参数资料
型号: KSZ8864RMN
厂商: Micrel Inc
文件页数: 93/111页
文件大小: 0K
描述: IC ETHERNET SW 4PORT 64QFN
标准包装: 348
控制器类型: 以太网开关控制器
接口: MII,RMII
电源电压: 1.8V,2.5V,3.3V
工作温度: 0°C ~ 70°C
安装类型: 表面贴装
封装/外壳: 64-VFQFN 裸露焊盘
供应商设备封装: 64-QFN(8x8)
包装: 托盘
配用: 576-3869-ND - BOARD EVALUATION FOR KSZ8864RMN
其它名称: 576-3787
KSZ8864RMN-ND
PIC16C9XX
DS30444E - page 82
1997 Microchip Technology Inc.
12.1
A/D Acquisition Requirements
For the A/D converter to meet its specied accuracy,
the charge holding capacitor (CHOLD) must be allowed
to fully charge to the input channel voltage level. The
analog input model is shown in Figure 12-4. The source
impedance (RS) and the internal sampling switch (RSS)
impedance directly affect the time required to charge
the capacitor CHOLD. The sampling switch (RSS) imped-
ance
varies
over
the
device
voltage
(VDD),
(Figure 12-4). The source impedance affects the offset
voltage at the analog input (due to pin leakage current).
The maximum recommended impedance for ana-
log sources is 10 k
. After the analog input channel is
selected (changed) this acquisition must be done
before the conversion can be started.
To
calculate
the
minimum
acquisition
time,
Equation 12-1 may be used. This equation calculates
the acquisition time to within 1/2 LSb error (512 steps
for the A/D). The 1/2 LSb error is the maximum error
allowed for the A/D to meet its specied accuracy.
EQUATION 12-1:
A/D MINIMUM CHARGING
TIME
VHOLD = (VREF - (VREF/512)) (1 - e(-Tc/C
HOLD
(RIC + RSS + RS)))
Given: VHOLD = (VREF/512), for 1/2 LSb resolution
The above equation reduces to:
TC = -(51.2 pF)(1 k
- RSS + RS) ln(1/511)
Example 12-1 shows the calculation of the minimum
required acquisition time (TACQ). This calculation is
based on the following system assumptions.
CHOLD
= 51.2 pF
Rs = 10 k
1/2 LSb error
VDD = 5V
→ Rss = 7 k
Temp (system max.) = 50
°C
VHOLD = 0 @ t = 0
EXAMPLE 12-1: CALCULATING THE
MINIMUM REQUIRED
SAMPLE TIME
TACQ = Amplier Settling Time +
Holding Capacitor Charging Time +
Temperature Coefcient
TACQ = 5
s + Tc + [(Temp - 25°C)(0.05 s/°C)]
TC =
-CHOLD (RIC + RSS + RS) ln(1/511)
-51.2 pF (1 k
+ 7 k + 10 k) ln(0.0020)
-51.2 pF (18 k
) ln(0.0020)
-0.921
s (-6.2364)
5.747
s
TACQ = 5
s + 5.747 s + [(50°C - 25°C)(0.05 s/°C)]
10.747
s + 1.25 s
11.997
s
Note 1: The reference voltage (VREF) has no
effect on the equation, since it cancels
itself out.
Note 2: The charge holding capacitor (CHOLD) is
not discharged after each conversion.
Note 3: The maximum recommended impedance
for analog sources is 10 k
. This is
required to meet the pin leakage speci-
cation.
Note 4: After a conversion has completed, a
2.0 TAD delay must complete before
acquisition can begin again. During this
time the holding capacitor is not con-
nected to the selected A/D input channel.
FIGURE 12-4: ANALOG INPUT MODEL
CPIN
VA
Rs
RAx
5 pF
VDD
VT = 0.6V
I leakage
RIC
≤ 1k
Sampling
Switch
SS
RSS
CHOLD
= DAC capacitance
VSS
6V
Sampling Switch
5V
4V
3V
2V
5 6 7 8 9 10 11
( k
)
VDD
= 51.2 pF
± 500 nA
Legend CPIN
VT
I leakage
RIC
SS
CHOLD
= input capacitance
= threshold voltage
= leakage current at the pin due to
= interconnect resistance
= sampling switch
= sample/hold capacitance (from DAC)
various junctions
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