Teledyne SP Devices
Teledyne SP Devices designs, develops, and manufactures world-leading modular data acquisition and signal generation instruments. As a part of the Teledyne family with over 15 500 employees worldwide, we have access to some of the industry's most knowledgeable experts, research and development capabilities, and manufacturing facilities worldwide.
- 46 (0)13 465 0600
- 46 (0)13 991 3044
- spd_sales@teledyne.com
- SPD_Sales@Teledyne.com
- Teknikringen 8D
Linköping, SE-583 30
Sweden
-
product
10 GSPS, 14-Bit Digitizer
ADQ7DC
With 14 bits and 10 GSPS, ADQ7DC improves the resolution in high-sampling rate applications beyond what was previously possible. This performance-boost has effectively helped our customers overcome performance trade-offs and have led to significant advances in many applications. ADQ7DC can be operated in either single- or dual-channel mode with 10 or 5 GSPS sampling rate respectively.
-
product
Multi-Channel 12-Bit, 5 GSPS Digitizer
ADQ36
ADQ36 offers software-selectable two- or four-channel configuration with 5 or 2.5 GSPS sampling rates respectively. The programmable DC-offset makes it ideal for sampling unipolar signals.
-
product
Real-Time Pulse Detection Firmware
FWPD
The core challenge in pulse detection is to design a system for random events. The Teledyne SP Devices’s firmware option FWPD, for the ADQ14 and ADQ7, is tailored to detected and analyze pulses in demanding measurement applications where the properties of the pulses (such as timing or length) are not known in advance.
-
product
14-Bit AWQ, 2 GSPS Waveform Generator
SDR14TX
The SDR14TX is a dual-channel flexible arbitrary waveform generator (AWG). It offers an outstanding combination of high bandwidth and dynamic range which enables generation of wideband signals.
-
product
Single-Channel 12-Bit, 1 GSPS Digitizer
ADQ30
ADQ30 offers a single-channel configuration with 1 GSPS sampling rate. The programmable DC-offset makes it ideal for sampling unipolar signals.
-
product
1.6 GSPS, 14-bit RF Digitizer
ADQ1600RF
The ADQ1600RF (formerly named ADQ1600) is a world-leading 14 bit digitizer. With its unique 1600 MSPS capture rate, enabled by SP Devices’ ADC interleaving technology ADX, the ADQ1600RF opens for demanding measurements such as RF/IF sampling, high resolution ultra sound imaging and high-speed data recording.
-
product
12-Bit, 2.5 GSPS Digitizer Optimized for Pulse Detection
ADQ32-PDRX
ADQ32-PDRX acquires the input signal via a single connector and uses an onboard splitter to separate the signal into two paths with different gain settings. The high gain path is used to accurately capture low-amplitude portions of the input signal whereas the low gain path ensures the acquisition of high-amplitude peaks without causing saturation. The two signal paths are then combined in real-time inside the onboard field-programmable gate array (FPGA) to create a digitized output with improved performance.PDRX increases the dynamic range by 3 bits and is fully integrated into the digitizer for fast and easy system-level integration. ADQ32-PDRX is therefore comparable with a 16-bit digitizer in terms of dynamic range, but with the benefit of offering a higher sampling rate.
-
product
1.6 GSPS, 14-bit Time-domain Digitizer
ADQ1600TD
The ADQ1600TD is a world-leading 14 bit digitizer optimized for time-domain pulse capture. With its unique 1600 MSPS capture rate, enabled by SP Devices’ ADC interleaving technology ADX, the ADQ1600TD opens for demanding measurements such as time-domain pulse capture and high-speed data recording.
-
product
ADQ Development Kit for Custom Firmware in the FPGA of an ADQ-Series Digitizer
The ADQ Development Kit is a tool for developing custom firmware in the FPGA of an ADQ-series digitizer. SP Devices’ digitizers are characterized by a combination of high speed and high resolution.The amount of data from the digitizer is thus very high. The most efficient way of processing the data is through a real-time implementation inside the FPGA on the digitizer. The ADQ Development Kit opens the FPGA for the implementation of real-time signal processing algorithms.The ADQ Development Kit is available for all digitizer models.
-
product
Dual-Channel 12-Bit, 1 GSPS Digitizer
ADQ33
ADQ33 offers a two channel configuration with 1 GSPS sampling rate. The programmable DC-offset makes it ideal for sampling unipolar signals.
-
product
Multi-Channel 10-Bit Digitizer
ADQ8-8C
With compact modular form factors, 8 channels per board, and high-precision multi-board synchronization capabilities, ADQ8-8C is ideal for massive multi-channel implementations.
-
product
Low-noise 14-bit Digitizer
ADQ214-DCLN
The ADQ214-DCLN digitizer features dual channels, 14-bit resolution, 400 MSPS capture rate and is optimized for highly accurate low noise measurements. The ADQ214-DCLN is ideal for phase noise measurements and wideband IQ-receivers.
-
product
Firmware
Field-Programmable Gate Arrays (FPGAs) are an ideal fit for data acquisition systems as they offer unparalleled real-time signal processing power. Moving functionality from the host PC to the on-board FPGAs helps offload the PCs central processing unit (CPU) and relaxes data transfer rate requirements. This capability is key in achieving the performance levels needed in many of today's leading-edge applications.All our data acquisition and generation modules host Xilinx FPGAs and are delivered with pre-installed general data acquisition firmware (for ADQ7 and ADQ14 we refer to this firmware as "FWDAQ"). In addition to the standard/default firmware, we also offer optional firmware development kits (available for all models) and application-specific firmware packages (available for ADQ7 and ADQ14 only). More information about these below.
-
product
Hardware
Teledyne SP Devices Hardware - 14-Bit Digitizers, 12-Bit Digitizers, 10-Bit Digitizers, Waveform Generators, Extension Modules, etc
-
product
Real-Time Waveform Averaging Firmware
FWATD
The Advanced Time-Domain firmware option, FWATD, equips the ADQ7 and ADQ14 digitizers with advanced tools for sophisticated time-domain measurements. Multiple steps of noise suppression is provided in order to achieve extreme dynamic range, so that rarely occurring weak signals can be detected and distinguished from noise.FWATD can track and correct for temperature-dependent baseline (DC level) fluctuations, which may otherwise lead to incorrect detection or even detection of false pulses. It supports several types of noise reduction for both random and systematic noise. The flexible architecture and user-defined settings enables tailored noise reduction for various applications.