二手 LTX-CREDENCE Fusion HFI #155507 待售
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ID: 155507
优质的: 2005
Tester
Digital Pins: 384
DPS: 2
Octal Sources: 2 (VI)
Currently installed
2005 vintage
Configuration
HEAD_COUNT 1
VX_BASELINE 3
VX_BASELINE 245956
CRATE TC: FUSION_VME_CRATE 2590-00-DA-? -opt -head all
P10 : GLBIF 2593-00-AA-?
P11 : VX4_VME_PS_CONTROL 2267-01-AA-? -opt
P12 : PM_COMBO 2738-01-BA-? -opt
P14 : PM_CLK_DISTRIBUTION 2739-00-AA-? -opt
P212: PM_COMBO_CIF 2759-02-AA-? -opt
DEVICES:
FREQ_SRC1: PTS310 874-9778-00-AA-?
FREQ_SRC2: PTS1000 874-9981-00-CA-?
FREQ_STD : REF_10MHZ 630-0362-00-AA-?
FREQ_SRC_VX_DIG: PTSD310 874-0009-00-AA-? -- Fusion Digital clk src
-- As of R10.8.0 it is possible to add CTMU and ACMUX entries to the DEVICES section
-- in order to generate a powerup error when the CTMU or ACMUX has not been detected
-- (LTXun14480). Please note that unlike clocks and frequency standard, CTMU and ACMUX
-- entries are optional. If not added the tester will continue to boot and work
-- as in R10.7.x and earlier.
-- possible options as the CTMU are:
CTMU: DTS2075 874-5282-01-A-? -opt
-- only one option for ACMUX:
ACMUX: ACMUX 865-7263-01-01-? -opt
CRATE 1 : SCANAII_CRATE 2831-00-IA-? -opt -head all
P1 : SM_CRATE_CONTROL 1624-00-00-? -opt
P2 : SMS_DIGITAL 2289-00-00-? 3 -opt
P3 : SMS_ANALOG_IF 2241-00-00-? 3 -opt
P4 : SMS_DIGITAL 2289-00-00-? 4 -opt
P5 : SMS_ANALOG_IF 2241-00-00-? 4 -opt
P6 : SMS_CLK_DIST 2595-02-AA-? -opt
P7 : CPS_CONTROL 3181-00-CA-? -opt
P8 : RF_PM_GPIB_INTFC 2579-00-BB-? -opt
P9 : RFP_CONTROL 2580-00-AA-? -opt
P17 : DPS_CONTROL 915-01-BA-? 1 -opt -- DPS Controller
P18 : DPS100 1545-01-AB-? -opt -- DPS[1,2]
P101: PSH_CONTROL 948-00-00-? -opt
P102: PSH_24V_17V_0V 2752-00-00-? -opt
P103: PSH_2X_15V 92-00-00-? -opt
P104: PSH_2X_15V 92-00-00-? -opt
P105: PSH_3X_5V 1459-00-00-? -opt
P106: PSH_3X_5V 1459-00-00-? -opt
P107: PSH_12V_5V_2V 94-00-00-? -opt
P109: PSH_48V_48V 1462-00-00-? -opt
P113: PSH_15V_15V 1461-00-00-? -opt
CRATE 2 : AP_96PIN_CRATE 2137-01-BA-? -opt -head all
P1 : CRATE_CONTROL 914-00-BA-?
P6 : AP_CONTROL 915-01-BA-? 1 -opt -head 1 --Pins 1-24
P7 : AP_OCTAL_SOURCE 2135-00-BA-? -opt --Analog Pins 1-8
P8 : AP_OCTAL_SOURCE 2135-00-BA-? -opt --Analog Pins 9-16
P101: PS_CONTROL 948-00-BA-? -opt
P102: PSK_2V_5V 1007-00-BA-? -opt
P103: PSK_5V_12V_2 2224-00-AA-? -opt
P104: PSK_15V_15V_HD 2697-00-BA-? -opt
P105: PSK_48V_48V_2 1042-00-BA-? -opt
P106: PSK_48V_48V_2 1042-00-BA-? -opt
P107: PSK_40V_40V 1008-00-BA-? -opt
P206: APC_CIF 2175-00-AA-? -opt
P210: APC_CIF 2175-00-AA-? -opt
CRATE TH: TH_HF_VX5 2758-00-KA-? -opt -head 1
JA08: TH_SMS_HS_BUFFER 3036-00-AA-? -opt -- sms 3
JA09: TH_SMS_HS_BUFFER 3036-00-AA-? -opt -- sms 4
JA14: TH_OCTAL_AP 2524-00-AA-? -opt -- chan [ 1.. 8]
JA15: TH_OCTAL_AP 2524-00-AA-? -opt -- chan [ 9..16]
JA23: TH_VX4_THBIF 0709-00-AA-? -opt
P100: TH_LAMBDA_PWR_BP 2683-03-DA-? -opt
P101: TH_PDC_25_25_CE 0080-01-AA-? -opt
P102: TH_PDC_15_15_CE 0081-01-AA-? -opt
P103: TH_PDC_5P3_5P1_CE 0082-01-AA-? -opt
P104: TH_PDC_12_75W_CE 0083-01-AA-? -opt
P105: TH_PDC_25_25_CE 0080-01-AA-? -opt
P106: TH_PDC_15_15_10A_CE 0084-01-AA-? -opt
P107: TH_PDC_5P1_75W_CE 0085-01-AA-? -opt
P108: TH_PDC_5P1_CE 0086-01-AA-? -opt
P109: TH_PDC_12_75W_CE 0083-01-AA-? -opt
P111: TH_PDC_5P3_CE 0088-01-AA-? -opt
P112: LAMBDA_VX4_PS_CTRL 3007-00-AA-? -opt
P314: HF_TH_PWR_ADAPTER 2769-03-AA-? -opt
J425: TH_CPS_5A_PIN 2792-03-AA-? -opt -- channels [1..4]
J445: TH_CPS_5A_PIN 2792-03-AA-? -opt -- channels [9..12]
J465: TH_CPS_5A_PIN 2792-03-AA-? -opt -- channels [5..8]
J485: TH_CPS_5A_PIN 2792-03-AA-? -opt -- channels [13..16]
J2000: TH_HF_VX5_DIGITAL_BP 3030-00-CA-? -- VX5 TH Digital BP
J2001: TH_JPEC 3038-04-AA-? -opt -- channels [0..15]
J2003: TH_JPEC 3038-03-AA-? -opt -- channels [256..271]
J2005: TH_JPEC 3038-04-AA-? -opt -- channels [16..31]
J2007: TH_JPEC 3038-03-AA-? -opt -- channels [272..287]
J2009: TH_JPEC 3038-04-AA-? -opt -- channels [32..47]
J2011: TH_JPEC 3038-03-AA-? -opt -- channels [288..303]
J2013: TH_JPEC 3038-04-AA-? -opt -- channels [48..63]
J2015: TH_JPEC 3038-03-AA-? -opt -- channels [304..319]
J2017: TH_JPEC 3038-04-AA-? -opt -- channels [64..79]
J2019: TH_JPEC 3038-03-AA-? -opt -- channels [320..335]
J2021: TH_JPEC 3038-04-AA-? -opt -- channels [80..95]
J2023: TH_JPEC 3038-03-AA-? -opt -- channels [336..351]
J2025: TH_JPEC 3038-04-AA-? -opt -- channels [96..111]
J2027: TH_JPEC 3038-03-AA-? -opt -- channels [352..367]
J2029: TH_JPEC 3038-04-AA-? -opt -- channels [112..127]
J2031: TH_JPEC 3038-03-AA-? -opt -- channels [368..383]
J2033: TH_JPEC 3038-03-AA-? -opt -- channels [128..143]
J2037: TH_JPEC 3038-03-AA-? -opt -- channels [144..159]
J2041: TH_JPEC 3038-03-AA-? -opt -- channels [160..175]
J2045: TH_JPEC 3038-03-AA-? -opt -- channels [176..191]
J2049: TH_JPEC 3038-03-AA-? -opt -- channels [192..207]
J2053: TH_JPEC 3038-03-AA-? -opt -- channels [208..223]
J2057: TH_JPEC 3038-03-AA-? -opt -- channels [224..239]
J2061: TH_JPEC 3038-03-AA-? -opt -- channels [240..255]
J2101: TH_VXBUF 7482-02-AA-? -opt -- channels [1..64,257..320,513..576,769..832] digital_bif
J2102: TH_VXBUF 7482-02-AA-? -opt -- channels [65..128,321..384,577..640,833..896] digital_bif
J2103: TH_VXBUF 7482-02-GA-? -opt -- channels [129..192,385..448,641..704,897..960] digital_bif
J2104: TH_VXBUF 7482-02-AA-? -opt -- channels [193..256,449..512,705..768,961..1024] digital_bif
J2200: TH_FTBP 7472-01-AA-? -opt -- digital
J2201: TH_FACB 7474-07-AA-? -opt -- digital
J2202: TH_TMBD 2330-02-AA-? -opt -- digital
J2203: TH_POWER_BD 2851-02-AA-? -opt -- digital
CRATE HSS_BUS.
LTX-CREDENCE Fusion HFI是一种最终测试设备,旨在以最短的设置时间和增强的工艺能力提供可靠且可重复的测试结果。该系统旨在优化高频互连(HFI)的特性,采用先进的融合技术,测试封装和连接性,超越传统的故障隔离方法。Fusion HFI设备结合了接触A和接触B技术,能够检测到各种缺陷,如针头弯曲、弯曲、短裤、打开、间隙和虚拟通道定时。LTX-CREDENCE Fusion HFI机器包含精密刀具设备,可提供高精度、信号保真度和吞吐量。此资产使用集成的柔性基板,该基板由来自每个测试配置和支持硬件的探测器组成。针对特定测试对每个探测器进行优化,为每个特定测试应用程序优化信号完整性。该模型包括几个与标准连接器设计和直角接触器配置兼容的自定义探测器。Fusion HFI设备还具有高级测试功能,例如快速准确的针针定时测试和同时实时反馈。这样可以确保同时测试所有接触针脚,而不必在每个针脚上放置单独的探针。该系统还提供直观的操作员界面,通过交互式视觉反馈方便操作。LTX-CREDENCE Fusion HFI单元提供各种选项和功能,以进一步提高性能。该机器减少了与HFI测试和测量相关的时间和复杂性,并提高了响应时间和可靠性。配置设置可以针对测试环境进行定制,从而在测试过程中实现最大的灵活性。该工具还配备了许多其他功能,包括实时数据捕获、分层设置设置、自定义序列编程以及强大的用户派生报告功能。Fusion HFI资产可为任何高频互连测试需求提供卓越的性能和可靠性。该模型提供低设置时间和增强的过程能力,是一个可靠且可重复的解决方桉,可确保任何应用程序的最佳性能。
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