AMS22S5A1BLAFL103 [BOURNS]

Non-Contacting Analog Rotary Position Sensor; 非接触式模拟旋转位置传感器
AMS22S5A1BLAFL103
型号: AMS22S5A1BLAFL103
厂家: BOURNS ELECTRONIC SOLUTIONS    BOURNS ELECTRONIC SOLUTIONS
描述:

Non-Contacting Analog Rotary Position Sensor
非接触式模拟旋转位置传感器

传感器 旋转位置传感器
文件: 总2页 (文件大小:269K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Features  
Non-contacting magnetic technology  
Highly resistant to vibration/shock  
Highly resistant to fluid/dust ingress  
Programmable at factory for zero position  
Robust design for industrial applications  
Highly repeatable  
RoHS compliant*  
AMS22S Non-Contacting Analog Rotary Position Sensor  
1
Electrical Characteristics (@ 25 °C)  
Product Dimensions  
VDD Supply Voltage..................................................................................................5 V 1 ꢁ  
Supply Current 2  
19.ꢁ9  
(.775)  
MM  
(INCHES)  
MAX. DIA.  
DIMENSIONS:  
For Low Speed Processing (Code L)................................................................... ꢀ1 mA max.  
For High Speed Processing (Code H) ................................................................. 21 mA max.  
Output Signal (Single) ..................................................................................................... Analog  
Independent Linearity...................................................................................................... 1.5 ꢁ  
( 1.ꢂ ꢁ aꢃailaꢄle on reꢅuest)  
19.ꢀ5 +.ꢀꢀꢀ/-.ꢀ25  
(.75ꢀ +.ꢀꢀꢀ/-.ꢀꢀ1)  
0.1ꢁ7 +.ꢀꢀꢀ/-.ꢀ25  
(.12ꢂ7 +.ꢀꢀꢀ/-.ꢀꢀ1)  
DIA.  
1.57 ꢀ.1ꢀ  
(.ꢀꢁ2 .ꢀꢀꢂ)  
1.57 ꢀ.1ꢀ  
(.ꢀꢁ2 .ꢀꢀꢂ)  
1.57 ꢀ.1ꢀ  
(.ꢀꢁ2 .ꢀꢀꢂ)  
Hysteresis.........................................................................................................1.2 ꢁ VDD max.  
Effectiꢃe Electrical Angle ..................................................................................................41 °  
Programmaꢄle Electrical Angle .................................................. ꢀ1 ° to ꢂ61 ° (ꢀ1 ° increments)  
Voltage Output (Programmaꢄle)................................................................ ꢀ to 99 ꢁ VDD ꢀ ꢁ  
Output Resolution.................................................................................................ꢀ2 ꢄit @ ꢂ61 °  
19.ꢁ9  
(.775)  
MAX.  
Load Resistance Recommended .......................................................................1K ohms to  
Oꢃerꢃoltage Protection.................................................................................................+21 VDC  
Reꢃerse Voltage Protection...........................................................................................-ꢀ1 VDC  
DIA. 22.20  
(.875)  
DIA.  
Environmental Characteristics  
12.7 ꢀ.7ꢁ  
(.5ꢀꢀ .ꢀ0ꢀ)  
15.ꢁ2  
(.ꢁ15)  
ꢀ.51  
(.ꢀ2ꢀ)  
Operating Temperature......................................................................................-41 ° to +ꢀ25 °C  
Moisture Resistance.........................................................................MIL-STD-212, Method ꢀ16  
Insulation Resistance @ 511 VAC..........................................................................511 MΩ min.  
Rotational Life (Shaft Reꢃolutions).............................................................................. 51 million  
Viꢄration ..............................................................................................................................ꢀ5 G  
Shock...................................................................................................................................51 G  
IP Rating..............................................................................................................................IP51  
ESD Rating................................................................................................................. 2 kV max.  
0 PLCS.  
ꢂ.ꢀꢁ ꢀ.08  
(.1ꢁꢀ .ꢀ15)  
0 PLCS.  
2.ꢁ7 +.ꢀꢀꢀ/-.ꢀ7ꢁ  
DIA.  
(.1ꢀ5 +.ꢀꢀꢀ/-.ꢀꢀ0)  
0.18 +.ꢀꢀꢀ/-.ꢀ25  
(.125 +.ꢀꢀꢀ/-.ꢀꢀ1)  
DIA.  
FLATTED  
OPTION  
7.8ꢀ  
(.0ꢀ7)  
MIN.  
Mechanical Characteristics (@ 25 °C)  
2.ꢀ0  
(.ꢀ8ꢀ)  
Mechanical Angle ..................................................................................................... Continuous  
Shaft/RPM...........................................................................................................211 RPM max.  
Torꢅue (Starting & Running)...........................................................ꢀ.16 N-cm. (ꢀ.5 oz-in.) max.  
Shaft Material ...................................................................................................... Stainless steel  
Terminals ................................................................. Brass / ꢀ11 ꢁ matte tin oꢃer Ni Strike (eꢂ)  
Bearing.................................................................................................................Bronze sleeꢃe  
Soldering Condition  
ꢀ.51  
(.ꢀ2ꢀ)  
1.55 ꢀ.25  
(.ꢀꢁ1 .ꢀ1ꢀ)  
1.ꢀ2  
(.ꢀꢂꢀ)  
2.8ꢀ ꢀ.1ꢀ  
(.11ꢀ .ꢀꢀꢂ)  
ꢂ5 ° 5 °  
Manual Soldering.................................................96.5Sn/ꢂ.1Ag/1.5Cu solid wire or no-clean  
rosin cored wire; ꢂ71 °C (711 °F) max. for ꢂ seconds  
OUTPUT VOLTAGE INCREASES WHEN  
SHAFT IS ROTATED IN THIS DIRECTION  
(SEE HOW TO ORDER FOR  
Fig.  
1
Waꢃe Soldering............................................. 96.5Sn/ꢂ.1Ag/1.5Cu solder with no-clean fl ux;  
261 °C (511 °F) max. for 5 seconds  
DIRECTION CODE)  
Wash processes ........................................................................................Not recommended  
CCW  
CW  
5.ꢀ8  
(.2ꢀꢀ)  
0 PLCS.  
At room amꢄient: +25 °C nominal and 51 ꢁ relatiꢃe humidity nominal, except as noted.  
2
See “Processing Speed” in How to Order selection guide.  
Other Effectiꢃe Electrical Angles aꢃailaꢄle. See How to Order selection guide.  
+
S1  
GND  
V+ SUPPLY  
(INPUT)  
Rotational Life vs. Shaft Side Load  
(GROUND)  
SIGNAL  
(OUTPUT)  
ꢁꢀ  
5.ꢀ8  
5.ꢀ8  
(.2ꢀꢀ)  
(.2ꢀꢀ)  
5ꢀ  
ꢂꢀ  
0ꢀ  
2ꢀ  
Schematic  
+
S1  
V
(5 V)  
DD  
V
OUT  
1ꢀ  
GND  
5ꢀ  
1ꢀꢀ  
15ꢀ  
2ꢀꢀ  
25ꢀ  
0ꢀꢀ  
05ꢀ  
ꢂꢀꢀ  
ꢂ5ꢀ  
5ꢀꢀ  
Shaft Side Load (grams)  
*RoHS Directive 2002/95/EC Jan. 27, 2003 including annex and RoHS Recast 2011/65/EU June 8, 2011.  
Specifications are subject to change without notice.  
The device characteristics and parameters in this data sheet can and do vary in different applications and actual device performance may vary over time.  
Users should verify actual device performance in their specific applications.  
AMS22S Non-Contacting Analog Rotary Position Sensor  
How To Order  
A M S 2 2 S 5 A 1 B L A F L 3 3 4  
EFFECTIVE  
MODEL DESIGNATOR  
Code Description  
ELECTRICAL ANGLE  
10 ° Increments  
AM Analog Magnetic  
Code Description  
01  
02  
03  
34  
35  
36  
10 °  
CONFIGURATION  
Code Description  
20 °  
30 °  
S
Single-turn  
340 °  
350 °  
360 °  
SIZE  
Code Description  
22 22 mm  
Note: Effective Electrical Angle  
available in 10 ° increments from  
a minimum of 10 ° to 360 ° maximum.  
MOUNTING CONFIGURATION  
Code Description  
S
DIRECTION*  
Code Description  
Servo Mount,  
1/2 ” Shaft FMS,  
1/8 ” Shaft Dia.  
1
3
CCW (Increasing Voltage)  
CW (Increasing Voltage)  
SUPPLY VOLTAGE, VCC  
Code Description  
* See Figure 1 for clarification.  
5
5 VDC  
TERMINAL CONFIGURATION  
Code Description  
OUTPUT TYPE  
Signal  
L
Axial  
Code  
Type  
Resolution  
12 Bit  
A1  
Analog Single  
SHAFT STYLE  
Code Description  
INDEPENDENT LINEARITY  
Code Description  
F
R
Flatted  
Round  
B
C
0.5 %  
0.3 %  
VOLTAGE RATIO 1 ꢀ  
Code Description  
PROCESSING SPEED  
A
B
C
1-99 % of VCC  
5-95 % of VCC  
10-90 % of VCC  
Code Output Refresh Rate  
H
L
High (200 μs Typ.)  
Low (600 μs Typ.)  
Shaded areas represent most common features.  
Standard Output: 1-Turn CW Increasing (Code 334 Shown)  
100  
90  
Asia-Pacific:  
Tel: +886-2 2562-4117  
VOLTAGE RATIO “A”  
80  
70  
60  
50  
40  
30  
20  
10  
0
Fax: +886-2 2562-4116  
EMEA:  
VOLTAGE RATIO “C”  
Tel: +36 88 520 390  
Fax: +36 88 520 211  
The Americas:  
Tel: +1-951 781-5500  
Fax: +1-951 781-5700  
0 20 40 60 80 100 120 140 160 180 200 220 240 260 280 300 320340 360  
www.bourns.com  
CW DIRECTION  
Mechanical Angle (°)  
REV. 01/14  
Specifications are subject to change without notice.  
The device characteristics and parameters in this data sheet can and do vary in different applications and actual device performance may vary over time.  
Users should verify actual device performance in their specific applications.  

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