Part Details for LTC2512IDKD-24#PBF by Analog Devices Inc
Results Overview of LTC2512IDKD-24#PBF by Analog Devices Inc
- Distributor Offerings: (8 listings)
- Number of FFF Equivalents: (0 replacements)
- Tariff Estimator: (Available) NEW
- Number of Functional Equivalents: (0 options)
- CAD Models: (Available)
- Part Data Attributes: (Available)
- Reference Designs: (Not Available)
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LTC2512IDKD-24#PBF Information
LTC2512IDKD-24#PBF 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.
Price & Stock for LTC2512IDKD-24#PBF
| Part # | Distributor | Description | Stock | Price | Buy | |
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DISTI #
50AK2428
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Newark | Adc, 24Bit, 400Ksps, Dfn-24, Resolution (Bits):24Bit, Sampling Rate:400Ksps, Input Channel Type:Differential, Single Ended, Data Interface:Serial, Spi, Supply Voltage Type:Single, Supply Voltage Min:2.375V, Supply Voltage Max:2.625V Rohs Compliant: Yes |Analog Devices LTC2512IDKD-24#PBF RoHS: Compliant Min Qty: 1 Package Multiple: 1 Date Code: 1 Container: Bulk | 2 |
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$16.9200 / $27.0400 | Buy Now |
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DISTI #
505-LTC2512IDKD-24#PBF-ND
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DigiKey | IC ADC 24BIT SAR 24DFN Min Qty: 1 Lead time: 13 Weeks Container: Tube |
269 In Stock |
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$16.9250 / $27.0400 | Buy Now |
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DISTI #
584-C2512IDKD-24PBF
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Mouser Electronics | Analog to Digital Converters - ADC 24-B Over-Smpl ADC w/ Config Flat Passb& RoHS: Compliant | 59 |
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$16.9200 / $27.0400 | Buy Now |
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Analog Devices Inc | 24-B Over-Smpl ADC w/ Config F Package Multiple: 52 | 626 |
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$13.5400 / $27.0400 | Buy Now |
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DISTI #
42660507
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Verical | 1-Channel Single ADC SAR 1.6Msps 24-bit Serial 24-Pin DFN EP Tube RoHS: Compliant Min Qty: 52 Package Multiple: 52 | Americas - 572 |
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$16.7471 | Buy Now |
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DISTI #
42660507
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Verical | 1-Channel Single ADC SAR 1.6Msps 24-bit Serial 24-Pin DFN EP Tube RoHS: Compliant Min Qty: 52 Package Multiple: 52 | Americas - 572 |
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$16.7471 | Buy Now |
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DISTI #
LTC2512IDKD-24P
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Richardson RFPD | CONVERTER - ADC RoHS: Compliant Min Qty: 52 | 0 |
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$17.4800 / $20.3100 | Buy Now |
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DISTI #
42660507
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Verical | 1-Channel Single ADC SAR 1.6Msps 24-bit Serial 24-Pin DFN EP Tube RoHS: Compliant Min Qty: 52 Package Multiple: 52 | Americas - 572 |
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$16.7471 | Buy Now |
US Tariff Estimator: LTC2512IDKD-24#PBF by Analog Devices Inc
Calculations from this tool are estimations only for imports into the United States. Please refer to the distributor or manufacturer and reference official US government sources and authorities to verify any final purchase costs.
Part Details for LTC2512IDKD-24#PBF
LTC2512IDKD-24#PBF CAD Models
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LTC2512IDKD-24#PBF Part Data Attributes
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LTC2512IDKD-24#PBF
Analog Devices Inc
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Datasheet
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LTC2512IDKD-24#PBF
Analog Devices Inc
ADC, Successive Approximation, 24-Bit, 1 Func, 1 Channel, Serial Access, CMOS, PDSO24
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| Pbfree Code | No | |
| Rohs Code | Yes | |
| Part Life Cycle Code | Active | |
| Package Description | Hvson, | |
| Pin Count | 24 | |
| Manufacturer Package Code | 05-08-1864 | |
| Reach Compliance Code | Compliant | |
| ECCN Code | EAR99 | |
| HTS Code | 8542.39.00.01 | |
| Analog Input Voltage-Max | 5.1 V | |
| Analog Input Voltage-Min | -2.5 V | |
| Conversion Time-Max | 0.46 µS | |
| Converter Type | Adc, Successive Approximation | |
| JESD-30 Code | R-PDSO-N24 | |
| JESD-609 Code | e3 | |
| Length | 7 Mm | |
| Linearity Error-Max (EL) | 0.00035% | |
| Moisture Sensitivity Level | 1 | |
| Number of Analog In Channels | 1 | |
| Number of Bits | 24 | |
| Number of Functions | 1 | |
| Number of Terminals | 24 | |
| Operating Temperature-Max | 85 °C | |
| Operating Temperature-Min | -40 °C | |
| Output Bit Code | 2'S COMPLEMENT BINARY | |
| Output Format | Serial | |
| Package Body Material | Plastic/Epoxy | |
| Package Code | HVSON | |
| Package Shape | Rectangular | |
| Package Style | Small Outline, Heat Sink/Slug, Very Thin Profile | |
| Sample Rate | 1.6 Mhz | |
| Seated Height-Max | 0.8 Mm | |
| Supply Voltage-Nom | 2.5 V | |
| Surface Mount | Yes | |
| Technology | Cmos | |
| Temperature Grade | Industrial | |
| Terminal Finish | Matte Tin (Sn) | |
| Terminal Form | No Lead | |
| Terminal Pitch | 0.5 Mm | |
| Terminal Position | Dual | |
| Width | 4 Mm |
LTC2512IDKD-24#PBF Frequently Asked Questions (FAQ)
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A good layout and routing practice for the LTC2512IDKD-24#PBF involves keeping the analog and digital grounds separate, using a solid ground plane, and minimizing the length of the analog input traces. Additionally, it's recommended to use a low-impedance source for the analog input and to decouple the power supply pins with capacitors.
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The LTC2512IDKD-24#PBF has an internal calibration circuit that can be used to calibrate the device. The calibration process involves applying a known input voltage and then using the device's internal calibration registers to adjust the gain and offset. The datasheet provides a detailed calibration procedure, and it's recommended to follow it carefully to achieve the highest accuracy.
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The maximum sampling rate of the LTC2512IDKD-24#PBF is 1Msps (million samples per second). However, the actual sampling rate may be limited by the system's clock frequency, the analog input bandwidth, and the digital interface used to communicate with the device.
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Yes, the LTC2512IDKD-24#PBF can be used in a multi-channel application. The device has a serial interface that allows multiple devices to be daisy-chained together, enabling the conversion of multiple analog channels. However, the maximum number of channels that can be converted simultaneously depends on the system's clock frequency and the desired sampling rate.
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The power consumption of the LTC2512IDKD-24#PBF depends on the operating mode and the clock frequency. In normal operation, the device consumes around 15mW. To minimize power consumption, the device can be put into a low-power standby mode, and the clock frequency can be reduced. Additionally, the power consumption can be further reduced by using a lower supply voltage.