TYPE | DESCRIPTION |
---|
Mounting Style | Surface Mount |
Number of Pins | 20 Pin |
Supply Voltage (DC) | 4.50V (min) |
Case/Package | SOIC-20 |
Supply Current | 1.9 mA |
Number of Circuits | 1 Circuit |
Number of Channels | 1 Channel |
Number of Positions | 20 Position |
Number of Bits | 8 Bit |
Power Dissipation | 875 mW |
Sample Rate | 10 ksps |
Power Consumption | 9.5 mW |
Number of ADCs | 1 ADC |
Number of Inputs | 1 Input |
Operating Temperature (Max) | 70 ℃ |
Operating Temperature (Min) | 0 ℃ |
Power Dissipation (Max) | 875 mW |
Number of Input Channels | 1 Channel |
Supply Voltage | 4.5V ~ 6.3V |
Supply Voltage (Max) | 6.3 V |
Supply Voltage (Min) | 4.5 V |
Input Voltage | 5 V |
TYPE | DESCRIPTION |
---|
Product Lifecycle Status | Active |
Packaging | Tube |
Size-Length | 12.8 mm |
Size-Width | 7.47 mm |
Size-Height | 2.34 mm |
Operating Temperature | 0℃ ~ 70℃ |
The ADC0804LCWM is a CMOS 8-bit successive approximation Analog-to-digital Converter (ADC) that uses a differential potentiometric ladder - similar to the 256R products. This converter is designed to allow operation with the NSC800 and INS8080A derivative control bus with Tri-state output latches directly driving the data bus. These ADCs appear like memory locations or I/O ports to the microprocessor and no interfacing logic is needed. Differential analog voltage inputs allow increasing the common-mode rejection and offsetting the analog zero input voltage value. In addition, the voltage reference input can be adjusted to allow encoding any smaller analog voltage span to the full 8-bit of resolution.
● Easy interface to all microprocessors or operates as a stand-alone device
● Differential analog voltage inputs
● Logic inputs and outputs meet both MOS and TTL voltage-level
● On-chip clock generator
● No zero adjust required
● Green product and no Sb/Br
TI
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TEXAS INSTRUMENTS ADC0804LCN Analog to Digital Converter, 8Bit, 9.708KSPS, Single, 4.5V, 6.3V, DIP
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TEXAS INSTRUMENTS ADC0804LCWM Analogue to Digital Converter, 8Bit, 9.708KSPS, Single, 4.5V, 6.3V, SOIC
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