SBOK111 June   2025 SN55LVTA4-SEP

 

  1.   1
  2.   Abstract
  3.   Trademarks
  4. 1Device Information
    1. 1.1 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 Bias Diagram
    4. 2.4 Test Configuration and Condition
  6. 3TID Characterization Test Results
    1. 3.1 TID Characterization Summary Results
    2. 3.2 Specification Compliance Matrix
  7. 4Reference Documents
  8.   Appendix A: ELDRS Data
  9.   Appendix B: HDR TID Report Data
  10.   Appendix C: LDR TID Report Data

Specification Compliance Matrix

Table 3-1 Electrical Parameters Table
ParameterTest ConditionsVCCTA = -55°C to +125°CUnitTest Name
MINTYPMAX
VODDriver differential output voltage, VOC = 1.175V, 1.2V, 1.375V, RL=100Ω

3.0V

257340454mV

VOD

3.3V

257

340

454

3.6V

257

340

454

Δ|VOD|

Change in differential output voltage between logic states, RL = 100Ω

3.0V

-50

50

mV

DVOD_DVOC

3.3V

-50

50

3.6V

-50

50

VOC(SS)

Steady-state common-mode output voltage, RL = 100Ω

3.0V

1.175

1.2

1.375

V

VOC

3.3V

1.175

1.2

1.375

3.6V

1.175

1.2

1.375

ΔVOC(SS)

Change in steady-state common-mode output voltage, RL = 100Ω

3.0V

-50

50

V

DVOD_DVOC

3.3V

-50

50

3.6V

-50

50

IO(OFF)

Output current with power off, VO = 2.4V

0V

-4

4

μA

IOFF

IOZ

High impedance state output current, VO = 0 or 2.4V, G = 0.8V and G̅ = 2V

3.0V

-1

1

μAIOZ
3.3V

-1

1

3.6V

-1

1

IOS

Short-circuit output current, Y or Z, VO = 0V

3.0V

-4

24

mAIOS
3.3V

-4

24

3.6V

-4

24

IOSShort-circuit output current, Y and Z, VOD = 0V3.0V

-12

12

mA

IOS_VOD_0

3.3V

-12

12

3.6V

-12

12

VIH

High level input voltage (G, G̅, A)

3.0V

2

VVIH_VCC_3p0
3.3V

2

VIH_VCC_3p3

3.6V

2

VIH_VCC_3p6

VIL

Low level input voltage (G, G̅, A)

3.0V

0.8

V

VIL_VCC_3p0

3.3V

0.8

VIL_VCC_3p3

3.6V

0.8

VIL_VCC_3p6

IIH

High level input (G, G̅, A), VIH = 3.6V

3.0V

4

20

µAIIH

3.3V

4

20

3.6V

4

20

IIL

Low level input (G, G̅, A), VIL = 0V

3.0V

0.1

10

µA

IIL

3.3V

0.1

10

3.6V

0.1

10

ICC

Supply current, VI = VCC or GND, No load, enabled

3.0V

9

20

mA

ICC_No_Load

3.3V

9

20

3.6V

9

20

ICC

Supply current, VI = VCC or GND, No load,

disabled Supply current, VI = VCC or GND, RL = 100Ω, enabled

3.0V

25

35

mA

ICC_RL_100

3.3V

25

35

3.6V

25

35

ICC

Supply current, VI = VCC or GND, No load,

disabled

3.0V

0.25

1

mA

ICC_Disabled

3.3V

0.25

1

3.6V

0.25

1