規格
| 屬性 | 價值 |
| Package / Case | Tray |
| Part Status | Active |
| Number of Bits | 14 |
| Sampling Rate(Per Second) | 65M |
| Number of Inputs | 2 |
| Input Type | Differential, Single Ended |
| Data Interface | Parallel |
| Configuration | S/H-ADC |
| Ratio - S / H: ADC | 1:1 |
| Number of A/D Converters | 1 |
| Architecture | Pipelined |
| Reference Type | External, Internal |
| Voltage - Supply, Analog | 2.7V ~ 3.6V |
| Voltage - Supply, Digital | 2.25V ~ 3.6V |
| Features | Simultaneous Sampling |
| Operating Temperature | -40°C ~ 85°C |
| Supplier Device Package | 64-LQFP (7x7) |
概述
Description
The AD9248BSTZ-65 is a 14-bit, 65 MSPS (Mega Samples Per Second) analog-to-digital converter (ADC) from Analog Devices. It features low power consumption (typically 380 mW at 65 MSPS) and high dynamic performance, making it suitable for applications like communications, medical imaging, and instrumentation.
Key features include:
- 14-bit resolution with SNR (Signal-to-Noise Ratio) of 73.5 dB at 65 MSPS.
- Differential input with a 1.024 Vpp full-scale range.
- LVDS (Low-Voltage Differential Signaling) or CMOS output options.
- On-chip sample-and-hold and reference circuitry.
- 3.3 V supply operation with power-down modes for reduced consumption.
The AD9248BSTZ-65 comes in a 64-lead LQFP package and operates over an industrial temperature range (-40°C to +85°C). Its high-speed, low-power design makes it ideal for high-performance data acquisition systems.
For detailed specs, refer to the datasheet on Analog Devices' website.
Key features include:
- 14-bit resolution with SNR (Signal-to-Noise Ratio) of 73.5 dB at 65 MSPS.
- Differential input with a 1.024 Vpp full-scale range.
- LVDS (Low-Voltage Differential Signaling) or CMOS output options.
- On-chip sample-and-hold and reference circuitry.
- 3.3 V supply operation with power-down modes for reduced consumption.
The AD9248BSTZ-65 comes in a 64-lead LQFP package and operates over an industrial temperature range (-40°C to +85°C). Its high-speed, low-power design makes it ideal for high-performance data acquisition systems.
For detailed specs, refer to the datasheet on Analog Devices' website.
Equivalent
Equivalent products to the AD9248BSTZ-65 (14-bit, 65 MSPS ADC) include:
- AD9648 (14-bit, 80/105/125 MSPS, lower power)
- ADS4149 (14-bit, 250 MSPS, higher speed)
- LTC2208 (16-bit, 130 MSPS, higher resolution)
- MAX19515 (14-bit, 65 MSPS, similar specs)
Check datasheets for exact compatibility in your application.
- AD9648 (14-bit, 80/105/125 MSPS, lower power)
- ADS4149 (14-bit, 250 MSPS, higher speed)
- LTC2208 (16-bit, 130 MSPS, higher resolution)
- MAX19515 (14-bit, 65 MSPS, similar specs)
Check datasheets for exact compatibility in your application.
Features
The AD9248BSTZ-65 is a 14-bit, 65 MSPS analog-to-digital converter (ADC) with the following key features:
- Resolution: 14 bits
- Sampling Rate: 65 MSPS (Mega Samples Per Second)
- Input Bandwidth: 650 MHz (full power)
- SNR: 72.5 dBFS (typical at 65 MSPS, 70 MHz input)
- SFDR: 85 dBc (typical at 65 MSPS, 70 MHz input)
- Power Supply: 3.3 V (analog), 1.8–3.3 V (digital)
- Power Consumption: 595 mW (typical at 65 MSPS)
- Input Range: 2 Vpp differential
- Interface: Parallel CMOS/LVDS (selectable)
- Package: 64-lead LQFP
- Applications: Communications, medical imaging, instrumentation
Compact, high-performance, and versatile for demanding signal processing tasks.
- Resolution: 14 bits
- Sampling Rate: 65 MSPS (Mega Samples Per Second)
- Input Bandwidth: 650 MHz (full power)
- SNR: 72.5 dBFS (typical at 65 MSPS, 70 MHz input)
- SFDR: 85 dBc (typical at 65 MSPS, 70 MHz input)
- Power Supply: 3.3 V (analog), 1.8–3.3 V (digital)
- Power Consumption: 595 mW (typical at 65 MSPS)
- Input Range: 2 Vpp differential
- Interface: Parallel CMOS/LVDS (selectable)
- Package: 64-lead LQFP
- Applications: Communications, medical imaging, instrumentation
Compact, high-performance, and versatile for demanding signal processing tasks.
Pinout
The AD9248BSTZ-65 is a 14-bit, 65 MSPS analog-to-digital converter (ADC) with a 48-pin LQFP package.
### Key Functions:
- Analog Inputs (Pins 1, 2, 43, 44): Differential inputs (VIN+, VIN−) for signal sampling.
- Clock Input (Pin 42): External sampling clock (65 MHz max).
- Digital Outputs (Pins 5–20, 23–38): 14-bit parallel CMOS/TTL-compatible data (D0–D13).
- Power Supplies (Pins 21, 22, 39, 40, 45, 46): +3.3V (AVDD, DRVDD) and ground (AGND, DGND).
- Control Pins (Pins 3, 4, 41, 47, 48): Includes OE (output enable), SENSE (full-scale range adjust), and PDWN (power-down mode).
### Summary:
- 48-pin LQFP, 14-bit resolution, 65 MSPS.
- Differential analog input, CMOS/TTL outputs, and flexible power management.
### Key Functions:
- Analog Inputs (Pins 1, 2, 43, 44): Differential inputs (VIN+, VIN−) for signal sampling.
- Clock Input (Pin 42): External sampling clock (65 MHz max).
- Digital Outputs (Pins 5–20, 23–38): 14-bit parallel CMOS/TTL-compatible data (D0–D13).
- Power Supplies (Pins 21, 22, 39, 40, 45, 46): +3.3V (AVDD, DRVDD) and ground (AGND, DGND).
- Control Pins (Pins 3, 4, 41, 47, 48): Includes OE (output enable), SENSE (full-scale range adjust), and PDWN (power-down mode).
### Summary:
- 48-pin LQFP, 14-bit resolution, 65 MSPS.
- Differential analog input, CMOS/TTL outputs, and flexible power management.
Manufacturer
The AD9248BSTZ-65 is manufactured by Analog Devices, Inc. (ADI), a leading global semiconductor company specializing in high-performance analog, mixed-signal, and digital signal processing (DSP) integrated circuits. Founded in 1965 and headquartered in Norwood, Massachusetts, ADI serves industries like automotive, healthcare, industrial, and communications with precision data conversion, signal conditioning, and power management solutions. The AD9248BSTZ-65 is a 14-bit, 65 MSPS analog-to-digital converter (ADC) designed for applications requiring high-speed and high-resolution signal processing. Analog Devices is renowned for its innovation and reliability in the semiconductor industry.
Application
The AD9248BSTZ-65 is a 14-bit, 65 MSPS analog-to-digital converter (ADC) from Analog Devices. Its key application areas include:
- Communications: Used in base stations, software-defined radios (SDR), and broadband receivers.
- Medical Imaging: Supports ultrasound and MRI systems requiring high-speed data conversion.
- Test & Measurement: Ideal for oscilloscopes, spectrum analyzers, and data acquisition systems.
- Military/Aerospace: Applied in radar, electronic warfare, and avionics for high-precision signal processing.
- Industrial: Used in automation, instrumentation, and high-speed control systems.
Its high resolution and sampling rate make it suitable for demanding real-time signal processing applications.
- Communications: Used in base stations, software-defined radios (SDR), and broadband receivers.
- Medical Imaging: Supports ultrasound and MRI systems requiring high-speed data conversion.
- Test & Measurement: Ideal for oscilloscopes, spectrum analyzers, and data acquisition systems.
- Military/Aerospace: Applied in radar, electronic warfare, and avionics for high-precision signal processing.
- Industrial: Used in automation, instrumentation, and high-speed control systems.
Its high resolution and sampling rate make it suitable for demanding real-time signal processing applications.