SLLSFU3 October   2023 THVD1400V

PRODUCTION DATA  

  1.   1
  2. Features
  3. Applications
  4. Description
  5. Pin Configuration and Functions
  6. Specifications
    1. 5.1  Absolute Maximum Ratings
    2. 5.2  ESD Ratings
    3. 5.3  ESD Ratings [IEC]
    4. 5.4  Recommended Operating Conditions
    5. 5.5  Thermal Information
    6. 5.6  Power Dissipation
    7. 5.7  Electrical Characteristics
    8. 5.8  Switching Characteristics_500 kbps
    9. 5.9  Switching Characteristics_20 Mbps
    10. 5.10 Typical Characteristics
  7. Parameter Measurement Information
  8. Detailed Description
    1. 7.1 Overview
    2. 7.2 Functional Block Diagrams
    3. 7.3 Feature Description
    4. 7.4 Device Functional Modes
      1. 7.4.1 Operational Data rate
      2. 7.4.2 Protection Features
  9. Application Information Disclaimer
    1. 8.1 Application Information
    2. 8.2 Typical Application
      1. 8.2.1 Design Requirements
        1. 8.2.1.1 Data Rate and Bus Length
        2. 8.2.1.2 Stub Length
        3. 8.2.1.3 Bus Loading
        4. 8.2.1.4 Receiver Failsafe
        5. 8.2.1.5 Transient Protection
      2. 8.2.2 Detailed Design Procedure
      3. 8.2.3 Application Curves
    3. 8.3 Power Supply Recommendations
    4. 8.4 Layout
      1. 8.4.1 Layout Guidelines
      2. 8.4.2 Layout Example
  10. Device and Documentation Support
    1. 9.1 Device Support
      1. 9.1.1 Third-Party Products Disclaimer
    2. 9.2 Receiving Notification of Documentation Updates
    3. 9.3 Support Resources
    4. 9.4 Trademarks
    5. 9.5 Electrostatic Discharge Caution
    6. 9.6 Glossary
  11. 10Revision History
  12. 11Mechanical, Packaging, and Orderable Information

Package Options

Mechanical Data (Package|Pins)
Thermal pad, mechanical data (Package|Pins)
Orderable Information

Electrical Characteristics

over operating free-air temperature range (unless otherwise noted). All typical values are at 25°C and supply voltage of VCC = 5 V and VIO = 3.3 V, unless otherwise noted.
PARAMETER TEST CONDITIONS MIN TYP MAX UNIT
Driver
|VOD| Driver differential output voltage magnitude RL = 60 Ω, –7 V ≤ Vtest ≤ 12 V (See Figure 6-1 ) 1.5 3.3 V
RL = 60 Ω, –7 V ≤ Vtest ≤ 12 V, 4.5 V ≤ VCC ≤ 5.5 V (See Figure 6-1 ) 2.1 3.3 V
RL = 100 Ω (See Figure 6-2 ) 2 4 V
RL = 54 Ω, 4.5 V ≤ VCC ≤ 5.5 V (See Figure 6-2 ) 2.1 3.3 V
RL = 54 Ω (See Figure 6-2 ) 1.5 3.3 V
Δ|VOD| Change in magnitude of differential output voltage RL = 54 Ω or 100 Ω (See Figure 6-2 ) –50 50 mV
VOC Common-mode output voltage RL = 54 Ω or 100 Ω (See Figure 6-2 ) VCC/2 3 V
ΔVOC(SS) Change in steady-state common-mode output voltage RL = 54 Ω or 100 Ω (See Figure 6-2 ) –50 50 mV
VOC(PP) Peak-to-peak common-mode output voltage RL = 54 Ω , VCC = 3.3 V, DE = H, D = 20 Mbps square wave (See Figure 6-2 ) 375 mV
IOS Short-circuit output current DE = VIO, -7 V ≤ (VA or VB) ≤ 12 V, or A shorted to B   –250 250 mA
Receiver
II Bus input current DE = 0 V, VCC and VIO = 0 V or 5.5 V VI = 12 V 85 100 μA
VI = –7 V  –100 –70 μA
VTH+ Positive-going input threshold voltage(1) Over common-mode range of - 7 V to 12 V - 85 - 45 mV
VTH- Negative-going input threshold voltage(1) –200 –150 mV
VHYS Input hysteresis 25 50 mV
CA,B Input differential capacitance Measured between A and B, f = 1 MHz 20 pF
VOH Output high voltage IOH = –8 mA, VIO = 3 to 3.6 V or 4.5 V to 5.5 V VIO – 0.4 VIO – 0.2 V
VOL Output low voltage IOL = 8 mA, VIO = 3 to 3.6 V or 4.5 V to 5.5 V 0.2 0.4 V
VOH Output high voltage IOH = –4 mA, VIO = 1.65 to 1.95 V or 2.25 V to 2.75 V VIO – 0.4 VIO – 0.2 V
VOL Output low voltage IOL = 4 mA, VIO = 1.65 to 1.95 V or 2.25 V to 2.75 V 0.2 0.4 V
IOZ Output high-impedance current, R pin VO = 0 V or VIO,  RE = VIO –2 2 µA
Logic
IIN Input current (D, RE, DE , SLR) 3 V ≤ VIO ≤ 5.5 V, 0 V ≤ VIN ≤ VIO -5 5 µA
Thermal Protection
TSHDN Thermal shutdown threshold Temperature rising 150 170 °C
THYS Thermal shutdown hysteresis 15 °C
Supply
UVVCC (rising) Rising under-voltage threshold on VCC 2.5 2.7 V
UVVCC (falling) Falling under-voltage threshold on VCC 2 2.1 V
UVVCC(hys) Hysteresis on under-voltage of VCC 400 mV
UVVIO (rising) Rising under-voltage threshold on VIO 1.4 1.6 V
UVVIO (falling) Falling under-voltage threshold on VIO 1.2 1.3 V
UVVIO(hys) Hysteresis on under-voltage of VIO 100 mV
ICC Supply current (quiescent), VCC = 4.5 V to 5.5 V Driver and receiver enabled RE = 0 V, DE = VIO, No load 1.5 3 mA
Driver enabled, receiver disabled RE = VIO, DE = VIO, No load 1.4 2.5 mA
Driver disabled, receiver enabled RE = 0 V, DE = 0 V, No load 0.8 1.25 mA
Driver and receiver disabled RE = VIO, DE = 0 V, D = open, No load 0.2 4 µA
ICC Supply current (quiescent), VCC = 3 V to 3.6 V Driver and receiver enabled RE = 0 V, DE = VIO, No load 1.4 2.1 mA
Driver enabled, receiver disabled RE = VIO, DE = VIO, No load 1 1.6 mA
Driver disabled, receiver enabled RE = 0 V, DE = 0 V, No load 0.7 1.1 mA
Driver and receiver disabled RE = VIO, DE = 0 V, D = open, No load 0.2 4 µA
IIO Logic supply current (quiescent), VIO = 3 V to 3.6 V Driver disabled, Receiver enabled, SLR = GND DE = 0 V, RE = 0 V, No load 10 18 µA
Driver disabled, Receiver enabled, SLR = VIO DE = 0 V, RE = 0 V, No load 13 22 µA
Driver disabled, Receiver disabled, SLR = GND DE = 0 V, RE = VIO, No load 2 3 µA
Driver disabled, Receiver disabled, SLR = VIO DE = 0 V, RE = VIO, No load 5 7 µA
VTH+ is specified to be at least VHYS higher than VTH–.