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VFC320CG PDF预览

VFC320CG

更新时间: 2024-02-20 14:37:21
品牌 Logo 应用领域
BB 转换器模拟特殊功能转换器
页数 文件大小 规格书
9页 124K
描述
Voltage-to-Frequency and Frequency-to-Voltage CONVERTER

VFC320CG 技术参数

是否Rohs认证: 不符合生命周期:Transferred
包装说明:METAL CAN, TO-100, 10 PINReach Compliance Code:unknown
风险等级:5.73Is Samacsys:N
转换器类型:VOLTAGE TO FREQUENCY CONVERTERJESD-30 代码:O-MBCY-W10
JESD-609代码:e0最大线性误差 (EL):0.03%
最大负电源电压:-20 V最小负电源电压:-13 V
标称负供电电压:-15 V功能数量:1
端子数量:10最大工作频率:1 MHz
最高工作温度:125 °C最低工作温度:-55 °C
封装主体材料:METAL封装等效代码:CAN10,.23
封装形状:ROUND封装形式:CYLINDRICAL
电源:+-15 V认证状态:Not Qualified
子类别:Analog Special Function Converters最大压摆率:7.5 mA
最大供电电压:20 V最小供电电压:13 V
标称供电电压:15 V表面贴装:NO
技术:BIPOLAR温度等级:MILITARY
端子面层:Tin/Lead (Sn/Pb)端子形式:WIRE
端子位置:BOTTOMBase Number Matches:1

VFC320CG 数据手册

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SPECIFICATIONS  
At TA = +25°C and ±15VDC power supply, unless otherwise noted.  
VFC320BG/BM/SM  
VFC320CG/CM  
TYP  
PARAMETER  
CONDITIONS  
MIN  
TYP  
MAX  
MIN  
MAX  
UNITS  
V/F CONVERTER fOUT = VIN/7.5 R1C1, Figure 4  
INPUT TO OP AMP  
Voltage Range(1)  
Fig. 4 with e2 = 0  
Fig. 4 with e1 = 0  
IIN = VIN /RIN  
>0  
<0  
+0.25  
Note 2  
–10  
+750  
V
V
µA  
Current Range(1)  
Bias Current  
Inverting Input  
4
10  
8
30  
±0.15  
nA  
nA  
mV  
µV/°C  
k|| pF  
Noninverting Input  
Offset Voltage(3)  
Offset Voltage Drift  
Differential Impedance  
Common-Mode  
Impedance  
±5  
300 || 5 650 || 5  
300 || 3 500 || 3  
k|| pF  
ACCURACY  
Linearity Error(1) (4) (5)  
Fig. 4 with e2 = 0(6)  
0.01Hz fOUT 10kHz  
0.1Hz fOUT 100kHz  
1Hz fOUT 1MHz  
±0.004  
±0.008  
±0.1  
±0.005  
±0.030  
±0.0015  
±0.002  
% FSR  
% FSR  
% FSR  
Offset Error Input  
Offset Voltage(3)  
Offset Drift(7)  
±15  
ppm FSR  
ppm FSR/°C  
% FSR  
ppm FSR/°C  
ppm FSR/°C  
±0.5  
±5  
Gain Error(3)  
±10  
50  
50  
20  
20  
Gain Drift(7)  
Full Scale Drift  
f = 10kHz  
f = 10kHz  
(Offset Drift and Gain Drift)(7)(8)(9)  
Power Supply Sensitivity  
±VCC = 14VDC to 18VDC  
CLOAD 50pF  
±0.015  
% FSR%  
DYNAMIC RESPONSE  
Full Scale Frequency  
Dynamic Range  
1
MHz  
Decades  
6
Settling Time  
(V/F) to Specified Linearity  
For a Full Scale Input Step  
<50% Overload  
Note 10  
Note 10  
Overload Recovery  
OPEN COLLECTOR OUTPUT  
Voltage, Logic “0”  
Leakage Current, Logic “1”  
Voltage, Logic “1”  
I
SINK = 8mA, max  
VO = 15V  
0.4  
1.0  
V
µA  
0.01  
External Pull-up Resistor  
Required (See Figure 4)  
For Best Linearity  
VPU  
V
%
ns  
Duty Cycle at FS  
Fall Time  
25  
100  
IOUT = 5mA, CLOAD = 500pF  
F/V CONVERTER VOUT = 7.5 R1C1 fIN, Figure 9  
INPUT TO COMPARATOR  
Impedance  
Logic “1”  
Logic “0”  
Pulse-width Range  
50 || 10 150 || 10  
k|| pF  
V
V
+1.0  
–VCC  
0.25  
+VCC  
–0.05  
µs  
OUTPUT FROM OP AMP  
Voltage  
Current  
Impedance  
Capacitive Load  
IO = 6mA  
VO = 7VDC  
Closed-Loop  
0 to +10  
+10  
V
mA  
0.1  
100  
Without Oscillation  
pF  
POWER SUPPLY  
Rated Voltage  
Voltage Range  
Quiescent Current  
±15  
V
V
mA  
±13  
±20  
±7.5  
±6.5  
TEMPERATURE RANGE  
Specification  
B and C Grades  
S Grade  
–25  
–55  
+85  
+125  
°C  
°C  
Operating  
B and C Grades  
S Grade  
Storage  
–40  
–55  
–65  
+85  
+125  
+150  
°C  
°C  
°C  
Specification the same as for VFC320BG/BM/SM.  
NOTES: (1) A 25% duty cycle at full scale (0.25mA input current) is recommended where possible to achieve best linearity. (2) Determined by RIN and full scale current range  
constraints. (3) Adjustable to zero. See Offset and Gain Adjustment section. (4) Linearity error at any operating frequency is defined as the deviation from a straight line drawn between  
the full scale frequency and 0.1% of full scale frequency. See Discussion of Specifications section. (5) When offset and gain errors are nulled, at an operating temperature, the linearity  
error determines the final accuracy. (6) For e1 = 0 typical linearity errors are: 0.01% at 10kHz, 0.2% at 100kHz, 0.1% at 1MHz. (7) Exclusive of external components’ drift.  
(8) FSR = Full Scale Range (corresponds to full scale and full scale input voltage.) (9) Positive drift is defined to be increasing frequency with increasing temperature.  
(10) One pulse of new frequency plus 50ns typical.  
®
2
VFC320  

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