KAD/IBM/101 2 channel IMB serial Bus Monitor
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Features
- Monitors up to two IMB busses
- Coherently parses traffic (up to 65 words) and tags for up to 1024 messages (including one catchall slot) per bus
- Aperiodic transmission of packetized IBM messages including tags as iNET-X parser aligned payload structure per channel
- Message counter per bus
- Pass-through output per bus
Applications
- IMB bus monitoring and recording
KAM/CHS/13U Acra KAM-500 chassis - 13 Slots
The KAM/CHS/13U/ET is a thirteen user-slot Acra KAM-500 chassis, which along with the housing and backplane, includes a power supply module which regulates power supplies for the backplane...
KAD/ARI/103 ARINC-573/717 bus monitor parser - 1 channel
The KAD/ARI/103 is an ARINC-717 bus monitor that supports parsing of an ARINC-717 (DFDR) bus on a major frame level, with built-in error detection on a single module. ARINC-717 is backwards...
KAD/UAR/102 4 channel Universal Asynchronous Parser
The KAD/UAR/102 is used to parse (coherently extract specific bytes) and snarf (send all data to a FIFO) up to four RS-232/422/485 channels. The module is able to parse and snarf each channel at...
KAD/VID/106 H.264 Video Encoder
The KAD/VID/106 is an H.264 video encoder card that converts one of three composite analog video inputs, or one Y/C analog video input to digital video and compresses it. Compressed video bit-rate...
KAD/MAT/101 Microcontroller-based module
The KAD/MAT/101 allows you run your own programs based on a dual core C6000DSP+ARM9 microcontroller. It provides high performance DSP functions in a widely used architecture. You can develop...
KAD/ADC/136 8 channel Flexible ADC
The KAD/ADC/136 is used to condition and digitize up to eight analog channels. Each channel can be configured for use in differential-ended or single-ended voltage measurement, ICP sensor, RTD...
KAD/ADC/135 12 channel Full/½-bridge ADC
The KAD/ADC/135 is used to condition and digitize up to 12 differential ended analog channels using simultaneous sampling 16-bit A/D for each channel. At the heart of the KAD/ADC/135 is a...
KAM/CHS/04L Acra KAM-500 chassis, narrow form - 4 user-slots
The KAM/CHS/04L is a compact four user-slot Acra KAM-500 chassis, which along with the housing and backplane, includes a KAM/PSU/006 power supply unit. The backplane has four slots for...
KAM/CHS/03F Acra KAM-500 chassis (base-mounted power supply and housing) - 3 user-slots
The KAM/CHS/03F is a compact three user-slot Acra KAM-500 chassis, which along with the housing and backplane, includes a KAM/PSU/008 power supply unit. The backplane has three slots for...
NET/REC/001 Ethernet Network Recorder (CompactFlash)
The NET/REC/001 is a stand-alone Ethernet network recorder. Incoming Ethernet frames are written to a CompactFlash card using a FAT32 file system. The NET/REC/001 can be configured via...
2 channel IMB serial Bus Monitor Parser/Packetizer
The KAD/IBM/101 is a two-channel serial bus monitor which combines the capabilities of a coherent message parser with the flexibility of an iNET-X packetizer on a single module.
The parser parses up to 1024 messages per channel and their associated time and status tags. Each message has a stale bit (word read before), skipped bit (buffer overwritten), and empty bit (no message received since power-on). Intermodule Data Bus (IMB) messages can be parsed based on the 16-bit Label field in each IMB message. Each parser slot can hold a message of up to 65, 16-bit words long.
Every message received from each of the two busses is captured and packetized—along with the time tags and a bus tag—with other received messages in a packetized buffer. The packetizer contents can be assembled into Ethernet frames by an iNET-X controller or transmitter, for example the KAD/BCU/140, for transmission over Ethernet
To ensure efficient use of the bandwidth, iNET-X packets are only generated once a payload threshold has been reached. Additionally, a programmable timeout ensures that smaller packets are generated even during periods of low activity on the bus, thereby allowing real-time analysis and processing of the acquired messages. When there is no traffic, no packets are generated. Both channels have outputs and therefore are not end terminating nodes. All IMB messages received at each channel are re-transmitted in a passthrough fashion.
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