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AD6640 Datenblatt(PDF) 3 Page - Analog Devices |
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AD6640 Datenblatt(HTML) 3 Page - Analog Devices |
3 / 25 page DC SPECIFICATIONS Test AD6640AST Parameter Temp Level Min Typ Max Unit RESOLUTION 12 Bits ACCURACY No Missing Codes +25 °CI GUARANTEED Offset Error Full VI –10 +3.5 +10 mV Gain Error Full VI –10 +4.0 +10 % FS Differential Nonlinearity (DNL) 1 +25 °CI –1.0 ±0.5 +1.5 LSB Integral Nonlinearity (INL) 1 Full V ±1.25 LSB TEMPERATURE DRIFT Offset Error Full V 50 ppm/ °C Gain Error Full V 100 ppm/ °C POWER SUPPLY REJECTION RATIO (PSRR) Full V ±0.5 mV/V REFERENCE OUT (VREF) 2 Full V 2.4 V ANALOG INPUTS (AIN, AIN)3 Analog Input Common-Mode Range 4 Full V VREF ± 0.05 V Differential Input Voltage Range Full V 2.0 V p-p Differential Input Resistance Full IV 0.7 0.9 1.1 k Ω Differential Input Capacitance +25 °CV 1.5 pF POWER SUPPLY Supply Voltage AVCC Full VI 4.75 5.0 5.25 V DVCC Full VI 3.0 3.3 5.25 V Supply Current IAVCC (AVCC = 5.0 V) Full VI 135 160 mA IDVCC (DVCC = 3.3 V) Full VI 10 20 mA POWER CONSUMPTION Full VI 710 865 mW NOTES 1 ENCODE = 20 MSPS 2 If V REF is used to provide a dc offset to other circuits, it should first be buffered. 3The AD6640 is designed to be driven differentially. Both AIN and AIN should be driven at levels V REF ± 0.5 V. The input signals should be 180 degrees out of phase to produce a 2 V p-p differential input signal. See Driving the Analog Inputs section for more details. 4 Analog input common-mode range specifies the offset range the analog inputs can tolerate in dc-coupled applications (see Figure 17 for more detail). Specifications subject to change without notice . DIGITAL SPECIFICATIONS Test AD6640AST Parameter Temp Level Min Typ Max Unit LOGIC INPUTS (ENCODE, ENCODE)1 ENCODE Input Common-Mode Range 2 Full IV 0.2 2.2 V Differential Input Voltage Full IV 0.4 V p-p Single-Ended ENCODE 10 V p-p Logic Compatibility 3 TTL/CMOS Logic “1” Voltage Full VI 2.0 5.0 V Logic “0” Voltage Full VI 0 0.8 V Logic “1” Current (VINH = 5 V) Full VI +500 +650 +800 µA Logic “0” Current (VINL = 0 V) Full VI –400 –320 –200 µA Input Capacitance +25 °CV 2.5 pF LOGIC OUTPUTS ( D11–D0)4 Logic Compatibility CMOS Logic “1” Voltage (DVCC = 3.3 V) Full VI 2.8 DVCC – 0.2 V Logic “0” Voltage (DVCC = 3.3 V) Full VI 0.2 0.5 V Logic “1” Voltage (DVCC = 5.0 V) Full IV 4.5 DVCC – 0.3 V Logic “0” Voltage (DVCC = 5.0 V) Full IV 0.35 0.5 V Output Coding Twos Complement NOTES 1Best dynamic performance is obtained by driving ENCODE and ENCODE differentially. See Encoding the AD6640 section for more details. Performance versus ENCODE/ENCODE power is shown in TPC 12. 2For dc-coupled applications, the ENCODE input common-mode range specifies the common-mode range the ENCODE inputs can tolerate when driven differentially by the minimum differential input voltage of 0.4 V p-p. For differential input voltage swings greater than 0.4 V p-p, the common-mode range will change. The minimum value ensures that the input voltage on either encode pin does not go below 0 V. The maximum value ensures that the input voltage on either ENCODE pin does not go below 2.0 V or above AVCC (e.g., for a differential input swing of 0.8 V, the min and max common-mode specs become 0.4 V and 2.4 V, respectively). 3ENCODE or ENCODE may be driven alone if desired, but performance will likely be degraded. Logic compatibility specifications are provided to show that TTL or CMOS clock sources will work. When driving only one ENCODE input, bypass the complementary input to GND with 0.01 µF. 4Digital output load is one LCX gate. Specifications subject to change without notice. REV. A (AVCC = 5 V, DVCC = 3.3 V; TMIN = –40 C, TMAX = +85 C, unless otherwise noted.) –2– AD6640–SPECIFICATIONS (AVCC = 5 V, DVCC = 3.3 V; TMIN = –40 C, TMAX = +85 C, unless otherwise noted.) |
Ähnliche Teilenummer - AD6640_17 |
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Ähnliche Beschreibung - AD6640_17 |
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