参数资料
型号: LTC1402IGN#TRPBF
厂商: Linear Technology
文件页数: 2/24页
文件大小: 0K
描述: IC ADC 12BIT 2.2MSPS SHDN 16SSOP
标准包装: 2,500
位数: 12
采样率(每秒): 2.2M
数据接口: MICROWIRE?,串行,SPI?
转换器数目: 1
功率耗散(最大): 150mW
电压电源: 模拟和数字,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: 带卷 (TR)
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
10
LTC1402
APPLICATIONS INFORMATION
WU
U
Figure 1. Acquisition Time vs Source Resistance
in Bipolar and Unipolar Modes
LinearView is a trademark of Linear Technology Corporation.
second requirement is that the closed-loop bandwidth
must be greater than 40MHz to ensure adequate small-
signal settling for full throughput rate. If slower op amps
are used, more time for settling can be provided by
increasing the time between conversions. The best choice
for an op amp to drive the LTC1402 will depend on the
application. Generally, applications fall into two catego-
ries: AC applications where dynamic specifications 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 LTC1402. More detailed information is avail-
able in the Linear Technology Databooks and on the
LinearView
TM CD-ROM.
LT
1206: 60MHz Current Feedback Amplifier with Shut-
down Pin (Amplifier Draws 200
A While in Shutdown).
±5V to ±15V supplies. Distortion is –80dB to 1MHz
(2VP-P into 30). Good for AC applications. Dual avail-
able with shutdown as LT1207. Output swings to within
2VBE of the supply rails.
LT1223: 100MHz Video Current Feedback Amplifier. 6mA
supply current.
±5V to ±15V supplies. Low distortion at
frequencies above 400kHz. Low noise. Good for AC appli-
cations.
LT1227: 140MHz Video Current Feedback Amplifier. 10mA
supply current; has shutdown pin (draws 120
A while in
shutdown).
±5V to ±15V supplies. Lowest distortion
(– 92dB) at frequencies above 400kHz. Low noise. Best for
AC applications.
LT1229/LT1230: Dual and Quad 100MHz Current Feed-
back Amplifiers.
±2V to ±15V supplies. Low noise. Good
AC specifications, 6mA supply current each amplifier.
LT1360: 50MHz Voltage Feedback Amplifier. 3.8mA sup-
ply current.
±5V to ±15V supplies. Good AC and DC
specifications. 70ns settling to 0.5LSB.
LT1363: 70MHz, 1000V/
s Op Amps. 6.3mA supply cur-
rent. Good AC and DC specifications. 60ns settling to
0.5LSB.
LT1364/LT1365: Dual and Quad 70MHz, 1000V/
s Op
Amps. 6.3mA supply current per amplifier. 60ns settling
to 0.5LSB.
SOURCE RESISTANCE (
)
300
ACQUISITION
TIME
(ns)
900
1100
1000
1300
1500
200
100
800
500
700
600
400
1200
1400
10
1k
10k
5V
100k
1402 F01
0
100
±5V
DRIVING THE ANALOG INPUT
The differential analog inputs of the LTC1402 are easy to
drive. The inputs may be driven differentially or as a single-
ended input (i.e., the AIN– input is grounded). The AIN+ and
AIN– inputs are sampled at the same instant. Any unwanted
signal that is common to both inputs will be reduced by the
common mode rejection of the sample-and-hold circuit.
The inputs draw only one small current spike while charg-
ing the sample-and-hold capacitors at the end of conver-
sion. During conversion, the analog inputs draw only a
small leakage current. If the source impedance of the
driving circuit is low, then the LTC1402 inputs can be
driven directly. As source impedance increases, so will
acquisition time (see Figure 1). For minimum acquisition
time with high source impedance, a buffer amplifier must
be used. The only requirement is that the amplifier driving
the analog input(s) must settle after the small current
spike before the next conversion starts (settling time must
be 50ns for full throughput rate).
CHOOSING AN INPUT AMPLIFIER
Choosing an input amplifier is easy if a few requirements
are taken into consideration. First, to limit the magnitude
of the voltage spike seen by the amplifier from charging
the sampling capacitor, 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 unity-gain bandwidth of 50MHz, then the
output impedance at 50MHz must be less than 100
. The
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