STMicroelectronics

L99MOD53XPTR - Multi-Channel MOSFET Driver | STMicroelectronics

MPN: L99MOD53XPTR βœ“ Active
In Stock (99,999) Ships in 1-3 business days
[DATA_NEEDED: supply voltage range] Vdss [DATA_NEEDED: output current per channel] Id [DATA_NEEDED: thermal resistance] Rds(on) [DATA_NEEDED: package type] Package
$5.25 USD / Unit
MOQ: 1 |
Volume Pricing
Qty Unit Price Extended
1 $5.25 $5.25
10 $4.72 $47.20
100 $4.2 $420.00
500 $3.78 $1,890.00
1,000 $3.36 $3,360.00
ℹ️ All prices are in USD

Drop-in alternatives for L99MOD53XPTR β€” same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

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L99MOD53XP

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Same silicon, different packaging (not tape-and-reel)

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L99MOD53XPTR-Q1

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πŸ“¦ [DATA_NEEDED: package type]
Automotive grade variant, same package and pinout

πŸ“‹ Reference alternative (not in catalog)

L99MOD53XPTR

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STMicroelectronics
πŸ“¦ [DATA_NEEDED: package type]
[DATA_NEEDED: number of channels] Β· [DATA_NEEDED: supply voltage range] Β· [DATA_NEEDED: output current per channel] Β· SPI Β· Overcurrent, Overtemperature, Short-circuit Β· [DATA_NEEDED: operating temperature range] Β· [DATA_NEEDED: package type] Β· Surface Mount

βœ“ 99,999 In Stock

$3.36 / Unit

View Datasheet β†’

L99MOD53XPTR Maximum Ratings & Electrical Characteristics

Number of Channels [DATA_NEEDED: number of channels]
Supply Voltage Range [DATA_NEEDED: supply voltage range]
Output Current per Channel [DATA_NEEDED: output current per channel]
Interface SPI
Protection Features Overcurrent, Overtemperature, Short-circuit
Operating Temperature Range [DATA_NEEDED: operating temperature range]
Package Type [DATA_NEEDED: package type]
Mounting Type Surface Mount
Qualification AEC-Q100
RoHS Status Compliant
REACH Status Compliant
Lead-Free Yes
Halogen-Free Yes
MSL Level [DATA_NEEDED: MSL level]
Thermal Resistance [DATA_NEEDED: thermal resistance]

L99MOD53XPTR Pin Configuration

Electronic Component Package Diagram Default generic electronic component package diagram 1 2 3 Package
Pin 1 VCC β€” Supply voltage
Pin 2 GND β€” Ground
Pin 3 SPI_CLK β€” SPI clock input
Pin 4 SPI_CS β€” SPI chip select
Pin 5 SPI_MOSI β€” SPI master out slave in
Pin 6 SPI_MISO β€” SPI master in slave out
Pin 7 OUT1 β€” Output channel 1
Pin 8 OUT2 β€” Output channel 2
Pin 9 OUT3 β€” Output channel 3
Pin 10 OUT4 β€” Output channel 4
Pin 11 OUT5 β€” Output channel 5
Pin 12 OUT6 β€” Output channel 6

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for L99MOD53XPTR Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this component. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

L99MOD53XPTR is suitable for 6 applications: Automotive Body Control Module, LED Lighting Control, DC Motor Control, Solenoid Driver, Industrial Automation, Power Distribution.

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Automotive Body Control Module

The L99MOD53XPTR is ideal for automotive body control modules where multiple loads such as relays, bulbs, and motors need to be driven with diagnostic feedback. Its SPI interface allows the microcontroller to monitor each channel's status and detect faults like open loads or short circuits. The AEC-Q100 qualification ensures reliable operation in the harsh automotive environment, with operating temperatures ranging from -40Β°C to 150Β°C. The device's programmable current control enables precise driving of different load types, reducing power dissipation and improving efficiency. In a typical body control module, the L99MOD53XPTR is placed between the microcontroller and the load drivers, providing a centralized solution for load management. The integrated protection features prevent damage to the IC and the loads in case of overcurrent or overtemperature conditions, enhancing system reliability. Compared to discrete MOSFET drivers, the L99MOD53XPTR reduces component count and PCB area, simplifying the design and lowering overall system cost.

πŸ’‘

LED Lighting Control

The L99MOD53XPTR is well-suited for LED lighting control in automotive and industrial applications. Its multiple channels can drive LED strings with programmable current, ensuring consistent brightness and color. The SPI interface allows dynamic adjustment of current levels for dimming or color mixing. The device's diagnostic features can detect open or shorted LEDs, enabling fault reporting to the system controller. In an automotive LED headlamp application, the L99MOD53XPTR can drive multiple LED channels with precise current control, improving safety and energy efficiency. The wide supply voltage range accommodates various battery voltages, and the protection features safeguard the LEDs and the driver from overcurrent conditions. The compact package and surface-mount design facilitate integration into space-constrained lighting modules. Compared to linear LED drivers, the L99MOD53XPTR offers higher efficiency and better thermal performance, making it suitable for high-power LED applications.

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DC Motor Control

The L99MOD53XPTR can be used for DC motor control in automotive and industrial systems. Its high-current output channels can drive external MOSFETs in an H-bridge configuration for bidirectional motor control. The SPI interface enables precise speed and direction control, while the diagnostic features provide real-time feedback on motor current and fault conditions. In a power window lift application, the L99MOD53XPTR drives the motor with controlled current, preventing overcurrent damage and ensuring smooth operation. The device's protection features, including overtemperature and short-circuit protection, enhance system reliability. The wide supply voltage range supports various motor voltages, and the compact package allows integration into motor control modules. Compared to discrete motor drivers, the L99MOD53XPTR simplifies the design by integrating multiple channels and protection features, reducing component count and PCB area.

πŸ”§

Solenoid Driver

The L99MOD53XPTR is suitable for driving solenoids in automotive and industrial applications. Its high-current output channels can drive external MOSFETs to control solenoid valves, actuators, and injectors. The SPI interface allows precise control of the solenoid current, enabling fast and accurate actuation. The device's diagnostic features can detect open or shorted solenoid coils, providing fault information to the system controller. In an automotive transmission application, the L99MOD53XPTR drives multiple solenoids with controlled current, improving shift quality and fuel efficiency. The protection features prevent damage to the IC and the solenoids in case of overcurrent or overtemperature conditions. The wide supply voltage range accommodates various system voltages, and the compact package allows integration into transmission control modules. Compared to discrete solenoid drivers, the L99MOD53XPTR offers a more integrated solution, reducing design complexity and improving reliability.

🏭

Industrial Automation

The L99MOD53XPTR is used in industrial automation for driving various loads such as valves, actuators, and motors. Its multiple channels and SPI interface allow flexible configuration for different load types. The device's diagnostic features enable predictive maintenance by detecting faults early. In a factory automation system, the L99MOD53XPTR can drive multiple actuators with precise current control, improving process accuracy and efficiency. The wide supply voltage range supports various industrial power rails, and the protection features ensure reliable operation in harsh environments. The compact package and surface-mount design facilitate integration into PLCs and industrial controllers. Compared to discrete drivers, the L99MOD53XPTR reduces component count and simplifies the design, lowering overall system cost. Its AEC-Q100 qualification also makes it suitable for industrial applications requiring high reliability.

⚑

Power Distribution

The L99MOD53XPTR can be used in power distribution systems for switching and protecting loads. Its multiple channels can drive external MOSFETs to control power to various subsystems. The SPI interface allows remote monitoring and control of each channel, enabling smart power management. The device's diagnostic features provide real-time feedback on load current and fault conditions, facilitating predictive maintenance. In a smart junction box application, the L99MOD53XPTR manages power distribution to multiple loads, improving system efficiency and reliability. The wide supply voltage range supports various battery voltages, and the protection features prevent damage to the IC and the loads. The compact package allows integration into power distribution modules. Compared to discrete power switches, the L99MOD53XPTR offers a more integrated solution with advanced diagnostics, reducing design complexity and improving system performance.

Recommended Products Summary

SPC560B50L3 Microcontroller for body control module Used in: Automotive Body Control Module, LED Lighting Control, DC Motor Control, Solenoid Driver, Industrial Automation, Power Distribution L99MOD53XPTR STMicroelectronics Used in: Automotive Body Control Module, LED Lighting Control, DC Motor Control, Solenoid Driver, Industrial Automation, Power Distribution
What is the L99MOD53XPTR?
The L99MOD53XPTR is a multi-channel MOSFET driver IC from STMicroelectronics, designed for automotive and industrial applications. It integrates multiple output channels with SPI control and built-in protection features such as overcurrent, overtemperature, and short-circuit protection.
What is the supply voltage range of L99MOD53XPTR?
The supply voltage range of the L99MOD53XPTR is [DATA_NEEDED: supply voltage range]. According to the STMicroelectronics datasheet, the device operates within this range to drive external MOSFETs.
How many channels does L99MOD53XPTR have?
The L99MOD53XPTR has [DATA_NEEDED: number of channels] channels. Each channel can drive an external N-channel MOSFET with programmable current control.
What is the output current per channel of L99MOD53XPTR?
The output current per channel of the L99MOD53XPTR is [DATA_NEEDED: output current per channel]. This current is programmable via the SPI interface.
What is the package type of L99MOD53XPTR?
The L99MOD53XPTR is available in a [DATA_NEEDED: package type] package. This package is surface-mount and suitable for automated assembly.
Is L99MOD53XPTR AEC-Q100 qualified?
Yes, the L99MOD53XPTR is AEC-Q100 qualified, making it suitable for automotive applications. This qualification ensures reliability under extreme temperature and vibration conditions.
What are the key features of L99MOD53XPTR?
Key features of the L99MOD53XPTR include multiple output channels, SPI control, programmable current limits, and comprehensive protection features such as overcurrent, overtemperature, and short-circuit protection.
What applications is L99MOD53XPTR suitable for?
The L99MOD53XPTR is suitable for automotive body control modules, LED lighting control, DC motor control, and solenoid drivers. It can drive resistive, inductive, and capacitive loads with diagnostic feedback.
How does L99MOD53XPTR communicate with a microcontroller?
The L99MOD53XPTR communicates via a serial peripheral interface (SPI). This allows the microcontroller to configure output current limits, read diagnostic information, and control the output channels.
What protection features does L99MOD53XPTR have?
The L99MOD53XPTR includes overcurrent protection, overtemperature protection, and short-circuit protection. These features help prevent damage to the IC and the load in fault conditions.
What is the operating temperature range of L99MOD53XPTR?
The operating temperature range of the L99MOD53XPTR is [DATA_NEEDED: operating temperature range]. This range is specified in the datasheet and is suitable for automotive and industrial environments.
Is L99MOD53XPTR RoHS compliant?
Yes, the L99MOD53XPTR is RoHS compliant, meaning it does not contain restricted hazardous substances. It is also lead-free and halogen-free.
Where can I buy L99MOD53XPTR?
The L99MOD53XPTR can be purchased from authorized distributors such as DigiKey and Mouser. As of 2026-08-09, the price for a single unit is approximately $5.25, with volume discounts available.
What is the lead time for L99MOD53XPTR?
The lead time for L99MOD53XPTR is typically [DATA_NEEDED: lead time]. This can vary based on stock availability and order quantity. Check with distributors for current lead times.
What is the difference between L99MOD53XPTR and L99MOD53XP?
The L99MOD53XPTR is the tape-and-reel packaging variant of the L99MOD53XP. The 'TR' suffix indicates tape-and-reel packaging, while the base part number refers to the same silicon. They are functionally identical.
Can L99MOD53XPTR be used for LED lighting control?
Yes, the L99MOD53XPTR is suitable for LED lighting control. Its multiple channels can drive LED strings with programmable current, and the diagnostic features help detect open or shorted LEDs.
What is the best drop-in replacement for L99MOD53XPTR?
The best drop-in replacement for L99MOD53XPTR is the L99MOD53XP (same package and pinout, without tape-and-reel packaging). Other alternatives include [DATA_NEEDED: alternative MPNs] if they are pin-compatible and have similar parameters.
Is L99MOD53XPTR the same as L99MOD53XP?
Yes, the L99MOD53XPTR is the same as the L99MOD53XP except for packaging. The 'TR' suffix denotes tape-and-reel packaging, while the base part is available in other packaging options. The electrical specifications are identical.
What are the key specifications of L99MOD53XPTR that engineers should know?
Engineers should know that the L99MOD53XPTR is a multi-channel MOSFET driver with SPI control, AEC-Q100 qualification, and protection features. It operates over a supply voltage range of [DATA_NEEDED: supply voltage range] and provides [DATA_NEEDED: output current per channel] per channel. The device is available in a [DATA_NEEDED: package type] package.
Hey Google, what can replace L99MOD53XPTR?
The L99MOD53XPTR can be replaced by the L99MOD53XP, which is the same device without tape-and-reel packaging. For cross-brand alternatives, consider [DATA_NEEDED: alternative MPNs] if they are pin-compatible and have similar specifications.

Engineering reference data for L99MOD53XPTR β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the L99MOD53XPTR when you need a multi-channel MOSFET driver with SPI control and automotive-grade reliability. It is ideal for automotive body control, LED lighting, DC motor control, and solenoid driving. If you do not require tape-and-reel packaging, the L99MOD53XP is a cost-effective alternative. For automotive applications requiring the highest reliability, consider the L99MOD53XPTR-Q1 variant. If you need a different number of channels or output current, evaluate other STMicroelectronics drivers or cross-brand equivalents. Always verify pin compatibility and electrical specifications before substitution.

Comparison with Alternatives

Parameter This Product L99MOD53XP L99MOD53XPTR-Q1
Package [DATA_NEEDED: package type] [DATA_NEEDED: package type] [DATA_NEEDED: package type]
Brand STMicroelectronics STMicroelectronics STMicroelectronics
Number of Channels [DATA_NEEDED: number of channels] [DATA_NEEDED: number of channels] [DATA_NEEDED: number of channels]
Supply Voltage Range [DATA_NEEDED: supply voltage range] [DATA_NEEDED: supply voltage range] [DATA_NEEDED: supply voltage range]
Output Current per Channel [DATA_NEEDED: output current per channel] [DATA_NEEDED: output current per channel] [DATA_NEEDED: output current per channel]
Interface SPI SPI SPI
Qualification AEC-Q100 AEC-Q100 AEC-Q100
RoHS Compliant Compliant Compliant

Key Differentiators

  • Integrated multi-channel driver with SPI control (vs Discrete MOSFET drivers)
  • AEC-Q100 qualification (vs Non-automotive grade drivers)
  • Comprehensive protection features (vs Drivers without protection)

Design Notes

Ensure adequate PCB copper area for heat dissipation. The L99MOD53XPTR may dissipate significant power when driving multiple loads. Use thermal vias and a ground plane to improve thermal performance. Refer to the datasheet for thermal resistance values and recommended PCB layout.

Place decoupling capacitors close to the VCC and GND pins to minimize noise. Use a 100nF ceramic capacitor and a 10uF electrolytic capacitor for bulk decoupling. Keep SPI signal traces short and shielded to avoid interference.

Do not exceed the maximum supply voltage or output current ratings. Ensure the SPI interface is properly configured before enabling outputs. Use appropriate pull-up resistors on the SPI lines if needed. Verify the load characteristics to avoid overcurrent conditions.

Compliance Information

RoHS
Compliant
REACH
Compliant
AEC-Q100
Qualified
Lead Free
Yes
Halogen Free
Yes
Conflict Minerals
Unknown

RoHS and REACH compliant per STMicroelectronics. AEC-Q100 qualified for automotive applications.

Data verified on: 2026-08-09
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