SBOK082 December   2024 TRF0208-SEP

 

  1.   1
  2.   2
  3.   Trademarks
  4. 1Device Information
    1. 1.1 Product Description
    2. 1.2 Device Details
  5. 2Total Dose Test Setup
    1. 2.1 Test Overview
    2. 2.2 Test Description and Facilities
    3. 2.3 Test Setup Details
      1. 2.3.1 Unbiased
      2. 2.3.2 Biased
    4. 2.4 Test Configuration and Condition
  6. 3Total Ionizing Dose Characterization Test Results
    1. 3.1 Total Ionizing Dose RHA Characterization Summary Results
  7. 4Applicable and Reference Documents
    1. 4.1 Reference Documents
  8. 5HDR Total Ionizing Dose Report

Total Ionizing Dose RHA Characterization Summary Results

The parametric data for the TRF0208-SEP passes up to 50krad(Si) HDR per MIL-STD-883, TM1019 Condition A for both biased and unbiased setup conditions. An overview of the critical parameters post-test is shown later in this section. The data sheet parameters are tested pre and post irradiation. HDR Total Ionizing Dose Report includes pre and post irradiation data and graphs showing the drift for all parameters.

Overall the TRF0208-SEP showed a strong degree of hardness to TID HDR irradiation up to the 50krad(Si) for both biased and unbiased setup conditions. All parameters were well within the VID electrical specification for the device. Most parameters showed marginally if any shift, and those that showed greater shift were still within the guardbanded limits and VID specification.

Critical parameters for the TRF0208-SEP such as Vcc Quiescent Current at 3.3V (test IQ_VCC_ENABLE_3.3V), Disable current at 3.3V (IQ_VCC_DISABLE_3.3V)and the Power Gain at 3.3V (Power Gain f1 = 1.29GHz) were still within specifications.

TRF0208-SEP IQ_VCC_ENABLE_3.3V HDR ResultFigure 3-1 IQ_VCC_ENABLE_3.3V HDR Result
TRF0208-SEP IQ_VCC_DISABLE_3.3V HDR ResultFigure 3-2 IQ_VCC_DISABLE_3.3V HDR Result
TRF0208-SEP Power Gain f1 = 1.29GHz HDR ResultFigure 3-3 Power Gain f1 = 1.29GHz HDR Result