................................. -10 °C to +55 °C
Resistance to Solder Heat............. ±5 %
Mechanical Travel ........ Length ±0.5 mm
Operating Force .............................60 gf
Stop Strength ......................... 5 kgf min.
Shaft Axial Force .................. 10 kgf min.
Shaft Wobble .. 2(2 x L/25) mm p-p max.
Soldering Condition
Manual ...........300 °C ±5 °C for 3 sec.
Wave ..............260 °C ±5 °C for 5 sec.
Wash .....................Not recommended
Mechanical Characteristics
Environmental Characteristics
Ro VE LEA
HS RS D
C ION FRE
OM S E
PL AR
IA E
NT
*
Electrical Characteristics
45 mm Length of Travel
Lever End Syle “A”
77.5
MAX.
(3.052)
65.0 ± 0.2
(2.559 ± .008)
13.0
MAX.
(.512)
Lever
Length
15.0
(.591)
20.0
(.787)
M3 2 PLCS.
45.0 ± 0.5
(1.772 ± .020)
6.0 ± 0.2
(.157 ± .008)
4.0 +0/-0.1
(.157 +0/-.004)
10.0 ± 0.3
(.394 ± .012)
R
0.3
(.012)
1.2 ± .05
(.047 ± .002)
L ± 0.5
(L ± .020)
38.7 ± 0.5
(1.524 ± .020)
HOLES
2 1 2' 1'
2.0
(.079)
6 PLCS.
5.0
6.8
(.197)
(.268)
5.0
(.197)
5.0
(.197)
12.5
(.492)
1.8
3'
(.071)
2 PLCS.
8.0
(.315)
20.0
(.787)
30.0
(1.181)
3
2.3 ± 0.2
(.091 ± .008)
3.7 ± 0.2
(.146 ± .008)
5.4 ± 0.2
(.213 ± .008)
0.5
(.020)
0.6
(.024)
Standard Resistance Table
Resistance
(Ohms)
1,000
2,000
5,000
10,000
20,000
50,000
100,000
200,000
500,000
1,000,000
Resistance
Code
102
202
502
103
203
503
104
204
504
105
How To Order
PTS 45 - 0 2 L - 103 B2
*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.
Model Number
Designator
PTS = High Grade Slide
Potentiometer
Length of Travel
45 = 45 mm
60 = 60 mm
01 = 100 mm
Lever End Style/Length
0 = Lever End Style “A” / 15 mm
1 = Lever End Style “T” / 8.2 mm
2 = Lever End Style “A” / 20 mm
No. of Gangs
1 = Single Gang
2 = Dual Gang
Mounting Type
L = Solder Lugs
P = PC Pins
Resistance Code
(See Standard Resistance Table)
Resistance Taper (See Taper Charts)
Taper Series followed by Curve Number
Applications
n
Professional mixing consoles
n
Professional outboard gear
PTS Series High Grade Slide Potentiometer
Product Dimensions
Tapers
A Series Tapers
100
60 mm Length of Travel
Lever End Style “A”
92.5
MAX.
(3.642)
80.0
±
0.2
(3.150
±
.008)
90
Output Voltage across Terminals 1-2
X 100 (%)
Input Voltage across Terminals 1-3
13.0
MAX.
(.512)
Lever
Length
15.0
(.591)
20.0
(.787)
80
70
60
50
40
30
20
10
0
10
20
30
(20
(3
0A
);A
6
M3 2 PLCS.
60.0
±
0.5
(2.362
±
.020)
6.0
±
0.2
(.157
±
.008)
4.0 +0/-0.1
(.157 +0/-.004)
10.0
±
0.3
(.394
±
.012)
DIMENSIONS:
MM
(INCHES)
1.2
±
.05
(.047
±
.002)
(25
3
A);
A5
A
A);
4
A);A
(15
A2
(10A);
(05
1
A);A
0.3
R
(.012)
40
50
60
70
80
90
100
Terminal 1
Rotational Travel (%)
Terminal 3
B Series Tapers
100
(4B
Output Voltage across Terminals 1-2
X 100 (%)
Input Voltage across Terminals 1-3
);B
38.7
±
0.5
(1.524
±
.020)
(3B
70
60
50
40
30
20
10
0
10
20
30
40
50
60
2.0
2 1 2' 1'
HOLES
(.079)
6 PLCS.
5.0
(.197)
5.0
(.197)
5.0
(.197)
20.0
(.787)
1.8
(.071)
2 PLCS.
6.8
(.268)
8.0
(.315)
27.5
(1.083)
37.5
(1.476)
3'
3
2.3
±
0.2
(.091
±
.008)
3.7
±
0.2
(.146
±
.008)
5.4
±
0.2
2
(.213
±
.008)
R1 1
3
0.5
(.020)
0.6
(.024)
70
(1
B
);B
1
80
3
(2
L
±
0.5
(L
±
.020)
);B5
(5B
);B
4
B)
;B
2
90
80
90
100
Terminal 1
Rotational Travel (%)
Terminal 3
Schematics
Output Voltage across Terminals 1-2
X 100 (%)
Input Voltage across Terminals 1-3
C Series Tapers
100
Single Gang
2
R1 1
3
Dual Gang
2
R1 1
R2 1'
2'
3
3'
90
80
70
60
50
40
30
20
10
(25
(3
0C
);C
6
C)
;C5
2
R1 1
R2 1'
3
3'
(1
(20
C
(15
0C
)
);C
4
(05
;C
2
C);C
1
C);
C3
0
10
20
30
40
50
60
70
80
90
100
Terminal 1
Rotational Travel (%)
Terminal 3
Specifications are subject to change without notice.
2'
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.
PTS Series High Grade Slide Potentiometer
Product Dimensions
100 mm Length of Travel
Lever End Style “A”
132.5
MAX.
(5.217)
120.0
±
0.2
(4.724
±
.008)
13.0
MAX.
(.512)
M3 X 0.5 2 PLCS.
Lever
Length
15.0
(.591)
6.0
±
0.2
(.157
±
.008)
4.0 +0/-0.1
(.157 +0/-.004)
10.0
±
0.3
(.394
±
.012)
100.0 ± 1.0
(3.937 ± .039)
20.0
(.787)
1.2
±
.05
(.047
±
.002)
0.3
R
(.012)
L
±
0.5
(L
±
.020)
38.7
±
0.5
(1.524
±
.020)
HOLES
2 1 2' 1'
2.0
(.079)
6 PLCS.
5.0
(.197)
5.0
(.197)
5.0
(.197)
40.0
(1.575)
1.8
(.071)
2 PLCS.
6.8
(.268)
8.0
(.315)
47.5
(1.870)
57.5
(2.264)
3'
3
2.3
±
0.2
(.091
±
.008)
3.7
±
0.2
(.146
±
.008)
5.4
±
0.2
(.213
±
.008)
0.5
(.020)
0.5
(.020)
DIMENSIONS:
MM
(INCHES)
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.
PTS Series High Grade Slide Potentiometer
Product Dimensions
45 mm Length of Travel
Lever End Style “T”
77.5
MAX.
(3.052)
65.0
±
0.2
(2.559
±
.008)
13.0
MAX.
(.512)
M3 X 0.5 2 PLCS.
45.0 ± 0.5
(1.772 ± .020)
2.0
(.079)
4.0
(.157)
18.5 +0/-0.1
(.728 +0/-.004)
14.5
(.571)
8.0
(.315)
8.2 ± 0.5
(.323 ± .020)
1.5
±
.05
(.059
±
.002)
1.2
±
.05
(.047
±
.002)
2.0
(.079)
DIA. 2 PLCS.
38.7
±
0.5
(1.524
±
.020)
HOLES
2 1 2' 1'
2.0
(.079)
6 PLCS.
5.0
6.8
(.197)
(.268)
5.0
(.197)
5.0
(.197)
12.5
(.492)
1.8
3'
(.071)
2 PLCS.
8.0
(.315)
20.0
(.787)
30.0
(1.181)
3
2.3
±
0.2
(.091
±
.008)
3.7
±
0.2
(.146
±
.008)
5.4
±
0.2
(.213
±
.008)
0.5
(.020)
0.6
(.024)
DIMENSIONS:
MM
(INCHES)
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.
PTS Series High Grade Slide Potentiometer
Product Dimensions
60 mm Length of Travel
Lever End Style “T”
92.5
MAX.
(3.642)
80.0
±
0.2
(3.150
±
.008)
13.0
MAX.
(.512)
M3 X 0.5 2 PLCS.
60.0
±
0.5
(2.362
±
.020)
18.5 +0/-0.1
(.728 +0/-.004)
2.0
(.079)
4.0
(.157)
14.5
(.571)
8.0
(.315)
8.2 ± 0.5
(.323 ± .020)
1.5
±
.05
(.059
±
.002)
1.2
±
.05
(.047
±
.002)
2.0
(.079)
DIA. 2 PLCS.
38.7
±
0.5
(1.524
±
.020)
HOLES
2.0
2 1 2' 1'
(.079)
6 PLCS.
5.0
(.197)
5.0
(.197)
5.0
(.197)
20.0
(.787)
1.8
(.071)
2 PLCS.
6.8
(.268)
8.0
(.315)
27.5
(1.083)
37.5
(1.476)
3'
3
2.3
±
0.2
(.091
±
.008)
3.7
±
0.2
(.146
±
.008)
5.4
±
0.2
(.213
±
.008)
0.5
(.020)
0.5
(.020)
DIMENSIONS:
MM
(INCHES)
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.
The read and write speed of STM8's EEPROM is quite fast. After testing, I found that itis not 6.6ms per byte as stated in the datasheet. I wrote single byte, and it seems that writing N bytes takes 6....
lie
Mom: "Which banana do you want, Victor?"
Son: "I want the biggest one."
Mom: "Victor, you should be polite and ask for the smaller one."
Son: "Mom, does being polite mean I have to lie?" ...
- TI DM3730 processor based on ARM Cortex-A8, main frequency 1GHz - Onboard 512MByte DDR SDRAM, 512MByte NAND Flash - 3 serial ports, 4 USB Host, USB OTG, Ethernet port, audio input and output, TF car...
[i=s] This post was last edited by huybn5776 on 2015-6-26 06:48 [/i] I am making a simple infrared remote control for the elderly recently. I want to use three AAA batteries as the power source. There...
1. Introduction
Since the 1980s, with the continuous development of automotive electronic technology, there are more and more electronic control units in automobiles, such as electronic fuel i...[Details]
In public places such as schools, government agencies, factories and mines, as well as public corridors in residential areas, the phenomenon of long-burning lights is very common, which causes a h...[Details]
As cellular phones become more advanced, the power consumption of the system during operation and the power consumption during standby are also increasing. Therefore, the power management design of...[Details]
1. With the development of modern industry and the continuous improvement of automation, some medium and large control systems have been greatly facilitated, which not only makes control easier, bu...[Details]
The potentiometer is an adjustable electronic component. The main functions of the potentiometer in the circuit are as follows:
1. Used as a voltage divider
A potentiometer is a continuou...[Details]
VP2188 is a color STN LCD module produced by Jingdian Pengyuan. This module is a dot matrix transmissive color STN display screen with a color scale of 65 k colors and white LED backlight. Its core...[Details]
Experimental tasks
A DS18B20 is used to form a temperature measurement system. The temperature measurement accuracy reaches 0.1 degrees. The temperature range is between -20 degrees and +50 de...[Details]
OC faults may be the most frequent and the most frequent of all faults in the inverter. They alarm during the startup process, during the shutdown process, during operation, and even when powered o...[Details]
In 2012, more than half of the cars in the European, Japanese and American car markets will be equipped with color displays, navigation systems, satellite communications and other in-vehicle infota...[Details]
At present, the traffic congestion in cities is quite serious. According to relevant news reports: In China, the traffic congestion has expanded from megacities such as Beijing, Shanghai, and Guangzho...[Details]
Preface
In recent years, white light LEDs have gradually replaced incandescent bulbs and fluorescent lamps because they have unparalleled advantages over traditional light sources in terms...[Details]
Since the late 1990s, with the demand for higher system efficiency and lower power consumption, the technological update of telecommunications and data communication equipment has promoted the deve...[Details]
0 Introduction
With the rapid development of social economy and science and technology, electric locomotives, subways and electric vehicles will be widely used. The power conversion and cont...[Details]
0 Introduction
There are many types of sensors, and the working principles, measurement targets and measurement environments of different types of sensors vary greatly. The corresponding detection s...[Details]
The demand for improved healthcare environments is endless, so medical imaging equipment with higher resolution is needed to better observe the human body. High resolution brings problems with sign...[Details]