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68HC(S)12 In-Circuit Debugger
ICD12Z
P&E's ICD12Z for Windows is a powerful tool for debugging code. It uses the HC(S)12 processor's background debug mode (BDM), via one of P&E's hardware interfaces, to give the user access to all on-chip resources.
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68HC16 In-Circuit Debugger
ICD16Z
P&E's ICD12Z for Windows is a powerful tool for debugging code. It uses the HC(S)12 processor's background debug mode (BDM), via one of P&E's hardware interfaces, to give the user access to all on-chip resources.
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In-Circuit Debugger for RS08 Family of Microcontrollers
ICDRS08
P&E's ICDRS08 is a powerful tool for debugging code. It uses the processor's background debug mode Module(BDM), via any of P&E's RS08 compatible interfaces (see product add-ons for more information), to give the user access to all on-chip resources.
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Power Architecture 5xx/8xx In-Circuit Debugger
ICDPPCZ
P&E's ICDPPC for Windows is a powerful tool for debugging code. It uses the processor's background debug mode (BDM), via the ICD cable, to give the user access to all on-chip resources. The ICDPPCZ software works with Freescale's MPC5xx/8xx devices.
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68HCS08 In-Circuit Debugger
ICDHCS08
P&E's ICDHCS08 is a powerful tool for debugging code. It uses the processor's background debug mode (BDM), via the ICD cable, to give the user access to all on-chip resources.
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Microprocessor Development System
DS-M8
# Real-Time and Transparent In-Circuit Emulator# Supports PIC12xxx, PIC14xxx, PIC16xxx, PIC17xxx and others# Uses Microchip Bond-Out Technology# Maximum Frequency Support# Standard 64Kx16 Emulation Memory# 32Kx48 Real-time Trace with Filters and Triggers# 64K Hardware Breakpoints with External Signals# Memory Mapping Capabilities# Software for MS-Windows# Source-Level Debugger for C and Assembler
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Microprocessor Development System
DS-48
# Real-Time and Transparent In-Circuit Emulator# Supports Philips Telecom Derivatives# Adaptable to 8051 Derivatives# Emulates 1.5V to 6V Microcontrollers# Maximum Frequency of 40MHz# 8K of Internal Memory# DOS and MS-Windows Debuggers# 32K Trace Memory and Logic Analyzer "on the Fly"# 8K Hardware and Conditional Breakpoints
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In-Circuit Emulator
DS-51
* Real-Time and Transparent In-Circuit Emulator * Supports Most of the 8051 Derivatives * Emulates 1.5V to 6V Microcontrollers * Maximum Frequency of 42MHz * 64K/512K of Internal Memory with Banking Support * 32K Trace Memory "on the Fly" * 64K Hardware and Conditional Breakpoints * MS-Windows and Keil ?Vision Debuggers * Source-Level Debugger for Assembler, PLM and C * On-Line Assembler and Disassembler * Performance Analyzer * Serially linked to IBM PC at 115 Kbaud
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CPU3xx Incircuit Debugger
ICD32Z
P&E's ICD32 for Windows is a powerful tool for debugging code. It uses the processor's background debug mode (BDM), via the ICD cable, to give the user access to all on-chip resources.
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In-Circuit Debugger for ColdFire V1
ICDCFV1
P&E's ICDCFV1 is a powerful tool for debugging code that supports Freescale's ColdFire V1 microcontrollers.
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Microprocessor Development System
DS-85
* Real-Time and Transparent In-Circuit Emulator * Windows Debugger - Update 2009 * Symbolic Debugger compatible with Intel Object Files * 64K Hardware Breakpoints * 64K of Internal Memory * 32K x 32 Bit Trace Memory and Logic Analyzer with External Probes * Serially linked to IBM PC or Compatible Hosts * On-line Assembler and Disassembler * Source and Listing Windows
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In-Circuit Debugger for Power Architecture 55xx/56xx (Nexus)
ICDPPCNEXUS
P&E's ICDPPCNEXUS for Windows is a powerful tool for debugging code on a Freescale MPC55xx/56xx processor. The debugger comes with P&E's PROGPPCNEXUS flash programmer.
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In-Circuit Emulator
DS-251
# Real-Time and Transparent In-Circuit Emulator for 251s# Uses Intel and Atmel Licensed Bondout Technology# Standard 256K Emulation Memory# Real-Time Trace up to 128K Frames Deep, 128 Bits Wide# Complex Hardware Breakpoints# Supports Both Binary Mode and Source Mode# MS-Windows Debugger# High-Level Support for Popular C-Compilers# Full Support of Local and Global Variables# On-Line Assembler and Disassembler# Performance Analyzer
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In-Circuit Tester
Sparrow MTS 30
The Sparrow MTS 30 is a 19“ test system that can be integrated into any standard rack. The In-Circuit tester can also be used as benchtop test system. With this compact and flexible tester you can perform both analog and digital In-Circuit and functional tests.
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In-Circuit Tester
Sigma MTS300
The system is designed for high throughput; with up to 1,000 analog measurements per second it is one of the fastest test systems available on the market. Sigma test systems provide analog and digital In-Circuit Test capabilities, Vectorless Testing, Functional Test, Boundary Scan and On-Board Programming.
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high-speed JTAG debugger
Bus Blaster v4
Bus Blaster is an experimental, high-speed JTAG debugger for ARM processors, FPGAs, CPLDs, flash, and more. Thanks to a reprogrammable buffer, a simple USB update makes Bus Blaster v2 compatible with many different JTAG debugger types in the most popular open source software.
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In-Circuit Tester
Eagle MTS180
The Eagle offers low testing cost for high volume with even the most complex fixture applications. Equipped with a Press-Down-Unit and a combination of analog and hybrid In-Circuit test pins, the MTS180 is in a class for its own. Furthermore, the tester can be equipped with functional test modules to provide even higher fault coverage and thus satisfy the test requirements of a larger number of customers.
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PC Analyzer / Debugger
RapidDriver Explorer
RapidDriver Explorer is an intelligent tool for PC hardware analysis and debugging. RapidDriver Explorer allows you to start working with your hardware device with just a few clicks of the mouse. Simply install your new hardware, create a new RapidDriver project, and then select your device from the list of PnP devices auto-detected by RapidDriver.
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In-Circuit Testers
SPEA’s Bed of Nails Board Testers are scalable In-Circuit Test platforms that deliver the shortest test time, superior diagnostic accuracy, and extended test coverage for the most comprehensive range of electronic products.SPEA’s In-Circuit Board Testers are designed to increase yield, shorten the testing time, and cut the cost-of-test. Thanks to their unique Multi-Tester and Multi-Core Architecture, the SPEA’s Board Testers provide up to ten times greater throughput than conventional ICT test systems.
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Debugger
Most cores for the embedded market provide access to on-chip debug features via a debug port. TRACE32 tools connect to this to control the core, access the data being processed by the core and provide developers with debugging over the embedded device: start, stop, step control; reading and writing memory and registers; setting breakpoints; tracking values of variables and so on. This means developers can diagnose software failures and memory corruption issues and correct the system to make it perform as expected.
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Hardware Debugger for the Raspberry Pi
TAP-HAT
The TAP-HAT is a low-cost hardware debugger for the Raspberry Pi®. Its flexible multi-modal design supports USB-connected hardware debugging of a Pi board, connection of external hardware debuggers to a Pi, or use of the Pi as a network attached hardware debugger.
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Analog In-Circuit Tester
406C
The 406C is an open architecture power up test platform designed to facilitate the implementation of functional testing after the MDA test is completed. Internally dubbed as "Armadillo" the new architecture provides the user almost unlimited flexibility by combining the best of the VME buss and a dedicated ICT buss.
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Wireless In-Circuit Test Fixtures
Higher density more complex circuit boards complicate testing requirements while smaller more tightly spaced test pads create a wiring challenge for the fixture fabricators, test engineers and maintenance personnel. Wireless fixtures solve the challenges associated with the nest of wires found in standard long wire fixtures. Wireless fixtures replace the “nest” of wires with copper traces on a multilayered printed circuit board called a Translator Board or T-Board®. Circuit Check’s wireless fixture technologies reduce test program debug and maintenance times while easing the ECO process. Thus allowing for the higher level of test performance, the ability to probe smaller denser targets and achieve ultra-high node counts.
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In-Circuit Test (ICT) Fixtures
At Forwessun we support and manufacture In-Circuit Test Fixtures for a range of Test Systems. We regularly build fixtures that are supported on a range of systems including - - HP3070- Agilent- Keysight- GenRad- TeradyneWith over 50 years in the industry, we provide a weatlth of knowledge and support to our customers. We are a global company and can support businesses all over the world with the help of over 30 experienced test engineers.
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In-Circuit Test Fixtures
In-circuit testing provides electronic manufacturers a reliable, high fault coverage verification method for the assembly process. Circuit Check ICT fixtures are robust, reliable and designed for easy customization to cover a large range of PCB sizes without impacting turnaround time. We stock a large variety of fixture sizes and actuation methods to meet your test demands. If a stocked sized ICT fixture is not adequate our engineering staff will design a custom solution.
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In-Circuit Tester
IP-5000, IP-5300
The IP-5000 series is a space-saving high-speed board inspection device with a compact design.
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In-Circuit Tester Integration
The benefits of boundary-scan are noticed in all phases of a product life cycle. By coupling the power of Corelis boundary-scan tools with an In-Circuit Tester (ICT), a complete, integrated solution is available that offers the best advantages of both technologies.Boundary-scan operates as the perfect companion to ICT. Boundary-scan is capable of testing areas of printed circuit board assemblies that are difficult to access due to physical space constraints and loss of physical access, which is often due to fine pitch components such as Ball Grid Array (BGA) devices. Conversely, the ICT is able to check the non-boundary-scan compatible portion of the unit under test (UUT) such as analog.
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High Level Language Debugger and Emulator Tool
Universal Debug Engine
Programmierbare Logik & Systeme GmbH
With Universal Debug Engine (UDE®) PLS offers on top solutions for software development of systems-on-silicon including debug support for the 16 Bit and 32 Bit microcontrollers C16x, C166™, ST10F276, ST10F280, XC166, XC2000, XE166, XMC4500, C166S V2, SDA6000, TriCore™ from Infineon and STMicroelectronics, Power Architecture® MPC55xx, MPC560x, MPC563x, MPC57xx from NXP™, PowerPC PPC440SPe from AMCC, Power Architecture® SPC560, SPC563, SP574 from STMicroelectronics, ARM7™, ARM9™, ARM11™, Cortex™-M0, Cortex™-M0+, Cortex™-M3, Cortex™-M4, Cortex™-M7, Cortex™-R4, Cortex™-A8, Cortex™-A9, XScale™, SuperH™ SH-2A derivatives in a new multicore debug environment as well as technical support. The extensive feature list includes functions like: high speed and flexible target access via JTAG, cJTAG with OCDS L1, EmbeddedICE, OnCE, COP, DAP, DAP2, SWD support, OCDS L2 trace, MCDS trace, CoreSight™ trace, ETM trace, ETB trace, Nexus trace, ASC, SSC, 3Pin and CAN, in-system FLASH memory programming of FLASH / OTP with UDE MemTool, support of various RTOS, OSEK® and test automation tools.
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In-Circuit Test System
TestStation LX
TestStation LX is a cost-effective in-circuit test solution providing high-volume electronics manufacturers with reliable, high-quality test for the latest printed circuit board assembly technologies.