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MSP430FR2111IRLLR Datasheet(PDF) 13 Page - Texas Instruments |
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MSP430FR2111IRLLR Datasheet(HTML) 13 Page - Texas Instruments |
13 / 75 page ![]() 13 MSP430FR2111, MSP430FR2110 www.ti.com SLASE78A – AUGUST 2016 – REVISED AUGUST 2016 Submit Documentation Feedback Product Folder Links: MSP430FR2111 MSP430FR2110 Specifications Copyright © 2016, Texas Instruments Incorporated (1) All inputs are tied to 0 V or to VCC. Outputs do not source or sink any current. Characterized with program executing typical data processing. fACLK = 32768 Hz, fMCLK = fSMCLK = fDCO at specified frequency Program and data entirely reside in FRAM. All execution is from FRAM. (2) Program and data reside entirely in RAM. All execution is from RAM. No access to FRAM. 5.4 Active Mode Supply Current Into VCC Excluding External Current See (1) PARAMETER EXECUTION MEMORY TEST CONDITION Frequency (fMCLK = fSMCLK) UNIT 1 MHz 0 wait states (NWAITSx = 0) 8 MHz 0 wait states (NWAITSx = 0) 16 MHz 1 wait state (NWAITSx = 1) TYP MAX TYP MAX TYP MAX IAM, FRAM (0%) FRAM 0% cache hit ratio 3.0 V, 25°C 460 2670 2940 µA 3.0 V, 85°C 475 2730 2980 IAM, FRAM (100%) FRAM 100% cache hit ratio 3.0 V, 25°C 191 570 942 µA 3.0 V, 85°C 199 585 960 IAM, RAM (2) RAM 3.0 V, 25°C 213 739 1244 µA (1) All peripherals are turned on in default settings. 5.5 Active Mode Supply Current Per MHz VCC = 3.0 V, TA = 25°C (unless otherwise noted) PARAMETER TEST CONDITIONS TYP UNIT dIAM,FRAM/df Active mode current consumption per MHz, execution from FRAM, no wait states(1) [(IAM 75% cache hit rate at 8 MHz) – (IAM 75% cache hit rate at 1 MHz)] / 7 MHz 120 µA/MHz (1) All inputs are tied to 0 V or to VCC. Outputs do not source or sink any current. (2) Current for watchdog timer clocked by SMCLK included. fACLK = 32768 Hz, fMCLK = 0 MHz, fSMCLK at specified frequency. 5.6 Low-Power Mode LPM0 Supply Currents Into VCC Excluding External Current VCC = 3.0 V, TA = 25°C (unless otherwise noted) (1) (2) PARAMETER VCC FREQUENCY (fSMCLK) UNIT 1 MHz 8 MHz 16 MHz TYP MAX TYP MAX TYP MAX ILPM0 2.0 V 148 295 398 µA 3.0 V 157 304 402 |
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