SNVA957A April   2020  – May 2022 LM62440-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)
  6. 5Revision History

Pin Failure Mode Analysis (Pin FMA)

This section provides a failure mode analysis (FMA) for the pins of the LM62440-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 LM62440-Q1 pin diagram. For a detailed description of the device pins, see the Pin Configuration and Functions section in the LM62440-Q1 Automotive 3-V to 36-V, 4-A, Low-Noise Synchronous Step-Down Converter data sheet.

GUID-ADC8515F-AF6C-4FF7-A0BB-70B92D7E0C44-low.gif Figure 4-1 Pin Diagram

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

Table 4-2 Pin FMA for Device Pins Short-Circuited to Ground
Pin NamePin No.Description of Potential Failure Effect(s)Failure Effect Class
BIAS1Normal operation if the pin is not tied directly to VOUT. VOUT = 0 V if tied directly to VOUT.B
VCC2VOUT = 0 VB
AGND3Normal operationD
FB (ADJ option)4VOUT >> than programmed output voltageB
FB (3.3 V or 5 V option)4VOUT = 0 V if the pin has no resistor between VOUT and FB. Otherwise, VOUT >> than programmed output voltage.B
PGOOD5PGOOD is not valid signal. VOUT is in regulation.D
MODE/SYNC6Auto mode with spread spectrum operationC
EN7VOUT = 0 VB
VIN18VOUT = 0 VB
PGND19Normal operationD
SW10Damage to the HS FETA
PGND211Normal operationD
VIN212VOUT = 0 VB
RBOOT13VOUT = 0 VA
CBOOT14VOUT = 0 VB
Table 4-3 Pin FMA for Device Pins Open-Circuited
Pin NamePin No.Description of Potential Failure Effect(s)Failure Effect Class
BIAS1Normal operationD
VCC2VCC output is unstable and can increase above 5.5-V rating of the VCC pin. A
AGND3VOUT can be abnormal due to switching noise on analog circuits. B
FB4VOUT >> than programmed output voltageB
PGOOD5PGOOD not valid signal. VOUT is in regulation. D
MODE/SYNC6Auto mode versus FPWM operation and spread spectrum cannot be predicted. C
EN7Unpredictable operationB
VIN18VOUT is normal. Current loop is affected, potentially affecting noise, jitter, EMI, and reliability.C
PGND19VOUT is normal. Current loop is affected, potentially affecting noise, jitter, EMI, and reliability.C
SW10VOUT = 0 VB
PGND211VOUT is normal. Current loop is affected, potentially affecting noise, jitter, EMI, and reliability.C
VIN212VOUT is normal. Current loop is affected, potentially affecting noise, jitter, EMI, and reliability.C
RBOOT13VOUT normal, low efficiencyC
CBOOT14VOUT = 0 VB
Table 4-4 Pin FMA for Device Pins Short-Circuited to Adjacent Pin
Pin NamePin No.Shorted toDescription of Potential Failure Effect(s)Failure Effect Class
BIAS1VCCVCC ESD clamp is damaged if BIAS > 5.5 V.A
VCC2AGNDVOUT = 0 VB
AGND (ADJ option)3FBVOUT >> than programmed output voltageB
AGND (3.3 V or 5 V option)4FBVOUT = 0 V if there is no resistor between VOUT and FB. Otherwise, VOUT >> than the programmed output voltage.B
FB (ADJ option)4PGOODVOUT = 0 V. Damage if PGOOD > 16 VA
FB ((3.3 V or 5 V option)4PGOODVOUT is normal. PGOOD is damaged if there is no resistor between FB and VOUT. VOUT = 0 V, otherwise, damage if PGOOD > 16 V. A
PGOOD5MODE/SYNCVOUT normal. The device operates in auto mode with spread spectrum after start-up.D
MODE/SYNC6ENVOUT normal, the devices operates in FPWM mode with no spread spectrum.D
EN7VIN1Normal operationD
VIN18PGND1VOUT = 0 V. Damage to low-side circuitry if PGND >> AGNDB
PGND19SWDamage to the HS FETA
SW10PGND2Damage to the HS FETA
PGND211VIN2VOUT = 0 V. Damage to low-side circuitry if PGND >> AGNDB
VIN212RBOOTVOUT = 0 V. RBOOT ESD clamp runs current to destruction.A
RBOOT13CBOOTVOUT is normal.D
CBOOT14BIASVOUT = 0 VB
Table 4-5 Pin FMA for Device Pins Short-Circuited to supply
Pin NamePin No.Description of Potential Failure Effect(s)Failure Effect Class
BIAS1If VIN exceeds 16 V, damage occurs. If VIN is below 16 V, normal operationA
VCC2If VIN exceeds 5.5 V, damage occurs.A
AGND3VOUT = 0 V. Damage to other pins referred to GNDA
FB4If VIN exceeds 16 V, damage occurs. VOUT = 0 VA
PGOOD5VOUT = 0 V. PGOOD ESD clamp runs current to destruction.A
MODE/SYNC6VOUT is normal. The part runs in FPWM mode without spread spectrum.D
EN7VOUT is normal.D
VIN18Normal operationD
PGND19VOUT = 0 V. Damage to low-side circuitry if PGND >> AGNDB
SW10Damage to the LS FETA
PGND211VOUT = 0 V. Damage to low-side circuitry if PGND >> AGNDB
VIN212Normal operationD
RBOOT13VOUT = 0 V. RBOOT ESD clamp runs current to destruction.A
CBOOT14VOUT = 0 V. CBOOT ESD clamp runs current to destruction.A