SLOSEB6D February   2025  – November 2025 LMH13000

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 Recommended Operating Conditions
    4. 5.4 Thermal Information
    5. 5.5 Electrical Characteristics for Low-Current Mode, MODE = 0
    6. 5.6 Electrical Characteristics for High-Current Mode, MODE = 1
    7. 5.7 Typical Characteristics
    8. 5.8 Parameter Measurement Information
  7. Detailed Description
    1. 6.1 Overview
    2. 6.2 Functional Block Diagram
    3. 6.3 Feature Description
      1. 6.3.1 Constant Current (ICC)
      2. 6.3.2 Propagation Delay With Temperature
        1. 6.3.2.1 Calibration of Propagation Delay With Temperature
        2. 6.3.2.2 Start Pulse Directly From IOUT
    4. 6.4 Device Functional Modes
  8. Application and Implementation
    1. 7.1 Application Information
    2. 7.2 Typical Application
      1. 7.2.1 Optical Time-of-Flight System
        1. 7.2.1.1 Design Requirements
        2. 7.2.1.2 Detailed Design Procedure
        3. 7.2.1.3 Application Curve
      2. 7.2.2 Automatic Power-Control Loop Using the LMH13000
    3. 7.3 Power Supply Recommendations
    4. 7.4 Layout
      1. 7.4.1 Layout Guidelines
      2. 7.4.2 Layout Example
  9. Device and Documentation Support
    1. 8.1 Receiving Notification of Documentation Updates
    2. 8.2 Support Resources
    3. 8.3 Trademarks
    4. 8.4 Electrostatic Discharge Caution
    5. 8.5 Glossary
  10. Revision History
  11. 10Mechanical, Packaging, and Orderable Information

Package Options

Refer to the PDF data sheet for device specific package drawings

Mechanical Data (Package|Pins)
  • RQE|13
Thermal pad, mechanical data (Package|Pins)
Orderable Information

Typical Characteristics

at TA = 25°C, AVDD = PVDD = 5V, RDAMP = 1Ω, LLOAD = 1nH, and RBIAS = AVDD (unless otherwise noted)

LMH13000 VSET to
                            IOUT Transfer Characteristics
 
Figure 5-1 VSET to IOUT Transfer Characteristics
LMH13000 IOUT Pulse
                        Response
MODE = 0, IOUT = 0.1A, VLD = 1V, tr = 357ps, tf = 502ps
AVDD = PVDD = 3.3V
Figure 5-3 IOUT Pulse Response
LMH13000 IOUT Pulse
                        Response
MODE = 0, IOUT = 0.05A, VLD = 3V, tr = 673ps, tf = 1.28ns
RDAMP=10Ω
Figure 5-5 IOUT Pulse Response
LMH13000 IOUT Pulse
                        Response
MODE = 0, IOUT = 0.5A, VLD = 2V, tr = 258ps, tf = 408ps
Figure 5-7 IOUT Pulse Response
LMH13000 IOUT Pulse
                        Response
MODE = 1, IOUT = 2A, VLD = 4V, tr = 593ps, tf = 405ps
Figure 5-9 IOUT Pulse Response
LMH13000 IOUT Pulse
                        Response With and Without ICC
IOUT = 2A, VLD = 6V
 
Figure 5-11 IOUT Pulse Response With and Without ICC
LMH13000 LVDS to IOUT
                        Timing Characteristics
IOUT = 1A, f = 100MHz
Figure 5-13 LVDS to IOUT Timing Characteristics
LMH13000 PD and IOUT
                        Response
MODE = 0, VLD = 5V, LVDS = 1
Figure 5-15 PD and IOUT Response
LMH13000 Quiescent Current vs LVDS
                        Frequency
MODE = 0
Figure 5-17 Quiescent Current vs LVDS Frequency
LMH13000 VSET  to IOUT
                        Step Response
MODE = 0, IOUT = 1A
Figure 5-19 VSET to IOUT Step Response
LMH13000 VSET to IOUT
                        Bandwidth Response
MODE = 1
Figure 5-21 VSET to IOUT Bandwidth Response
LMH13000 Static Quiescent Current
                        vs Supply Voltage
MODE = 0, supply voltage = AVDD = PVDD
Figure 5-23 Static Quiescent Current vs Supply Voltage
LMH13000 IOUT Accuracy
                        Histogram
MODE = 0, VSET = 0.2V, ideal IOUT = 0.1A
Figure 5-25 IOUT Accuracy Histogram
LMH13000 Minimum Voltage on IOUT vs
                        Output Current
 
Figure 5-27 Minimum Voltage on IOUT vs Output Current
LMH13000 Propagation Delay vs
                        Temperature
Propagation delay of signals from LVDS input (V) to IOUT (A)
Figure 5-29 Propagation Delay vs Temperature
LMH13000 VSET to
                            IOUT Transfer Characteristics
AVDD = PVDD = 3.3V
Figure 5-2 VSET to IOUT Transfer Characteristics
LMH13000 IOUT Pulse
                        Response
MODE = 1, IOUT = 1.5A, VLD = 4V, tr = 579ps, tf = 387ps
AVDD = PVDD = 3.3V
Figure 5-4 IOUT Pulse Response
LMH13000 IOUT Pulse
                        Response
MODE = 0, IOUT = 0.1A, VLD = 1V, tr = 243ps, tf = 340ps
 
Figure 5-6 IOUT Pulse Response
LMH13000 IOUT Pulse
                        Response
MODE = 0, IOUT = 1A, VLD = 4V, tr = 229ps, tf = 382ps
Figure 5-8 IOUT Pulse Response
LMH13000 IOUT Pulse
                        Response
MODE = 1, IOUT = 5A, VLD = 10V, tr = 882ps, tf = 594ps
Figure 5-10 IOUT Pulse Response
LMH13000 CIOUT vs
                            VIOUT
Capacitance between IOUT and PGND,
see Figure 5-31
Figure 5-12 CIOUT vs VIOUT
LMH13000 LVDS to IOUT
                        Timing Characteristics
IOUT = 1A, f = 100kHz
Figure 5-14 LVDS to IOUT Timing Characteristics
LMH13000 PD and IOUT
                        Response
MODE = 1, VLD = 5V, LVDS = 1
Figure 5-16 PD and IOUT Response
LMH13000 Quiescent Current vs LVDS
                        Frequency
MODE = 1
Figure 5-18 Quiescent Current vs LVDS Frequency
LMH13000 VSET  to IOUT
                        Step Response
MODE = 1, IOUT = 5A
Figure 5-20 VSET to IOUT Step Response
LMH13000 Constant Current Bias
                        Transfer Function
 
Figure 5-22 Constant Current Bias Transfer Function
LMH13000 Static Quiescent Current
                        vs Supply Voltage
MODE = 1, supply voltage = AVDD = PVDD
Figure 5-24 Static Quiescent Current vs Supply Voltage
LMH13000 IOUT Accuracy
                        Histogram
MODE = 1, VSET = 0.8V, ideal IOUT = 2A
Figure 5-26 IOUT Accuracy Histogram
LMH13000 Die Temperature vs Power
                        Dissipated in the Device
Power = IOUT × VIOUT, power dissipated in the device
Figure 5-28 Die Temperature vs Power Dissipated in the Device
LMH13000 Propagation Delay Error
                        Post 3 Temperature Calibration
 
Figure 5-30 Propagation Delay Error Post 3 Temperature Calibration