参数资料
型号: MSP430F2416TZQW
厂商: TEXAS INSTRUMENTS INC
元件分类: 微控制器/微处理器
英文描述: 16-BIT, FLASH, 16 MHz, RISC MICROCONTROLLER, PBGA113
封装: GREEN, PLASTIC, BGA-113
文件页数: 65/102页
文件大小: 1509K
代理商: MSP430F2416TZQW
MSP430F261x
MSP430F241x
SLAS541H
– JUNE 2007 – REVISED MAY 2011
12-Bit ADC Temperature Sensor and Built-In VMID
over recommended operating free-air temperature range (unless otherwise noted)
PARAMETER
TEST CONDITIONS
VCC
MIN
TYP
MAX
UNIT
Operating supply
2.2 V
40
120
REFON = 0, INCH = 0Ah,
ISENSOR
current into AVCC
A
ADC12ON = 1, TA = 25°C
3V
60
160
terminal (1)
2.2 V
986
VSENSOR
(2) (3)
ADC12ON = 1, INCH = 0Ah, TA = 0°C
mV
3V
986
2.2 V
3.55
TCSENSOR
(3)
ADC12ON = 1, INCH = 0Ah
mV/
°C
3V
3.55
Sample time
2.2 V
30
ADC12ON = 1, INCH = 0Ah,
tSENSOR(sample)
(3)
required if channel
s
Error of conversion result
≤ 1 LSB
3V
30
10 is selected (4)
2.2 V
NA(5)
Current into divider
IVMID
ADC12ON = 1, INCH = 0Bh
A
at channel 11(5)
3V
NA(5)
2.2 V
1.1
± 0.04
AVCC divider at
ADC12ON = 1, INCH = 0Bh,
VMID
V
channel 11
VMID is ~0.5 × VAVCC
3V
1.5
± 0.04
Sample time
2.2 V
1400
ADC12ON = 1, INCH = 0Bh,
tVMID(sample)
required if channel
ns
Error of conversion result
≤ 1 LSB
3 V
1220
11 is selected (6)
(1)
The sensor current ISENSOR is consumed if (ADC12ON = 1 and REFON = 1), or (ADC12ON = 1 AND INCH = 0Ah and sample signal is
high). Therefore it includes the constant current through the sensor and the reference.
(2)
The temperature sensor offset can be as much as
±20°C. A single-point calibration is recommended to minimize the offset error of the
built-in temperature sensor.
(3)
Limits characterized
(4)
The typical equivalent impedance of the sensor is 51 k
. The sample time required includes the sensor-on time tSENSOR(on)
(5)
No additional current is needed. The VMID is used during sampling.
(6)
The on-time tVMID(on) is included in the sampling time tVMID(sample), no additional on time is needed.
12-Bit DAC Supply Specifications
over recommended ranges of supply voltage and operating free-air temperature (unless otherwise noted)
PARAMETER
TEST CONDITIONS
VCC
TA
MIN
TYP
MAX
UNIT
AVCC
Analog supply voltage
AVCC = DVCC, AVSS = DVSS = 0 V
2.2
3.6
V
-40
°C to 85°C
50
110
DAC12AMPx = 2, DAC12IR = 0,
2.2 V/3 V
DAC12_xDAT = 0x0800
105
°C
69
150
DAC12AMPx = 2, DAC12IR = 1,
DAC12_xDAT = 0x0800,
2.2 V/3 V
50
130
VeREF+ = VREF+ = AVCC
Supply current, single
IDD
A
DAC12AMPx = 5, DAC12IR = 1,
DAC channel(1)(2)
DAC12_xDAT = 0x0800,
2.2 V/3 V
200
440
VeREF+ = VREF+= AVCC
DAC12AMPx = 7, DAC12IR = 1,
DAC12_xDAT = 0x0800,
2.2 V/3 V
700
1500
VeREF+ = VREF+ = AVCC
DAC12_xDAT = 800h, VREF = 1.5 V,
2.2 V
70
ΔAVCC = 100 mV
Power-supply rejection
PSRR
dB
DAC12_xDAT = 800h,
ratio(3)(4)
VREF = 1.5 V or 2.5 V,
3 V
70
ΔAVCC = 100 mV
(1)
No load at the output pin, DAC12_0 or DAC12_1, assuming that the control bits for the shared pins are set properly.
(2)
Current into reference terminals not included. If DAC12IR = 1 current flows through the input divider; see Reference Input specifications.
(3)
PSRR = 20
× log(ΔAVCC/ΔVDAC12_xOUT)
(4)
VREF is applied externally. The internal reference is not used.
Copyright
2007–2011, Texas Instruments Incorporated
65
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