component
F280041CPZS
Public Made by Adomby adom
Texas Instruments Microcontrollers (MCU/MPU/SOC), LQFP-100(14x14). Pinout cross-checked by two models against the datasheet, KiCad symbol/footprint/3D.
3D Model
Open in new tab ↗
Loads on click. Unloads only if this page sits in the background.
Symbol & Footprint
Schematic Symbol
Open full view ↗Loads on click. Unloads only if this page sits in the background.
PCB Footprint
Open full view ↗Loads on click. Unloads only if this page sits in the background.
Datasheet
Open in new tab ↗Loads on click. Unloads only if this page sits in the background.
README
markdownF280041CPZS
Texas Instruments · Microcontrollers (MCU/MPU/SOC) · LQFP-100(14x14)
F280041CPZS from Texas Instruments, in a LQFP-100(14x14). Pinout and pin descriptions extracted from the manufacturer datasheet (extract_pins, cross-checked by a second model); symbol, footprint, and 3D from KiCad-official CAD.
Pinout
| Pin | Name | Type | Function |
|---|---|---|---|
| 1 | GPIO28 | bidirectional | General-purpose I/O 28 on the 3.3 V VDDIO domain, with alternate functions including SCIA_RX, EPWM7_A, SD1_D3, SPIB_CLK and ERRORSTS. |
| 2 | XRSn | bidirectional | Device reset input and watchdog reset output (open-drain with internal pull-up); a 2.2 kΩ to 10 kΩ resistor to VDDIO is required, and any noise filter capacitor to VSS must be 100 nF or less. |
| 3 | VDDIO | power_in | 3.3 V digital I/O supply; place a minimum 0.1 µF decoupling capacitor on each VDDIO pin. |
| 4 | VDD | power_in | 1.2 V digital logic supply; total VDD decoupling of about 20 µF minimum is recommended near the VDD pins when the internal regulator is not used. |
| 5 | VSS | power_in | Digital ground; all VSS pins must be connected to board ground. |
| 6 | A6/PGA5_OF | input | ADC-A analog input 6, also the optional PGA-5 output filter pin; analog inputs must stay below VDDA + 0.3 V during operation. |
| 7 | B2/C6/PGA3_OF | input | ADC-B analog input 2 (also ADC-C input 6) and optional PGA-3 output filter pin; analog inputs must stay below VDDA + 0.3 V. |
| 8 | B3/VDAC | input | ADC-B analog input 3 and optional external reference for the on-chip DACs; a 100 pF capacitor to VSSA is always present, and at least 1 µF is required if VDAC is used as DAC reference. |
| 9 | A2/B6/PGA1_OF | input | ADC-A analog input 2 (also ADC-B input 6) and optional PGA-1 output filter pin. |
| 10 | A3 | input | ADC-A analog input 3, also routed to CMPSS-1 comparator inputs. |
| 11 | VDDA | power_in | 3.3 V analog supply; place a minimum 2.2 µF decoupling capacitor to VSSA on each VDDA pin. |
| 12 | VSSA | power_in | Analog ground for the ADC, PGA, DAC and comparator circuits. |
| 13 | PGA5_GND | power_in | PGA-5 Kelvin ground reference; should be bound to VSSA if the PGA is unused. |
| 14 | PGA1_GND | power_in | PGA-1 Kelvin ground reference; should be bound to VSSA if the PGA is unused. |
| 15 | PGA3_GND | power_in | PGA-3 Kelvin ground reference; should be bound to VSSA if the PGA is unused. |
| 16 | PGA5_IN | input | PGA-5 non-inverting input, amplified with programmable gain of 3, 6, 12 or 24. |
| 17 | C4 | input | ADC-C analog input 4, also routed to CMPSS-5 comparator inputs. |
| 18 | PGA1_IN | input | PGA-1 input with programmable gain of 3, 6, 12 or 24. |
| 19 | C0 | input | ADC-C analog input 0, also routed to CMPSS-1 comparator inputs. |
| 20 | PGA3_IN | input | PGA-3 input with programmable gain of 3, 6, 12 or 24. |
| 21 | C2 | input | ADC-C analog input 2, also routed to CMPSS-3 comparator inputs. |
| 22 | A1/DACB_OUT | input | ADC-A analog input 1; alternate function is the buffered 12-bit DAC-B output. |
| 23 | A0/B15/C15/DACA_OUT | input | ADC-A analog input 0 (also ADC-B 15 and ADC-C 15); alternate function is the buffered 12-bit DAC-A output. |
| 24 | VREFHIB/VREFHIC | bidirectional | ADC-B and ADC-C high reference; driven externally in external-reference mode or by the device in internal-reference mode, with at least 2.2 µF placed between this pin and VREFLO and no external loading. |
| 25 | VREFHIA | bidirectional | ADC-A high reference; driven externally in external-reference mode or by the device in internal-reference mode, with at least 2.2 µF placed between this pin and VREFLOA and no external loading. |
| 26 | VREFLOB/VREFLOC | input | ADC-B and ADC-C low reference, bound to VSSA in typical use. |
| 27 | VREFLOA | input | ADC-A low reference, bound to VSSA in typical use. |
| 28 | C5/PGA6_IN | input | ADC-C analog input 5; alternate function is the PGA-6 input, and it is also routed to CMPSS-6 comparator inputs. |
| 29 | C1 | input | ADC-C analog input 1, also routed to CMPSS-2 comparator inputs. |
| 30 | PGA2_IN | input | PGA-2 input with programmable gain of 3, 6, 12 or 24. |
| 31 | C3/PGA4_IN | input | ADC-C analog input 3; alternate function is the PGA-4 input, and it is also routed to CMPSS-4 comparator inputs. |
| 32 | PGA2_GND,PGA4_GND,PGA6_GND | power_in | Shared PGA ground references for PGA-2, PGA-4 and PGA-6; bound to VSSA when those PGAs are unused. |
| 33 | VSSA | power_in | Analog ground for the ADC, PGA, DAC and comparator circuits. |
| 34 | VDDA | power_in | 3.3 V analog supply; place a minimum 2.2 µF decoupling capacitor to VSSA on each VDDA pin. |
| 35 | A5 | input | ADC-A analog input 5, also routed to CMPSS-2 comparator inputs. |
| 36 | A4/B8/PGA2_OF | input | ADC-A analog input 4 (also ADC-B input 8) and optional PGA-2 output filter pin. |
| 37 | A8/PGA6_OF | input | ADC-A analog input 8 and optional PGA-6 output filter pin. |
| 38 | A9 | input | ADC-A analog input 9, also routed to CMPSS-6 comparator inputs. |
| 39 | B4/C8/PGA4_OF | input | ADC-B analog input 4 (also ADC-C input 8) and optional PGA-4 output filter pin. |
| 40 | A10/B1/C10/PGA7_OF | input | ADC-A analog input 10 (also ADC-B input 1 and ADC-C input 10) and optional PGA-7 output filter pin. |
| 41 | B0 | input | ADC-B analog input 0, also routed to CMPSS-7 comparator inputs. |
| 42 | PGA7_GND | power_in | PGA-7 Kelvin ground reference; should be bound to VSSA if the PGA is unused. |
| 43 | PGA7_IN | input | PGA-7 input with programmable gain of 3, 6, 12 or 24. |
| 44 | C14 | input | ADC-C analog input 14, also routed to CMPSS-7 comparator inputs. |
| 45 | VSS | power_in | Digital ground; all VSS pins must be connected to board ground. |
| 46 | VDD | power_in | 1.2 V digital logic supply; total VDD decoupling of about 20 µF minimum is recommended near the VDD pins when the internal regulator is not used. |
| 47 | VDDIO | power_in | 3.3 V digital I/O supply; place a minimum 0.1 µF decoupling capacitor on each VDDIO pin. |
| 48 | FLT2 | unconnected | Flash test pin 2, reserved by TI; must be left unconnected (or tied to VSS through 4.7 kΩ or more). |
| 49 | FLT1 | unconnected | Flash test pin 1, reserved by TI; must be left unconnected (or tied to VSS through 4.7 kΩ or more). |
| 50 | GPIO13 | bidirectional | General-purpose I/O 13 with alternate functions including EPWM7_B, CANB_RX, EQEP1_INDEX, SCIB_RX, PMBUSA_ALERT (open-drain) and FSIRXA_CLK. |
| 51 | GPIO12 | bidirectional | General-purpose I/O 12 with alternate functions including EPWM7_A, CANB_TX, EQEP1_STROBE, SCIB_TX, PMBUSA_CTL and FSIRXA_D0. |
| 52 | GPIO11 | bidirectional | General-purpose I/O 11 with alternate functions including EPWM6_B, SCIB_RX, OUTPUTXBAR7, EQEP1_B, SPIA_STE and FSIRXA_D1. |
| 53 | GPIO33 | bidirectional | General-purpose I/O 33 with alternate functions including I2CA_SCL (open-drain), SPIB_STE, OUTPUTXBAR4, LINA_RX, SD1_C3, FSIRXA_CLK and CANA_RX. |
| 54 | GPIO16 | bidirectional | General-purpose I/O 16 with alternate functions including SPIA_SIMO, CANB_TX, EPWM5_A, SCIA_TX, SD1_D1 and XCLKOUT. |
| 55 | GPIO17 | bidirectional | General-purpose I/O 17 with alternate functions including SPIA_SOMI, CANB_RX, EPWM5_B, SCIA_RX, SD1_C1 and PMBUSA_SDA (open-drain). |
| 56 | GPIO24 | bidirectional | General-purpose I/O 24 with alternate functions including OUTPUTXBAR1, EQEP2_A, EPWM8_A, SPIB_SIMO, SD1_D1, SCIA_TX and ERRORSTS (active-low error status output). |
| 57 | GPIO25 | bidirectional | General-purpose I/O 25 with alternate functions including OUTPUTXBAR2, EQEP2_B, SPIB_SOMI, SD1_C1, FSITXA_D1, PMBUSA_SDA (open-drain) and SCIA_RX. |
| 58 | GPIO26 | bidirectional | General-purpose I/O 26 with alternate functions including OUTPUTXBAR3, EQEP2_INDEX, SPIB_CLK, SD1_D2, FSITXA_D0, PMBUSA_CTL and I2CA_SDA (open-drain). |
| 59 | GPIO27 | bidirectional | General-purpose I/O 27 with alternate functions including OUTPUTXBAR4, EQEP2_STROBE, SPIB_STE, SD1_C2, FSITXA_CLK, PMBUSA_ALERT (open-drain) and I2CA_SCL (open-drain). |
| 60 | TCK | input | JTAG test clock input with internal pull-up. |
| 61 | GPIO37/TDO | tri_state | JTAG test data output (default function) that is tri-stated when no JTAG activity is present; an internal or external pull-up is required to avoid a floating input when used as GPIO37. |
| 62 | TMS | bidirectional | JTAG test mode select with internal pull-up; an external 2.2 kΩ pull-up to VDDIO is recommended on the board to hold JTAG in reset during normal operation. |
| 63 | GPIO35/TDI | bidirectional | JTAG test data input (default function); internal pull-up is disabled by default, so an internal pull-up must be enabled or an external pull-up added when used as TDI. |
| 64 | GPIO32 | bidirectional | General-purpose I/O 32 with alternate functions including I2CA_SDA (open-drain), SPIB_CLK, EPWM8_B, LINA_TX, SD1_D3, FSIRXA_D0 and CANA_TX. |
| 65 | GPIO56 | bidirectional | General-purpose I/O 56 with alternate functions including SPIA_CLK, EQEP2_STROBE, SCIB_TX, SD1_D3, SPIB_SIMO and EQEP1_A. |
| 66 | GPIO57 | bidirectional | General-purpose I/O 57 with alternate functions including SPIA_STE, EQEP2_INDEX, SCIB_RX, SD1_C3, SPIB_SOMI and EQEP1_B. |
| 67 | GPIO58 | bidirectional | General-purpose I/O 58 with alternate functions including OUTPUTXBAR1, SPIB_CLK, SD1_D4, LINA_TX, CANB_TX and EQEP1_STROBE. |
| 68 | GPIO18_X2 | bidirectional | General-purpose I/O 18 or crystal oscillator output X2; GPIO18 is usable only when the system is clocked by INTOSC and X1 has an external pull-down (recommended 1 kΩ). |
| 69 | X1 | bidirectional | Crystal oscillator input or single-ended 3.3 V clock input; device software must configure this pin before enabling the crystal oscillator. |
| 70 | VDDIO | power_in | 3.3 V digital I/O supply; place a minimum 0.1 µF decoupling capacitor on each VDDIO pin. |
| 71 | VDD | power_in | 1.2 V digital logic supply; total VDD decoupling of about 20 µF minimum is recommended near the VDD pins when the internal regulator is not used. |
| 72 | VSS | power_in | Digital ground; all VSS pins must be connected to board ground. |
| 73 | VREGENZ | input | Internal regulator enable with internal pull-down: tie to VSS to enable the internal VREG (and DC/DC), or tie to VDDIO to use an external VDD supply. |
| 74 | GPIO8 | bidirectional | General-purpose I/O 8 with alternate functions including EPWM5_A, CANB_TX, ADCSOCAO, EQEP1_STROBE, SCIA_TX, SPIA_SIMO, I2CA_SCL (open-drain) and FSITXA_D1. |
| 75 | GPIO4 | bidirectional | General-purpose I/O 4 with alternate functions including EPWM3_A, OUTPUTXBAR3, CANA_TX and FSIRXA_CLK. |
| 76 | GPIO3 | bidirectional | General-purpose I/O 3 with alternate functions including EPWM2_B, OUTPUTXBAR2, PMBUSA_SCL (open-drain), SPIA_CLK, SCIA_RX and FSIRXA_D0. |
| 77 | GPIO2 | bidirectional | General-purpose I/O 2 with alternate functions including EPWM2_A, OUTPUTXBAR1, PMBUSA_SDA (open-drain), SCIA_TX and FSIRXA_D1. |
| 78 | GPIO1 | bidirectional | General-purpose I/O 1 with alternate functions EPWM1_B and I2CA_SCL (open-drain). |
| 79 | GPIO0 | bidirectional | General-purpose I/O 0 with alternate functions EPWM1_A and I2CA_SDA (open-drain). |
| 80 | VDDIO_SW | power_in | 3.3 V supply for the internal DC/DC regulator; must be connected to VDDIO, with a 20 µF bulk input capacitor when the DC/DC is used. |
| 81 | GPIO23_VSW | bidirectional | General-purpose I/O 23 or DC/DC switch output VSW (when DCDCEN = 1); the pin has about 100 pF internal capacitance, so TI recommends an alternate GPIO for fast-switching use. |
| 82 | VSS_SW | power_in | Internal DC/DC regulator ground; must always be connected to VSS. |
| 83 | GPIO22_VFBSW | bidirectional | General-purpose I/O 22 or DC/DC feedback VFBSW; when the internal DC/DC is used, connect this pin to the node where L(VSW) connects to the VDD rail as close to the device as possible. |
| 84 | GPIO7 | bidirectional | General-purpose I/O 7 with alternate functions including EPWM4_B, OUTPUTXBAR5, EQEP1_B, CANB_RX, SPIB_SIMO and FSITXA_CLK. |
| 85 | GPIO40 | bidirectional | General-purpose I/O 40 with alternate functions including PMBUSA_SDA (open-drain), FSIRXA_D0, SCIB_TX and EQEP1_A. |
| 86 | VSS | power_in | Digital ground; all VSS pins must be connected to board ground. |
| 87 | VDD | power_in | 1.2 V digital logic supply; total VDD decoupling of about 20 µF minimum is recommended near the VDD pins when the internal regulator is not used. |
| 88 | VDDIO | power_in | 3.3 V digital I/O supply; place a minimum 0.1 µF decoupling capacitor on each VDDIO pin. |
| 89 | GPIO5 | bidirectional | General-purpose I/O 5 with alternate functions including EPWM3_B, OUTPUTXBAR3, CANA_RX, SPIA_STE and FSITXA_D1. |
| 90 | GPIO9 | bidirectional | General-purpose I/O 9 with alternate functions including EPWM5_B, SCIB_TX, OUTPUTXBAR6, EQEP1_INDEX, SCIA_RX, SPIA_CLK and FSITXA_D0. |
| 91 | GPIO39 | bidirectional | General-purpose I/O 39 with alternate functions CANB_RX and FSIRXA_CLK. |
| 92 | GPIO59 | bidirectional | General-purpose I/O 59 with alternate functions including OUTPUTXBAR2, SPIB_STE, SD1_C4, LINA_RX, CANB_RX and EQEP1_INDEX. |
| 93 | GPIO10 | bidirectional | General-purpose I/O 10 with alternate functions including EPWM6_A, CANB_RX, ADCSOCBO, EQEP1_A, SCIB_TX, SPIA_SOMI, I2CA_SDA (open-drain) and FSITXA_CLK. |
| 94 | GPIO34 | bidirectional | General-purpose I/O 34 with alternate functions OUTPUTXBAR1 and PMBUSA_SDA (open-drain). |
| 95 | GPIO15 | bidirectional | General-purpose I/O 15 with alternate functions including EPWM8_B, SCIB_RX, OUTPUTXBAR4, PMBUSA_SCL (open-drain), SPIB_STE and EQEP2_B. |
| 96 | GPIO14 | bidirectional | General-purpose I/O 14 with alternate functions including EPWM8_A, SCIB_TX, OUTPUTXBAR3, PMBUSA_SDA (open-drain), SPIB_CLK and EQEP2_A. |
| 97 | GPIO6 | bidirectional | General-purpose I/O 6 with alternate functions including EPWM4_A, OUTPUTXBAR4, SYNCOUT, EQEP1_A, CANB_TX, SPIB_SOMI and FSITXA_D0. |
| 98 | GPIO30 | bidirectional | General-purpose I/O 30 with alternate functions including CANA_RX, SPIB_SIMO, OUTPUTXBAR7, EQEP1_STROBE and SD1_D4. |
| 99 | GPIO31 | bidirectional | General-purpose I/O 31 with alternate functions including CANA_TX, SPIB_SOMI, OUTPUTXBAR8, EQEP1_INDEX, SD1_C4 and FSIRXA_D1. |
| 100 | GPIO29 | bidirectional | General-purpose I/O 29 with alternate functions including SCIA_TX, EPWM7_B, OUTPUTXBAR6, EQEP1_B, SD1_C3, EQEP2_INDEX, LINA_RX, SPIB_STE and ERRORSTS. |
Key specifications
| Parameter | Value |
|---|---|
| Manufacturer | Texas Instruments |
| Package | LQFP-100(14x14) |
| Category | Embedded Processors & Controllers |
| Pins | 100 |
CAD (KiCad official)
- Symbol:
F280041CPZS - Footprint:
Package_QFP:LQFP-100_14x14mm_P0.5mm - 3D model: LQFP-100(14x14) (KiCad packages3D, STEP)
- 3D model files:
f280041cpzs-etched.step/f280041cpzs-etched.glbcarry the MPN laser-etched on the die in a toggleableAdom.LaserEtchgroup (Fusion-ready);f280041cpzs.step/f280041cpzs.glbare the bare package body.
Provenance
Data extracted from the manufacturer datasheet, not a distributor listing:
- Datasheet: Texas Instruments datasheet (277 pp, sha256
867e7bb5ada6819c, retrieved 2026-10-07, tier: lcsc) - Datasheet language: Chinese. Pin names, descriptions, and specs on this page were extracted and translated to English by ds2sf; the linked PDF is the manufacturer original.
- Extractor: parts-factory
2.0.0/extract_pins 0.3, primaryclaude-haiku-5-5(text), consensusclaude-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).