ADC-674ZC, ADC700, ADC700006-0013 Selling Leads, Datasheet
MFG:BB Package Cooled:/plastic D/C:91+
ADC-674ZC, ADC700, ADC700006-0013 Datasheet download
Part Number: ADC-674ZC
MFG: BB
Package Cooled: /plastic
D/C: 91+
MFG:BB Package Cooled:/plastic D/C:91+
ADC-674ZC, ADC700, ADC700006-0013 Datasheet download
MFG: BB
Package Cooled: /plastic
D/C: 91+
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Datasheet: ADC-674ZC
File Size: 647538 KB
Manufacturer: ETC [ETC]
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PDF/DataSheet Download
Datasheet: ADC700
File Size: 149094 KB
Manufacturer: Burr-Brown
Download : Click here to Download
PDF/DataSheet Download
Datasheet: ADC0800
File Size: 170168 KB
Manufacturer: NSC [National Semiconductor]
Download : Click here to Download
The ADC700 is a complete 16-bit resolution successive approximation analog-to-digital converter.
The reference circuit, containing a buried zener, is laser-trimmed for minimum temperature coefficient. The clock oscillator is current-controlled for excellent stability over temperature. Gain and Zero errors may be externally trimmed to zero. Analog input ranges of 0V to +5V, 0V to +10V, 0V to +20V, ±2.5V, ±5V, and ±10V are available.
The conversion time is 17ms max for a 16-bit conversion over the three specification temperature ranges. After a conversion, output data is stored in a latch separate from the successive approximation logic. This permits reading data during the next conversion, a feature that provides flexible interface timing, especially for interrupt-driven interfaces. Data is available in two 8-bit bytes from TTL-compatible three-state output drivers. Output data is coded in Straight Binary for unipolar input signals and Bipolar Offset Binary or Twos complement for bipolar input signals.
BOB or BTC is selected by a logic function available on one of the pins. The ADC700 is available in commercial, industrial and military temperature ranges. It is packaged in a hermetic 28-pin side-braze ceramic DIP.
+VDD to Digital Common ....................................................... 0V to +7V
+VCC to Analog Common .................................................... 0V to +18V
VCC to Analog Common .................................................. 0V to 18V
Digital Common to Analog Common ................................... 1V to +1V
Digital Inputs to Digital Common ......................... 0.5V to VDD + 0.5V
Analog Inputs ........................................................................... +16.5V
Power Dissipation .................................................................. 1000mW
Storage Temperature ........................................... 60°C to +150°C
Lead Temperature, (soldering, 10s) ....................................... +300°C
NOTES: Stresses above those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.