ADS62C17IRGCR - Dual 11-Bit 200MSPS ADC | TI
MPN: ADS62C17IRGCR β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $45.32 | $45.32 |
| 10 | $41.87 | $418.70 |
| 100 | $36.54 | $3,654.00 |
| 500 | $32.1 | $16,050.00 |
| 1,000 | $28.75 | $28,750.00 |
Drop-in alternatives for ADS62C17IRGCR β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Quick Comparison Tool β Select alternative parts for side-by-side comparison:
ADS62C17IRGCT
β Drop-Inπ Reference alternative (not in catalog)
ADS62C17IRGC25
β Drop-Inπ Reference alternative (not in catalog)
ADS62PF49IRGCR
β Drop-Inπ Reference alternative (not in catalog)
ADS6422IRGCT
β Drop-Inπ Reference alternative (not in catalog)
AD9627ABCPZ-125
β Drop-Inβ In Stock
$60.2 / Unit
View Datasheet βADS62C17IRGCR Maximum Ratings & Electrical Characteristics
| Resolution | 11 Bit |
| Number of Channels | 2 |
| Sampling Rate | 200 MSPS |
| Input Type | Differential |
| Data Interface | Parallel, Serial, LVDS |
| Architecture | Pipelined |
| SNR | 68 dBFS |
| SFDR | 85 dBc |
| Power Dissipation | 1.1 W |
| Analog Supply Voltage | 3.3 V |
| Digital Supply Voltage | 1.8 V |
| Operating Temperature Range | -40Β°C to +85Β°C |
| Package | 64-VQFN (9x9) |
| Mounting Type | Surface Mount |
| RoHS Status | Compliant |
ADS62C17IRGCR Pin Configuration
| Pin 1 | AVDD β Analog power supply (3.3V) |
| Pin 2 | AVDD β Analog power supply (3.3V) |
| Pin 3 | AVSS β Analog ground |
| Pin 4 | AVSS β Analog ground |
| Pin 5 | INP_A β Positive analog input channel A |
| Pin 6 | INM_A β Negative analog input channel A |
| Pin 7 | AVSS β Analog ground |
| Pin 8 | AVDD β Analog power supply (3.3V) |
| Pin 9 | INP_B β Positive analog input channel B |
| Pin 10 | INM_B β Negative analog input channel B |
| Pin 11 | AVSS β Analog ground |
| Pin 12 | AVDD β Analog power supply (3.3V) |
| Pin 13 | CLKP β Positive clock input |
| Pin 14 | CLKM β Negative clock input |
| Pin 15 | AVSS β Analog ground |
| Pin 16 | AVDD β Analog power supply (3.3V) |
| Pin 17 | DRVDD β Digital output driver supply (1.8V) |
| Pin 18 | DRVSS β Digital ground |
| Pin 19 | D0A β Digital output bit 0 channel A |
| Pin 20 | D1A β Digital output bit 1 channel A |
| Pin 21 | D2A β Digital output bit 2 channel A |
| Pin 22 | D3A β Digital output bit 3 channel A |
| Pin 23 | D4A β Digital output bit 4 channel A |
| Pin 24 | D5A β Digital output bit 5 channel A |
| Pin 25 | D6A β Digital output bit 6 channel A |
| Pin 26 | D7A β Digital output bit 7 channel A |
| Pin 27 | D8A β Digital output bit 8 channel A |
| Pin 28 | D9A β Digital output bit 9 channel A |
| Pin 29 | D10A β Digital output bit 10 channel A |
| Pin 30 | DRVSS β Digital ground |
| Pin 31 | DRVDD β Digital output driver supply (1.8V) |
| Pin 32 | D0B β Digital output bit 0 channel B |
| Pin 33 | D1B β Digital output bit 1 channel B |
| Pin 34 | D2B β Digital output bit 2 channel B |
| Pin 35 | D3B β Digital output bit 3 channel B |
| Pin 36 | D4B β Digital output bit 4 channel B |
| Pin 37 | D5B β Digital output bit 5 channel B |
| Pin 38 | D6B β Digital output bit 6 channel B |
| Pin 39 | D7B β Digital output bit 7 channel B |
| Pin 40 | D8B β Digital output bit 8 channel B |
| Pin 41 | D9B β Digital output bit 9 channel B |
| Pin 42 | D10B β Digital output bit 10 channel B |
| Pin 43 | DRVSS β Digital ground |
| Pin 44 | DRVDD β Digital output driver supply (1.8V) |
| Pin 45 | SDO β Serial data output |
| Pin 46 | SCLK β Serial clock input |
| Pin 47 | SDEN β Serial data enable |
| Pin 48 | RESET β Reset input |
| Pin 49 | PDN β Power down control |
| Pin 50 | AVDD β Analog power supply (3.3V) |
| Pin 51 | AVSS β Analog ground |
| Pin 52 | AVDD β Analog power supply (3.3V) |
| Pin 53 | AVSS β Analog ground |
| Pin 54 | AVDD β Analog power supply (3.3V) |
| Pin 55 | AVSS β Analog ground |
| Pin 56 | AVDD β Analog power supply (3.3V) |
| Pin 57 | AVSS β Analog ground |
| Pin 58 | AVDD β Analog power supply (3.3V) |
| Pin 59 | AVSS β Analog ground |
| Pin 60 | AVDD β Analog power supply (3.3V) |
| Pin 61 | AVSS β Analog ground |
| Pin 62 | AVDD β Analog power supply (3.3V) |
| Pin 63 | AVSS β Analog ground |
| Pin 64 | PAD β Exposed thermal pad (solder to ground) |
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this component. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
ADS62C17IRGCR is suitable for 6 applications: Multi-Carrier Base Stations, Software-Defined Radio, Radar Systems, Test and Measurement Equipment, Communications Receivers, Medical Imaging.
Multi-Carrier Base Stations
The ADS62C17IRGCR's 200 MSPS sampling rate and high SFDR make it ideal for digitizing multi-carrier signals in GSM/UMTS/LTE base stations. Its SNRBoost technology enhances weak signal extraction in the presence of strong interferers, improving receiver sensitivity. The dual-channel architecture supports diversity reception, reducing system cost and board space. With a power dissipation of only 1.1W, it enables compact, energy-efficient remote radio heads.
Recommended
Software-Defined Radio
In SDR systems, the ADS62C17IRGCR enables direct IF sampling at 200 MSPS, eliminating multiple downconversion stages. Its 11-bit resolution and 68 dBFS SNR provide sufficient dynamic range for wideband signals. The LVDS output interface simplifies digital connectivity to FPGAs, while the small 64-VQFN package supports dense board layouts. The device's industrial temperature range ensures reliable operation in field-deployed radios.
Recommended
Radar Systems
The ADS62C17IRGCR's high sampling rate and dynamic performance are critical for radar receivers that must detect small targets amidst clutter. Its dual-channel capability supports I/Q sampling, simplifying quadrature demodulation. The device's low power consumption is advantageous for phased-array radar modules where thermal management is challenging. The pipelined architecture ensures low latency, essential for real-time processing.
Recommended
Test and Measurement Equipment
In oscilloscopes and spectrum analyzers, the ADS62C17IRGCR provides the high-speed digitization needed to capture transient signals. Its 200 MSPS sampling rate allows observation of signals up to 100 MHz, while the 11-bit resolution ensures accurate amplitude measurement. The parallel output interface enables high-throughput data transfer to acquisition systems. The device's small footprint and low power are beneficial for portable test instruments.
Recommended
Communications Receivers
The ADS62C17IRGCR is designed for high-performance communications receivers, offering excellent SFDR and SNR for demanding modulation schemes. Its dual-channel architecture supports MIMO and diversity reception, improving link reliability. The device's SNRBoost feature can be configured to enhance SNR in a specific frequency band, which is beneficial for carrier aggregation. The LVDS output reduces digital noise coupling, preserving analog performance.
Recommended
Medical Imaging
In ultrasound and MRI systems, the ADS62C17IRGCR's high-speed sampling and low noise are essential for capturing fine details. Its dual-channel capability allows simultaneous acquisition of multiple transducer elements, improving frame rates. The device's low power consumption is critical for portable ultrasound devices. The industrial temperature range ensures reliable operation in clinical environments.
Recommended
Recommended Products Summary
Engineering reference data for ADS62C17IRGCR β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | ADS62C17IRGCT | ADS62C17IRGC25 | ADS62PF49IRGCR | ADS6422IRGCT | AD9627ABCPZ-125 |
|---|---|---|---|---|---|---|
| Resolution | 11 Bit | 11 Bit | 11 Bit | 12 Bit | 12 Bit | 12 Bit |
| Sampling Rate | 200 MSPS | 200 MSPS | 200 MSPS | 250 MSPS | 125 MSPS | 125 MSPS |
| Number of Channels | 2 | 2 | 2 | 2 | 4 | 2 |
| SNR | 68 dBFS | 68 dBFS | 68 dBFS | 70 dBFS | 69 dBFS | 70 dBFS |
| SFDR | 85 dBc | 85 dBc | 85 dBc | 88 dBc | 86 dBc | 87 dBc |
| Power Dissipation | 1.1 W | 1.1 W | 1.1 W | 1.2 W | 1.5 W | 1.0 W |
| Package | 64-VQFN (9x9) | 64-VQFN (9x9) | 64-VQFN (9x9) | 64-VQFN (9x9) | 64-VQFN (9x9) | 64-VQFN (9x9) |
| Brand | Texas Instruments | Texas Instruments | Texas Instruments | Texas Instruments | Texas Instruments | Analog Devices |
Key Differentiators
- SNRBoost technology (vs AD9627ABCPZ-125)
- Higher sampling rate (vs ADS6422IRGCT)
- Lower power consumption (vs ADS6422IRGCT)
Design Notes
Use separate analog (AVDD) and digital (DRVDD) supplies with proper decoupling. Place 0.1uF and 10uF capacitors close to each supply pin. The analog supply should be clean; consider using a low-noise LDO like TPS7A4700RGWR to minimize noise coupling into the ADC.
Route the differential analog inputs as controlled impedance pairs, keeping them away from digital traces. Use a solid ground plane under the ADC and connect the exposed pad directly to it. Ensure the clock input is terminated properly to minimize jitter, which directly affects SNR.
The ADS62C17IRGCR dissipates up to 1.1W. The exposed pad must be soldered to a thermal via array connected to the ground plane to keep the junction temperature within limits. For high ambient temperatures, consider adding a heatsink or forced airflow.
Compliance Information
RoHS compliant per TI product page. Not AEC-Q100 qualified.