12-GPIO, 4 ACMPs, I2C, 23 LUTs (max.), 8 CNT/DLY (max.), 21 DFF/LATCH (max.) and other Macrocells
The SLG46855-A provides a small, low power component for commonly used mixed-signal functions. The user creates their circuit design by programming the one time programmable (OTP) Non-Volatile Memory (NVM) to configure the interconnect logic, the IO Pins and the macrocells of the SLG46855-A. This highly versatile device allows a wide variety of mixed-signal functions to be designed within a very small, low power single integrated circuit.
Macrocells Overview
Two High Speed General Purpose Analog Comparators (ACMPxH);
Two Low Power General Purpose Analog Comparators (ACMPxL);
Two Voltage References (Vref):
- Two Vref Outputs;
Fifteen Combination Function Macrocells:
- Three Selectable DFF/Latch or 2-bit LUTs;
- One Selectable Programmable Pattern Generator or 2-bit LUT;
- Nine 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 LUTs;
Eight Multi-Function Macrocells:
- Seven Selectable DFF/Latch or 3-bit LUTs + 8-bit Delay/Counters;
- One Selectable DFF/Latch or 4-bit LUT + 16-bit Delay/Counter;
Serial Communications:
- I2C Protocol Interface;
Programmable Delay with Edge Detector Output;
Deglitch过滤器or Edge Detector;
Three Oscillators (OSC):
- 2.048 kHz Oscillator;
- 2.048 MHz Oscillator;
- 25 MHz Oscillator;
Analog Temperature Sensor;
Power-On Reset (POR).
Features
Read Back Protection (Read Lock)
Power Supply:
- 2.5 V (±8 %) to 5 V (±10 %)
RoHS Compliant / Halogen-Free
TQFN-14 With Wettable Flanks
AEC-Q100 Grade 2
雷竞技安卓下载
In-Vehicle Navigation
Infotainment
Advanced Driver Assistance Systems (ADAS)
Automotive Display Clusters
Body Electronics
Packages and Ordering
SLG46855-AP: FCQFN-14 (3.0 x 3.0 x 0.55 mm, 0.65 mm pitch)
The product ID suffix indicates the package style.
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1 month ago
SLG47004 Op Amp Buffer
Posted byAndyShort25 points 1 replyGreenPAK Designer v.6.25
SLG47004
I am using OPAMP0 as a non-inverting buffer for an analogue input.
It appears that if I allow the input to drop to 0V then the OPAMP output seems to turn off and does not turn on again until 5 or 6mS after the voltage rises. This is at 8MHz B/W. It takes longer to respond with lower B/W settings.
I have not tested this on the actual IC.
Attachment | Size |
---|---|
Design print | 81.56 KB |
OPAMP input drops to 0V | 85.26 KB |
OPAMP输入保持高于0 v | 83.07 KB |
1 month ago
Hi,
Thank you for reaching out to us. Unfortunately this is a problem with the simulation model. Our simulation team is working on this and it will be fixed in the next GPAK designer SW revision which will be out by next month
Kind Regards
Shivani