SBOK029D April   2018  – November 2023 TMP461-SP

 

  1.   1
  2.   TMP461-SP Single-Event Effects (SEE) Radiation Test Report
  3.   Trademarks
  4. 1Overview
  5. 2SEE Mechanisms
  6. 3Test Device and Test Board Information
  7. 4Irradiation Facility and Setup
  8. 5Results
    1. 5.1 SEL Results
    2. 5.2 SET Results
    3. 5.3 Event Rate Calculations
  9. 6Summary
  10.   A Confidence Interval Calculations
  11.   B References
  12.   Revision History

SET Results

A study was performed to evaluate the cross section and transient effects with a bias voltage of 3.6 V and 2.5 V. To capture different SET signatures events, the triggers was set with ±2.0°C variance. Initial temperature readings were recorded for the local channel and each remote channel. All device registers were read in 350 ms intervals and the current temperature readings were compared with the initial readings to record all events that exceeded ±2.0°C. To ensure that previous transients were not affecting subsequent register reads, a device reset was issued between each measurement. The TMP461-SP device supports reset using the two-wire general-call address 00h (0000 0000b). The TMP461-SP device acknowledges the general-call address and responds to the second byte. If the second byte is 06h (0000 0110b), the TMP461-SP device executes a software reset. This software reset restores the power-on reset state to all TMP461-SP registers and aborts any conversion in progress.

Heavy ions with LETEFF 65.65 MeV-cm2/mg were used to irradiate the devices. Flux of 105 ions/s-cm2 and fluence of 107 ions/cm2 were used during the exposure at room temperature. The output temperature data was processed and analyzed. SET events were observed, the upper-bound cross-section (using a 95% confidence level) is calculated as:

Equation 1. σ=χ2(d+1);100(1-α2)22nF

σSEL ≤ 2.1 × 10–6 cm2 for LETEFF = 65.65 MeV-cm2/mg and T = 25°C at 3.6 V.

σSEL ≤ 2.1 × 10–6 cm2 for LETEFF = 65.65 MeV-cm2/mg and T = 25°C at 2.5 V.

Table 5-2 Summary of TMP461-SP SET Results

RUN #

DIE TEMP (°C)

UNIT #

DISTANCE (mm)

ION TYPE

ANGLE OF INCIDENCE (°)

LETEFF (MeV∙cm²/mg)

FLUX (ions∙cm²/mg)

FLUENCE (# of ions)

V+ (V)

# of EVENTS

COMMENTS

26

25

1

40

Ag

0

48

1.00E+04

1.00E+06

3.3

324

Extended mode with no resets

28

25

1

40

Ag

0

48

1.00E+04

2.00E+06

3.3

26

Extended with resets

29

25

1

40

Ag

0

48

1.00E+04

2.00E+06

3.3

116

Extended with no resets

30

25

1

40

Ag

0

48

1.00E+04

2.00E+06

676

Nonextended with no resets

32

25

1

40

Ag

30

56.36

1.00E+04

2.00E+06

3.3

643

Extended mode with no resets

34

25

1

40

Ag

30

56.36

1.00E+04

2.00E+06

3.3

28

Nonextended mode with no resets

35

25

1

40

Ag

30

56.36

1.00E+04

2.00E+06

3.3

33

Extended mode with resets

36

25

1

40

Ag

30

56.36

1.00E+04

2.00E+06

3,3

34

Nonextended mode with resets

38

25

1

40

Ho

0

76

1.00E+04

2.00E+06

3.3

368

Extended mode with no resets

39

25

1

40

Ho

0

76

1.00E+04

2.00E+06

3.3

575

Nonextended mode with no resets

40

25

1

40

Ho

0

76

1.00E+04

2.00E+06

3.3

41

Extended mode with resets

41

25

1

40

Ho

0

76

1.00E+04

2.00E+06

3.3

48

Nonextended mode with resets

44

25

1

40

Ar

0

8.7

1.00E+04

2.00E+06

3.3

22

Extended with no resets

45

25

1

40

Ar

0

8.7

1.00E+04

2.00E+06

3.3

20

Nonextended with no resets

46

25

1

40

Ar

0

8.7

1.00E+04

2.00E+06

3.3

24

Extended with resets

47

25

1

40

Ar

0

8.7

1.00E+04

2.00E+06

3.3

22

Nonextended with resets

GUID-021B8800-63B8-4835-A8D1-603DBDD308D1-low.pngFigure 5-2 Cross Section vs LET