Magma SSM HiRes

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品牌:Neocera

The Magma SSM HiRes tool provides two sensors giving the best of both worlds: world-class spatial localization and world-class sensitivity.

Feature Details
SQUID
Short Defect Localization (SQUID) 3um
Spatial Resolution (SQUID) 2um
Total Scanning Area (SQUID) At least 100mm by 100mm
Current Sensitivity (SQUID)
  • 500nA @ 333um
  • 1.5uA @ 1000um
Magnetic Sensitivity (SQUID) 15 pT/√Hz Typical
Imaging Depth (SQUID) 10mm
Operating Frequency (SQUID) DC to 25kHz
HiRes Sensor
Short Defect Localization (HiRes) 250nm
Spatial Resolution (HiRes) 500nm
Total Scanning Area (HiRes) At least 100mm by 100mm
Current Sensitivity (HiRes)
  • 5uA @ 2um
  • 100uA @ 100um
Magnetic Sensitivity (HiRes) 10nT/√Hz Typical
Operating Frequency (HiRes) 10kHz to 200kHz
Imaging Depth (HiRes) <100um
General
IF Function Generator ±10V @ 100mA
IF Function Generator Frequency DC to 200kHz
Camera Resolution 2um (in NIR or Visible)
System Power
  • 110 - 120V @ 20A
  • 220 - 240V@ 10A
System Operating System Windows 10 64-bit

 

Cost-Effective localization of shorts and leakages in dies, device packages and PC boards

 

The Magma Scanning SQUID Microscope (SSM) HiRes is a dual magnetic sensor system that extends the SSM tool capability to dies (either on full wafers, or in complex 3D TSV or wire bond devices). Magma SSM HiRes creates current images of devices at the die, package and PC board level using non-destructive techniques. Current images can then be used in conjunction with optical fiducials and design data to localize static defects in three dimensions. The SSM HiRes combines the sensitivity of a super-conducting quantum interference device sensor, or SQUID, with a high resolution magnetoresistive sensor. This allows for a two-step approach whereby the magnetic fields generated by currents inside of the device can be mapped very quickly with the SQUID and then again with high precision and resolution with the high resolution sensor. As magnetic fields permeate most materials used in typical devices, there is no need to deprocess the device in any way to begin localizing the failure. Additionally, Magma requires very small currents, nanoamps for the SQUID and microamps for the high resolution sensor. Using such small currents can protect the device under test from further damage and may be the only option when trying to detect failures in circuits with very high resistance (>100kΩ). Typical failures that can be analyzed with the SSM HiRes tool include shorts, leakages and resistive opens. The system can be used to image AC and/or DC magnetic fields (and likewise, currents) depending on the requirements of the device.

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