MC9S08MM128CLH Freescale Semiconductor, MC9S08MM128CLH Datasheet
MC9S08MM128CLH
Specifications of MC9S08MM128CLH
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MC9S08MM128CLH Summary of contents
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... Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. © Freescale Semiconductor, Inc., 2009-2010. All rights reserved. Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Document Number: MC9S08MM128 ...
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... SPI Characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . .39 2.13 Flash Specifications . . . . . . . . . . . . . . . . . . . . . . . . . . .42 2.14 USB Electricals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .43 2.15 VREF Electrical Specifications . . . . . . . . . . . . . . . . . . .44 2.16 TRIAMP Electrical Parameters . . . . . . . . . . . . . . . . . . .46 2.17 OPAMP Electrical Parameters .47 3 Ordering Information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .48 3.1 Device Numbering System . . . . . . . . . . . . . . . . . . . . . .48 3.2 Package Information . . . . . . . . . . . . . . . . . . . . . . . . . . .49 3.3 Mechanical Drawings . . . . . . . . . . . . . . . . . . . . . . . . . .49 4 Revision History . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .49 http://www.freescale.com. Freescale Semiconductor ...
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... Port I/O count does not include two (2) output-only and one (1) input-only pins. 2 Each differential channel is comprised of 2 pin inputs. Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Devices in the MC9S08MM128 series ...
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... Port Control 1 USB Module not available on MC9S08MM32A devices. The block diagram in Figure 1 shows the structure of the MC9S08MM128 series MCU. 4 Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Table 2. Versions of On-Chip Modules 1 Version Freescale Semiconductor ...
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... Figure 1. MC9S08MM128 series Block Diagram Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Devices in the MC9S08MM128 series 5 ...
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... For MC9S08MM32A devices, pins 56, 57, 58, and 59 are no connects (NC) as illustrated in the following figure. 6 Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products 64-LQFP MC9S08MM128, MC9S08MM64, and MC9S08MM32 devices 48 PTD7/RX1 47 PTD6/TX1 46 PTD5/SCL/TPM1CH3 45 PTD4/SDA/TPM1CH2 44 PTD3/TPM1CH1 43 PTD2/TPM1CH0 42 PTD1/CMPP2/RESET 41 PTD0/BKGD/MS 40 PTC7/KBI2P2/CLKOUT/ADP11 39 PTC6/KBI2P1/PRACMPO/ADP10 38 PTC5/KBI2P0/CMPP1/ADP9 37 PTC4/KBI1P7/CMPP0/ADP8 36 PTC3/KBI1P6/SS2/ADP7 35 PTC2/KBI1P5/SPSCK2/ADP6 34 PTC1/MISO2 33 PTC0/MOSI2 Freescale Semiconductor ...
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... PTA0/SS1 IRO PTA4/INP1+ PTA5 PTA6 PTA7/INP2+ PTB0 PTB1/BLMS VSSA VREFL INP1- OUT1- TRIOUT1/DADP2 VINP1 VINN1/DADM2 INP2- Figure 3. 64-Pin LQFP for MC9S08MM32A devices Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products 64-LQFP ...
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... Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. 60 PTE4/CMPP3/TPMCLK/IRQ 59 PTE3/KBI2P6 58 PTE2/KBI2P5 57 PTE1/KBI2P4 56 PTE0/KBI2P3 55 PTD7/RX1 54 PTD6/TX1 53 PTD5/SCL/TPM1CH3 52 PTD4/SDA/TPM1CH2 80-LQFP 51 PTD3/TPM1CH1 50 PTD2/TPM1CH0 49 PTD1/CMPP2/RESET 48 PTD0/BKGD/MS 47 PTC7/KBI2P2/CLKOUT/ADP11 46 PTC6/KBI2P1/PRACMPO/ADP10 45 PTC5/KBI2P0/CMPP1/ADP9 44 PTC4/KBI1P7/CMPP0/ADP8 43 PTC3/KBI1P6/SS2/ADP7 42 PTC2/KBI1P5/SPSCK2/ADP6 41 PTC1/MISO2 Figure 4. 80-Pin LQFP Freescale Semiconductor ...
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... PTA7 D OUT1 VINN1 E VINP1 TRIOUT1 F DADP0 DACO G DADM0 DADM1 H VSSA VREFL J Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products PTF6 USB_DP VBUS VUSB33 PTG1 USB_DM PTF5 PTA6 PTA1 PTF2 PTB0 PTB1 ...
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... Composite Pin Name PTA0/SS1 IRO PTA1/KBI1P0/TX1 PTA2/KBI1P1/RX1/ADP4 PTA3/KBI1P2/ADP5 PTA4/INP1+ PTA5 PTA6 PTA7/INP2+ PTB0 PTB1/BLMS VSSA VREFL INP1- OUT1 DADP2/TRIOUT1 VINP1 DADM2/VINN1 INP2- OUT2 DACO DADP3/TRIOUT2 VINP2 DADM3/VINN2 DADP0 DADM0 VREFO DADP1 DADM1 Freescale Semiconductor ...
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... PTE1 C8 58 — PTE2 B9 59 — PTE3 PTE4 Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. ALT1 ALT2 ALT3 — — — — — — — — — EXTAL1 — ...
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... MOSI1 — — MISO1 — — SPSCK1 — — — — — Composite Pin Name VSS3 VDD3 PTE5/TX2 PTE6/RX2 PTE7/TPM2CH3 PTF0/TPM2CH2 PTF1/RX2/TPM2CH1 PTF2/TX2/TPM2CH0 PTF3/SCL PTF4/SDA PTF5/KBI2P7 VUSB33 USB_DM USB_DP VBUS VSS1 VDD1 PTF6/MOSI1 PTF7/MISO1 PTG0/SPSCK1 PTG1 Freescale Semiconductor ...
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... Those parameters are derived mainly from simulations. D The classification is shown in the column labeled “C” in the parameter tables where appropriate. Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. NOTE Table 4. Parameter Classifications ...
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... Rating Symbol and V SS range during instantaneous and operating DD > and could result in external power supply going out of regulation. Ensure DD Value Unit –0 120 –0 0 C –55 to 150 stg ) and negative (V ) clamp greater than I , the injection DD DD Freescale Semiconductor ...
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... Watts — chip internal power int Power dissipation on input and output pins — user determined I/O Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. into account in power calculations, determine the difference between I will be very small Table 6 ...
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... Equation 3 by measuring P (at equilibrium) D Equation 1 and Equation 2 Symbol Value Unit R1 1500 C 100 pF — 3 — 200 pF — 3 — — –2.5 V — 7.5 V Min Max Unit 2000 — V 200 — V 500 — V 00 — mA Freescale Semiconductor Eqn. 2 Eqn. 3 iteratively ...
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... I Output low OLT 5 current 6 V Input high voltage all digital inputs IH Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Table 9. DC Characteristics Condition — All I/O pins, low-drive strength 1 – ...
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... V 0.9 1.4 1.79 V s 10 — — 2.11 2.16 2.22 V 2.16 2.23 2.27 V 1.80 1.84 1.88 V 1.88 1.93 1.96 V Freescale Semiconductor ...
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... Run at 1 MHz bus frequency 10 Low voltage detection and warning limits measured at 1 MHz bus frequency. 11 Factory trimmed 3.0 V, Temp = 25C DD Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Table 9. DC Characteristics (Continued) Condition V falling DD — ...
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... Temp 1 Max Unit (C) – 105 – — mA 105 – — mA 105 –40 to — mA 105 –40 to 14.1 mA 105 –40 to — mA 105 –40 to — mA 105 –40 to — mA 105 –40 to A 222 105 –40 to A 200 105 –40 to 105 Freescale Semiconductor ...
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... DD supply current Low-Power LPWI 6 Wait mode DD supply current Stop2 mode S2I 7 supply cur rent Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Bus 1 V (V) Typ Max DD Freq MHz 6.7 — MHz 5 ...
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... Temp 1 Max Unit (C) –40 to 0.9 µA 25 8.9 µ µ µA 105 0.5 –40 to µA 25 6.8 µ µ µA 105 Units 70 85 105 100 150 250 nA 750 850 1000 125 µA 100 150 250 µA 210 220 260 µA Freescale Semiconductor ...
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... Programmable reference generator inputs Programmable reference generator setup 11 delay Programmable reference generator step 12 size Programmable reference generator voltage 13 range Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Condition –40 25 369 377 50 51 453 ...
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... DDA or 2.2 V • V 200 µs T REFSEL • Temperature = 25°C • DDA or 2.2 V • V REFSEL 30 µs T • Temperature = 25°C • DDA or 2.2 V • V REFSEL 5 µs T • Temperature = 25°C • DDA or 2.2 V • V REFSEL — µs T • Temperature = 25°C 100 mV T Freescale Semiconductor = ...
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... Power supply rejection ratio 14 2 Temperature drift of offset voltage 15 (DAC set to 0x0800) 16 Offset aging coefficient Figure 6. Offset at Half Scale vs Temperature Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Symbol Min Typ V dacouth V - DACR — ...
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... T External to Assumes ADLSMP=0 — 0.5 k T — 1 k T — 2 k T — 1 k T — 2 k T — 5 k T — 2 k T — 5 k T — 10 k T — 5 k T — 10 k T Freescale Semiconductor MCU ...
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... – Figure 7. ADC Input Impedance Equivalency Diagram Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Conditions Min Typ 1.0 1.0 1.0 =1.0 MHz unless otherwise stated. Typical values are for ADCK ...
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... MHz 6.2 — 48/ –40 3 LSB T 56/ –28 3.0 T 3.5 1.5 T 1.5 1.0 T 1.0 5/–3 2 LSB T +5/–3 1 T 1 0.75 T 0.75 0.5 T 0.5 Freescale Semiconductor Comment ADLSMP =0 ADCO ADACK 1/f ADACK 32x Hardware Averaging (AVGE = %1 AVGS = %11) ...
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... Number of Bits Avg=32 Avg=16 12 Avg=8 Avg=4 Avg=1 Signal to Noise See ENOB plus Distortion 13 Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. 8 MHz, – °C) (Continued) , > 1. REFL SSA 1 Symb Min Typ ...
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... V — 718.2 TEMP2 5 =V REFH DDA =2.0MHz unless otherwise stated. Typical values are for reference ADCK 2 Max Unit C C –74 — — D — — mV/× — — Freescale Semiconductor Comment /10 sample /10 sample leakage current (refer to DC characteri stics) ...
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... Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. , 2 4 MHz, ADHSC = REFL ...
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... Unit C Comment 2 +24/0 LSB ADIN +24/0 V DDA 2.0 T 2.5 1.0 T 1.0 0.5 T 0.5 2 — LSB D 0.5 Bits — F /10 sample — 0 — — — 1. –90 /10 sample 0 D — — F /10 sample 0 D — leakage current (refer to DC characteri stics) Freescale Semiconductor ...
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... DMX32 bit is changed, DRS bit is changed, or changing from FLL disabled (BLPE, BLPI) to FLL enabled (FEI, FEE, FBE, FBI crystal/resonator is being used as the reference, this specification assumes it is already running. Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. ...
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... C See crystal or resonator manufacturer’s 1 recommendation — — — — 1 — R — 0 — S — 100 — R — 0 — S — — — Freescale Semiconductor . BUS Jitter Unit C D kHz MHz D MHz D MHz D MHz M k k ...
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... This parameter is characterized and not tested on each device. Proper PC board layout porcedures must be followed to achieve specifications MHz crystal. o Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Symbol • Low range, low gain (RANGE = t ...
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... Bus 1 > 2 > 2 Self_reset Min Typical Max C dc — — — 700 1000 1300 P 100 — — — — D cyc 500 — — D 100 — — 100 — — 1 cyc D 100 — — 1 cyc Freescale Semiconductor Unit MHz ...
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... In stop mode, the synchronizer is bypassed so shorter pulses can be recognized in that case. 4 Timing is shown with respect to 20% V RESET PIN IRQ/KBIPx IRQ/KBIPx Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Table 20. Control Timing Parameter 4 , Low Drive ...
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... Table 21. TPM Input Timing Function Symbol f TPMext t TPMext t clkh t clkl t ICPW t TPMext t clkh t clkl Figure 10. Timer External Clock t ICPW t ICPW Figure 11. Timer Input Capture Pulse Min Max Unit MHz Bus 4 — t cyc 1.5 — t cyc 1.5 — t cyc 1.5 — t cyc Freescale Semiconductor ...
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... SPI output pins. 3 Time to data active from high-impedance state. 4 Hold time to high-impedance state. Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. describe the timing requirements for the SPI system. Table 22. SPI Timing 2 ...
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... Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products BIT BIT MSB OUT Figure 12. SPI Master Timing (CPHA = (2) MSB IN BIT (2) MSB OUT BIT Figure 13. SPI Master Timing (CPHA = 1) 3 LSB IN 12 LSB OUT 3 LSB IN LSB OUT Freescale Semiconductor ...
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... SCK (CPOL = 1) (INPUT) MISO SEE (OUTPUT) NOTE 8 MOSI (INPUT) NOTE: 1. Not defined, but normally LSB of character just received Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products BIT MSB OUT 7 BIT Figure 14. SPI Slave Timing (CPHA = 0) ...
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... Burst t Page t Mass 10,000 — D_ret supply. For more detailed DD Typical Max Unit — 3.6 V — 3.6 V — 200 kHz s — 6. Fcyc 4 t Fcyc 4000 t Fcyc 20,000 t Fcyc — — cycles 100,000 — 100 — years Freescale Semiconductor ...
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... Characteristic 1 Regulator operating voltage 2 VREG output input with internal VREG V USB33 3 disabled 4 VREG Quiescent Current Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. http://www.usb.org. Symbol Min Typ V 3.9 — regin ...
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... Min Max Unit 1.80 3.6 V –40 105 °C — 100 nf — 1.160 V — — 60 µV/year — 0.10 µA — 75 µA — 125 µA — 1.1 mA — 100 µV/mA 70 — dB Max Unit C 1.152 — Freescale Semiconductor — data refo Notes ...
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... Figure 16. Typical VREF Output vs. Temperature Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Figure 17. Typical VREF Output vs. V Electrical Characteristics DD 45 ...
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... D 70 — — 0.1 — V/ — V/s T 0.25 — MHz T 1.6 — MHz T 80 — — 100 pF T 1.4 — k D 184 — – DD — 0.15 ± 1.0 — — — — deg T 160 — T nV/ Hz Freescale Semiconductor ...
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... Output Impedance AC Open Loop (@100 kHz 27 High-Speed mode) Output Voltage Range 28 29 Output Drive Capability 30 Gain Margin 31 Phase Margin Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Table 28. OPAMP Characteristics 1.8 1 Symbol Min V 1 — ...
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... Approximate Flash size in Kbytes Table 29. Device Numbering System Memory 1 Flash RAM 131,072 12,288 131,072 12,288 131,072 12,288 65,536 12,288 32768 4096 32768 2048 3.6 V (Continued) 2 Typ Max Unit 4 — — uS 250 — nV/ Table Available Packages 64 LQFP 80 LQFP 81 MAPBGA 64 LQFP 64 LQFP 64 LQFP Freescale Semiconductor ...
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... Updated with the latest characteristic data. Added several figures. Added the ADCTypical Operation table. Freescale Semiconductor Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Table 30. Package Descriptions Abbreviation Designator LQFP ...
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... Revision History 50 Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Freescale Semiconductor ...
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Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. ...
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... Freescale Semiconductor product could create a situation where personal injury or death may occur. Should Buyer ...