参数资料
型号: LTC1417AIGN#PBF
厂商: Linear Technology
文件页数: 4/32页
文件大小: 0K
描述: IC A/D CONV 14BIT SAMPLNG 16SSOP
标准包装: 100
位数: 14
采样率(每秒): 400k
数据接口: MICROWIRE?,串行,SPI?
转换器数目: 1
功率耗散(最大): 27.5mW Unipolar; 44mW Bipolar
电压电源: 双 ±
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 16-SSOP(0.154",3.90mm 宽)
供应商设备封装: 16-SSOP
包装: 管件
输入数目和类型: 2 个单端,单极;2 个单端,双极;1 个差分,单极;1 个差分,双极
12
LTC1417
sn1417 1417fas
LT1360: 50MHz Voltage Feedback Amplifier. 3.8mA sup-
ply current,
±2.5V to ±15V supplies. High AVOL, 1mV
offset and 80ns settling to 1mV (4V step, inverting and
noninverting configurations) make it suitable for fast DC
applications. Excellent AC specifications. Dual and quad
versions are available as LT1361 and LT1362.
LT1468: 90MHz Voltage Feedback Amplifier.
±5V to ±15V
supplies. Lower distortion and noise. Settles to 0.01% in
770ns. Distortion is –115dB to 20kHz.
LT1498/LT1499: 10MHz, 6V/
s, Dual/Quad Rail-to-Rail
Input and Output Op Amps. 1.7mA supply current per
amplifier. 2.2V to
±15V supplies. Good AC performance,
input noise voltage = 12nV/
√Hz (typ).
LT1630/LT1631: 30MHz, 10V/
s, Dual/Quad Rail-to-Rail
Input and Output Precision Op Amps. 3.5mA supply
current per amplifier. 2.7V to
±15V supplies. Best AC
performance, input noise voltage = 6nV/
√Hz (typ),
THD = – 86dB at 100kHz.
LT1813: Dual 100MHz 750V/
s 3mA VFA. 5V to ±5V
supplies. Distortion is – 86dB to 100kHz and – 77dB to
1MHz with
±5V supplies (2VP-P into 500). Great part for
fast AC applications with
±5V supplies.
Input Filtering
The noise and the distortion of the input amplifier and
other circuitry must be considered since they will add to
the LTC1417 noise and distortion. The small-signal band-
width of the sample-and-hold circuit is 10MHz. Any noise
or distortion products that are present at the analog inputs
will be summed over this entire bandwidth. Noisy input
circuitry should be filtered prior to the analog inputs to
minimize noise. A simple 1-pole RC filter is sufficient for
many applications. For example, Figure 8 shows a 1000pF
APPLICATIONS INFORMATION
WU
U
LinearView is a trademark of Linear Technology Corporation.
Figure 7. tACQ vs Source Resistance
SOURCE RESISTANCE (
)
0.1
ACQUISITION
TIME
(
s)
10
1
100
1k
10k
1417 F07
0.01
10
100
100k
Choosing an Input Amplifier
Choosing an input amplifier is easy if a few requirements
are taken into consideration. First, choose an amplifier that
has a low output impedance (<100
) at the closed-loop
bandwidth frequency. For example, if an amplifier is used
in a gain of 1 and has a closed-loop bandwidth of 10MHz,
then the output impedance at 10MHz must be less than
100
. The second requirement is that the closed-loop
bandwidth must be greater than 10MHz to ensure ad-
equate small-signal settling for full throughput rate. If
slower op amps are used, more settling time can be
provided by increasing the time between conversions.
The best choice for an op amp to drive the LTC1417 will
depend on the application. Generally, applications fall into
two categories: AC applications where dynamic specifica-
tions are most critical and time domain applications where
DC accuracy and settling time are most critical. The
following list is a summary of the op amps that are suitable
for driving the LTC1417. More detailed information is
available in the Linear Technology Databooks and on the
LinearView
TM CD-ROM.
LT
1354: 12MHz, 400V/
s Op Amp. 1.25mA maximum
supply current. Good AC and DC specifications. Suitable
for dual supply application.
LT1357: 25MHz, 600V/
s Op Amp. 2.5mA maximum
supply current. Good AC and DC specifications. Suitable
for dual supply application.
Figure 8. RC Input Filter
LTC1417
AIN
+
AIN
VREF
REFCOMP
AGND
ANALOG INPUT
100
1417 F08
1
2
3
4
5
1000pF
10
F
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