ST92186B

Features: `Register file based 8/16 bit Core Architecture with RUN, WFI, and HALT modes`-10 to 70°C Operating Temperature Range`24 MHz Operation @5V+-10%`Minimum instruction cycle time: 250ns at 16 MHz internal clock, 165ns at 24 MHz internal clock`24 or 32 Kbytes ROM`640 bytes of on-chip static R...

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SeekIC No. : 004506890 Detail

ST92186B: Features: `Register file based 8/16 bit Core Architecture with RUN, WFI, and HALT modes`-10 to 70°C Operating Temperature Range`24 MHz Operation @5V+-10%`Minimum instruction cycle time: 250ns at 16 ...

floor Price/Ceiling Price

Part Number:
ST92186B
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2025/12/23

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Product Details

Description



Features:

`Register file based 8/16 bit Core Architecture with RUN, WFI, and HALT modes
`-10 to 70°C Operating Temperature Range
`24 MHz Operation @5V+-10%
`Minimum instruction cycle time: 250ns at 16 MHz internal clock, 165ns at 24 MHz internal clock
`24 or 32 Kbytes ROM
`640 bytes of on-chip static RAM
`256 bytes of Register file
`256 bytes of display RAM (OSDRAM)
`32-pin Shrink DIP and 42-pin Shrink DIP packages
`26 (SDIP42) or 17 (SDIP32) fully programmable I/O pins
`Flexible Clock controller for OSD and Core clocks, running from one single low frequency external crystal
`Enhanced Display Controller with rows of up to 63 characters per row
  50/60Hz and 100/120 Hz operation
  525/625 lines operation, 4/3 or 16/9 format
  Interlaced and progressive scanning
  18x26 or 9x13 character matrix
  256 (18x26) characters, 1024 (9x13) characters definable in ROM by user
  512 possible colors, in 4x16-entry palettes
  2 x 16-entry palettes for Foreground, and 2 x 16-entry palettes for Background
  8 levels of translucency on Fast Blanking
  Serial, Parallel, and Extended Parallel Attributes modes
  7 character sizes in 18x26 mode, 4 in 9x13
  Rounding, Fringe, Scrolling, Flashing, Shadowing, Italics, Semi-transparent
`5-channel (SDIP42) or 3-channel (SDIP32) Analog-to-Digital converter with 6-bit accuracy
`16-bit Watchdog timer with 8-bit prescaler
`14-bit Voltage Synthesis for tuning reference voltage with 2 outputs (SDIP42) for 2 tuners or 1 output (SDIP32) for 1 tuner
`16-bit standard timer with 8-bit prescaler
`6 (SDIP42) or 4 (SDIP32) 8-bit programmable PWM outputs
`NMI and 8 (SDIP42) or 6 (SDIP32) external interrupts
`Infra-Red signal digital pre-processor
`Rich instruction set and 14 addressing modes
`Versatile Development Tools, including CCompiler, Assembler, Linker
`Source Level Debugger, Emulator and Real-Time Operating Systems available from thirdparties
`Windows Based OSD Font and Screen Editor
`EPROM and OTP devices available (ST92E196A9 and ST92T196A9)




Pinout

  Connection Diagram


Specifications

Symbol Parameter Value Unit
VDD1 Supply Voltage VSS 0.3 to VSS+ 7.0 V
VDDA Analog Supply Voltage VSS 0.3 to  VDD +0.3 V
VI Input Voltage VSS 0.3 to  VDD +0.3 V
VI Input Voltage VSS 0.7 to  VDD+0.7 * V
VO Output Voltage VSS 0.3 to  VDD +0.3 V
VO Output Voltage VSS 0.7 to VDD +0.7 * V
TSTG Storage Temperature 55 to + 150 °C
IINJ Pin Injection Current Digital and Analog Input -5 to +5 mA
  Maximum Accumulated Pin injection Current in the device -50 to +50 mA

*Current is limited to |<200mA| into the pin
Note: Stresses above those listed as "absolute maximum ratings" may cause permanent damage to the device. This is a stress rating onlyand functional operation of the device at these conditions is not implied. Exposure to maximum rating conditions for extended periods mayaffect device reliability.




Description

The ST92186B family brings the enhanced ST9 register-based architecture to a new range of highperformance microcontrollers specifically designed for TV applications. Their performance derives from the use of a flexible 256-register programming model for ultra-fast context switching and real-time event response. The intelligent onchip peripherals offload the ST9 core from I/O and data management processing tasks allowing critical application tasks to get the maximum use of core resources. The ST9 MCU devices support low power consumption and low voltage operation for power-efficient and low-cost embedded systems.




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