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Analog Devices
| Series | Category | # Parts | Status | Description |
|---|---|---|---|---|
| Part | Spec A | Spec B | Spec C | Spec D | Description |
|---|---|---|---|---|---|
| Series | Category | # Parts | Status | Description |
|---|---|---|---|---|
| Part | Spec A | Spec B | Spec C | Spec D | Description |
|---|---|---|---|---|---|
| Part | Reset Timeout [Min] | Reset | Supplier Device Package | Voltage - Threshold | Operating Temperature [Min] | Operating Temperature [Max] | Number of Voltages Monitored | Package / Case | Output | Type | Mounting Type | Current - Supply | Voltage - Supply | RF Type | Frequency [Min] | Frequency [Max] | Test Frequency | Output Configuration | Synchronous Rectifier | Frequency - Switching | Package / Case | Package / Case | Voltage - Output (Max) [Max] | Output Type | Number of Outputs | Voltage - Output (Min/Fixed) | Voltage - Input (Max) [Max] | Voltage - Input (Min) [Min] | Function | Number of D/A Converters | Settling Time | Differential Output | Voltage - Supply, Digital [Min] | Voltage - Supply, Digital [Max] | Voltage - Supply, Analog [Min] | Voltage - Supply, Analog [Max] | Reference Type | Number of Bits | INL/DNL (LSB) | Data Interface | Ratio - S/H:ADC | Number of A/D Converters | Architecture | Input Type | Package / Case | Configuration | Number of Inputs | Sampling Rate (Per Second) | Voltage - Supply [Min] | Voltage - Supply [Max] | Interface | Topology | Protection Features | Current - Supply (Max) [Max] | Current - Quiescent (Iq) | PSRR [Max] | PSRR [Min] | Current - Output | Number of Regulators | Voltage Dropout (Max) [Max] | Control Features | Number of Bits [custom] |
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Analog Devices | 140 ms | Active Low | SC-70-4 | 2.63 V | -40 °C | 125 °C | 1 | SC-82A SOT-343 | Open Drain or Open Collector | Simple Reset/Power-On Reset | Surface Mount | |||||||||||||||||||||||||||||||||||||||||||||||||||
Analog Devices | Die | Die | Surface Mount | 80 mA | 3.3 V | General Purpose | 600 MHz | 20 GHz | 600 MHz | |||||||||||||||||||||||||||||||||||||||||||||||||||||
Analog Devices | 16-SSOP | 0 °C | 70 °C | 16-SSOP | Surface Mount | Negative | 900 kHz | 0.154 in | 3.9 mm | -4.8 V | Adjustable | 1 | -1.225 V | 5.5 V | 2.7 V | Step-Up/Step-Down | ||||||||||||||||||||||||||||||||||||||||||||||
Analog Devices | 32-QFN (5x5) | 0 °C | 70 °C | Surface Mount | Voltage - Buffered | 4 | 20 µs | 1.71 V | 5.5 V | -4.5 V | 15.75 V | External Internal | 16 | 0.35 LSB 2.2 LSB | SPI | |||||||||||||||||||||||||||||||||||||||||||||||
Analog Devices | 10-MSOP-EP | 0 °C | 70 °C | 10-MSOP 10-TFSOP Exposed Pad | Surface Mount | 3.1 V | 3.6 V | 3.1 V | 3.6 V | External Internal | 14 | SPI | 1:1 | 1 | SAR | Differential Single Ended | 0.118 in 3 Lead | S/H-ADC | 1 | 3.5 M | ||||||||||||||||||||||||||||||||||||||||||
Analog Devices | 16-MSOP | 16-TFSOP | Surface Mount | 2.7 V | 5.5 V | SPI | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Analog Devices | DDPAK-7 | 0 °C | 125 ¯C | D2PAK (7 Leads + Tab) TO-263-8 TO-263CA | Surface Mount | Positive | 500 kHz | 12.9 V | Adjustable | 1 | 1.21 V | 15 V | 4.3 V | Step-Down | Buck SEPIC | |||||||||||||||||||||||||||||||||||||||||||||||
Analog Devices | -40 °C | 125 °C | SOT-23-5 Thin TSOT-23-5 | Surface Mount | Positive | 3 V | Adjustable | 0.8 V | 3.6 V | Over Current Over Temperature Under Voltage Lockout (UVLO) | 260 µA | 60 µA | 73 dB | 47 dB | 300 mA | 1 | 0.135 V | Enable | ||||||||||||||||||||||||||||||||||||||||||||
Analog Devices | 24-PDIP | 0 °C | 70 °C | 24-DIP | Through Hole | 0.3 in | 7.62 mm | Voltage - Buffered | 3 µs | -11.4 V | 16.5 V | External Internal | 12 bits | Parallel | Current Steering | |||||||||||||||||||||||||||||||||||||||||||||||
Analog Devices | 16-QFN (3x3) | 0 °C | 70 °C | 16-WFQFN Exposed Pad | Surface Mount | Voltage - Buffered | 4 | 3.8 µs | 2.7 V | 5.5 V | 2.7 V | 5.5 V | External Internal | 0.2 LSB 0.5 LSB | SPI | 10 |
| Series | Category | # Parts | Status | Description |
|---|---|---|---|---|
| Integrated Circuits (ICs) | 3 | 1 | The LTC2460/LTC2462 are ultra tiny, 16-Bit analog-to-digital converters with an integrated precision reference. They use a single 2.7V to 5.5V supply and communicate through an SPI Interface. The LTC2460 is single-ended with a 0V to VREFinput range and the LTC2462 is differential with a ±VREFinput range. Both ADC’s include a... Read More | |
Analog DevicesLTC2463Differential Ultra-Tiny, 16-Bit I2C ΔΣ ADCs with 10ppm/°C Max Precision Reference | Analog to Digital Converters (ADC) | 3 | 1 | The LTC2461/LTC2463 are ultra tiny, 16-Bit analog to digital converters with an integrated precision reference. They use a single 2.7V to 5.5V supply and communicate through an I2C Interface. The LTC2461 is single-ended with a 0V to 1.25V input range and the LTC2463 is differential with a 1.25V input range.... Read More |
| Data Acquisition | 4 | 1 | The LTC2470/LTC2472 are small, 16-bit analog-to-digital converters with an integrated precision reference and a selectable 208sps or 833sps output rate. They use a single 2.7V to 5.5V supply and communicate through a SPI Interface. The LTC2470 is single-ended with a 0V to VREFinput range and the LTC2472 is differential with... Read More | |
Analog DevicesLTC2471Selectable 208sps/833sps, 16-Bit I2C ΔΣ ADCs with 10ppm/°C Max Precision Reference | Analog to Digital Converters (ADC) | 1 | 1 | The LTC2471/LTC2473 are small, 16-bit analog-to-digital converters with an integrated precision reference and a selectable 208sps or 833sps output rate. They use a single 2.7V to 5.5V supply and communicate through an I2C Interface. The LTC2471 is single-ended with a 0V to VREFinput range and the LTC2473 is differential with... Read More |
| Analog to Digital Converters (ADC) | 3 | 1 | The LTC2470/LTC2472 are small, 16-bit analog-to-digital converters with an integrated precision reference and a selectable 208sps or 833sps output rate. They use a single 2.7V to 5.5V supply and communicate through a SPI Interface. The LTC2470 is single-ended with a 0V to VREFinput range and the LTC2472 is differential with... Read More | |
Analog DevicesLTC2473Selectable 208sps/833sps, 16-Bit I2C ΔΣ ADCs with 10ppm/°C Max Precision Reference | Integrated Circuits (ICs) | 4 | 1 | The LTC2471/LTC2473 are small, 16-bit analog-to-digital converters with an integrated precision reference and a selectable 208sps or 833sps output rate. They use a single 2.7V to 5.5V supply and communicate through an I2C Interface. The LTC2471 is single-ended with a 0V to VREFinput range and the LTC2473 is differential with... Read More |
| Data Acquisition | 2 | 1 | The LTC2480 combines a 16-bit plus sign No Latency ΔΣ™analog-to-digital converter with patented Easy Drive™technology. The patented sampling scheme eliminates dynamic input current errors and the shortcomings of onchip buffering through automatic cancellation of differential input current. This allows large external source impedances and input signals, with rail-to-rail input range... Read More | |
| Analog to Digital Converters (ADC) | 2 | 1 | The LTC2481 combines a 16-bit plus sign No Latency ΔΣ™analog-to-digital converter with patented Easy Drive technology and I2C digital interface. The patented sampling scheme eliminates dynamic input current errors and the shortcomings of on-chip buffering through automatic cancellation of differential input current. This allows large external source impedances and input... Read More | |
| Data Acquisition | 3 | 1 | The LTC2482 combines a 16-bit plus sign No Latency ΔΣ™analog-to-digital converter with patented Easy Drive technology. The patented sampling scheme eliminates dynamic input current errors and the shortcomings of on-chip buffering through automatic cancellation of differential input current. This allows large external source impedances and input signals with rail-to-rail input... Read More | |
| Data Acquisition | 1 | 1 | The LTC2483 combines a 16-bit plus sign No Latency ΔΣ™analog-to-digital converter with patented Easy Drive technology and I2C digital interface. The patented sampling scheme eliminates dynamic input current errors and the shortcomings of on-chip buffering through automatic cancellation of differential input current. This allows large external source impedances and input... Read More | |