数据搜索系统,热门电子元器件搜索
  Chinese  ▼
ALLDATASHEETCN.COM

X  

ADR3450ARJZ-R2 数据表(PDF) 13 Page - Analog Devices

部件名 ADR3450ARJZ-R2
功能描述  Micropower, High Accuracy Voltage References
PDF  20 Pages
Scroll/Zoom Zoom In 100%  Zoom Out
制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADR3450ARJZ-R2 数据表(HTML) 13 Page - Analog Devices

Back Button ADR3450ARJZ-R2 Datasheet HTML 9Page - Analog Devices ADR3450ARJZ-R2 Datasheet HTML 10Page - Analog Devices ADR3450ARJZ-R2 Datasheet HTML 11Page - Analog Devices ADR3450ARJZ-R2 Datasheet HTML 12Page - Analog Devices ADR3450ARJZ-R2 Datasheet HTML 13Page - Analog Devices ADR3450ARJZ-R2 Datasheet HTML 14Page - Analog Devices ADR3450ARJZ-R2 Datasheet HTML 15Page - Analog Devices ADR3450ARJZ-R2 Datasheet HTML 16Page - Analog Devices ADR3450ARJZ-R2 Datasheet HTML 17Page - Analog Devices Next Button
Zoom Inzoom in Zoom Outzoom out
 13 / 20 page
background image
ADR3425/ADR3450
Rev. 0 | Page 13 of 20
TERMINOLOGY
Dropout Voltage (VDO)
Dropout voltage, sometimes referred to as supply voltage
headroom or supply-output voltage differential, is defined as
the minimum voltage differential between the input and output
such that the output voltage is maintained to within 0.1%
accuracy.
VDO = (VIN − VOUT)min | IL = constant
Because the dropout voltage depends upon the current passing
through the device, it is always specified for a given load current.
In series-mode devices, dropout voltage typically increases
proportionally to load current; see Figure 8 and Figure 14.
Temperature Coefficient (TCVOUT)
The temperature coefficient relates the change in output voltage
to the change in ambient temperature of the device, as normalized
by the output voltage at 25°C. This parameter is expressed in
ppm/°C and can be determined by the following equation:
]
/
[
10
)
(
)
(
)}
,
,
(
min{
)}
,
,
(
max{
6
1
3
2
3
2
1
3
2
1
C
ppm
T
T
T
V
T
T
T
V
T
T
T
V
TCV
OUT
OUT
OUT
OUT
°
×
×
=
where:
VOUT(T) is the output voltage at temperature T and
T1 = −40°C.
T2 = +25°C.
T3 = +125°C.
This three-point method ensures that TCVOUT accurately
portrays the maximum difference between any of the three
temperatures at which the output voltage of the part is
measured.
The TCVOUT for the ADR342
5/ADR3450 is guaranteed via
statistical means. This is accomplished by recording output
voltage data for a large number of units over temperature,
computing TCVOUT for each individual device via the above
equation, then defining the maximum TCVOUT limits as the mean
TCVOUT for all devices extended by 6 standard deviations (6σ).
Thermally Induced Output Voltage Hysteresis (ΔVOUT_HYS)
Thermally induced output voltage hysteresis represents the
change in output voltage after the device is exposed to a
specified temperature cycle. This is expressed as either a shift in
voltage or a difference in ppm from the nominal output:
TC
OUT
OUT
HYS
OUT
V
C
V
V
_
_
)
25
(
°
=
Δ
[V]
6
_
_
10
)
25
(
)
25
(
×
°
°
=
Δ
C
V
V
C
V
V
OUT
TC
OUT
OUT
HYS
OUT
[ppm]
where:
VOUT(25°C) is the output voltage at 25°C.
VOUT_TC is the output voltage after temperature cycling.
Long-Term Stability (ΔVOUT_LTD)
Long-term stability refers to the shift in output voltage at 50°C
after 1000 hours of operation in a 50°C environment. Ambient
temperature is kept at 50°C to ensure that the temperature
chamber does not switch randomly between heating and cooling,
which can cause instability over the 1000 hour measurement.
This is also expressed as either a shift in voltage or a difference
in ppm from the nominal output.
)
(
)
(
0
1
_
t
V
t
V
V
OUT
OUT
LTD
OUT
=
Δ
[V]
6
0
0
1
_
10
)
(
)
(
)
(
×
=
Δ
t
V
t
V
t
V
V
OUT
OUT
OUT
LTD
OUT
[ppm]
where:
VOUT(t0) is the VOUT at 50°C at time 0.
VOUT(t1) is the VOUT at 50°C after 1000 hours of operation at
50°C.
Line Regulation
Line regulation refers to the change in output voltage in response
to a given change in input voltage and is expressed in either
percent per volt, ppm per volt, or μV per volt change in input
voltage. This parameter accounts for the effects of self-heating.
Load Regulation
Load regulation refers to the change in output voltage in
response to a given change in load current and is expressed in
μV per mA, ppm per mA, or ohms of dc output resistance. This
parameter accounts for the effects of self-heating.
Solder Heat Resistance (SHR) Drift
SHR drift refers to the permanent shift in output voltage
induced by exposure to reflow soldering, expressed in units of
ppm. This is caused by changes in the stress exhibited upon the
die by the package materials when exposed to high
temperatures. This effect is more pronounced in lead-free
soldering processes due to higher reflow temperatures.



Html Pages

1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20


数据表 下载

Go To PDF Page


链接网址



ALLDATASHEET是否为您带来帮助?  [ DONATE ] 

关于 Alldatasheet   |   广告服务   |   联系我们   |   隐私政策   |   数据表链接    |   链接交换   |   制造商名单
All Rights Reserved©Alldatasheet.com


Mirror Sites
English : Alldatasheet.com  |   English : Alldatasheet.net  |   Chinese : Alldatasheetcn.com  |   German : Alldatasheetde.com  |   Japanese : Alldatasheet.jp
Russian : Alldatasheetru.com  |   Korean : Alldatasheet.co.kr  |   Spanish : Alldatasheet.es  |   French : Alldatasheet.fr  |   Italian : Alldatasheetit.com
Portuguese : Alldatasheetpt.com  |   Polish : Alldatasheet.pl  |   Vietnamese : Alldatasheet.vn
Indian : Alldatasheet.in  |   Mexican : Alldatasheet.com.mx  |   British : Alldatasheet.co.uk  |   New Zealand : Alldatasheet.co.nz
Family Site : ic2ic.com  |   icmetro.com