Call 888-665-2765 for GSA
Call 888-665-2765 for GSA
G0174A 850nm XFP module (9.95 to 11.10Gbit/s)
G0175A 1310nm XFP module (9.95 to 11.30Gbit/s)
G0176A 1550nm XFP module (9.95 to 10.75Gbit/s)
G0177A 850nm SFP module (1.062 to 4.25Gbit/s)
G0178A 1310nm SFP module (0.155 to 2.67Gbit/s)
G0179A 1550nm SFP module (0.155 to 2.67Gbit/s)
MD1231A1 Data Quality Analyzer Mainframe, including first year of software upgrade service
MN8110B I/O Adapter with additional Frame Trigger Input Connector (for Rx Test of PHS base stations)
MP1590B Network Performance Tester
MP1591A Network Performance Tester
MT8860A-10 WLAN Antenna and Adaptor
MT8860B WLAN Test Set (802.11b Version)
MU181600A Optical Transceiver (XFP)
MU181601A Optical Transceiver (SFP)
View all Anritsu LAN Analyzers
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10GE-OTN_N For Nxx module - 10Gigabit Ethernet Over OTU-2 Test Option (requires 10GLAN_N test option) (requires 11.1Gbps XFP optical module)
10GLAN_N 10Gigabit Ethernet LAN Test Option for Nxx module
10GWAN_N 10Gigabit Ethernet WAN Test Option for Nxx module (requires 10GLAN_N LAN test option)
10GWAN_T 10G WAN test option for T6 module
400452 1550nm Pluggable Laser (SFP-LR2) for Nxx module
GFP For Nxx module - Generic Framing Procedure (GFP) test option
Supports High Order Bulk-Filled SDH/SONET mappings and VCAT mappings (if equipped) for Bulk Filled Ethernet and Framed Ethernet GFP mappings per ITU G.7041
GFP-T For Nxx module - Generic Framing Procedure-Transparent (GFP) test option
Supports High Order Bulk-Filled SDH/SONET mappings and VCAT mappings (if equipped) for Transparent GFP mapping per ITU G.7041
LCAS_N For Nxx module - Link Control Adjustment Scheme (LCAS) test option
LCAS mappings for the selected VCAT options
NIC A11 NIC Chassis with DS1/DS3/E1/E3/E4 Protocol Analyzer
NIC A11N31 NIC Chassis with SONET/SDH up to OC-48/STM-16 with 1310nm SFP and DS1/DS3/E1/E3/E4 Protocol Analyzer
NIC A11N41 NIC Chassis with SONET/SDH up to OC-192/STM-64 with 1310nm SFP and XFP and DS1/DS3/E1/E3/E4 Protocol Analyzer
NIC A14 NIC Chassis with DS1/DS3/E1/E3/E4 Protocol Analyzer with DS1/DS3/E1/E3/E4 Jitter Testing
NIC T1 NIC Chassis with Ethernet Protocol Analyzer (8x10/100/1000 base T, 4xGbE(850nm SFP))
NIC T1T6 NIC Chassis with Ethernet Protocol Analyzer (8x10/100/1000 base T, 4xGbE(850nm SFP), 1x10GbE(1310nm XFP))
NICPlus A11N41T1 NIC Plus Chassis with SONET/SDH up to OC-192 with 1310nm SFP and XFP and DS1/DS3/E1/E3/E4 Protocol Analyzer and Ethernet Protocol Analyzer (8x10/100/1000 base T, 4xGbE(850nm SFP))
NICPlus A11N41T1T6 NIC Plus Chassis with SONET/SDH up to OC-192 with 1310nm SFP and XFP and DS1/DS3/E1/E3/E4 Protocol Analyzer and Ethernet Protocol Analyzer (8x10/100/1000 base T, 4xGbE(850nm SFP), 1x10GbE(1310 XFP))
View all Digital Lightwave Inc. LAN Analyzers
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990-GM-2 ADSL/ADSL2/2+ Golden Modem Option for CopperPro Loop Testers/Analyzers
990DSL2 CopperPro Next Gen Copper Loop Analyzer w/TDR & wideband spectral analysis for ADSL2+
990VDSL CopperPro Next Gen Copper Loop Analyzer w/TDR & wideband spectral analysis for VDSL (P/N 2555156)
ANALYZEAIR ANALYZEAIR WI-FI SPECTRUM ANALYZER (P/N 2583778)
C1001TP FRONT TAP SHOE 303
C4901 FTS 556-NO THREAD,WIRED F TO B
C4901PF FTS 556-THREADED,WIRED F TO B
C4901PM FTS 556-THREADED-WIRED L TO R
C4903 FTS, AT&T TOOL LESS/AT&T 99
C4904 FTS 508 PORTA
C4906 RELIABLE CQF 50 CROSS CONNECT
C4914 CARRYING CASE, SMALL
C4917 CARRYING CASE, LARGE
C4927 FRONT TAP SHOE 76, 1
C4928 FRONT TAP SHOE -76
View all Fluke Networks LAN Analyzers
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860541 8171 AirAnalyzer DC Input 12 - 18 V Hardware Option
860542 8172 AirAnalyzer DC Input 18 - 36 V Hardware Option
860543 8173 AirAnalyzer DC Input 36 - 72 V Hardware Option
View all Willtek LAN Analyzers
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Overview:
Logic analyzer captures digital data from a digital system and presents it to a user so that the user can locate failure of the digital system.
A HP 1630D Logic Analyzer showing a timing diagram.The basic problem that a logic analyzer solves is that a digital circuit is too fast to be observed by a human being, and has too many channels to be examined with an oscilloscope.
A logic analyzer would trigger on a complicated sequence of digital events, and then copy a large amount of digital data from the system under test. The best logic analyzers behaved like software debuggers (showing the flow of the computer program), or oscilloscopes.
When logic analyzers first came into use, it was common to attach several hundred "clips" to a digital system. Later, specialized connectors came into use. In modern computer systems various other tools have made logic analyzers obsolete for many uses. For example, many microprocessors have hardware support for software debuggers. Many digital designs, including those of ICs, are simulated to detect defects before the unit is constructed. The simulation usually provides logic analysis displays. Often, complex discrete logic is verified by simulating inputs and testing outputs using boundary-scan logic. None of these exactly reproduce the high-speed data capture function of a logic analyzer, but they cover most real needs for debugging digital circuits.
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