參數(shù)資料
型號(hào): MSP430A059IRTDT
廠商: TEXAS INSTRUMENTS INC
元件分類: 微控制器/微處理器
英文描述: 16-BIT, FLASH, 8 MHz, RISC MICROCONTROLLER, PQCC64
封裝: GREEN, PLASTIC, QFN-64
文件頁數(shù): 14/58頁
文件大?。?/td> 1167K
代理商: MSP430A059IRTDT
MSP430x41x
MIXED SIGNAL MICROCONTROLLER
SLAS340H MAY 2001 REVISED APRIL 2007
21
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
recommended operating conditions
PARAMETER
MIN
NOM
MAX
UNITS
Supply voltage during program execution,
VCC (AVCC = DVCC = VCC) (see Note 1)
MSP430x41x
1.8
3.6
V
Supply voltage during program execution, SVS enabled and PORON = 1,
MSP430x412/413
2.2
3.6
V
Supply voltage during program execution, SVS enabled and PORON = 1,
VCC (AVCC = DVCC = VCC) (see Note 1 and Note 2)
MSP430x415/417
2.0
3.6
V
Supply voltage during programming of flash memory,
VCC (AVCC = DVCC = VCC)
MSP430F41x
2.7
3.6
V
Supply voltage, VSS (AVSS/1/2 = DVSS = VSS)
0
V
Operating free-air temperature range, TA
MSP430x41x
40
85
°C
LFXT1
t l f
f
LF selected, XTS_FLL=0
Watch crystal
32768
Hz
LFXT1 crystal frequency, f(LFXT1)
(see Note 3)
XT1 selected, XTS_FLL=1
Ceramic resonator
450
8000
kHz
(see Note 3)
XT1 selected, XTS_FLL=1
Crystal
1000
8000
kHz
Processor frequency (signal MCLK) f
VCC = 1.8 V
DC
4.15
MHz
Processor frequency (signal MCLK), f(System)
VCC = 3.6 V
DC
8
MHz
NOTES:
1. It is recommended to power AVCC and DVCC from the same source. A maximum difference of 0.3 V between AVCC and DVCC can
be tolerated during power up and operation.
2. The minimum operating supply voltage is defined according to the trip point where POR is going active by decreasing supply voltage.
POR is going inactive when the supply voltage is raised above minimum supply voltage plus the hysteresis of the SVS circuitry.
3. In LF mode, the LFXT1 oscillator requires a watch crystal. In XT1 mode, LFXT1 accepts a ceramic resonator or a crystal.
f (MHz)
1.8 V
3.6 V
2.7 V
3 V
4.15 MHz
8 MHz
VCC Supply Voltage V
f (System)
Maximum
Processor
Frequency
MHz
Supply Voltage Range, x41x
During Program Execution
Supply Voltage Range
During Programming of
the Flash Memory
Figure 1. Frequency vs Supply Voltage
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