MCF51QU64VLF Freescale Semiconductor, MCF51QU64VLF Datasheet

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MCF51QU64VLF

Manufacturer Part Number
MCF51QU64VLF
Description
32-bit Microcontrollers - MCU COLDFIREV1 64K FLASH
Manufacturer
Freescale Semiconductor
Datasheet

Specifications of MCF51QU64VLF

Rohs
yes
Core
ColdFire V1
Processor Series
MCF51QU128
Data Bus Width
32 bit
Maximum Clock Frequency
50 MHz
Program Memory Size
64 KB
On-chip Adc
Yes
Operating Supply Voltage
1.71 V to 3.6 V
Operating Temperature Range
- 40 C to + 105 C
Package / Case
LQFP-48
Mounting Style
SMD/SMT

Available stocks

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Part Number
Manufacturer
Quantity
Price
Part Number:
MCF51QU64VLF
Manufacturer:
Freescale Semiconductor
Quantity:
10 000
Freescale Semiconductor
Data Sheet: Technical Data
MCF51QU128
Supports the MCF51QU128VLH,
MCF51QU128VHS, MCF51QU64VLF,
MCF51QU64VHS, MCF51QU32VHS,
MCF51QU32VFM
Features
• Operating characteristics
• Core
• System
• Power management
• Clocks
• Memories and memory interfaces
Freescale reserves the right to change the detail specifications as may be
required to permit improvements in the design of its products.
© 2010–2012 Freescale Semiconductor, Inc.
– Voltage range: 1.71 V to 3.6 V
– Flash write voltage range: 1.71 V to 3.6 V
– Temperature range (ambient): -40°C to 105°C
– Up to 50 MHz V1 ColdFire CPU
– Dhrystone 2.1 performance: 1.10 DMIPS per MHz
– DMA controller with four programmable channels
– Integrated ColdFire DEBUG_Rev_B+ interface with
– 10 low power modes to provide power optimization
– Low-leakage wakeup unit (LLWU)
– Voltage regulator (VREG)
– Crystal oscillators (two, each with range options): 1
– Multipurpose clock generator (MCG)
– Flash memory, FlexNVM, FlexRAM, and RAM
– Serial programming interface (EzPort)
– Mini-FlexBus external bus interface
when executing from internal RAM, 0.99 DMIPS
per MHz when executing from flash memory
single-wire BDM connection
based on application requirements
kHz to 32 kHz (low), 1 MHz to 8 MHz (medium), 8
MHz to 32 MHz (high)
• Security and integrity
• Analog
• Timers
• Communication interfaces
• Human-machine interface
– Hardware CRC module to support fast cyclic
– 128-bit unique identification (ID) number per chip
– 12-bit SAR ADC
– 12-bit DAC
– Analog comparator (CMP) containing a 6-bit DAC
– Voltage reference (VREF)
– Programmable delay block (PDB)
– Motor control/general purpose/PWM timers (FTM)
– 16-bit low-power timers (LPTMRs)
– 16-bit modulo timer (MTIM)
– Carrier modulator transmitter (CMT)
– UARTs with Smart Card support and FIFO
– SPI modules, one with FIFO
– Inter-Integrated Circuit (I2C) modules
– Up to 48 EGPIO pins
– Up to 16 rapid general purpose I/O (RGPIO) pins
– Low-power hardware touch sensor interface (TSI)
– Interrupt request pin (IRQ)
redundancy checks
and programmable reference input
MCF51QU128
Document Number: MCF51QU128
Rev. 4, 01/2012

Related parts for MCF51QU64VLF

MCF51QU64VLF Summary of contents

Page 1

... Freescale Semiconductor Data Sheet: Technical Data MCF51QU128 Supports the MCF51QU128VLH, MCF51QU128VHS, MCF51QU64VLF, MCF51QU64VHS, MCF51QU32VHS, MCF51QU32VFM Features • Operating characteristics – Voltage range: 1. 3.6 V – Flash write voltage range: 1. 3.6 V – Temperature range (ambient): -40°C to 105°C • Core – MHz V1 ColdFire CPU – ...

Page 2

... DAC electrical characteristics.....................42 6.6.4 Voltage reference electrical specifications............45 6.7 Timers................................................................................46 6.8 Communication interfaces.................................................47 6.8.1 SPI switching specifications..................................47 6.9 Human-machine interfaces (HMI)......................................50 6.9.1 TSI electrical specifications...................................50 7 Dimensions...............................................................................51 7.1 Obtaining package dimensions.........................................51 8 Pinout........................................................................................52 8.1 Signal Multiplexing and Pin Assignments..........................52 8.2 Pinout diagrams.................................................................54 8.3 Module-by-module signals.................................................58 9 Revision History........................................................................68 Freescale Semiconductor, Inc. ...

Page 3

... This table lists the possible values for each field in the part number (not all combinations are valid): Field Q CCCC DD MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Description Qualification status Core code Device number Table continues on the next page... Ordering parts Values • ...

Page 4

... Temperature range, ambient (°C) Package identifier Min. 0.9 1.1 Values • • • 128 = 128 –40 to 105 • QFN ( mm) • Laminate QFN ( mm) • LQFP ( mm) • LQFP ( mm) Max. Unit V Freescale Semiconductor, Inc. ...

Page 5

... A rating is a minimum or maximum value of a technical characteristic that, if exceeded, may cause permanent chip failure: • Operating ratings apply during operation of the chip. • Handling ratings apply when the chip is not powered. MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Min. Max. 10 130 Min ...

Page 6

... Operating rating Normal Limited operating operating range - No permanent failure - No permanent failure - Correct operation - Possible decreased life - Possible incorrect operation Handling range - No permanent failure Max. Unit V Fatal range range - Probable permanent failure Freescale Semiconductor, Inc. ∞ ...

Page 7

... This is an example of an operating behavior that includes a typical value: Symbol Description I Digital I/O weak WP pullup/pulldown current 3.8.2 Example 2 This is an example of a chart that shows typical values for various voltage and temperature conditions: MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Min. Typ Terminology and guidelines Max. Unit 130 µA 7 ...

Page 8

... Solid State Surface Mount Devices. MCF51QU128 Data Sheet, Rev. 4, 01/2012. 8 1.00 1.05 1.10 V (V) DD Min. –55 — — Min. — 150 °C 105 °C 25 °C –40 °C Max. Unit Notes 150 °C 1 260 °C 2 245 Max. Unit Notes 3 — 1 Freescale Semiconductor, Inc. ...

Page 9

... Regulator input 5 General 5.1 Typical Value Conditions Typical values assume you meet the following conditions (or other conditions as specified): Symbol T Ambient temperature A V 3.3 V supply voltage DD MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Min. -2000 -500 -100 Description Value 25 3.3 General Max. Unit Notes +2000 ...

Page 10

... Max. Unit 1.71 3.6 V 1.71 3.6 V –0.1 0.1 V –0.1 0.1 V 0.7 × V — — V 0.75 × — 0.35 × — V 0.3 × –0 –5 mA 1.2 — V (min.) and less than or equal to IH (max.) and greater than or equal to IL Freescale Semiconductor, Inc. Notes ...

Page 11

... Low-voltage inhibit reset/recover hysteresis — HYSL low range V Bandgap voltage reference BG t Internal low power oscillator period LPO factory trimmed 1. Rising thresholds are falling threshold + hysteresis voltage MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Nonswitching electrical specifications Min. Typ. Max. Unit 0.8 1.1 1.5 2.48 2.56 2.64 2 ...

Page 12

... — OL — — — — — — and VLLSx-RUN recovery times in the following table Max. Unit Notes — V — V — V — V 100 mA 0.5 V 0.5 V 0.5 V 0.5 V 100 mA 1.0 μA 1 0.1 μA 1 μA 4 μA 50 kΩ kΩ 3 Freescale Semiconductor, Inc. ...

Page 13

... RAM • @ 1.8 V • Run mode current — all peripheral clocks DD_RUN disabled, code executing from flash memory with page buffering disabled • @ 1.8 V • @ 3.0 V MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Min. — DD — — — — — — Min. ...

Page 14

... Freescale Semiconductor, Inc. Notes 8,9,10 8,9,10 8,9 8,9 11 ...

Page 15

... For the ALLON curve, all peripheral clocks are enabled, but peripherals are not in active operation • Voltage Regulator disabled • No GPIOs toggled • Code execution from flash memory with cache enabled MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Nonswitching electrical specifications 15 ...

Page 16

... Nonswitching electrical specifications Figure 1. Run mode supply current vs. core frequency MCF51QU128 Data Sheet, Rev. 4, 01/2012. 16 Freescale Semiconductor, Inc. ...

Page 17

... GHz Part 1: General Conditions and Definitions, and IEC Standard 61967-2, Integrated Circuits - Measurement of Electromagnetic Emissions, 150 kHz to 1 GHz Part 2: Measurement of Radiated Emissions—TEM Cell and Wideband TEM Cell Method. MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Nonswitching electrical specifications Frequency Typ. ...

Page 18

... BUS Table 7. Capacitance attributes Min. Normal run mode — — — — VLPR mode — — — — Min. Max. Unit — — Max. Unit Notes 50 MHz 25 MHz 25 MHz 1 25 MHz 2 MHz 1 MHz 1 MHz 1 25 MHz Freescale Semiconductor, Inc. ...

Page 19

... Mode select (MS) hold time after reset deassertion 1. The greater synchronous and asynchronous timing must be met. 2. This is the shortest pulse that is guaranteed to be recognized. Bus clock Data outputs Data inputs MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. — — 1.5 100 ...

Page 20

... Die junction temperature J T Ambient temperature A MCF51QU128 Data Sheet, Rev. 4, 01/2012 3 1.71 V, and full DD — — Figure 4. RGPIO timing diagram Min. Max. Unit 16 ns — ns — Min. Max. Unit –40 115 °C –40 105 °C Freescale Semiconductor, Inc. ...

Page 21

... Peripheral operating requirements and behaviors 6.1 Core modules 6.1.1 Debug specifications Table 12. Background debug mode (BDM) timing Number Symbol 1 t MSSU 2 t MSH MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Peripheral operating requirements and behaviors 64 LQFP 48 LQFP ...

Page 22

... Min. Max. Unit 1 Typ. 2.7 — 5.5 — 120 186 μA — 1.1 1.54 μA — 650 — — — 4 μA — — 120 mA — — 3.3 3.6 2.1 2.8 3.6 2.1 — 3.6 1.76 2.2 8.16 1 — 100 mΩ — 290 — mA Freescale Semiconductor, Inc. after MSH Notes μF . Load ...

Page 23

... FLL reference frequency range fll_ref f DCO output Low range (DRS=00) dco frequency range Mid range (DRS=01) Mid-high range (DRS=10) High range (DRS=11) MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Table 14. MCG specifications Min. — 32.768 31.25 — ± 0.3 — ± 0.2 — ...

Page 24

... MHz ps 180 — 150 — — — 100 MHz — µA 600 — µA — 4.0 MHz 120 — — ps — ps 600 — ps — ± 2.98 % — ± 5.97 % — 150 × 1075( pll_ref Freescale Semiconductor, Inc ...

Page 25

... MHz • 4 MHz • 8 MHz (RANGE=01) • 16 MHz • 24 MHz • 32 MHz C EXTAL load capacitance x C XTAL load capacitance y MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Min. Typ. 1.71 — — 500 — 200 — 200 — 300 — ...

Page 26

... MΩ — — MΩ 1 — MΩ — — kΩ 200 — kΩ — — kΩ 6.6 — kΩ 3.3 — kΩ 0 — kΩ 0 — kΩ 0 — kΩ 0 — kΩ 0 — kΩ 0.6 — — 0.6 — — Freescale Semiconductor, Inc. 4 ...

Page 27

... This section describes the electrical characteristics of the FTFL module. 6.4.1.1 Flash timing specifications — program and erase The following specifications represent the amount of time the internal charge pumps are active and do not include command overhead. MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Memories and memory interfaces Min. Typ. Max. ...

Page 28

... Table continues on the next page... Max. Unit Notes 18 μs 113 ms 1 452 ms 1 1808 ms 1 Max. Unit Notes 0 μ μ μs 1 145 μs 2 465 ms 1850 ms 114 ms 2 — ms — μs 1 — μs 2350 μs 1 — ms Freescale Semiconductor, Inc. ...

Page 29

... Flash (FTFL) current and power specfications Table 19. Flash (FTFL) current and power specfications Symbol Description I Worst case programming current in program flash DD_PGM MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Min. — — — Byte-write to FlexRAM for EEPROM operation — — ...

Page 30

... Max. Unit Notes — years 2 — years 2 — years 2 — cycles 3 — years 2 — years 2 — years 2 — cycles 3 — years 2 — years 2 — years 2 4 — writes — writes — writes — writes — writes Freescale Semiconductor, Inc. ...

Page 31

... EEESIZE — allocated FlexRAM based on DEPART; entered with Program Partition command • Write_efficiency — • 0.25 for 8-bit writes to FlexRAM • 0.50 for 16-bit or 32-bit writes to FlexRAM • n — data flash cycling endurance nvmcycd MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Memories and memory interfaces × Write_efficiency × n nvmcycd 31 ...

Page 32

... EZP_CK high to EZP_CS input invalid (hold) EP5 EZP_D input valid to EZP_CK high (setup) MCF51QU128 Data Sheet, Rev. 4, 01/2012 Table continues on the next page... Min. Max. Unit 2.7 3.6 V — MHz SYS — MHz SYS — ns EZP_CK 15 — ns 0.0 — — ns Freescale Semiconductor, Inc. ...

Page 33

... Mini-Flexbus output clock (FB_CLK). All other timing relationships can be derived from these values. Table 22. Flexbus switching specifications Num Description Operating voltage Frequency of operation FB1 Clock period MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. EP3 EP2 EP4 EP9 EP8 EP7 EP5 EP6 Figure 6. EzPort Timing Diagram Min ...

Page 34

... Ignore these extraneous signals. Also, ignore the AA=0 portions of the diagrams because this setting is not supported in the Mini-FlexBus. MCF51QU128 Data Sheet, Rev. 4, 01/2012. 34 (continued) Min. — Note Max. Unit Notes — — — Freescale Semiconductor, Inc. ...

Page 35

... FB1 FB_CLK FB_A[Y] FB2 FB_D[X] Address FB_RW FB_TS FB_ALE FB_CSn FB_OEn FB_BEn FB_TA FB_TSIZ[1:0] Figure 7. Mini-FlexBus read timing diagram MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. FB3 FB5 Address FB4 Data AA=1 AA=0 FB4 FB5 AA=1 AA=0 TSIZ Memories and memory interfaces 35 ...

Page 36

... FB_TS FB_ALE FB_CSn FB_OEn FB_BEn FB_TA FB_TSIZ[1:0] Figure 8. Mini-FlexBus write timing diagram 6.5 Security and integrity modules There are no specifications necessary for the device's security and integrity modules. MCF51QU128 Data Sheet, Rev. 4, 01/2012. 36 FB3 Address Data AA=1 AA=0 FB4 FB5 AA=1 AA=0 TSIZ Freescale Semiconductor, Inc. ...

Page 37

... The results in this datasheet were derived from a system which has <8 Ω analog source resistance. The R C time constant should be kept to <1ns use the maximum ADC conversion clock frequency, the ADHSC bit should be set and the ADLPC bit should be clear. MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. 1 Min. Typ. 1.71 — ...

Page 38

... Table continues on the next page... SIMPLIFIED CHANNEL SELECT CIRCUIT ADC SAR ENGINE R ADIN R ADIN R ADIN R ADIN C ADIN , REFL SSA 2 Max. Unit Notes 1 3 MHz ADACK f ADACK 7.3 MHz 6.1 MHz 9.5 MHz ±6 LSB ±2.1 -1 LSB +1.9 -0.3 to 0.5 -2 LSB +1.9 -0.7 to +0.5 Freescale Semiconductor, Inc. ...

Page 39

... Supply voltage DD I Supply current, High-speed mode (EN=1, PMODE=1) DDHS I Supply current, low-speed mode (EN=1, PMODE=0) DDLS V Analog input voltage AIN V Analog input offset voltage AIO MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc REFH DDA REFL 1 Min. Typ. — -4 — -1.4 — — ...

Page 40

... MCF51QU128 Data Sheet, Rev. 4, 01/2012. 40 Min. 1 — — — — V – 0.5 DD — — 2 — –0.5 –0.3 -0.6V. DD Typ. Max. Unit 5 — — — — mV — — V — 0 200 ns 250 600 ns — 40 μs 7 — μA — 0.5 3 LSB — 0.3 LSB Freescale Semiconductor, Inc. ...

Page 41

... Figure 10. Typical hysteresis vs. Vin level (VDD=3.3V, PMODE=0) MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. 1 1.3 1.6 1.9 2.2 Vin level (V) Analog HYSTCTR S etting 2.5 2.8 3.1 41 ...

Page 42

... The DAC reference can be selected to be VDDA or the voltage output of the VREF module (VREF_OUT small load capacitance (47 pF) can improve the bandwidth performance of the DAC MCF51QU128 Data Sheet, Rev. 4, 01/2012 1.3 1.6 1.9 2.2 Vin level (V) Min. 1.71 1.13 −40 — — HYSTCTR Setting 2.5 2.8 3.1 Max. Unit Notes 3 105 °C 100 Freescale Semiconductor, Inc. ...

Page 43

... Low power ( Settling within ±1 LSB 2. The INL is measured for 0+100mV The DNL is measured for 0+100 The DNL is measured for 0+100mV to V MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Min. Typ. — — — — — ...

Page 44

... Calculated by a best fit curve from V 6. VDDA = 3.0V, reference select set for VDDA (DACx_CO:DACRFS = 1), high power mode(DACx_C0:LPEN = 0), DAC set to 0x800, Temp range from -40C to 105C Figure 12. Typical INL error vs. digital code MCF51QU128 Data Sheet, Rev. 4, 01/2012. 44 +100 −100 mV SS DACR Freescale Semiconductor, Inc. ...

Page 45

... Supply voltage DDA T Temperature A C Output load capacitance must be connected to VREF_OUT if the VREF_OUT functionality is being used for either an internal or external L reference. MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. 12-bit DAC electrical characteristics Min. Max. Unit 1.71 3.6 V −40 105 °C 100 nF ...

Page 46

... Min. Max. Unit 0 50 °C Min. Max. Unit 1.173 1.225 V Freescale Semiconductor, Inc. Unit Notes µ µs mV Notes Notes ...

Page 47

... Rise time input RI t Fall time input Rise time output RO t Fall time output FO MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Communication interfaces and 70 unless noted, as well Min. Max. f /2048 f /2 BUS BUS 2048 x BUS ...

Page 48

... BIT BIT MASTER LSB OUT Table 33. SPI slave mode timing Table continues on the next page... LSB OUT 4 LSB IN PORT DATA Min. Max. Unit Comment BUS BUS bus clock as defined in Table Freescale Semiconductor, Inc. is the 8. ...

Page 49

... MISO see SLAVE MSB (OUTPUT) note 6 7 MOSI MSB IN (INPUT) NOTE: Not defined! Figure 16. SPI slave mode timing (CPHA=0) MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Min BUS 19.5 0 — — — 0 — — ...

Page 50

... Table continues on the next page... 4 9 LSB IN Typ. Max. Unit Notes — 3 500 pF 5.5 14 MHz 0.5 4.0 MHz 1 1.2 pF 600 760 mV μA 3 1.133 1 μA 3 1.133 1 38400 % 38400 % 38400 % 12.5 — fF/count Freescale Semiconductor, Inc ...

Page 51

... To find a package drawing search for the drawing’s document number: If you want the drawing for this package 32-pin QFN 44-pin Laminate QFN 48-pin LQFP 64-pin LQFP MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Min. Typ. — — — ...

Page 52

... UART1_TX FTM1_CH2 PTA3 UART1_RX FTM1_CH3 PTA4 UART1_CT I2C2_SCL FTM1_CH4 S_b PTA5 UART1_RT I2C2_SDA FTM1_CH5 S_b ALT5 ALT6 ALT7 EzPort SPI1_MOSI FBa_AD11 SPI1_MISO FBa_AD12 SPI1_SCLK FBa_AD13 SPI1_SS FBa_AD14 SPI0_SS FBa_AD15 FBa_AD16 SPI1_SS SPI1_SCLK EZP_CLK SPI1_MISO EZP_DI SPI1_MOSI CLKOUT EZP_DO Freescale Semiconductor, Inc. ...

Page 53

... BKGD/MS Disabled XTAL2 XTAL2 EXTAL2 EXTAL2 VDD VDD MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. ALT1 ALT2 ALT3 ALT4 PTA6 LPTMR_AL FTM_FLT1 T1 PTD2 FTM0_QD_ RGPIO10 FTM0_CH0 PHA PTD3 FTM0_QD_ RGPIO11 FTM0_CH1 PHB PTD4 RGPIO12 ...

Page 54

... S_b PTC3 UART0_CT RGPIO3 SPI0_SCLK CLKOUT S_b PTC4 UART0_RX RGPIO4 SPI0_MISO PDB0_EXT PTC5 UART0_TX RGPIO5 SPI0_MOSI CMT_IRO ALT5 ALT6 ALT7 EzPort RGPIO0 FBa_AD5 CMP0_OUT FBa_AD6 FBa_AD7 RGPIO1 FBa_AD8 RGPIO2 FBa_AD18 FBa_D3 FBa_AD19 FBa_D2 FBa_RW_b FBa_D1 FBa_AD9 FBa_D0 FBa_AD10 RG Freescale Semiconductor, Inc. ...

Page 55

... VSS 2 PTC6 3 PTC7 4 PTD0 5 PTD1 6 PTA0 7 PTA1 8 PTA2 9 PTA3 10 ADC0_SE2 11 ADC0_SE3 12 VDDA 13 VREFH 14 VREF_OUT 15 VREFL 16 MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. Figure 18. 64-pin LQFP Pinout 48 VDD 47 EXTAL2 46 XTAL2 45 BKGD/MS 44 ADC0_SE22 43 ADC0_SE21 42 ADC0_SE20 41 ADC0_SE19/TSI0_CH15 40 ADC0_SE18/TSI0_CH14 39 ADC0_SE17/TSI0_CH13 38 ADC0_SE16/TSI0_CH12 37 TSI0_CH11 36 TSI0_CH10 35 IRQ/EZP_MS_b ...

Page 56

... Pinout PTD0 1 PTD1 2 PTA0 3 PTA1 4 PTA2 5 PTA3 6 ADC0_SE2 7 ADC0_SE3 8 VDDA 9 VREFH 10 VREF_OUT 11 VREFL 12 MCF51QU128 Data Sheet, Rev. 4, 01/2012. 56 Figure 19. 48-pin LQFP VSS 36 VDD 35 EXTAL2 34 XTAL2 33 32 BKGD/MS 31 ADC0_SE22 30 ADC0_SE20 29 ADC0_SE19/TSI0_CH15 ADC0_SE18/TSI0_CH14 28 ADC0_SE17/TSI0_CH13 27 TSI0_CH10 26 IRQ/EZP_MS_b 25 Freescale Semiconductor, Inc. ...

Page 57

... PTA0 PTA1 PTA2 PTA3 ADC0_SE2 ADC0_SE3 VDDA VREFH VREF_OUT VREFL VSSA 11 MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc Figure 20. 44-pin Laminate QFN Pinout EXTAL1 33 VSS 32 VDD 31 EXTAL2 30 XTAL2 29 BKGD/MS 28 ADC0_SE22 27 ADC0_SE18/TSI0_CH14 26 ADC0_SE17/TSI0_CH13 25 TSI0_CH10 24 IRQ/EZP_MS_b 23 57 ...

Page 58

... MCF51QU128 Data Sheet, Rev. 4, 01/2012 Figure 21. 32-pin QFN NOTE 44-pin 32-pin Power and ground 18 Table continues on the next page... VDD EXTAL2 XTAL2 BKGD/MS ADC0_SE18/TSI0_CH14 ADC0_SE17/TSI0_CH13 TSI0_CH10 IRQ/EZP_MS_b Port Module signal(s) VDD VDD Freescale Semiconductor, Inc. ...

Page 59

... MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. 44-pin 32-pin System OSC ...

Page 60

... PTD3 RGPIO11 PTD4 RGPIO12 PTD5 RGPIO13 PTD6 RGPIO14 PTD7 RGPIO15 PTA6 LPTMR_ALT1 PTB1 LPTMR_ALT2 PTE4 LPTMR_ALT3 PTB7 EXTAL1 PTB6 EXTAL2 PTA6 LPTMR_ALT1 PTB1 LPTMR_ALT2 PTE4 LPTMR_ALT3 PTC0 XTAL1 PTB5 XTAL2 PTA0 PTA0 PTA1 PTA1 PTA2 PTA2 PTA3 PTA3 Freescale Semiconductor, Inc. ...

Page 61

... MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. 44-pin 32-pin PTB PTC ...

Page 62

... PTF7 PTF7 VOUT33 VREGIN PTA4 ADC0_SE2 PTA5 ADC0_SE3 PTA6 ADC0_SE8 PTD2 ADC0_SE9 PTD3 ADC0_SE10 PTD4 ADC0_SE11 PTD5 ADC0_SE12 PTA7 ADC0_SE13 PTD6 ADC0_SE14 PTD7 ADC0_SE15 PTE3 ADC0_SE16 PTB2 ADC0_SE17 PTB3 ADC0_SE18 PTE4 ADC0_SE19 PTE5 ADC0_SE20 PTE6 ADC0_SE21 PTE7 ADC0_SE22 Freescale Semiconductor, Inc. ...

Page 63

... MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. 44-pin 32-pin DAC0 12 9 VREF 9 CMP0 CMT 44 32 TSI0 ...

Page 64

... PTA6 FTM_FLT1 PTB1 FTM_FLT2 PTA0 FTM1_CH0 PTA1 FTM1_CH1 PTA2 FTM1_CH2 PTA3 FTM1_CH3 PTA4 FTM1_CH4 PTA5 FTM1_CH5 PTC0 TMR_CLKIN0 PTB7 TMR_CLKIN1 PTC0 TMR_CLKIN0 PTB7 TMR_CLKIN1 PTB1 FB_CLKOUT PTD3 FBa_AD0 PTE4 FBa_AD1 PTE5 FBa_AD2 PTE6 FBa_AD3 PTE7 FBa_AD4 PTF0 FBa_AD5 Freescale Semiconductor, Inc. ...

Page 65

... MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. 44-pin 32-pin DATA_BUS ...

Page 66

... PTA0 I2C2_SCL PTA4 I2C2_SCL PTA1 I2C2_SDA PTA5 I2C2_SDA PTD7 I2C3_SCL PTE2 I2C3_SCL PTE0 I2C3_SDA PTE3 I2C3_SDA PTB2 SPI0_MISO PTF2 SPI0_MISO PTC4 SPI0_MISO PTE3 SPI0_MOSI PTB3 SPI0_MOSI PTF3 SPI0_MOSI PTC5 SPI0_MOSI PTB1 SPI0_SCLK PTF1 SPI0_SCLK PTC3 SPI0_SCLK PTA0 SPI0_SS Freescale Semiconductor, Inc. ...

Page 67

... MCF51QU128 Data Sheet, Rev. 4, 01/2012. Freescale Semiconductor, Inc. 44-pin 32-pin 41 SPI1 UART0 Table continues on the next page... ...

Page 68

... Table 36. Revision History value from 125°C to 115°C J Port Module signal(s) PTE7 UART0_TX PTC5 UART0_TX PTA4 UART1_CTS_b PTF4 UART1_CTS_b PTA5 UART1_RTS_b PTC2 UART1_RTS_b PTA3 UART1_RX PTF5 UART1_RX PTA2 UART1_TX PTF6 UART1_TX Freescale Semiconductor, Inc. ...

Page 69

... Freescale Semiconductor makes no warranty, representation, or guarantee regarding the suitability of its products for any particular purpose, nor does Freescale Semiconductor assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any liability, including without limitation consequential or incidental damages. "Typical" parameters that may be provided in Freescale Semiconductor data sheets and/or specifications can and do vary in different applications and actual performance may vary over time ...

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