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HC32F460JETA

32-bit ARM Cortex-M4 Microcontroller

The HC32F460JETA is a 32-bit arm cortex-m4 microcontroller from Huada Semiconductor Co., Ltd.. View the full HC32F460JETA datasheet below including electrical characteristics, absolute maximum ratings.

Manufacturer

Huada Semiconductor Co., Ltd.

Category

32-bit ARM Cortex-M4 Microcontroller

Overview

Part: HC32F460 series — Huada Semiconductor Co., Ltd.

Type: 32-bit ARM Cortex-M4 Microcontroller

Description: 32-bit ARM Cortex-M4 MCU with FPU, MPU, DSP, up to 200 MHz operation, 512 KB Flash, 192 KB SRAM, USB FS (Device/Host), 14 Timers, 2 ADCs, 1 PGA, 3 CMPs, and 20 communication interfaces.

Operating Conditions:

  • Supply voltage: 1.8–3.6 V
  • Operating temperature: -40 to +105 °C (suffix-dependent — see Table 3-1 for grade-specific ranges)
  • Max CPU frequency: 200 MHz

Absolute Maximum Ratings:

  • Max supply voltage: 4.0 V
  • Max junction/storage temperature: 150 °C

Key Specs:

  • CPU frequency: up to 200 MHz
  • Flash memory: up to 512 KB
  • SRAM: up to 192 KB
  • ADC resolution: 12-bit
  • ADC sampling rate: 2 MSPS
  • Stop mode current consumption: typ. 90 μA @ 25°C
  • Power down mode current consumption: as low as 1.8 μA @ 25°C
  • GPIO: Max 83
  • 5V-tolerant IO: Max 81

Features:

  • ARMv7-M architecture 32bit Cortex-M4 CPU with integrated FPU, MPU, DSP, and CoreSight debugging unit
  • Flash acceleration unit for 0-wait program execution
  • Multiple low power consumption modes: Sleep, Stop, Power down
  • 8-channel dual-host DMAC and USBFS dedicated DMAC
  • Data Calculation Unit (DCU)
  • 2 independent 12bit 2MSPS ADC, 1 PGA, 3 independent voltage comparators, 1 on-chip temperature sensor
  • Multiple timer types: 3 multi-function 16bit PWM (Timer6), 3 16-bit motor PWM (Timer4), 6 16bit universal (TimerA), 2 16bit basic (Timer0)
  • Up to 20 communication interfaces: 3 I2C, 4 USART, 4 SPI, 4 I2S, 2 SDIO, 1 QSPI, 1 CAN, 1 USB 2.0 FS
  • Data encryption function: AES/HASH/TRNG

Applications:

Package:

  • LQFP100 (14×14mm)
  • VFBGA100 (7×7mm)
  • LQFP64 (10×10mm)
  • QFN60 (7×7mm)
  • QFN48 (5×5mm)
  • LQFP48 (7×7mm)

Features

ARM Cortex-M4 32bit MCU+FPU, 250DMIPS, up to 512KB Flash, 192KB SRAM, USB FS (Device/Host), 14 Timers, 2 ADCs, 1 PGA, 3 CMPs, 20 communication interfaces

  • ⚫ ARMv7-M architecture 32bit Cortex-M4 CPU, integrated FPU, MPU, DSP supporting SIMD instructions, and CoreSight standard debugging unit. The highest working frequency is 200MHz, and the Flash acceleration unit realizes 0-wait program execution, reaching the computing performance of 250DMIPS or 680Coremarks
  • ⚫ Built-in memory
  • -Flash memory up to 512KByte, supports security protection and data encryption *1
  • -Maximum 192KByte SRAM, including 32KByte 200MHz single-cycle access highspeed RAM, 4KByte Retention RAM
  • ⚫ Power, Clock, Reset Management
  • -System power supply (Vcc): 1.8-3.6V
  • -6 independent clock sources: External main clock crystal (4-25MHz), external secondary crystal (32.768kHz), internal high-speed RC (16/20MHz), internal medium-speed RC (8MHz), internal low-speed RC (32kHz), internal WDT dedicated RC (10kHz)
  • -14 kinds of reset sources including power-on reset (POR), low voltage detection reset (LVDR), port reset (PDR), each reset source has an independent flag bit
  • ⚫ Low power operation
  • -Peripherals can be turned off or on independently
  • -Three low power consumption modes: Sleep, Stop, Power down mode
  • -Supports switching between ultra-high-speed mode, high-speed mode, and ultra-low-speed mode in Run mode and Sleep mode
  • -Standby power consumption: Stop mode typ.90μA@25°C, Power down mode is as low as 1.8μA@25°C
  • -In Power down mode, support 16 ports to wake
  • up, support ultra-low power RTC work, 4KByte SRAM to hold data
  • -Standby wakes up quickly, Stop mode wakes up as fast as 2us, Power down mode wakes up as fast as 20us
  • ⚫ Peripheral operation support system significantly reduces CPU processing load
  • -8-channel dual-host DMAC
  • -USBFS dedicated DMAC
  • -Data Calculation Unit (DCU)
  • -Supports mutual triggering of peripheral events (AOS)
  • ⚫ High-performance simulation
  • -2 independent 12bit 2MSPS ADC
  • -1 programmable gain amplifier (PGA)
  • -3 independent voltage comparators (CMP), supporting 2 internal reference voltages
  • -1 on-chip temperature sensor (OTS)
  • ⚫ Timer
  • -3 multi-function 16bit PWM Timer (Timer6)
  • -3 16-bit motor PWM Timers (Timer4)
  • -6 16bit universal Timer (TimerA)
  • -2 16bit basic Timer (Timer0)
  • ⚫ Maximum 83 GPIO
  • -CPU single cycle access, maximum 100MHz output
  • -Maximum 81 5V-tolerant IO
  • ⚫ Maximum 20 communication interfaces
  • -3 I2C, support SMBus protocol
  • -4 USART, support ISO7816-3 protocol
  • -4 SPI
  • -4 I2S, built-in audio PLL to support audio-level sampling accuracy
  • -2 SDIO, support SD/MMC/eMMC format
  • -1 QSPI, support 200Mbps high-speed access (XIP)
  • -1 CAN, supporting ISO11898-1 standard

protocol

  • -1 USB 2.0 FS, built-in PHY, support Device/Host
  • ⚫ Data encryption function
  • -AES/HASH/TRNG
  • ⚫ Encapsulation form:
  • LQFP100 (14×14mm) VFBGA100 (7×7mm) LQFP64 (10×10mm) QFN60 (7×7mm)
QFN48 (5×5mm) LQFP48 (7×7mm)

*1: For the specific specifications of Flash security protection and data encryption, please consult the sales window.

Pin Configuration

LQFPVFBG A100LQFPQFN6 0LQFP/ QFN4Pin NameAnalog EIRQ/WKFunc0 Func1 Func2Func3Func4 Func5 Func6Func7Func9Func10 Func11Func12 Func13Func14Func15Func1631 Func3263
100648UPTRACE/JTAG /SWDGPO other TIM4TIM6TIMA TIMAEMB, TIMA USART/SPI/Q SPISDIOUSBFS/I2S- - -EVNTPTEVENTOUTation-
1B2---PE2EIRQ2TRACECKGPOTIMA_3_PWM 5USART3_CKEVENTOUTFunc_Grp2
2A1---PE3EIRQ3TRACED0GPOTIMA_3_PWM 6USART4_CKEVENTOUT
3B1---PE4EIRQ4TRACED1GPOTIMA_3_PWM 7EVENTOUT
4C2---PE5EIRQ5TRACED2GPOTIMA_3_PWM 8EVENTOUT
5D2---PE6EIRQ6 EIRQ2TRACED3GPOEVENTOUTEVENTOUT
6E2111PH2GPO FCMREF TIM4_2_CLKTIMA_4_PWM 7EMB_IN4SDIO2_D4I2S3_EXCK
7C1222PC13EIRQ13GPO RTC_OUTTIMA_4_PWM 8SDIO2_CKI2S3_MCKEVNTP313
8D1333PC14XTAL32_O UT EIRQ14GPOTIMA_4_PWM 5EVNTP314
9E1444PC15XTAL32_I EIRQ15GPOTIMA_4_PWM 6EVNTP315
10F2---VSSN
12F1555PH0XTAL_IN EIRQ0GPOTIMA_5_PWM 3
13G1666PH1XTAL_OU EIRQ1GPOTIMA_5_PWM 4
14H2777NRSTT
15 16H1 J288- -PC0ADC12_IN1 0/CMP3_IN P3 EIRQ0GPOTIMA_2_PWM 5 TIMA_2_PWMSDIO2_D5EVNTP300EVENTOUT
99PC1ADC12_IN1 1 EIRQ1GPO6SDIO2_D6EVNTP301EVENTOUT
17J31010-PC2ADC1_IN12 EIRQ2GPOTIMA_2_PWM 7EMB_IN3SDIO2_D7EVNTP302EVENTOUT
18K211--PC3ADC1_IN13 /CMP1_IN EIRQ3GPOTIMA_2_PWMSDIO1_WPEVNTP303Func_Grp1EVENTOUT
19----VCCM28
20J1 K112 -11 -8 -AVSS VREFL
- 21L1---VREFH
22M113129AVCCADC1_IN0/ CMP1_INP
23L21413 10PA01 EIRQ0/WK UP0_0GPO TIM4_2_OUHTIMA_2_PWM 1/TIMA_2_CL KATIMA_2_TRIG SPI1_SS1SDIO2_D4EVNTP100EVENTOUTFunc_Grp1

LQFP 100VFBG A100LQFP 64QFN6 0LQFP/ QFN4 Pin NameAnalogEIRQ/WK UP /SWDTRACE/JTAG Func0Func1Func2 Func3Func4Func5Func6 Func7 USART/SPI/QFunc8Func9Func10 Func11Func12Func14Func15Func32~63 Communic
24M2151411 PA1ADC1_IN1/ CMP1_INP 2EIRQ1GPOTIM4_2_OUL2/TIMA_2_CL KBTIMA_2_PWM TIMA_3_TRIGSPI1_SS2SDIO2_D5EVNTP101EVENTOUTFunc_Grp1
25K316 1512 PA2ADC1_IN2/ CMP1_INP 3EIRQ2GPOTIM4_2_OVH3TIMA_2_PWM TIMA_5_PWM 1/TIMA_5_CL KASPI1_SS3SDIO2_D6EVNTP102EVENTOUTFunc_Grp1
26L3171613 PA3ADC1_IN3/ PGAVSS/C MP1_INP4EIRQ3GPOTIM4_2_OVL4TIMA_2_PWM TIMA_5_PWM 2/TIMA_5_CL KBSDIO2_D7EVNTP103EVENTOUTFunc_Grp1
27 28- 18-- AVSS
-E3
-
-
19
-
-
- NC
- AVCC
29M3201714 PA4/CMP2_INP 1/CMP3_IN P4ADC12_IN4 EIRQ4GPOTIM4_2_OWHTIMA_3_PWM 5USART2_CKKEYOUT0I2S1_EXCKEVNTP104EVENTOUTFunc_Grp1
30K4211815 PA5ADC12_IN5 /CMP2_INP 2EIRQ5GPOTIM4_2_OWLTIMA_2_PWM 1/TIMA_2_CL KATIMA_3_PWM 6TIMA_2_TRIGKEYOUT1I2S1_MCKEVNTP105EVENTOUTFunc_Grp1 Func_Grp1
31L4221916 PA6ADC12_IN6 /CMP2_INP 3 ADC12_IN7EIRQ6GPOTIMA_3_PWM 1/TIMA_3_CL KAEMB_IN2KEYOUT2 SDIO1_CMDEVNTP106EVENTOUT
32M423 2017 PA7/CMP1_IN M1/CMP2_I NM1/CMP3EIRQ7GPOTIM4_1_OUL TIM6_1_PWM BTIMA_1_PWM 5TIMA_3_PWM 2/TIMA_3_CL KBEMB_IN3KEYOUT3SDIO2_WPEVNTP107EVENTOUTFunc_Grp1
33K524 21- PC4ADC1_IN14 /CMP2_IN M2EIRQ4GPOTIM4_2_OUHTIMA_3_PWM 7USART1_CKSDIO2_CDEVNTP304EVENTOUTFunc_Grp1
34L525 22- PC5ADC1_IN15 /CMP3_IN M2EIRQ5GPOTIM4_2_OULTIMA_3_PWM 8SDIO2_CMDEVNTP305EVENTOUTFunc_Grp1
35M526 2318 PB0/CMP3_INP 1ADC12_IN8 EIRQ0GPOTIM4_1_OVL BTIM6_2_PWM TIMA_1_PWM 6TIMA_3_PWM 3USART4_CK KEYOUT4SDIO2_CMDEVNTP200EVENTOUTFunc_Grp1
36M6272419 PB1ADC12_IN9 /CMP3_INP 2EIRQ1/WK UP0_1GPOTIM4_1_OWL TIM6_3_PWM BTIMA_1_PWM 7TIMA_3_PWM 4QSPI_QSSNKEYOUT5 SDIO2_D3I2S2_EXCKEVNTP201EVENTOUTFunc_Grp1
37L628 2520 PB2PVD2EXIN PEIRQ2/WK UP0_2GPOVCOUT123TIM6_TRIGBTIMA_1_PWM 8EMB_IN1QSPI_QSIO3SDIO2_D2I2S2_MCKEVNTP202EVENTOUTFunc_Grp1
38M7- -- PE7EIRQ7GPOADTRG1TIM6_TRIGATIMA_1_TRIGUSART1_CKEVENTOUT
39L7--- PE8EIRQ8GPOTIM4_1_OUL BTIM6_1_PWM 5TIMA_1_PWMEVENTOUT
40M8- -- PE9EIRQ9GPOTIM4_1_OUH ATIM6_1_PWMTIMA_1_PWM 1/TIMA_1_CL KAEVENTOUT
41L8- -- PE10EIRQ10GPOTIM4_1_OVL BTIM6_2_PWM 6TIMA_1_PWMEVENTOUT

LQFP 100VFBG A100 LQFP 64QFN6 0LQFP/ QFN4Pin Name AnalogEIRQ/WK UPTRACE/JTAG Func0 Func1Func2 Func3Func4 Func5 Func6Func7Func8Func9 Func11 Func12Func13Func14Func15Func10Func16 Communic31 Func3263
42M9 --8 -PE11EIRQ11GPO other GPOTIM4 TIM6 TIM6_2_PWM ATIMA TIMASPIEMB, TIMA KEYSDIOUSBFS/I2S---ation FuncsEVENTOUT- EVENTOUT
43L9--PE12EIRQ12TIM4_1_OVH TIM6_3_PWMTIMA_1_PWM 2/TIMA_1_CL KB TIMA_1_PWM
44- M10 -GPOTIM4_1_OWL B TIM6_3_PWM7SPI1_SS1 SPI1_SS2EVENTOUTFunc_Grp2EVENTOUT
45M11 -- --PE13EIRQ13GPOTIM4_1_OWH ATIMA_1_PWM 3Func_Grp2
46-PE14EIRQ14GPOTIM4_1_CLKTIMA_1_PWM 4SPI1_SS3SDIO1_CDFunc_Grp2EVENTOUT
M12 -26-PE15EIRQ15GPOTIMA_1_PWM 8 TIMA_5_TRIGEMB_IN2 USART4_CKSDIO1_WPFunc_Grp2EVENTOUT
47L10 292721PB10EIRQ10GPO ADTRG2TIM4_2_OVHTIMA_2_PWM 3 TIMA_5_PWM 8QSPI_QSIO2SDIO1_D7EVNTP210I2S3_EXCKFunc_Grp2EVENTOUT
48L11 302822VCAP_1
49F12 312923VSS
50 51G12 32 L1230 33 3124 25VCC PB12EIRQ12GPO VCOUT1TIM4_2_OVL TIM6_TRIGBTIMA_1_PWM 8EMB_IN2QSPI_QSIO1SDIO2_D1I2S3_MCKEVNTP212Func_Grp2EVENTOUT
52K1234 3226PB13EIRQ13GPO VCOUT2TIM4_1_OUL TIM6_1_PWM BTIMA_1_PWM 5QSPI_QSIO0SDIO2_D0EVNTP213Func_Grp2EVENTOUT
53K1135 3327PB14EIRQ14GPO VCOUT3TIM4_1_OVL TIM6_2_PWM BTIMA_1_PWM 6QSPI_QSCKSDIO1_D6EVNTP214Func_Grp2EVENTOUT
54K1036 3428PB15EIRQ15GPO RTC_OUTTIM4_1_OWL TIM6_3_PWM BTIMA_1_PWM 7 TIMA_6_TRIGUSART3_CKEMB_IN4SDIO1_CKEVNTP215Func_Grp2EVENTOUT
55K9 ---PD8EIRQ8GPOTIM4_3_OULTIMA_6_PWM 1/TIMA_6_CL KAQSPI_QSIO0KEYOUT7Func_Grp2EVENTOUTEVNTP408
56K8 ---PD9EIRQ9GPOTIM4_3_OVLTIMA_6_PWM 2/TIMA_6_CLQSPI_QSIO1KEYOUT6EVNTP409Func_Grp2EVENTOUT
57J12 ---PD10EIRQ10GPOTIM4_3_OWLTIMA_6_PWM 3QSPI_QSIO2KEYOUT5Func_Grp2EVNTP410EVENTOUT
58J11 ---PD11EIRQ11GPOTIM4_3_CLKTIMA_6_PWM 4QSPI_QSIO3KEYOUT4EVNTP411Func_Grp2EVENTOUT
59J10 ---PD12EIRQ12GPOTIMA_4_PWM 1/TIMA_4_CL KA TIMA_5_PWM 5EVNTP412EVENTOUT
60H12 ---PD13EIRQ13GPOTIMA_4_PWM 2/TIMA_4_CL TIMA_5_PWM 6EVNTP413EVENTOUT
61H11 ---PD14EIRQ14GPOTIMA_4_PWM TIMA_5_PWM 7EVNTP414
62H10 ---PD15EIRQ15GPO3 TIMA_4_PWM 4EVENTOUT
63E12 37- -PC6EIRQ6GPOTIMA_5_PWM 8 TIMA_3_PWM 1/TIMA_3_CL TIMA_5_PWM 8QSPI_QSCK KEYOUT3SDIO1_D6EVNTP415Func_Grp2EVENTOUT
64E1138-
35
PC7EIRQ7GPOTIM4_2_CLKTIMA_3_PWM 2/TIMA_3_CL
TIMA_5_PWM 7
QSPI_QSSNKBSDIO1_D7
KEYOUT2
I2S2_EXCKEVNTP306Func_Grp2EVENTOUT
EVNTP307

LQFP 100VFBG A100 LQFP 64QFN6 0LQFP/ QFN4Analog UPEIRQ/WKTRACE/JTAG /SWDFunc0Func2 Func3Func4 Func5Func6 Func7 USART/SPI/QFunc8Func9Func10 Func11Func12Func13 Func14 Func15Func16 ~31Func32~63 Communic
65E1039 36-EIRQ8GPOTIM4_2_OWHTIMA_3_PWM 3 TIMA_5_PWM 6USART3_CK KEYOUT1SDIO1_D0I2S2_MCKEVNTP308EVENTOUTFunc_Grp2
66D1240 37-EIRQ9GPOTIM4_2_OWLTIMA_3_PWM 4 TIMA_5_PWM 5KEYOUT0SDIO1_D1EVNTP309EVENTOUTFunc_Grp1
67D1141 3829EIRQ8/WK UP2_0GPOTIM4_1_OUH TIM6_1_PWM ATIMA_1_PWM 1/TIMA_1_CL KAUSART1_CKSDIO1_D1USBFS_SOFEVNTP108EVENTOUTFunc_Grp1
68D1042 3930EIRQ9/WK UP2_1GPOTIM4_1_OVH TIM6_2_PWM ATIMA_1_PWM 2/TIMA_1_CL KBSDIO1_D2USBFS_VBUSEVNTP109EVENTOUTFunc_Grp1
69C1243 4031EIRQ10/W KUP2_2GPOTIM4_1_OWH TIM6_3_PWM ATIMA_1_PWM 3 TIMA_5_TRIGSDIO1_CD USBFS_IDEVNTP110EVENTOUTFunc_Grp1
70B1244 4132EIRQ11/W KUP2_3GPOTIM4_1_CLKTIMA_1_PWM 4EMB_IN1SDIO2_CDUSBFS_DMEVNTP111EVENTOUTFunc_Grp1
71A1245 4233EIRQ12/W KUP3_0GPOTIM4_3_OWL TIM6_TRIGATIMA_1_TRIG TIMA_6_PWM 1/TIMA_6_CLSDIO2_WP USBFS_DPEVNTP112EVENTOUTFunc_Grp1
72A114334KUP3_1GPOKA TIMA_6_PWM 2/TIMA_6_CLSPI2_SS1SDIO2_D3EVNTP113EVENTOUTFunc_Grp1
73C1146 - --EIRQ13/WJTMS_SWDIOTIMA_2_PWM 5 KB
74 75F11 G1147 44 48 4535 36
76A1049 4637EIRQ14/W KUP3_2JTCK_SWCLKGPOTIMA_2_PWM 6 TIMA_6_PWM 3TIMA_4_TRIGSPI2_SS2SDIO2_D2I2S1_EXCKEVNTP114EVENTOUTFunc_Grp1
77A950 4738EIRQ15/W KUP3_3JTDIGPOTIMA_2_PWM 1/TIMA_2_CL KA TIMA_6_PWM 4TIMA_2_TRIGSPI2_SS3SDIO2_D1I2S1_MCKEVNTP115EVENTOUTFunc_Grp1
78B115148 -EIRQ10GPOTIM4_3_OUHTIMA_2_PWM 7 1/TIMA_5_CL KA TIMA_5_PWMSDIO1_D2EVNTP310EVENTOUTFunc_Grp1
79C1052 49-EIRQ11GPOTIM4_3_OVHTIMA_2_PWM 8 2/TIMA_5_CL KBSDIO1_D3EVNTP311EVENTOUTFunc_Grp1
80B1053 50-EIRQ12GPOTIM4_3_OWHTIMA_4_TRIG TIMA_5_PWM 3SDIO1_CKEVNTP312EVENTOUTFunc_Grp1
81C9- --EIRQ0GPO GPOTIMA_5_PWM 4EVNTP400EVENTOUTFunc_Grp1
82B9- --EIRQ1TIMA_3_TRIG TIMA_6_PWM 5EVNTP401EVENTOUTFunc_Grp1
83C854- -EIRQ2GPOTIMA_2_PWM 4 TIMA_6_PWM 6SDIO1_CMDEVNTP402EVENTOUTFunc_Grp1
84B8-- -EIRQ3GPOTIMA_6_PWM 7EVNTP403EVENTOUT
85B7- --EIRQ4GPOTIMA_6_PWMEVNTP404EVENTOUT
86A6- --EIRQ5GPO8EVNTP405EVENTOUT
87B6- --EIRQ6GPOEVNTP406EVENTOUT
88A5- --EIRQ7GPOUSART2_CKUSART2_CKEVNTP407EVENTOUT

Table2 - 1 Pin function table

LQFP 100VFBG A100LQFPQFN6LQFP/Pin AnalogEIRQ/WKTRACE/JTAGFunc0Func1Func2Func4 Func5Func6Func7Func8Func9Func10Func11Func12Func14 Func15Func16 ~31Func32~63
64 0QFN4 8NameUP/SWDGPOotherTIM4TIMA TIMAEMB, TIMAUSART/SPI/Q SPIKEYSDIOUSBFS/I2S--EVNTPT EVENTOUT-Communic ation Funcs
89A8555139PB3EIRQ3/WK UP0_3JTDO_TRACE SWOGPOFCMREFTIM4_3_CLKTIMA_2_PWM 2/TIMA_2_CL KB 5TIMA_6_PWMSDIO2_D0EVNTP203EVENTOUTFunc_Grp2
90A7565240PB4EIRQ4/WK UP1_0NJTRSTGPOTIM4_3_OWLTIMA_3_PWM 1/TIMA_3_CL KA 6TIMA_6_PWMSDIO1_D0EVNTP204EVENTOUTFunc_Grp2
91C5575341PB5EIRQ5/WK UP1_1GPOTIM4_3_OWHTIMA_3_PWM 2/TIMA_3_CL KB 7TIMA_6_PWMSDIO1_D3I2S4_EXCKEVNTP205EVENTOUTFunc_Grp2
92B5585442PB6EIRQ6/WK UP1_2GPOADTRG2TIM4_3_OVLTIMA_4_PWM 1/TIMA_4_CL KA 8TIMA_6_PWMSDIO2_CKI2S4_MCKEVNTP206EVENTOUTFunc_Grp2
93B4595543PB7EIRQ7/WK UP1_3GPOADTRG1TIM4_3_OVHTIMA_4_PWM 2/TIMA_4_CL KBSDIO1_D0EVNTP207EVENTOUTFunc_Grp2
94A460 5644PB11/MDNMIEVNTP211
95A361 5745PB8EIRQ8GPOTIM4_3_OULTIMA_4_PWM 3KEYOUT7SDIO1_D4USBFS_DRVV BUSEVNTP208EVENTOUTFunc_Grp2
96B3625846PB9EIRQ9GPOTIM4_3_OUHTIMA_4_PWM 4TIMA_6_TRIGSPI2_SS1KEYOUT6SDIO1_D5EVNTP209 EVENTOUTFunc_Grp2
97C3--- PE0EIRQ0GPOMCO_1TIMA_4_TRIGSPI2_SS2EVENTOUTFunc_Grp2
98A2- --PE1EIRQ1GPOMCO_2TIM4_3_CLKSPI2_SS3EVENTOUTFunc_Grp2
99D363 5947VSS
100C464 6048VCC
-H3- --NC

Electrical Characteristics

Table3 - 21 I/O AC characteristics

Drive settingsSymbolParameterCondition (3)MinTypMaxUnit
Low drivef max (IO)outC L =30 pF, V CC ≥ 2.7V--20MHz
Low driveMaximum frequencyC L =30 pF, V CC ≥1.8V--10MHz
Low drive(1)C L =10pF, V CC ≥2.7V--40MHz
Low driveC L =10pF, V CC ≥1.8V--20MHz
Low drivet f (IO)out t r (IO)outOutput high to lowC L =30 pF, V CC ≥2.7V--15ns
Low drivelevel drop time andC L =30 pF, V CC ≥1.8V--25ns
Low driveoutput low to highC L =10pF, V CC ≥2.7V--7.5ns
Low drivelevel rise timeC L =10pF, V CC ≥1.8V--15ns
Mediumf max (IO)outMaximum frequencyC L =30 pF, V CC ≥ 2.7V--45MHz
MediumC L =30 pF, V CC ≥1.8V--22.5MHz
Medium(1)C L =10pF, V CC ≥2.7V--90MHz
MediumC L =10pF, V CC ≥1.8V--45MHz
driveOutput high to lowC L =30 pF, V CC ≥2.7V--7.5ns
drivet f (IO)out t rlevel drop time andC L =30 pF, V CC ≥1.8V--12ns
drive(IO)outoutput low to highC L =10pF, V CC ≥2.7V--4ns
drivelevel rise timeC L =10pF, V CC ≥1.8V--7.5ns
High drivef max (IO)outMaximum (1)C L =30 pF, V CC ≥2.7V--100MHz
High drivefrequencyC L =30 pF, V CC ≥1.8V--50MHz
High driveC L =10pF, V CC ≥2.7V--180MHz
High driveC L =10pF, V CC ≥1.8V--100MHz
t f (IO)out t rOutput high to lowC L =30 pF, V CC ≥2.7V--4ns
level drop time andC L =30 pF, V CC ≥1.8V--6ns
(IO)outlevel rise timeC L =10pF, V CC ≥1.8V--4ns
  1. The maximum frequency is atFigure3 -6 Defined in.
  2. The load capacitance C L must take the capacitance of the PCB and MCU pins into account (the

capacitance of the pins and the circuit board can be roughly estimated as 10 pF).

最大频率条件: (t r + t f ) ≤ (2/3)T 并且 Duty cycle= 50%± 5% (负载电容 CL 在'输入 / 输出交流特性'表格的'条件'一栏中标明)

Figure3 -6 I/O AC characteristic definition

Absolute Maximum Ratings

If the load on the device exceeds Table3-2 Voltage characteristics , Table3-3 Current characteristics withTable3 -4 Thermal characteristics The absolute maximum ratings listed in may cause permanent damage to the device. These values are just rated stresses and do not mean that the device works properly under these conditions. Long-term operation may affect the reliability .

sensitivity Table3-2 Voltage characteristics

SymbolItemMinMaxUnit
V CC -V SSExternal main power supply voltage (including-0.34.0V
V CC -V SSAVCC, VCC) (1) Input voltage on the 5V withstand voltage pin (2)V SS -0.3VCC+4.0 (maximum 5.8V)V
INInput voltage on PA11/USBFS_DM and PA12/USBFS_DP pinsV SS -0.34.0V
V ESD(HBM)Electrostatic discharge voltage(mannequin)Please refer to3.3.5ElectricalPlease refer to3.3.5Electrical-
  1. Within the allowable range, all main power (VCC, A VCC) and ground (VSS, A VSS) pins must always be connected to an external power supply.
  2. The maximum value of VIN must always be followed. For information on the maximum allowable injection current value, see Table3-3 .

Table3-3 Current characteristics

SymbolItemMaxUnit
I VCCTotal current flowing into allVCC X power lines (source current) (1)240mA
I VSSThe total current flowing out of all VSS X ground wires (sink current)-240mA
I VCC(1) Maximum current flowing into each VCC X power line (source current)100mA
I VSS(1) Maximum current flowing out of each VSS X ground wire (sink-100mA
I IOcurrent) (1) Arbitrary I/O and control pin output current40mA
I IOOutput pull current of any I/O and control pin-40mA
I IOTotal output sink current on all I/O and control pins120mA
I IOTotal output current sourced on all I/O and control pins-120mA

Table3-3 Current characteristics

  1. Within the allowable range, all main power (VCC, A VCC) and ground (VSS, A VSS) pins must always be connected to an external power supply.

Table3 -4 Thermal characteristics

SymbolItemValueUnit
T STGStorage temperature range-55 to +125°C
TJMaximum junction temperature125°C

Table3 -4 Thermal characteristics

Thermal Information

When the packaged chip is working at the specified working environment temperature, the junction temperature Tj (°C) of the chip table can be calculated according to the following formula:

  • Tamb refers to the working environment temperature when the packaged chip is working, the unit is °C;
  • θJA refers to the thermal resistance coefficient of the package to the working environment, the unit is °C/W;
  • PD is equal to the sum of internal power consumption of the chip and I/O power consumption, and the unit is W. The internal power consumption of the chip is the I DD × V DD of the product . I/O power consumption refers to the power consumption generated by the I/O pins when the chip is working. Usually, the value of this part is very small and can be ignored.

The junction temperature Tj on the table of the chip when the chip is operating at the specified operating ambient temperature must not exceed the maximum junction temperature TJ allowed by the chip.

Table4 -1 Thermal resistance coefficient table of each package

Package Type and SizeThermal Resistance Junction-ambient Value (θ JA )Unit
LQFP100 14mm x 14mm / 0.5mm pitch50 +/- 10%°C/W
LQFP64 10mm x 10mm / 0.5mm pitch65 +/- 10%°C/W
LQFP48 7mmx 7mm/ 0.5mm pitch75 +/- 10%°C/W
QFN60 7mmx 7mm/ 0.4mm pitch30 +/- 10%°C/W
QFN48 5mmx 5mm/ 0.35mm pitch42 +/- 10%°C/W

Table4 -1 Thermal resistance coefficient table of each package

Typical Application

HC32F460 series provide 48pin, 64pin, 100pin LQFP package, 48pin, 60pin QFN package, 100pin of VFBGA Package, It is suitable for high-performance motor frequency conversion control, intelligent hardware, IoT connection modules and other fields.

Related Variants

The following components are covered by the same datasheet.

Part NumberManufacturerPackage
HC32F460Huada Semiconductor Co., Ltd.
HC32F460JCTAHuada Semiconductor Co., Ltd.
HC32F460JEUAHuada Semiconductor Co., Ltd.LQFP100
HC32F460KCTAHuada Semiconductor Co., Ltd.
HC32F460KETAHuada Semiconductor Co., Ltd.
HC32F460KEUAHuada Semiconductor Co., Ltd.
HC32F460PCTBHuada Semiconductor Co., Ltd.
HC32F460PEHBHuada Semiconductor Co., Ltd.
HC32F460PETBHuada Semiconductor Co., Ltd.
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