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Infineon Technologies S6E2H14F0AGV2000M — Microcontrollers & Processors (MCU / MPU / DSP)

Infineon S6E2H14F0AGV2000M MCU, ARM Cortex-M4F, 160 MHz

MPNS6E2H14F0AGV2000M
End of Life

Infineon Technologies FM4 S6E2H4 series MCU, ARM Cortex-M4F 32-bit, 160 MHz, 288KB Flash, 32K x 8 RAM, 100-LQFP, -40 to 125°C.

$9.5Ref. price · indicative, final on quote
Packaging100-LQFP
StockIn Stock (19)
Lead timeIn Stock wk
MOQ1 pcs
  • 100% new & originalTraceable channels only — no refurbs, no pulls, no remarked parts.
  • Date & lot codes on quoteStated per line before you commit; label photos on request.
  • MSL-compliant ESD packingMoisture-sealed bags with indicator cards; reels photo-verified.
  • PayPal buyer protectionPay by T/T, PayPal or Payoneer — card payments covered end to end.

Specifications

S6E2H14F0AGV2000M Technical Specifications
ParameterValue
SeriesFM4 S6E2H4
Mounting typeSurface Mount
Oscillator typeInternal
Program memory typeFLASH
Voltage - supply (Vcc (Vdd))2.7V ~ 5.5V
Operating temperature-40°C ~ 125°C (TJ)
Speed160MHz
PackageTray
RAM size32K x 8
Core size32-Bit
PeripheralsDMA, LVD, POR, PWM, WDT
ConnectivityCSIO, EBI/EMI, I²C, LINbus, UART/USART
Number of i (O)80
Core processorARM® Cortex®-M4F
Case100-LQFP
Data convertersA/D 24x12b; D/A 2x12b
Program memory size288KB (288K x 8)

Product details

Active production — Cortex-M4F at 160 MHz with 288 KB on-chip Flash

The S6E2H14F0AGV2000M is an Infineon FM4 S6E2H4 series 32-bit MCU built around an ARM Cortex-M4F core clocked at 160 MHz.

Peripheral set and signal chain

On-chip data converters include 24-channel 12-bit ADC and two 12-bit DAC channels — enough analog front-end for multi-sensor acquisition without external multiplexing. Connectivity covers CSIO, EBI/EMI, I²C, LINbus, and UART/USART, plus DMA, LVD, POR, PWM, and WDT peripherals. The 80 general-purpose I/O lines give room for parallel buses and discrete control signals.

Frequently asked questions

What is S6E2H14F0AGV2000M's listed speed?

The core runs at 160 MHz — this is the Cortex-M4F's maximum clock, and the flash wait-state profile determines the actual throughput at that speed.