参数资料
型号: LTC2245IUH#PBF
厂商: Linear Technology
文件页数: 5/20页
文件大小: 0K
描述: IC ADC 14-BIT 10MSPS 3V 32-QFN
标准包装: 73
位数: 14
采样率(每秒): 10M
数据接口: 并联
转换器数目: 1
功率耗散(最大): 69mW
电压电源: 单电源
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 32-WFQFN 裸露焊盘
供应商设备封装: 32-QFN 裸露焊盘(5x5)
包装: 管件
输入数目和类型: 1 个单端,双极; 1 个差分,双极
产品目录页面: 1349 (CN2011-ZH PDF)
LTC2245
13
2245fa
APPLICATIO S I FOR ATIO
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The noise performance of the LTC2245 can depend on the
clock signal quality as much as on the analog input. Any
noise present on the clock signal will result in additional
aperture jitter that will be RMS summed with the inherent
ADC aperture jitter.
Maximum and Minimum Conversion Rates
The maximum conversion rate for the LTC2245 is 10Msps.
For the ADC to operate properly, the CLK signal should
have a 50% (
±10%) duty cycle. Each half cycle must have
at least 40ns for the ADC internal circuitry to have enough
settling time for proper operation.
An optional clock duty cycle stabilizer circuit can be used
if the input clock has a non 50% duty cycle. This circuit
uses the rising edge of the CLK pin to sample the analog
input. The falling edge of CLK is ignored and the internal
falling edge is generated by a phase-locked loop. The input
clock duty cycle can vary and the clock duty cycle stabilizer
will maintain a constant 50% internal duty cycle. If the
clock is turned off for a long period of time, the duty cycle
stabilizer circuit will require a hundred clock cycles for the
PLL to lock onto the input clock. To use the clock duty
cycle stabilizer, the MODE pin should be connected to
1/3VDD or 2/3VDD using external resistors.
The lower limit of the LTC2245 sample rate is determined
by droop of the sample-and-hold circuits. The pipelined
architecture of this ADC relies on storing analog signals on
small valued capacitors. Junction leakage will discharge
the capacitors. The specified minimum operating fre-
quency for the LTC2245 is 1Msps.
The difference amplifier generates the high and low refer-
ence for the ADC. High speed switching circuits are
connected to these outputs and they must be externally
bypassed. Each output has two pins. The multiple output
pins are needed to reduce package inductance. Bypass
capacitors must be connected as shown in Figure 6.
Other voltage ranges in-between the pin selectable ranges
can be programmed with two external resistors as shown
in Figure 7. An external reference can be used by applying
its output directly or through a resistor divider to SENSE.
It is not recommended to drive the SENSE pin with a logic
device. The SENSE pin should be tied to the appropriate
level as close to the converter as possible. If the SENSE pin
is driven externally, it should be bypassed to ground as
close to the device as possible with a 1
F ceramic capacitor.
Input Range
The input range can be set based on the application. The
2V input range will provide the best signal-to-noise perfor-
mance while maintaining excellent SFDR. The 1V input
range will have better SFDR performance, but the SNR will
degrade by 5.8dB.
Driving the Clock Input
The CLK input can be driven directly with a CMOS or TTL
level signal. A differential clock can also be used along with
a low-jitter CMOS converter before the CLK pin (see
Figure 8).
Figure 8. CLK Drive Using an LVDS or PECL to CMOS Converter
CLK
100
0.1
F
4.7
F
FERRITE
BEAD
CLEAN
SUPPLY
IF LVDS USE FIN1002 OR FIN1018.
FOR PECL, USE AZ1000ELT21 OR SIMILAR
2245 F08
LTC2245
Figure 7. 1.5V Range ADC
VCM
SENSE
1.5V
0.75V
2.2
F
12k
1
F
12k
2245 F07
LTC2245
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