Features: Sample Rate: 800kspsPower Dissipation: 80mW72.5dB S/(N + D) and 86dB THD at Nyquist No Pipeline Delay Nap (4mW) and Sleep (10mW) Shutdown ModesOperates with Internal 15ppm/°C Reference or External Reference True Differential Inputs Reject Common Mode Noise20MHz Full Power Bandwidth Samp...
LTC1409: Features: Sample Rate: 800kspsPower Dissipation: 80mW72.5dB S/(N + D) and 86dB THD at Nyquist No Pipeline Delay Nap (4mW) and Sleep (10mW) Shutdown ModesOperates with Internal 15ppm/°C Reference or...
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Supply Voltage (VDD) ................................................ 6V
Negative Supply Voltage (VSS)................................ 6V
Total Supply Voltage (VDD to VSS) .......................... 12V
Analog Input Voltage
(Note 3) .................................. VSS 0.3V to VDD + 0.3V
Digital Input Voltage (Note 4) ............ VSS 0.3V to 10V
Digital Output Voltage ............. VSS 0.3V to VDD + 0.3V
Power Dissipation............................................. 500mW
Operating Temperature Range
LTC1409C............................................... 0°C to 70°C
LTC1409I........................................... 40°C to 85°C
Storage Temperature Range ............ 65°C to 150°C
Lead Temperature (Soldering, 10 sec)................. 300°C
DescriptionThe LTC 1409 is a 1ms, 800ksps, sampling 12-bit A/D converter that draws only 80mW from ±5V supplies. This easy-to-use device includes a high dynamic range sampleand- hold and a precision reference. Two digitally selectable power Shutdown modes provide flexibility for low power systems.
The LTC1409 full-scale input range is ±2.5V. Maximum DC specs include ±1LSB INL and ±1LSB DNL over temperature. Outstanding AC performance includes 72.5dB S/(N + D) at the Nyquist input frequency of 400kHz.
The unique differential input sample-and-hold of LTC1409 can acquire single-ended or differential input signals up to its 20MHz bandwidth. The 60dB common mode rejection allows users to eliminate ground loops and common mode noise by measuring signals differentially from the source. The ADC has a mP compatible, 12-bit parallel output port.
There is no pipeline delay in the conversion results. A separate convert start input and a data ready signal (BUSY) ease connections to FIFOs, DSPs and microprocessors. A digital output driver power supply pin allows direct connection to 3V logic.