SLUAA93 November   2020 UCC28730-Q1

 

  1.   Trademarks
  2. 1Overview
  3. 2Functional Safety Failure In Time (FIT) Rates
  4. 3Failure Mode Distribution (FMD)
  5. 4Pin Failure Mode Analysis (Pin FMA)

Pin Failure Mode Analysis (Pin FMA)

This section provides a Failure Mode Analysis (FMA) for the pins of the UCC28730-Q1. The failure modes covered in this document include the typical pin-by-pin failure scenarios:

  • Pin short-circuited to Ground (see Table 4-2)
  • Pin open-circuited (see Table 4-3)
  • Pin short-circuited to an adjacent pin (see Table 4-4)
  • Pin short-circuited to supply (see Table 4-5)

Table 4-2 through Table 4-5 also indicate how these pin conditions can affect the device as per the failure effects classification in Table 4-1.

Table 4-1 TI Classification of Failure Effects
ClassFailure Effects
APotential device damage that affects functionality
BNo device damage, but loss of functionality
CNo device damage, but performance degradation
DNo device damage, no impact to functionality or performance

Figure 4-1 shows the UCC28730-Q1 pin diagram. For a detailed description of the device pins please refer to the Pin Configuration and Functions section in the UCC28730-Q1 data sheet.

GUID-DFC0353A-27ED-4473-B43E-E26C107433D0-low.gif Figure 4-1 Pin Diagram

Following are the assumptions of use and the device configuration assumed for the pin FMA in this section:

  • The UCC28730-Q1 is connected according to UCC28730-Q1 datasheet Figure 8-1 Simplified Application With Ground-Referenced Diode
  • The VDD is considered as supply pin
Table 4-2 Pin FMA for Device Pins Short-Circuited to Ground
Pin NamePin No.Description of Potential Failure Effect(s)Failure Effect Class
VDD1Device is not function system will not startup.B
VS2IC remains in input under voltage protection mode. The output of the Flyback converter remains at zero.B
CBC3Cable compensation will be set at its highest value.C
GND 4 No effect. D
CS 5 When CS pin is shorted before the IC start-up, CS pin short protection. The output of the Flyback converter remains at zero. B
When CS pin is shorted after the IC already in operation, DRV remains high. Potential power stage damage and it might cause IC damange. A
DRV 6 DRV remains low. The output of the Flyback converter remains at zero. B
N/A 7
HV 8 The VDD capacitor cannot be trickle charged and the converter will never startup. B
Table 4-3 Pin FMA for Device Pins Open-Circuited
Pin NamePin No.Description of Potential Failure Effect(s)Failure Effect Class
VDD1No positive supply applied to device, device is not functional.B
VS2IC remains in input under voltage protection mode. The output of the Flyback converter remains at zero.B
CBC3 Cable compensation is reduced to It's minimal value. C
GND 4 Device damage A
CS 5 When CS pin is shorted before the IC start-up, CS pin short protection. The output of the Flyback converter remains at zero. B
When CS pin is shorted after the IC already in operation, DRV remais high. Potential power stage damage and it might cause IC damange. A
DRV 6 The output of the Flyback converter remains at zero. B
N/A 7
HV 8 The VDD capacitor cannot be trickle charged. Output of the converter remains at zero volts. B
Table 4-4 Pin FMA for Device Pins Short-Circuited to Adjacent Pin
Pin Name Pin No. Shorted to Description of Potential Failure Effect(s) Failure Effect Class
VDD 1 VS VS max voltage rating exceeded, device damaged, possible Flyback switch damage A
VS 2 CBC Cable compensation will not be stable, output voltage will not regulate correctly C
CBC 3 GND Cable compensation will be set at its highest value. C
GND 4 N/A
CS 5 DRV CS max voltage rating will be exceeded, device damage, possible Flyback switch damage A
DRV 6 N/A
N/A 7 N/A
HV 8 N/A
Table 4-5 Pin FMA for Device Pins Short-Circuited to supply
Pin NamePin No.Description of Potential Failure Effect(s)Failure Effect Class
VDD1 No Effect.D
VS2DRV remains low. Possible IC damage.A
CBC3DRV remains low. Possible IC damage.A
GND 4 No positive supply applied to device. Device is non-functional. B
CS 5 DRV remains low. Possible IC damage. A
DRV 6 DRV remains high. Possible IC damage and Flyback switch damage. A
N/A 7
HV 8 The max rating of VDD will be exceeded, possible device damage and Flyback switch damage. A