main
Download ZIP Propose a change
Generated by kicad-footprint-generator · KiCad file format 20260206
Name Last commit message Last updated
docs Publish 0.1.0 · Ray 11h ago
viewers stm32f071v8t6tr: viewers · Ray 11h ago
package.json Publish 0.1.0 · Ray 11h ago
page.json Set visibility: public · Ray 11h ago
README.md Initial commit: component/stm32f071v8t6tr · Ray 11h ago
stm32f071v8t6tr-etched.glb stm32f071v8t6tr: factory component page (tier=lcsc) · Ray 11h ago
stm32f071v8t6tr-etched.step stm32f071v8t6tr: factory component page (tier=lcsc) · Ray 11h ago
stm32f071v8t6tr-hero.glb stm32f071v8t6tr: hero GLB from the etched model (keeps the MPN mark) · Ray 11h ago
stm32f071v8t6tr-hero.overlay.json Publish 0.1.0 · Ray 11h ago
stm32f071v8t6tr.glb Publish 0.1.0 · Ray 11h ago
stm32f071v8t6tr.kicad_mod Publish 0.1.0 · Ray 11h ago
stm32f071v8t6tr.kicad_sym Publish 0.1.0 · Ray 11h ago
stm32f071v8t6tr.lbr Publish 0.1.0 · Ray 11h ago
stm32f071v8t6tr.step Publish 0.1.0 · Ray 11h ago

STM32F071V8T6TR

STMicroelectronics · Microcontrollers (MCU/MPU/SOC) · LQFP-100(14x14)

STM32F071V8T6TR from STMicroelectronics, in a LQFP-100(14x14). Pinout and pin descriptions extracted from the manufacturer datasheet (extract_pins, cross-checked by a second model, then checked against ST open pin data); symbol, footprint, and 3D from KiCad-official CAD.

Pinout

Pin Name Type Function
1 PE2 bidirectional 5 V-tolerant I/O (FT) with alternate functions TSC_G7_IO1 and TIM3_ETR; floating input after reset.
2 PE3 bidirectional 5 V-tolerant I/O (FT) with alternate functions TSC_G7_IO2 and TIM3_CH1; floating input after reset.
3 PE4 bidirectional 5 V-tolerant I/O (FT) with alternate functions TSC_G7_IO3 and TIM3_CH2; floating input after reset.
4 PE5 bidirectional 5 V-tolerant I/O (FT) with alternate functions TSC_G7_IO4 and TIM3_CH3; floating input after reset.
5 PE6 bidirectional 5 V-tolerant I/O (FT) with alternate function TIM3_CH4 and additional functions WKUP3 and RTC_TAMP3.
6 VBAT power_in Backup power supply for the RTC, 32 kHz oscillator and backup registers, 1.65 to 3.6 V, used when VDD is not present.
7 PC13 bidirectional Standard 3.3 V I/O supplied through the power switch; sink limited to 3 mA, so output speed must not exceed 2 MHz at 30 pF and it must not source current such as an LED drive.
8 PC14-OSC32_IN bidirectional Standard 3.3 V I/O supplied through the power switch with 3 mA limit and 2 MHz / 30 pF output limit; also the OSC32_IN 32 kHz oscillator input.
9 PC15-OSC32_OUT bidirectional Standard 3.3 V I/O supplied through the power switch with 3 mA limit and 2 MHz / 30 pF output limit; also the OSC32_OUT 32 kHz oscillator output.
10 PF9 bidirectional 5 V-tolerant I/O (FT) with alternate function TIM15_CH1.
11 PF10 bidirectional 5 V-tolerant I/O (FT) with alternate function TIM15_CH2.
12 PF0-OSC_IN bidirectional 5 V-tolerant I/O (FT) that is the external 4-32 MHz oscillator input OSC_IN, with CRS_SYNC additional function.
13 PF1-OSC_OUT bidirectional 5 V-tolerant I/O (FT) that is the external 4-32 MHz oscillator output OSC_OUT.
14 NRST bidirectional Bidirectional reset pin with embedded weak pull-up; active low device reset input and internal reset output.
15 PC0 bidirectional 3.3 V-tolerant I/O (TTa) connected to the ADC, with EVENTOUT and ADC_IN10 functions.
16 PC1 bidirectional 3.3 V-tolerant I/O (TTa) connected to the ADC, with EVENTOUT and ADC_IN11 functions.
17 PC2 bidirectional 3.3 V-tolerant I/O (TTa) connected to the ADC, with SPI2_MISO, I2S2_MCK, EVENTOUT and ADC_IN12 functions.
18 PC3 bidirectional 3.3 V-tolerant I/O (TTa) connected to the ADC, with SPI2_MOSI, I2S2_SD, EVENTOUT and ADC_IN13 functions.
19 PF2 bidirectional 5 V-tolerant I/O (FT) with EVENTOUT alternate function and WKUP8 additional function.
20 VSSA power_in Analog ground reference for the ADC, DAC, reset blocks, RCs and PLL.
21 VDDA power_in Analog power supply, from VDD to 3.6 V and must be at least VDD; minimum 2.4 V when the ADC or DAC is used.
22 PF3 bidirectional 5 V-tolerant I/O (FT) with EVENTOUT alternate function.
23 PA0 bidirectional 3.3 V-tolerant I/O (TTa) connected to ADC_IN0, with USART2_CTS, TIM2_CH1_ETR, TSC_G1_IO1, USART4_TX, COMP1_OUT and WKUP1 functions.
24 PA1 bidirectional 3.3 V-tolerant I/O (TTa) connected to ADC_IN1, with USART2_RTS, TIM2_CH2, TIM15_CH1N, TSC_G1_IO2, USART4_RX and EVENTOUT functions.
25 PA2 bidirectional 3.3 V-tolerant I/O (TTa) connected to ADC_IN2, with USART2_TX, TIM2_CH3, TIM15_CH1, TSC_G1_IO3, COMP2_OUT and WKUP4 functions.
26 PA3 bidirectional 3.3 V-tolerant I/O (TTa) connected to ADC_IN3, with USART2_RX, TIM2_CH4, TIM15_CH2, TSC_G1_IO4 and COMP2_INP functions.
27 VSS power_in Digital ground.
28 VDD power_in Digital and I/O supply, 2.0 to 3.6 V, supplying the internal regulator; must be decoupled to VSS.
29 PA4 bidirectional 3.3 V-tolerant I/O (TTa) connected to ADC_IN4 and DAC_OUT1, with SPI1_NSS, I2S1_WS, TIM14_CH1, TSC_G2_IO1, USART2_CK, COMP1_INM4 and COMP2_INM4 functions.
30 PA5 bidirectional 3.3 V-tolerant I/O (TTa) connected to ADC_IN5 and DAC_OUT2, with SPI1_SCK, I2S1_CK, CEC, TIM2_CH1_ETR, TSC_G2_IO2, COMP1_INM5 and COMP2_INM5 functions.
31 PA6 bidirectional 3.3 V-tolerant I/O (TTa) connected to ADC_IN6, with SPI1_MISO, I2S1_MCK, TIM3_CH1, TIM1_BKIN, TIM16_CH1, COMP1_OUT, TSC_G2_IO3, EVENTOUT and USART3_CTS functions.
32 PA7 bidirectional 3.3 V-tolerant I/O (TTa) connected to ADC_IN7, with SPI1_MOSI, I2S1_SD, TIM3_CH2, TIM14_CH1, TIM1_CH1N, TIM17_CH1, COMP2_OUT, TSC_G2_IO4 and EVENTOUT functions.
33 PC4 bidirectional 3.3 V-tolerant I/O (TTa) connected to ADC_IN14, with EVENTOUT and USART3_TX functions.
34 PC5 bidirectional 3.3 V-tolerant I/O (TTa) connected to ADC_IN15, with TSC_G3_IO1, USART3_RX and WKUP5 functions.
35 PB0 bidirectional 3.3 V-tolerant I/O (TTa) connected to ADC_IN8, with TIM3_CH3, TIM1_CH2N, TSC_G3_IO2, EVENTOUT and USART3_CK functions.
36 PB1 bidirectional 3.3 V-tolerant I/O (TTa) connected to ADC_IN9, with TIM3_CH4, USART3_RTS, TIM14_CH1, TIM1_CH3N and TSC_G3_IO3 functions.
37 PB2 bidirectional 5 V-tolerant I/O (FT) with alternate function TSC_G3_IO4.
38 PE7 bidirectional 5 V-tolerant I/O (FT) with alternate function TIM1_ETR.
39 PE8 bidirectional 5 V-tolerant I/O (FT) with alternate function TIM1_CH1N.
40 PE9 bidirectional 5 V-tolerant I/O (FT) with alternate function TIM1_CH1.
41 PE10 bidirectional 5 V-tolerant I/O (FT) with alternate function TIM1_CH2N.
42 PE11 bidirectional 5 V-tolerant I/O (FT) with alternate function TIM1_CH2.
43 PE12 bidirectional 5 V-tolerant I/O (FT) with alternate functions SPI1_NSS, I2S1_WS and TIM1_CH3N.
44 PE13 bidirectional 5 V-tolerant I/O (FT) with alternate functions SPI1_SCK, I2S1_CK and TIM1_CH3.
45 PE14 bidirectional 5 V-tolerant I/O (FT) with alternate functions SPI1_MISO, I2S1_MCK and TIM1_CH4.
46 PE15 bidirectional 5 V-tolerant I/O (FT) with alternate functions SPI1_MOSI, I2S1_SD and TIM1_BKIN.
47 PB10 bidirectional 5 V-tolerant I/O (FT) with alternate functions SPI2_SCK, I2C2_SCL, USART3_TX, CEC, TSC_SYNC and TIM2_CH3.
48 PB11 bidirectional 5 V-tolerant I/O (FT) with alternate functions USART3_RX, TIM2_CH4, EVENTOUT, TSC_G6_IO1 and I2C2_SDA.
49 VSS power_in Digital ground.
50 VDD power_in Digital and I/O supply, 2.0 to 3.6 V, supplying the internal regulator; must be decoupled to VSS.
51 PB12 bidirectional 5 V-tolerant I/O (FT) with alternate functions TIM1_BKIN, TIM15_BKIN, SPI2_NSS, I2S2_WS, USART3_CK, TSC_G6_IO2 and EVENTOUT.
52 PB13 bidirectional 5 V-tolerant, FM+ capable I/O (FTf) with alternate functions SPI2_SCK, I2S2_CK, I2C2_SCL, USART3_CTS, TIM1_CH1N and TSC_G6_IO3.
53 PB14 bidirectional 5 V-tolerant, FM+ capable I/O (FTf) with alternate functions SPI2_MISO, I2S2_MCK, I2C2_SDA, USART3_RTS, TIM1_CH2N, TIM15_CH1 and TSC_G6_IO4.
54 PB15 bidirectional 5 V-tolerant I/O (FT) with alternate functions SPI2_MOSI, I2S2_SD, TIM1_CH3N, TIM15_CH1N and TIM15_CH2, plus WKUP7 and RTC_REFIN additional functions.
55 PD8 bidirectional 5 V-tolerant I/O (FT) with alternate function USART3_TX.
56 PD9 bidirectional 5 V-tolerant I/O (FT) with alternate function USART3_RX.
57 PD10 bidirectional 5 V-tolerant I/O (FT) with alternate function USART3_CK.
58 PD11 bidirectional 5 V-tolerant I/O (FT) with alternate function USART3_CTS.
59 PD12 bidirectional 5 V-tolerant I/O (FT) with alternate functions USART3_RTS and TSC_G8_IO1.
60 PD13 bidirectional 5 V-tolerant I/O (FT) with alternate function TSC_G8_IO2.
61 PD14 bidirectional 5 V-tolerant I/O (FT) with alternate function TSC_G8_IO3.
62 PD15 bidirectional 5 V-tolerant I/O (FT) with alternate functions TSC_G8_IO4 and CRS_SYNC.
63 PC6 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate function TIM3_CH1.
64 PC7 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate function TIM3_CH2.
65 PC8 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate function TIM3_CH3.
66 PC9 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate function TIM3_CH4.
67 PA8 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate functions USART1_CK, TIM1_CH1, EVENTOUT, MCO and CRS_SYNC.
68 PA9 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate functions USART1_TX, TIM1_CH2, TIM15_BKIN and TSC_G4_IO1.
69 PA10 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate functions USART1_RX, TIM1_CH3, TIM17_BKIN and TSC_G4_IO2.
70 PA11 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate functions USART1_CTS, TIM1_CH4, COMP1_OUT, TSC_G4_IO3 and EVENTOUT.
71 PA12 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate functions USART1_RTS, TIM1_ETR, COMP2_OUT, TSC_G4_IO4 and EVENTOUT.
72 PA13 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2; after reset it is SWDIO with internal pull-up enabled, with IR_OUT as alternate function.
73 PF6 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with no alternate function listed in the pin table.
74 VSS power_in Digital ground.
75 VDDIO2 power_in Independent I/O supply, 1.65 to 3.6 V, for the marked I/Os; must not be provided without a valid VDD supply.
76 PA14 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2; after reset it is SWCLK with internal pull-down enabled, with USART2_TX as alternate function.
77 PA15 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate functions SPI1_NSS, I2S1_WS, USART2_RX, USART4_RTS, TIM2_CH1_ETR and EVENTOUT.
78 PC10 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate functions USART3_TX and USART4_TX.
79 PC11 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate functions USART3_RX and USART4_RX.
80 PC12 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate functions USART3_CK and USART4_CK.
81 PD0 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate functions SPI2_NSS and I2S2_WS.
82 PD1 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate functions SPI2_SCK and I2S2_CK.
83 PD2 bidirectional 5 V-tolerant I/O (FT) supplied by VDDIO2 with alternate functions USART3_RTS and TIM3_ETR.
84 PD3 bidirectional 5 V-tolerant I/O (FT) with alternate functions SPI2_MISO, I2S2_MCK and USART2_CTS.
85 PD4 bidirectional 5 V-tolerant I/O (FT) with alternate functions SPI2_MOSI, I2S2_SD and USART2_RTS.
86 PD5 bidirectional 5 V-tolerant I/O (FT) with alternate function USART2_TX.
87 PD6 bidirectional 5 V-tolerant I/O (FT) with alternate function USART2_RX.
88 PD7 bidirectional 5 V-tolerant I/O (FT) with alternate function USART2_CK.
89 PB3 bidirectional 5 V-tolerant I/O (FT) with alternate functions SPI1_SCK, I2S1_CK, TIM2_CH2, TSC_G5_IO1 and EVENTOUT.
90 PB4 bidirectional 5 V-tolerant I/O (FT) with alternate functions SPI1_MISO, I2S1_MCK, TIM17_BKIN, TIM3_CH1, TSC_G5_IO2 and EVENTOUT.
91 PB5 bidirectional 5 V-tolerant I/O (FT) with alternate functions SPI1_MOSI, I2S1_SD, I2C1_SMBA, TIM16_BKIN and TIM3_CH2, plus WKUP6 additional function.
92 PB6 bidirectional 5 V-tolerant, FM+ capable I/O (FTf) with alternate functions I2C1_SCL, USART1_TX, TIM16_CH1N and TSC_G5_IO3.
93 PB7 bidirectional 5 V-tolerant, FM+ capable I/O (FTf) with alternate functions I2C1_SDA, USART1_RX, USART4_CTS, TIM17_CH1N and TSC_G5_IO4.
94 BOOT0 input Dedicated boot memory selection pin, sampled at startup together with the boot selector option bit.
95 PB8 bidirectional 5 V-tolerant, FM+ capable I/O (FTf) with alternate functions I2C1_SCL, CEC, TIM16_CH1 and TSC_SYNC.
96 PB9 bidirectional 5 V-tolerant, FM+ capable I/O (FTf) with alternate functions SPI2_NSS, I2S2_WS, I2C1_SDA, IR_OUT, TIM17_CH1 and EVENTOUT.
97 PE0 bidirectional 5 V-tolerant I/O (FT) with alternate functions TIM16_CH1 and EVENTOUT.
98 PE1 bidirectional 5 V-tolerant I/O (FT) with alternate functions TIM17_CH1 and EVENTOUT.
99 VSS power_in Digital ground.
100 VDD power_in Digital and I/O supply, 2.0 to 3.6 V, supplying the internal regulator; must be decoupled to VSS.

Key specifications

Parameter Value
Manufacturer STMicroelectronics
Package LQFP-100(14x14)
Category Embedded Processors & Controllers
Pins 100

CAD (KiCad official)

  • Symbol: STM32F071V8T6TR
  • Footprint: Package_QFP:LQFP-100_14x14mm_P0.5mm
  • 3D model: LQFP-100(14x14) (KiCad packages3D, STEP)
  • 3D model files: stm32f071v8t6tr-etched.step / stm32f071v8t6tr-etched.glb carry the MPN laser-etched on the die in a toggleable Adom.LaserEtch group (Fusion-ready); stm32f071v8t6tr.step / stm32f071v8t6tr.glb are the bare package body.

Provenance

Data extracted from the manufacturer datasheet, not a distributor listing:

  • Datasheet: STMicroelectronics datasheet (122 pp, sha256 054f3806403d4305, retrieved 2026-10-08, tier: lcsc)
  • Extractor: parts-factory 2.0.0 / extract_pins 0.3, primary claude-haiku-5-5 (text), consensus claude-sonnet-5-5 (agreed), guards: pin_guards 0.1: passed. Pins are checked against the footprint pad set and their cited datasheet pages before publish.
  • CAD: KiCad official libraries (CC-BY-SA 4.0).

Datasheet PDF