说明
- Highly integrated data acquisition solution
- Wide Input Common Mode Range of -16V to +12V
- Maximum input range of ±28V differential
- 3 Pin-Selectable Gain Options
- G = 1, 0.364, 0.143 V/V
- 4th order AAF with maximum flatness and linear phase
- Full aliasing protection with 80 dB typ rejection
- Excellent device to device phase matching and drift
- Combined precision ac and dc performance
- Total system dynamic range up to 124 dB
- -115 dB typical THD at ±28V input range (IN3)
- 79 dB DC CMRR at ±28V input range (IN3)
- ±3 ppm typ INL
- 5 ppm/°C max gain drift
- ± 0.2° maximum device phase matching at 20 kHz
- Programmable output data rate, filter type, and latency
- Linear phase digital filter options:
- Wideband low ripple FIR filter (256 kSPS, 110 kHz max input BW)
- Sinc5 Filter (1.024 MSPS, 208.9 kHz max input BW, 4 uS max group delay)
- Sinc3 Filter (50/60Hz rejection)
- Linear phase digital filter options:
- Integrated LDO
- Built-in supply decoupling capacitors
- Configuration through pin strapping or SPI interface
- Digital interface optimized for isolated applications
- Suite of diagnostic check mechanisms
- Operating temperature range: −40°C to +105°C
- Packaging: 12 mm × 6 mm × 1.6 mm 84-ball BGA with 0.8mm ball-pitch
- 8x footprint reduction versus discrete solution
特性
The ADAQ7767-1 is a 24-bit precision data acquisition (DAQ) μModule® system that encapsulates signal conditioning, conversion, and processing blocks into one system in package (SiP) design that enables rapid development of highly compact, high performance precision DAQ systems.
The ADAQ7767-1 consists of:
- A fourth order, low noise, linear phase anti-aliasing filter (AAF)
- A low noise, low distortion, high bandwidth, gain-selectable ADC driver plus an optional linearity boost buffer
- A high-performance medium bandwidth 24-bit sigma delta ADC with programmable digital filter
- A low noise, low dropout linear regulator
- Reference buffers
- Critical passive components required for the signal chain
The ADAQ7767-1 supports a wide variety of input types, which include unipolar and bipolar single-ended, pseudo-differential and differential signals, with a maximum differential range of ±28V and a common mode voltage range of −16V to +12V using IN3. With the precision of Analog Devices’s iPASSIVES™ technology, ADAQ7767-1 performs with excellent common mode rejection ratio (CMRR). The three pairs of pin-selectable gain settings offer additional system dynamic range and improved signal chain noise performance with input signals of lower amplitude. In applications requiring high input impedance, ADAQ7767-1 allows the customer to choose their preferred input amplifier.
A 4th order low-pass analog filter combined with the user programmable digital filter ensures the signal chain is fully protected against the high frequency noise and out of band tones presented at the input node from aliasing back into the band of interest. The analog low pass filter is carefully designed to achieve high phase linearity and maximum in-band magnitude response flatness. Constructed with iPASSIVES™ technology, the resistor network used within the analog low-pass filter possess superior resistance matching in both absolute values and over temperature. As a result, the signal chain performance is maintained with minimum drift over temperature and the ADAQ7767-1 has an excellent device to device phase matching performance.
A high-performance ADC driver amplifier ensures the full settling of the ADC input at the maximum sampling rate. The driver circuit is designed to have minimum additive noise, error, and distortion while maintaining stability. The fully differential architecture helps maximizing the signal chain dynamic range.
The analog to digital converter (ADC) inside the ADAQ7767-1 is a high performance, 24-bit precision, single channel Sigma-Delta converter with excellent AC performance and DC precision and a throughput rate of 256 kSPS from a 16.384 MHz MCLK. It includes an optional linearity boost buffer that can further improve the signal chain linearity.
The ADAQ7767-1 is specified with the input reference voltage of 4.096V, but the device can support reference voltages ranging from VDD_ADC down to 1V.
The ADAQ7767-1 has two types of reference buffers. A precharge reference buffer to ease the reference input driving requirement or a full reference buffer to provide high impedance reference input. Both buffers are optional and can be turned off through register configuration.
ADAQ7767-1 supports three clock input types: crystal, CMOS or LVDS.
Three types of digital low pass filters are available on the ADAQ7767-1. The wideband low ripple FIR filter has a filter profile similar to an ideal brick wall filter, making it a great fit for doing frequency analysis. The Sinc5 filter has a low latency path with a smooth step response while maintaining a good level of aliasing rejection. It supports an output data rate up to 1.024 MSPS from a 16.384 MHz MCLK, making the Sinc5 filter ideal for low latency data capturing and time domain analysis. The Sinc3 filter supports a wide decimation ratio and can produce output data rate down to 50 SPS from a 16.384 MHz MCLK. This combined with the simultaneous 50/60Hz rejection post filter makes Sinc3 filter especially useful for precision DC measurement. All the three digital filters on the ADAQ7767-1 are FIR filters with linear phase response. The bandwidth of the filters, which directly corresponds to the bandwidth of the DAQ signal chain are fully programable through register configuration.
The ADAQ7767-1 supports two device configuration methods. The user has the option to choose to configure the device via register write through its SPI interface, or through a simple hardware pin strapping method to configure the device to operate under a number of pre-defined modes.
A single SPI interface supports both the register access and the sample data readback functions. The ADAQ7767-1 always acts as a SPI slave. Multiple interface modes are supported with a minimum of three IO channels required to communicate with the device.
ADAQ7767-1 features a suite of internal diagnostic functions that can detect a broad range of errors during operation to help improving the system reliability.
The ADAQ7767-1 supply connections can be greatly simplified by using its internal LDO. 0.1 uF decoupling capacitors are also integrated to further reduce the number of discrete components. On power standby, each functional block of the device can be put into standby mode. This enables the device to have a total power consumption less than TBD mW.
The ADAQ7767-1 device has an operating temperature range of −40°C to +105°C and is available in a 12mm x 6mm, 84-ball BGA package with 0.8mm ball pitch, making it suitable for multiple-channel applications. The footprint of the device is eight times smaller compared to the footprint of the same solution using discrete components.
APPLICATIONS
- Universal input measurement platform
- Electrical Test & Measurement
- Sound & Vibration, Acoustic & Material Science R&D
- Control & Hardware in Loop Verification
- Condition monitoring for predictive maintenance
- Audio Test
Protected by U.S. Patent 10,680,633 B1
Protected by U.S. Patent 10,979,062 B2
参数
类型 | 描述 |
航空航天和防务 | 航空电子产品和解决方案 |
工业自动化技术 (IAT) | 状态监控的振动检测 |
仪器仪表和测量 | 汽车测试解决方案 |
精密传感器接口 | 振动检测 |



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