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IC-CAP Modeling Configuration Agilent Technologies November 01, 2005 Page 1 Agilent IC-CAP Modeling Configuration - 1/f Noise Measurement Diagram GPIB.

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Presentation on theme: "IC-CAP Modeling Configuration Agilent Technologies November 01, 2005 Page 1 Agilent IC-CAP Modeling Configuration - 1/f Noise Measurement Diagram GPIB."— Presentation transcript:

1 IC-CAP Modeling Configuration Agilent Technologies November 01, 2005 Page 1 Agilent IC-CAP Modeling Configuration - 1/f Noise Measurement Diagram GPIB E8364B Vector Network Analyzer RF Subsystem Computer controller and IC-CAP software (quoted separately) RF Signal Flow Diagram GPI B x1 789 456 123 0. - @ n M  k m DC Subsystem Programmable DC Source Parametric Signal Flow Diagram 35670A Dynamic Signal Analyzer GPI B 34401A Digital Multimeter Not included

2 IC-CAP Modeling Configuration Agilent Technologies November 01, 2005 Page 2 Agilent IC-CAP Modeling Configuration - 1/f Noise Measurement Signal Flow RF Subsystem DC Subsystem Probe Station or Test Fixture E8364B Port 1 Port 2 11900A Adapter 2.4 mm, (m- m) f m 85133F Flexible Test Port Cable Set, 2.4 mm f (1) 5063-9809 Flexible Cable 10 in., 2.4 mm (m- m) (1) 5063-9809 Flexible Cable 10 in., 2.4 mm (m- m) (4) 16494A #002 Triaxial Cable, 3 m 11900C Adapter 2.4 mm, (f-m) 16494A #002 Triaxial Cable, 3 m 16494A #002 Triaxial Cable, 3 m 11612V K21 B.N. RF In G RF/DC Out FS 11612V K11 B.N. RF In G RF/DC Out FS SMU1 S F SMU2 S F SMU3 S F SMU4 S F 4156C Not included

3 IC-CAP Modeling Configuration Agilent Technologies November 01, 2005 Page 3 Agilent IC-CAP Modeling - DC Measurement Parametric Signal Flow Diagram Probe Station SMU1 S F SMU2 S F SMU3 S F SMU4 S F 4156C (4) 16494A #002 Triaxial Cable, 3 m 41501B HPSMU S F GNDUO (2) 16494A #002 Triaxial Cable, 3 m (2) 16493H #002 GNDU Cable, 3 m (2) 8120-2582 Coax Cable, BNC (m-m), 1.5 m (2) 1250-3231 Adapter, Triax (m) to BNC (f) (2) 1250-0080 Adapter, BNC Barrel (f-f) (2) 8120-5068 Coax Cable, SMA (m-m) 0.6 m (2) 1250-1700 Adapter, BNC (m) to SMA (f) Optional Equipment (Not Included)

4 IC-CAP Modeling Configuration Agilent Technologies November 01, 2005 Page 4 Agilent IC-CAP Modeling - 1/f Noise Measurement Parametric Signal Flow CFIE = Customer Furnished and Installed Equipment Probe Station SMU1 S F SMU2 S F SMU3 S F SMU4 S F 4156C 8120-1839 Coax Cable BNC (m-m), 0.6 m (1) 8120-5068 Coax Cable, SMA (m-m), 0.6 m 16494A #002 Triaxial Cable, 3 m 1250-1700 Adapter, BNC (m) to SMA (f) 8120-5068 Coax Cable, SMA (m-m), 0.6 m 34401A OutIn Stanford Research Amplifier SR570 or equivalent (Not included) 1250-1700 Adapter, BNC (m) to SMA (f) 35670A Ch 1 InOut Low Pass Filter Triax (f)/BNC (f) (Not included) CFIE

5 IC-CAP Modeling Configuration Agilent Technologies November 01, 2005 Page 5 Agilent IC-CAP Modeling - 1/f Noise Measurement Rack Layout E3661B 1.6 m Rack Cabinet E3668B Feed through Panel Anti-static work surface E3668B Feed through Panel 35181M Drawer Unit, 5.25 inch 4156C Precision Semiconductor Parameter Analyzer E8364B Vector Network Analyzer E7734A Filler Panel (4-EIA) E7735A Filler Panel (5-EIA) E7731A Filler Panel (1-EIA) 35670 Dynamic Signal Analyzer x1 789 456 123 0. - @ n M  k m Optional Equipment (Not Included) Optional Equipment (Not Included)

6 IC-CAP Modeling Configuration Agilent Technologies November 01, 2005 Page 6 Agilent IC-CAP Modeling Configuration - Rack Layout Footprint (top view) Rack cabinet 60 cm W x 91cm D Work surface 100 cm W x 67 cm D 142 cm Rack cabinet height = 162 cm Optional Equipment (Not Included)


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