JTAG Technologies Inc.
We are a solutions company specializing in PCB assembly testing, fault diagnosis and device programming. We develop innovative products built upon boundary-scan (IEEE Std 1149.x) standards and supply our software and hardware products and services world-wide.
- 877 FOR JTAG
+31 (0) 40 295 0870 - info@jtag.com
- Bogert 6
Eindhoven, 5612 LZ
Netherlands, Kingdom of the
Categories
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JTAG Functional Test
JFT
JFT comprises a series of software modules that support boundary-scan test and programming activities under Python, National Instruments LabVIEW and Microsoft .NET framework. Using JFT users can create JTAG/boundary-scan test application scripts, VIs or programs for PCB assemblies and systems that control individual driver/sensor pins, groups of pins declared as variables or register bits. These applications are typically used to test logic devices or mixed signal clusters and can also be transformed into re-usable test 'modules'. Pairing JFT with JTAG CoreCommander emulative test modules gives an effective, low-cost system for performing tests through embedded device peripherals (ADCs, Memory Controllers etc..)
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JTAG Live Controller
The JTAG Live Controller is USB connected and powered and features a single test access port in JTAG Technologies standard 10-way IDC pin-out. The JTAG Live controller is a smart, low-cost and easy-to-use USB JTAG/Boundary-scan interface.
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eDAK For MAC Panel
JT 2147/eDAC for MAC Panel
The JT 2147/eDAK is a new variant of the JTAG Technologies QuadPOD signal conditioning interface specifically designed for use within a MAC Panel ‘Scout’ mass interconnect interface. The unit integrates both the JT 2148 transceiver circuitry plus four independent, programmable TAP modules (two of type JT 2149 and two of type JT2149/MPV) on a single board that matches the MAC Panel Direct Access Kit (DAK) form factor. Overall this configuration offers four Test Access Ports, 64 Digital IO Scan channels and reconfigurable (SCIL) capabilities
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CoreCommander
While many ICs are equipped with a JTAG (IEEE Std. 1149.1) boundary-scan register (BSR), a significant number of microprocessors and DSPs can be found with deficient or even non-existent BSRs. CoreCommander Micro uses the on-chip debug mode of processors to access ports and embedded peripheral controllers to promote ''kernel-centric'' testing. Similarly, in the case of today's Field Programmable Gate Arrays (FPGAs) test engineers can ''bridge'' from the JTAG interface to the resources of the gate array itself. Our CoreCommander FPGA product implements a translatorinterface that allows our JTAG hardware to control embedded IP cores via a variety of bus interfaces (e.g. Wishbone Avalon etc.).
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TAP Pods
JTAG Technologies designers have been developing high-speed digital test equipment for well over 30 years. The current range of controllers ranges from the compact, stylish and reliable JT 3705/USB to the rugged, dependable DataBlaster family and variants that have been developed for industrial use. The latest addition, JT5705/USB adds analog measure and source capabilities to provide a true mixed-signal tester platform.
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TAP Extender
JT 2135
The JT 2135 allows TAP signals to be extended away from the base JT 2137 (classic pod) by up to 1 meter and retain full pod’s frequency specifications. The active circuitry inside the JT 2135 compensates for the TDO signal return time of the longer interface cable. Multiple JT 2135s can be implemented if a longer extension is required.
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High Speed Device & Flash Programmer
JT 2147 QuadPOD
The JT 2147 QuadPOD high speed device programmer and flash programmer comprises JT 2148 transceiver and four independent, programmable JT 2149 TAP PODs and provides signal conditioning for the DataBlaster series of boundary-scan controllers. Used for gang, parallel, fast testing / Programming of devices.TAP pods can be housed integrally within the transceiver or they can be detached and reconnected via the (optional) one meter extension cable. The JT 2148 transceiver is available in standard (/10) or industrial (/13) variants. The /13 variant includes a SCSI cable splitter to allow system integrators to use flat ribbon cables into the transceiver itself which often simplifies fixture building.A fixture-embedded variant of the JT 2147 is available as part reference JT 2147/FXT. This unit integrates the function of the transceiver and four pod onto a single assembly. This variant can also support 64 DIOS channels and SCIL functions (see more images below for a picture of the JT 2147/FXT).
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32 Channel Multi-Purpose DIOS/TAP Modules/Interfaces for Spare JT 2148 QuadPOD Transceiver Slot
JT 2149/MPV eMPV
The JT 2149/MPV and the JT 2149/eMPV are a 32 channel multi purpose DIOS/TAP pod modules/interfaces that can be plugged into any spare JT 2148 QuadPOD transceiver slot. The DIOS channels of these units I/O interface pods enable increased fault coverage and thus improved diagnostic resolution during boundary-scan testing. The principal difference between the two versions is the use of an extended case on the eMPV that allows standard 0.1″ connections to be used to access ths TAP and static IO signals (see tab below)- on the standard /MPV unit these signals are available at the front face 0.05″ connector. The units are fully supported by JTAG Technologies’ development tools. Additional DIOS modules can be serially connected if more parallel access points are required.
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JTAG Test Software
JTAG Technologies software has been subject to a program of continuous development for over 20 years. The first products, launched in 1991 formed the start of our 'Classic' range of software and featured the first automatic boundary-scan test program generator (ATPG) for PCB interconnects plus associated test execution and diagnostics software. In 2006 JTAG Technologies launched it's new flagship tools platform JTAG ProVision.
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QuadPOD Conditioning Interface
JT 2147/VPC
The JT 2147/VPC is a variant of the JTAG Technologies QuadPOD signal conditioning interface specifically designed for use within Virginia Panel Corporation’s mass interconnect interface. The unit integrates both the JT 2148 transceiver circuitry, two independent, programmable TAP modules (of type JT 2149) and two TAP modules with I/O (of type JT 2149/MPV) on a single board that interfaces via the VPC QuadraPaddle connectors type G20x or G14x.
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19" Rack Mount Chassis, Industrial JTAG-Powered PCB Tester-Programmer 'CombiSystem'
JT 57××/RMIC
The new-concept, industrial JTAG-powered PCB tester-programmer the JT 57xx/RMIc ‘CombiSystem’ comprises a sleek base-level 19″ rack-mount chassis assembly that can house up to four customer-specified modules chosen from various JTAG (IEEE 1149.x) controllers, digital IO and analog IO and other measurement modules.
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DDC (Dual DIMM Carrier) DIOS Adaptor
JT 2702/DDC
The JT2702 Digital 256 channel JTAG I/O module. JT2702/DDC (Dual DIMM Carrier) is a DIMM DIOS accessory product. It is typically used in custom test adapters or fixtures where a large number of digital I/O channels are required with a minimum space overhead.
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Pod with Four Test Access Ports for 5v or 3.3V TTL Thresholds
JT 2137
The JT 2137 pod remains a popular choice for DataBlaster controller installations that require a compact signal conditioning pod embedded within a test fixture. The JT 2137 features four test access ports which together may be set for 5v or 3.3V TTL thresholds, although additional plug-in adapters are available that allow alternative thresholds to be set on a TAP by TAP basis (contact your local sales office for details). The 20-way 0.1″ IDC TAP headers comply with the standard JTAG Technologies 20-way pin-out and provide the additional flash programming controls Read/Busy and AutoWrite.
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BSD (Test Diagnostics)
BSD Test Diagnostics software can be added to either developer or factory run-time systems to further improve the location of faults such as net bridges (short-circuits), open pins, open nets and even ''twisted'' connections that can occur within cable assemblies. BSD Test diagnostics reports faults in a verbose English language statement with pin level information included and can easily interpret multiple fault conditions.


















