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4-Channel, Low Noise, Low Power, 24-Bit, Sigma-Delta ADC with PGA and Reference
Tip: Data for a part may vary between manufacturers. You can filter for manufacturers on the top of the page next to the part image and part number.
AD7124-4BCPZ-RL by Analog Devices Inc is an Analog to Digital Converter.
Analog to Digital Converters are under the broader part category of Converters.
A converter is an electrical circuit that transforms electric energy into a different form that will support a elecrical load needed by a device. Read more about Converters on our Converters part category page.
Part # | Distributor | Description | Stock | Price | Buy | |
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DISTI #
505-AD7124-4BCPZ-RLCT-ND
|
DigiKey | IC ADC 24BIT SIGMA-DELTA 32LFCSP Min Qty: 1 Lead time: 10 Weeks Container: Digi-Reel®, Cut Tape (CT), Tape & Reel (TR) |
8445 In Stock |
|
$7.5000 / $14.4700 | Buy Now |
DISTI #
584-AD7124-4BCPZ-RL
|
Mouser Electronics | Analog to Digital Converters - ADC The AD7124-4 is a 4ch 24b S-? ADC RoHS: Compliant | 0 |
|
$7.5000 | Order Now |
|
Analog Devices Inc | The AD7124-4 is a 4ch 24b ?-? Min Qty: 5000 Package Multiple: 5000 | 5000 |
|
$5.7000 / $14.4700 | Buy Now |
DISTI #
AD7124-4BCPZ-RL
|
Richardson RFPD | CONVERTER - ADC RoHS: Compliant Min Qty: 5000 | 0 |
|
$7.8400 | Buy Now |
|
Vyrian | Converters | 6153 |
|
RFQ |
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AD7124-4BCPZ-RL
Analog Devices Inc
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Datasheet
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AD7124-4BCPZ-RL
Analog Devices Inc
4-Channel, Low Noise, Low Power, 24-Bit, Sigma-Delta ADC with PGA and Reference
|
Pbfree Code | No | |
Rohs Code | Yes | |
Part Life Cycle Code | Active | |
Ihs Manufacturer | ANALOG DEVICES INC | |
Package Description | LFCSP-32 | |
Pin Count | 32 | |
Manufacturer Package Code | CP-32-12 | |
Reach Compliance Code | compliant | |
Samacsys Manufacturer | Analog Devices | |
Analog Input Voltage-Max | 2.5 V | |
Analog Input Voltage-Min | -2.5 V | |
Converter Type | ADC, DELTA-SIGMA | |
JESD-30 Code | S-XQCC-N32 | |
JESD-609 Code | e3 | |
Length | 5 mm | |
Linearity Error-Max (EL) | 0.0015% | |
Moisture Sensitivity Level | 3 | |
Number of Analog In Channels | 4 | |
Number of Bits | 24 | |
Number of Functions | 1 | |
Number of Terminals | 32 | |
Operating Temperature-Max | 125 °C | |
Operating Temperature-Min | -40 °C | |
Output Bit Code | OFFSET BINARY | |
Output Format | SERIAL | |
Package Body Material | UNSPECIFIED | |
Package Code | HVQCCN | |
Package Shape | SQUARE | |
Package Style | CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE | |
Peak Reflow Temperature (Cel) | 260 | |
Sample Rate | 0.0192 MHz | |
Seated Height-Max | 0.8 mm | |
Supply Voltage-Nom | 3 V | |
Surface Mount | YES | |
Temperature Grade | AUTOMOTIVE | |
Terminal Finish | Matte Tin (Sn) | |
Terminal Form | NO LEAD | |
Terminal Pitch | 0.5 mm | |
Terminal Position | QUAD | |
Time@Peak Reflow Temperature-Max (s) | 30 | |
Width | 5 mm |
The AD7124-4BCPZ-RL requires careful layout and placement to minimize noise and ensure optimal performance. It is recommended to follow the layout guidelines provided in the datasheet, including keeping the analog and digital grounds separate, using a solid ground plane, and placing the device close to the analog signal sources.
To optimize the AD7124-4BCPZ-RL's performance for your specific application, you should consider factors such as the input signal range, sampling rate, and filter settings. You may need to experiment with different settings and configurations to achieve the best results for your application.
The AD7124-4BCPZ-RL is rated for operation up to 125°C, but its performance may degrade at high temperatures. You should consider the temperature range of your application and ensure that the device is properly heat-sinked and cooled to maintain optimal performance.
The AD7124-4BCPZ-RL requires calibration to ensure accurate measurements. You should follow the calibration procedure outlined in the datasheet, which involves applying a known input signal and adjusting the device's gain and offset settings accordingly.
Potential sources of error when using the AD7124-4BCPZ-RL include noise, offset voltage, and gain errors. To mitigate these errors, you should ensure proper layout and placement, use a high-quality power supply, and implement noise reduction techniques such as filtering and averaging.