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MKV31F512VLL12P The KV31 MCU family is a highly scalable member of the Kinetis V series and provides a high-performance, cost-competitive motor control solution. Built on the ARM(R)Cortex(R)-M4 core running at 120 MHz, combined with floating point and DSP capability, it delivers a highly capable platform enabling customers to build a highly scalable solution portfolio. Additional features include: * Dual 16-bit ADCs sampling at up to 1.2 MS/s in 12-bit mode * 20 channels of highly flexible motor control timers (PWMs) 100 & 64 LQFP(LL&LH) across 4 independent time bases 14x14x1.4 mm P .5(LL) 10x10x1.4 mm P .5(LH) * Large RAM block enabling local execution of fast control loops at full clock speed * Enabled to support Kinetis Motor Suite (KMS), a bundled hardware and software solution that enables rapid configuration of BLDC and PMSM motor drive systems Performance * 120 MHz ARM Cortex-M4 core with DSP instructions delivering 1.25 Dhrystone MIPS per MHz Memories and memory interfaces * 512 KB of em
66 Pages, 822 KB, Original
MKV31F512VLL12P The KV31 MCU family is a highly scalable member of the Kinetis V series and provides a high-performance, cost-competitive motor control solution. Built on the ARM(R)Cortex(R)-M4 core running at 120 MHz, combined with floating point and DSP capability, it delivers a highly capable platform enabling customers to build a highly scalable solution portfolio. Additional features include: * Dual 16-bit ADCs sampling at up to 1.2 MS/s in 12-bit mode * 20 channels of highly flexible motor control timers (PWMs) 100 & 64 LQFP(LL&LH) across 4 independent time bases 14x14x1.4 mm P .5(LL) 10x10x1.4 mm P .5(LH) * Large RAM block enabling local execution of fast control loops at full clock speed * Enabled to support Kinetis Motor Suite (KMS), a bundled hardware and software solution that enables rapid configuration of BLDC and PMSM motor drive systems Performance * 120 MHz ARM Cortex-M4 core with DSP instructions delivering 1.25 Dhrystone MIPS per MHz Memories and memory interfaces * 512 KB of em
66 Pages, 1206 KB, Original
comprehensive collection of tools that plug into MATLABTM/SimulinkTM design environment to support rapid application development targeting Kinetis KV MCUs. KINETIS KV3x MCU FAMILY MAX FREQ. (MHz) PIN COUNT MKV31F512VLL12 120 100 LQFP MKV31F512VLH12 120 64 MKV31F512VLL12P 120 MKV31F256VLL12 PART NUMBER PACKAGE FLASH (KB) SRAM (KB) FLEX.BUS DMA PLL or FLL FLEX TIMERS DAC 512 96 YES 16-ch. PLL 2 x 8-ch.; 2 x 2-ch. 2 LQFP 512 96 YES 16-ch. PLL 2 x 8-ch.; 2 x 2-ch. 2 100 LQFP 512 96 YES 16-ch. PLL 2 x 8-ch.; 2 x 2-ch. 2 120 100 LQFP 256 48 NO 16-ch. PLL 1 x 8-ch.; 2 x 2-ch. 1 MKV31F256VLH12 120 64 LQFP 256 48 NO 16-ch. PLL 1 x 8-ch.; 2 x 2-ch. 1 MKV31F256VLH12P 120 64 LQFP 256 48 NO 16-ch. PLL 1 x 8-ch.; 2 x 2-ch. 1 MKV31F128VLL10 100 100 LQFP 128 24 NO 4-ch. FLL 1 x 8-ch.; 2 x 2-ch. 1 MKV31F128VLH10 100 64 LQFP 128 24 NO 4-ch. FLL 1 x 8-ch.; 2 x 2-ch. 1 MKV31F128VLH10P 100 64 LQFP 128 24 NO 4-ch. FLL 1 x 8-ch.; 2 x 2-ch. 1 MKV30F128VLH10 100 64 LQFP 128 16 NO 4-ch. FLL 1 x 8-ch.; 2 x 2-ch. 1 MKV30F12
3 Pages, 262 KB, Original
t numbers summary Part number CPU Pin count Package frequency Program flash SRAM GPIO MKV31F512VLL12 120 MHz 100 LQFP 512 KB 96 KB 70 MKV31F512VLH12 120 MHz 64 LQFP 512 KB 96 KB 46 Table 2-13. Orderable Kinetis Motor Suite part numbers summary Part number MKV31F512VLL12P Motor Type Pin count PMSM/BLDC 100 Package LQFP Flash available 504 KB 1 SRAM2 96 KB GPIO 70 1. Kinetis Motor Suite enabled devices have 8K bytes reserved flash space as execute only. See Kinetis Motor Suite Configuration section in Chapter 3 NOTE Do not do a mass erase of the flash since it will delete the entire flash contents including this KMS library KV31F Sub-Family Reference Manual , Rev. 4, 02/2016 52 Freescale Semiconductor, Inc. Chapter 3 Chip Configuration 3.1 Introduction This chapter provides details on the individual modules of the microcontroller. It includes: * module block diagrams showing immediate connections within the device, * specific module-to-module interactions not necessarily discussed in the individual
1263 Pages, 6991 KB, Original
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