these A/Ds requires a zero adjust (see section 2.5.1). To obtain zero code at other analog input voltages see section 2.5 and
Figure 7.
Note 9: The VREF/2 pin is the center point of a two-resistor divider connected from VCC to ground. In all versions of the ADC0801, ADC0802, ADC0803, and
ADC0805, and in the ADC0804LCJ, each resistor is typically 16 k
Ω. In all versions of the ADC0804 except the ADC0804LCJ, each resistor is typically 2.2 kΩ.
Note 10: Human body model, 100 pF discharged through a 1.5 k
Ω resistor.
Typical Performance Characteristics
Logic Input Threshold Voltage
vs. Supply Voltage
DS005671-38
Delay From Falling Edge of
RD to Output Data Valid
vs. Load Capacitance
DS005671-39
CLK IN Schmitt Trip Levels
vs. Supply Voltage
DS005671-40
f
CLK vs. Clock Capacitor
DS005671-41
Full-Scale Error vs
Conversion Time
DS005671-42
Effect of Unadjusted Offset Error
vs. V
REF/2 Voltage
DS005671-43
Output Current vs
Temperature
DS005671-44
Power Supply Current
vs Temperature (Note 9)
DS005671-45
Linearity Error at Low
V
REF/2 Voltages
DS005671-46
www.national.com
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