AD4855
Buffered, 8-Channel Simultaneous Sampling, 16-Bit 250 kSPS DAS
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- Complete 16-bit data acquisition system
- Simultaneous sampling of 8 internally buffered channels
- 250 kSPS per channel throughput
- Differential, wide common-mode range inputs
- ±75 pA typical input leakage at 25°C
- Full-scale input step settling time < 300 ns
- Integrated reference and reference buffer (4.096 V)
- Integrated supply decoupling capacitors
- 27 mW per channel at 250 kSPS, scales with throughput
- Minimal external signal conditioning
- Seamless high dynamic range
- Per sample, per channel automatic gain ranging
- Maintains ppm-level INL
- Per channel SoftSpan input ranges, bipolar or unipolar
- ±40 V, ±25 V, ±20 V, ±12.5 V, ±10 V, ±6.25 V, ±5 V, ±2.5 V
- 0 V to 40 V, 25 V, 20 V, 12.5 V, 10 V, 6.25 V, 5 V, 2.5 V
- Rail-to-rail input overdrive tolerance
- High performance
- INL: ±160 μV typical (±40 V range)
- SNR: 94.6 dB single-conversion typical (±40 V range)
- DR: 98.1 dB single-conversion typical (±40 V range)
- THD: −117 dB typical (±40 V range)
- CMRR: 120 dB typical
- Digital flexibility
- SPI CMOS (0.9 V to 5.25 V) and LVDS serial input and output
- Optional oversampling with 16-bit digital averaging
- Optional offset, gain, and phase correction
- 7.00 mm × 7.00 mm, 64-ball BGA full solution footprint
The AD4855 is a fully buffered, 8-channel simultaneous sampling, 16-bit, 250 kSPS data acquisition system (DAS) with differential, wide common-mode range inputs. Its functional architecture is shown in Figure 1. Operating from a 5 V low voltage supply, flexible input buffer supplies, and using the precision low drift internal reference and reference buffer, the AD4855 allows the SoftSpan range of each channel to be independently configured to match the native application signal swing, minimizing additional external signal conditioning. To further maximize single-conversion dynamic range, the AD4855 incorporates seamless high dynamic range (SHDR) technology. When enabled, the input signal path gain of the channel is automatically optimized on a sample-by-sample basis, minimizing converter noise on each sample without impacting linearity.
The 11 MHz bandwidth, picoamp input analog buffers, wide input common-mode range, and 120 dB common-mode rejection ratio (CMRR) of the AD4855 allow the DAS to directly digitize input signals with arbitrary swings on INx+ and INx−. Its input signal flexibility, combined with ±160 μV integral nonlinearity (INL), no missing codes at 16 bits, 94.6 dB signal to noise ratio (SNR), and 98.1 dB dynamic range, make the AD4855 an ideal choice for applications requiring high accuracy, throughput, and precision in a compact solution footprint. Enabling 16-bit oversampling offers further SNR and dynamic range improvements. Optional per channel offset, gain, and phase adjustment provide the ability to calibrate and remove system-level errors upstream to the DAS.
The AD4855 features a serial peripheral interface (SPI) register configuration bus (0.9 V to 5.25 V) and supports both low voltage differential signaling buses (LVDS) and complementary metal-oxide semiconductor (CMOS) conversion data output buses, selectable using the LVDS/CMOS pin. Between one and eight lines of data output can be employed in CMOS mode, allowing the user to optimize bus width and throughput.
The 7.00 mm × 7.00 mm, 64-ball, ball grid array (BGA) of the AD4855 includes all critical power supply and reference bypass capacitors, minimizing full solution footprint and component count and reducing sensitivity to application printed circuit board (PCB) layout. The device operates over an extended industrial temperature range of −40°C to +125°C.
Note that throughout this data sheet, multifunction pins such as LVDS/CMOS are referred to either by the entire pin name or by a single function of the pin. For example, LVDS when only that function is relevant.
Applications
- Automatic test equipment
- Avionics and aerospace
- Instrumentation and control systems
- Semiconductor manufacturing
- Test and measurement
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AD4855
Documentation
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Data Sheet
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User Guide
1
Documentation
ADI has always placed the highest emphasis on delivering products that meet the maximum levels of quality and reliability. We achieve this by incorporating quality and reliability checks in every scope of product and process design, and in the manufacturing process as well. "Zero defects" for shipped products is always our goal. View our quality and reliability program and certifications for more information.
Part Model | Pin/Package Drawing | Documentation | CAD Symbols, Footprints, and 3D Models |
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AD4855BBCZ | 64-Lead BGA (7 mm x 7 mm x 1.42 mm) |
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AD4855BBCZ-RL-13 | 64-Lead BGA (7 mm x 7 mm x 1.42 mm) |
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- AD4855BBCZ
- Pin/Package Drawing
- 64-Lead BGA (7 mm x 7 mm x 1.42 mm)
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
- AD4855BBCZ-RL-13
- Pin/Package Drawing
- 64-Lead BGA (7 mm x 7 mm x 1.42 mm)
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
Evaluation Kits 1
EVAL-AD4857
Evaluating the AD4857 Buffered, 8-Channel Simultaneous Sampling, 16-Bit 1 MSPS DAS
Product Detail
The EVAL-AD4857FMCZ is designed to demonstrate the performance of the AD4857 and to provide access to many included configuration options that are accessed via a simple ACE plug-in graphical user interface (GUI). The AD4857 is a fully buffered, 8-channel simultaneous sampling, 16-bit, 1 MSPS data acquisition system (DAS) with differential, wide common-mode range inputs.
The EVAL-AD4857FMCZ on-board components include the following:
- The LTC6655 high precision, low drift, 4.096 V voltage reference (not used by default)
- The LT1761, low noise, 1.8 V, 2.5 V, and 5 V low dropout (LDO) regulators
- The LT8330 low quiescent current (IQ) boost converter
For full details on the AD4857, see the AD4857 data sheet, which must be consulted in conjunction with this user guide when using the EVAL-AD4857FMCZ evaluation board.
This evaluation board can also be used to evaluate the performance of the AD4855.
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