HV PAK™ Programmable Mixed-signal Matrix with Four Outputs with Operating Voltage up to 13.2V and up to 2A Current per Output
The SLG47105 combines mixed-signal logic and high-voltage H-bridge functionality in a tiny 2 x 3 mm QFN package. One time programmable (OTP) Non-Volatile Memory (NVM) stores user-defined solutions in the form of interconnections of internal logic, I/O pins, and macrocells.
Integrated dual H-Bridge/quad Half-Bridge functionality allows driving different loads up to 2A per output with up to 13.2V voltage. The SLG47105 advanced PWM macrocells provide the ability to drive multiple motors with different PWM frequencies and duty cycles. Low idle current consumption in combination with a compact size further extends the field of possible applications.
This highly versatile device allows a wide variety of mixed-signal functions to be designed alongside with high-voltage capabilities within a tiny and thermally efficient IC.
Macrocells Overview
Four High Voltage, Current Drive GPOs with low RDS_ON
Two 8-bit PWM Macrocells with build-in 16-byte register file
Two Oscilllators:
- 2.048 kHz oscillator
- 25 MHz oscillator
Two High Speed General Purpose Rail-to-Rail Analog Comparators with Integrated Voltage Reference
Differential Amplifier with Integrator and Analog Comparator
Two Current Sense Comparators with Integrated Voltage Reference
Twelve Combination Function Macrocells:
- Three Selectable DFF/Latch or 2-bit LUTs;
- One Selectable Programmable Pattern Generator or 2-bit LUT;
- Six Selectable DFF/Latch or 3-bit LUTs;
- One Selectable Pipe Delay or Ripple Counter or 3-bit LUT;
- One Selectable DFF/Latch or 4-bit LUT
I2C Serial Communication Macrocell
Temperature Sensor
Filter with Edge Detector
Programmable Delay with Edge Detector
Power On Reset (POR)
Features
Up to 13.2V High Voltage and up to 2A High Current Drive GPOs
Full H-Bridge and Independent Half-Bridge Control.
Flexible 8-bit PWMs Macrocells
Constant Current Regulation
Constant Voltage Regulation
Two Wide Range Power Supply Inputs:
- 2.5 V (±8 %) to 5.0 V (±10 %) VDD
- 3.3 V (±10 %) to 12.0 V (±10 %) VDD2
Built-in Protections:
- Undervoltage Lockout
- Overcurrent Protection
- Thermal Shutdown
I2C control
Operating Temperature Range: -40 °C to 85 °C
One Time Programmable Non-Volatile Memory
Low current consumption (nA level)
RoHS Compliant/Halogen-Free
Applications
Smart Locks and Valves
ATMs and POS Printers
MOSFET Drivers
Cameras (Video Security, DSLRs)
Toys
Robotics
Personal Computers and Servers
Office Equipment
Personal and Medical Care Devices
Other Consumer Electronics
Packages and Ordering
SLG47105V: STQFN-20: (2.0 x 3.0 x 0.55 mm, 0.4 mm pitch)
The product ID suffix indicates the package style.
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Get in touch with us directly through our worldwide sales offices, or contact one of our global distributors and representatives.
Inquiries Distributors and Representatives Register for newslettersGreenPAK Configurable Mixed-signal IC Introduction
GreenPAK Designer Software
GreenPAK Development Platform
Choosing the Right GreenPAK
View the full list of the GreenPAK videos in our Training Video Library.
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Get in touch with us directly through our worldwide sales offices, or contact one of our global distributors and representatives.
Inquiries Distributors and Representatives Register for newslettersThis product is available in one package:
SLG47105V: STQFN-20: (2.0 x 3.0 x 0.55 mm, 0.4 mm pitch)
Development board selector

Provides full programming, emulation and testing functions for GreenPAK devices. For use with SLG46xxxX-SKT sockets kits.
Working in tandem with the GreenPAK Designer software, GreenPAK Advanced Development Board allows designers to:
- Program custom samples in minutes
- Test GreenPAK projects in-circuit
- Develop using any GreenPAK device
- Programming
- Emulation
- Signal and Logic Generators
- USB interface
- MacOS, Windows and Linux compatible
- Programming and Emulation
- Gated expansion header for connection to external test equipment
- Integrated signal and logic generators
- LEDs for visual indication

Perfect for breadboarding and fast prototypes.
Working in tandem with the GreenPAK Designer software, GreenPAK DIP Development Board allows designers to:
- Program custom samples in minutes
- Test GreenPAK projects in-circuit
- Programming
- Emulation
- USB interface
- MacOS, Windows and Linux compatible
- Programming and Emulation
- Gated expansion header for connection to external test equipment

Provides advanced emulation and testing functions for select GreenPAK devices.
Working in tandem with the GreenPAK Designer software, GreenPAK Pro Development Board allows designers to:
- Program custom samples in minutes
- Test GreenPAK projects in-circuit
- Develop using select GreenPAK device
- Programming
- Emulation
- Signal and Logic Generators
- High Speed Signal and Logic Generators
- Logic Analyzer**
- USB interface
- MacOS, Windows and Linux compatible
- Programming and Emulation
- Gated expansion header for connection to external test equipment
- Integrated high speed signal and logic generators
**This feature is not available at the moment and will be added through the software update

GreenPAK Advanced Development Board
- Programming
- Emulation
- Signal and Logic Generators

GreenPAK DIP Development Board
Perfect for breadboarding and fast prototypes.
Working in tandem with the GreenPAK Designer software, GreenPAK DIP Development Board allows designers to:
- Program custom samples in minutes
- Test GreenPAK projects in-circuit
- Programming
- Emulation

GreenPAK Pro Development Board
Provides advanced emulation and testing functions for select GreenPAK devices.
Working in tandem with the GreenPAK Designer software, GreenPAK Pro Development Board allows designers to:
- Program custom samples in minutes
- Test GreenPAK projects in-circuit
- Develop using select GreenPAK device
- Programming
- Emulation
- Signal and Logic Generators
- High Speed Signal and Logic Generators
- Logic Analyzer**
Other components

Programmable Mixed-signal Matrix. Two Power Supply Inputs: 2.5 V to 5.0 V and 3.3 V to 12.0 V. 8-GPIO, 4 HV GPO with current up to 2A per Output, 2 PWM, 2 ACMP, 2 CCMP, Integrator, 17 LUTs (max.), 15 DFF/LATCH (max.), 5 CNT/DLY (max.) and other Macrocells. Package STQFN-20 (2.0 x 3.0 mm).
Price table:
Qty | 100-8,999 | 9,000-49,999 | 50,000+ |
---|---|---|---|
Price | $0.50 | $0.433 | Contact Dialog |

Programmable Mixed-signal Matrix. Two Power Supply Inputs: 2.5 V to 5.0 V and 3.3 V to 12.0 V. 8-GPIO, 4 HV GPO with current up to 2A per Output, 2 PWM, 2 ACMP, 2 CCMP, Integrator, 17 LUTs (max.), 15 DFF/LATCH (max.), 5 CNT/DLY (max.) and other Macrocells. Package STQFN-20 (2.0 x 3.0 mm).
Price table:
Qty | 3000-8,999 | 9,000-49,999 | 50,000+ |
---|---|---|---|
Price | $0.50 | $0.43 | Contact Dialog |

Included are: SLG4SA20HV-20x30 socket adapter, 50 SLG47105V samples.

Evaluation Board for SLG47105V. Developed for testing designs with all features and high current loads.

HVPAK SLG47105 Demo Board.
Developed for testing designs based on SLG47105 with built-in DCM, Stepper Motor and LED.

20-pin DIP Proto Board. Perfect for breadboarding and fast prototypes.
Stay connected
Get in touch with us directly through our worldwide sales offices, or contact one of our global distributors and representatives.
Inquiries Distributors and Representatives Register for newsletters3 months ago
Programming Error
Posted by Rashid Talib 0 points 4 repliesHi
I try to program a SLG46826 soldered on our custom board. I connected GND, SDA, SCL and VDD from the In-System programmer to the SLG46826 and selected the programmer board in the GreenPAK Designer.
I can read out the device information using the "Read" button.
When I press the "Program" button, the blue LED of the In-System board blinks for a few seconds and then the following message is displayed:
Programming Error
Programming was done with error. Programming sequence doesn't match to the read sequence.
After closing this dialog, the SLG46826 seems to do it's job but not all the times. It seems that verification failed.
1. What is the issue with this Error?
2. Is it enough to just press the "Program" button or do I first need to enter Emulation or TestMode?
Thanks for your help & best regards
Rashid
Attachment | Size |
---|---|
Programming Error | 28.77 KB |
3 months ago
Hi Shivani
Thanks for your reply, please find my answers below:
1. Software version: GreenPAK Designer v6.25, build 002
2. The chip was preliminary programmed, but I'm sure this error already appeared when I first programmed the chip
3. The chip is soldered on our custom board (see attached image) and powered from a 2.8V source (main supply) and a secondary 1.8V source. The SCL and SDA signals are connected to 1.8V using 4.7kR pull-up resistors. I noticed, that SCL and SCA are in the 2.8V power domain but according to the datasheet they should be "low voltage" capable. I connected the SCL and SDA signals such as the GND and 1.8V to the header of the In-System Programmer v1.0. For programming I choose "external supply".
Thanks for any help & best regards
Rashid
Attachment | Size |
---|---|
Schematic.pdf | 54.44 KB |
3 months ago
Hi Shivani
Do you think it may be a problem with SCL and SDA pulled-up to 1.8V instead of 2.8V? I changed the configuration of SCL and SDA to "low voltage digital input" but his setting will only be applied once the programming was successful...
Info:
I programmed a "fresh" IC which was never programmed before. The programming finished with the message: "NVM programming succeeded. EEPROM programming finished with error". So it seems that a fresh IC can be programmed without errors (the EEPROM error may be due to the fact that I selected to programm the EEPROM without having any EEPROM data defined)
Please advice!
BR, Rashid
3 months ago
Hi Rashid,
thank you for the feedback. Could you move your design to the earlier version of the SW. https://diasemi.egnyte.com/dl/SiLqkg7I0D/GP_Designer_v6.24.003_Win_Internal.zip_
Password : vZoj7qvx
Please let me know your feedback
KInd Regards
Shivani
3 months ago
Hi Rashid,
This error is a bit strange. Could you please give me some more info so that I have a better idea about the issue?
1. Software version and build that is used
2. Was the chip empty or preliminary programmed
3. How is the supply given to the chip? Using our board or external power supply?
Kind Regards
Shivani