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Contents

README

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TUSB8043ARGCR

Texas Instruments · Global Sourcing Parts · VQFN-64-EP(9x9)

TUSB8043ARGCR from Texas Instruments, in a VQFN-64-EP(9x9). Pinout and pin descriptions extracted from the manufacturer datasheet by ds2sf; symbol, footprint, and 3D from KiCad-official CAD.

Pinout

Pin Name Type Function
1 USB_DP_DN1 bidirectional USB High-speed differential transceiver (positive) for downstream port 1; differential impedance 90Ω ±10%.
2 USB_DM_DN1 bidirectional USB High-speed differential transceiver (negative) for downstream port 1; differential impedance 90Ω ±10%.
3 USB_SSTXP_DN1 output USB SuperSpeed transmitter differential pair (positive) for downstream port 1.
4 USB_SSTXM_DN1 output USB SuperSpeed transmitter differential pair (negative) for downstream port 1.
5 VDD power_in 1.1-V core power supply rail for internal logic.
6 USB_SSRXP_DN1 input USB SuperSpeed receiver differential pair (positive) for downstream port 1.
7 USB_SSRXM_DN1 input USB SuperSpeed receiver differential pair (negative) for downstream port 1.
8 VDD power_in 1.1-V core power supply rail for internal logic.
9 USB_DP_DN2 bidirectional USB High-speed differential transceiver (positive) for downstream port 2; differential impedance 90Ω ±10%.
10 USB_DM_DN2 bidirectional USB High-speed differential transceiver (negative) for downstream port 2; differential impedance 90Ω ±10%.
11 USB_SSTXP_DN2 output USB SuperSpeed transmitter differential pair (positive) for downstream port 2.
12 USB_SSTXM_DN2 output USB SuperSpeed transmitter differential pair (negative) for downstream port 2.
13 VDD power_in 1.1-V core power supply rail for internal logic.
14 USB_SSRXP_DN2 input USB SuperSpeed receiver differential pair (positive) for downstream port 2.
15 USB_SSRXM_DN2 input USB SuperSpeed receiver differential pair (negative) for downstream port 2.
16 VDD33 power_in 3.3-V I/O and analog power supply rail.
17 USB_DP_DN3 bidirectional USB High-speed differential transceiver (positive) for downstream port 3; differential impedance 90Ω ±10%.
18 USB_DM_DN3 bidirectional USB High-speed differential transceiver (negative) for downstream port 3; differential impedance 90Ω ±10%.
19 USB_SSTXP_DN3 output USB SuperSpeed transmitter differential pair (positive) for downstream port 3.
20 USB_SSTXM_DN3 output USB SuperSpeed transmitter differential pair (negative) for downstream port 3.
21 VDD power_in 1.1-V core power supply rail for internal logic.
22 USB_SSRXP_DN3 input USB SuperSpeed receiver differential pair (positive) for downstream port 3.
23 USB_SSRXM_DN3 input USB SuperSpeed receiver differential pair (negative) for downstream port 3.
24 USB_DP_DN4 bidirectional USB High-speed differential transceiver (positive) for downstream port 4; differential impedance 90Ω ±10%.
25 USB_DM_DN4 bidirectional USB High-speed differential transceiver (negative) for downstream port 4; differential impedance 90Ω ±10%.
26 USB_SSTXP_DN4 output USB SuperSpeed transmitter differential pair (positive) for downstream port 4.
27 USB_SSTXM_DN4 output USB SuperSpeed transmitter differential pair (negative) for downstream port 4.
28 VDD power_in 1.1-V core power supply rail for internal logic.
29 USB_SSRXP_DN4 input USB SuperSpeed receiver differential pair (positive) for downstream port 4.
30 USB_SSRXM_DN4 input USB SuperSpeed receiver differential pair (negative) for downstream port 4.
31 VDD power_in 1.1-V core power supply rail for internal logic.
32 PWRCTL4/BATEN4 bidirectional USB Port 4 Power On Control for Downstream Power/Battery Charging Enable; sampled at reset to determine battery charging support (0=disabled, 1=enabled), has internal pull-down.
33 PWRCTL3/BATEN3 bidirectional USB Port 3 Power On Control for Downstream Power/Battery Charging Enable; sampled at reset to determine battery charging support (0=disabled, 1=enabled), has internal pull-down.
34 VDD33 power_in 3.3-V I/O and analog power supply rail.
35 PWRCTL2/BATEN2 bidirectional USB Port 2 Power On Control for Downstream Power/Battery Charging Enable; sampled at reset to determine battery charging support (0=disabled, 1=enabled), has internal pull-down.
36 PWRCTL1/BATEN1 bidirectional USB Port 1 Power On Control for Downstream Power/Battery Charging Enable; sampled at reset to determine battery charging support (0=disabled, 1=enabled), has internal pull-down.
37 SDA/SMBDAT bidirectional I2C data/SMBus data interface with function depending on SMBUSz pin state (1=I2C EEPROM, 0=SMBus host), open-drain with internal pull-down.
38 SCL/SMBCLK bidirectional I2C clock/SMBus clock interface with function depending on SMBUSz pin state (1=I2C EEPROM, 0=SMBus host), open-drain with internal pull-down.
39 SMBUSz/SS_SUSPEND bidirectional I2C/SMBus mode select sampled at reset (1=I2C mode, 0=SMBus mode); also outputs SuperSpeed USB suspend status after reset if stsOutputEn enabled, has internal pull-up.
40 FULLPWRMGMTz/SMBA1/SS_UP bidirectional Full power management enable sampled at reset (0=power switching enabled, 1=disabled); SMBus address bit 1; outputs SuperSpeed USB connection status if stsOutputEn enabled, has internal pull-down.
41 PWRCTL_POL bidirectional Power Control Polarity sampled at reset to set PWRCTL[4:1] polarity (0=active low, 1=active high), has internal pull-up.
42 GANGED/SMBA2/HS_UP bidirectional Ganged operation enable sampled at reset (0=individual power control, 1=ganged); SMBus address bit 2; outputs high-speed USB connection status if stsOutputEn enabled, has internal pull-down.
43 OVERCUR4z input USB Port 4 Over-Current Detection input active low (0=overcurrent event, 1=normal), has internal pull-up.
44 OVERCUR3z input USB Port 3 Over-Current Detection input active low (0=overcurrent event, 1=normal), has internal pull-up.
45 AUTOENz/HS_SUSPEND bidirectional Automatic Charge Mode Enable sampled at reset (0=auto mode enabled for battery charging ports, 1=disabled); also outputs high-speed USB suspend status if stsOutputEn enabled, has internal pull-up.
46 OVERCUR1z input USB Port 1 Over-Current Detection input active low (0=overcurrent event, 1=normal), has internal pull-up.
47 OVERCUR2z input USB Port 2 Over-Current Detection input active low (0=overcurrent event, 1=normal), has internal pull-up.
48 USB_VBUS input USB upstream port power monitor input; VBUS detection requires voltage divider with 90.9-kΩ ±1% resistor to VBUS and 10-kΩ ±1% resistor to ground.
49 TEST input Factory test pin reserved for factory use; requires external 10-kΩ or stronger pull-down resistor to ground for normal operation.
50 GRSTz input Global power reset active low input that brings all internal registers to default states; when asserted, device is nonfunctional, has internal pull-up.
51 VDD power_in 1.1-V core power supply rail for internal logic.
52 VDD33 power_in 3.3-V I/O and analog power supply rail.
53 USB_DP_UP bidirectional USB High-speed differential transceiver (positive) for upstream port; differential impedance 90Ω ±10%.
54 USB_DM_UP bidirectional USB High-speed differential transceiver (negative) for upstream port; differential impedance 90Ω ±10%.
55 USB_SSTXP_UP output USB SuperSpeed transmitter differential pair (positive) for upstream port.
56 USB_SSTXM_UP output USB SuperSpeed transmitter differential pair (negative) for upstream port.
57 VDD power_in 1.1-V core power supply rail for internal logic.
58 USB_SSRXP_UP input USB SuperSpeed receiver differential pair (positive) for upstream port.
59 USB_SSRXM_UP input USB SuperSpeed receiver differential pair (negative) for upstream port.
60 NC unconnected No connect; leave floating.
61 XO output Crystal output for internal oscillator; may be left unconnected if external oscillator drives XI; requires 1-MΩ feedback resistor to XI when using crystal.
62 XI input Crystal input for internal oscillator or external clock input; requires 1-MΩ feedback resistor to XO when using crystal; external clock should have ±100 PPM stability.
63 VDD33 power_in 3.3-V I/O and analog power supply rail.
64 USB_R1 input Precision resistor reference requiring 9.53-kΩ ±1% resistor connected between this pin and ground.
65 VSS power_in Ground connection with 6.0-mm x 6.0-mm thermal pad; thermal pad must be soldered to PCB ground plane via vias for thermal and mechanical performance.

Key specifications

Parameter Value
Manufacturer Texas Instruments
Package VQFN-64-EP(9x9)
Category Global Sourcing Parts
Pins 65

CAD (KiCad official)

  • Symbol: TUSB8043ARGCR
  • Footprint: Package_DFN_QFN:QFN-64-1EP_9x9mm_P0.5mm_EP6x6mm
  • 3D model: VQFN-64-EP(9x9) (KiCad packages3D, STEP)
  • 3D model files: tusb8043argcr-etched.step / tusb8043argcr-etched.glb carry the MPN laser-etched on the die in a toggleable Adom.LaserEtch group (Fusion-ready); tusb8043argcr.step / tusb8043argcr.glb are the bare package body.

Provenance

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

  • Datasheet: Texas Instruments datasheet (62 pp, sha256 4b6e58175d875814, retrieved 2026-09-23, 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 0.2, primary claude-haiku-4-5-20251001 (text), consensus claude-sonnet-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