*RoHS Directive 2002/95/EC Jan. 27, 2003 including annex and RoHS Recast 2011/65/EU June 8, 2011.
†“Fluorinert” is a registered trademark of 3M Co.
Specifications are subject to change without notice.
4.50
0.6
Users should verify actual device performance in their specific applications.
TYP.
(.177)
(.024)
The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at www.bourns.com/docs/legal/disclaimer.pdf.
5° MAX.
TYP.
0.20
(.008)
TYP.
3314 - 4 mm Square Trimpot
®
Trimming Potentiometer
Product Dimensions
5.00
(.197)
2
2.55
(.100)
0.51 ± 0.13
(.020 ± .005)
TYP.
2.74 ± 0.10
(.108 ± .004)
TAPE
TAPE
6.20
(.244)
TAPE
1.42 ± 0.13
(0.056 ± 0.005)
0.25 ± 0.10
(.010 ± .004)
5.61
(0.221)
6 ° ± 2 °
.30 MAX.
(.012)
4.50
(.177)
0.51 ± 0.13
(.020 ± .005)
TYP.
R 0.13
(.005)
MAX.
TYP.
5.50 ± 0.5
(.217 ± .020)
2.54
(0.10)
1.27
3.5 ± 0.10
(0.05)
(.138 ± .004)
0.50
(.020
1.05
(0.041)
3
1
TYP. 0.20
(.008)
DIA.
1
2
3
5.26 ± 0.10 (J)
1.50 + 0.10/ - 0.00
ROTOR POSITIONED AS SHOWN
(.207 ± .004)
(.059 + .004/ - .000)
WITHIN ± 22 ° OF CENTERLINE
6.45 ± 0.10
(G)
(.254 ± .004)
4.00 ± 0.10
OF TERMINAL 2
(.157 ± .004)
5.26 ± 0.10
(.207 ± .004)
4.5
(0.177)
5.52 ± 0.05
(.217 ± .002)
6.48 ± 0.10
(.255 ± .004)
1.50 + 0.10/ - 0.00
(.059 + .004 - .00)
DIA.
4.00 ± 0.10
(.157 ± .004)
7
(.2
1.
(.0
0.61
(.024)
1.42 REF.
5.26 ± 0.10
(.056)
(.207 ± .004)
4.95 ± 0.13
(0.193 ± 0.005)
1.50 + 0.10/ - 0.00
3.13
(.059 + .004 - .000)
(0.123)
DIA.
5.81 ± 0.13
(0.229 ± 0.005)
2.35
(.092)
0.80 ± 0.10
(.031 ± .004)
2 PLCS.
DIA.
3.2
(.126)
THRU.
RECOMMENDED PCB
LAYOUT
2.3
(.090)
1.3
(.051)
2 PLCS.
2.00 ± 0.05
(.079 ± .020)
5.01
2.00 ± 0.05
(.197)
(.079 ± .002)
3.30
(0.130)
0.50
(.020)
1.75 ± 0.10
(.068 ± .004)
1.5 +
(0.59 +
8.00 ± 0.20
(.315 ± .008)
1.75 ± 0.10
(.069 ± .004)
DIA.
1.50 + 0.10/ - 0.00
1
2
3
(.059 + .004/ - .000)
12.00 ± 0.30
ROTOR POSITIONED AS SHOWN
(.472 ± .012)
WITHIN ± 22 ° OF CENTERLINE
OF TERMINAL 2
1.78
(0.70)
4.00 ±
(.157 ±
6.20
(.244)
5.5
(.216)
12.00 ± 0.30
(4.72 ± .012)
1.30 ± 0.10
(.051 ± .004)
5.00
(.197)
2.0
(.079)
1.3
(.051)
2 PLCS.
REEL
1.50
MIN.
EQUAL SPACED 3 PLCS.
(.059)
REEL
1.50
EQUAL SPACED 3 PLCS.
(.059)
ORIENTATION
FEATURE
20.2
18.4
(.795)
13.0 ± 0.51
(.724)
MIN. DIA.
(.512 ± .020)
MAX.
RECOMMENDED PCB LAYOUT
DIA.
(MEASURED
AT
3.5
HUB)
(0.138)
1.1
(0.043)
50.00
1.2
(1.969)
1.2
MIN.
(0.047)
(0.047)
1.75
(0.069)
1.15
(0.045)
MIN.
13.0 ± 0.51
(.512 ± .020)
DIA.
20.2
(.795)
MIN. DIA.
5.00
4.50
(.197)
(.177)
2
2
6.70
(.264)
5.00 ± 0.10
(.197 ± .004)
0.51
OUTSIDE WHEN
± 0.12
(.020 ± .005)
PINS ARE PARALLEL
3 PLCS.
0.20
(.008)
TYP.
18.4
(.724)
MAX.
(MEASURED
AT
HUB)
50.00
(1.969)
MIN.
REEL
1
2
3
13.0 ± 0
(.512 ± .
DIA
6.30
(.248)
0.51 ± 0.13
4.50
(.020 ± .005)
4.50
(.177)
TYP.
(.177)
ROTOR POSITIONED AS SHOWN
WITHIN ± 22 ° OF CENTERLINE
OF TERMINAL 2
3
3
1
1
5 °
2.55
MAX.
3
(.100)
PLCS.
0.20
(.008)
MAX.
4.00
TYP.
4 PLCS.
(.157)
R
177.8 ± 2.03
DIA.*
(7.00 ± .080)
330.2 ± 2.0
DIA.**
(13.00 ± .079)
12.4 + 2.01/ -.000
(.488 + .079/ - .000)
(MEASURED AT HUB)
177.8 ± 2.03
DIA.*
5.8
(7.00 ± .080)
(.228)
330.2 ± 2.0
DIA.**
(13.00 ± .079)
12.4 + 2.01/ -.000
(.488 + .079/ - .000)
(MEASURED AT HUB)
2.35
(.093)
RECOMMENDED PCB
LAYOUT
2.55
2.31
2.55
(.100)
(.091)
(.100)
0.80 ± 0.10
0.6 ± 0.1
1.3
(.031 ± .004)
(.024 ± .004)
(.051)
2 PLCS.
3 PLCS.
2 PLCS.
DIA.
3.2
5.00
(.126)
(.197)
6.25
THRU-
0.80
(.246)
HOLE
(.031)
5.00
(.197)
DIA. TYP.
* Embossed Tape Designator "E"
** Embossed Tape Designator "G"
(See How To Order chart for further information.)
Meets EIA specification 481.
ROTOR POSITIONED AS SHOWN
WITHIN ± 22 ° OF CENTERLINE
OF TERMINAL 2
1
2
3
1.15
(0.045)
* Embossed Tape Designator "E"
1.6
1.75
** Embossed Tape Designator "G"
(0.063)
(0.069)
(See How To Order chart for further information.)
Meets EIA specification 481.
MM
DIMENSIONS:
(INCHES)
0.25
TOLERANCES: ±
EXCEPT WHERE NOTED
(.010)
* Embo
** Embo
(See
Meets E
0.27 ± 0.10
(.050 ± .004)
LEAD FOOTPRINT
2.0
(.079)
1.3
3 PLCS.
(.051)
Specifications are subject to change without notice.
Users should verify actual device performance in their specific applications.
The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of
this document, and at www.bourns.com/docs/legal/disclaimer.pdf.
3314 - 4 mm Square Trimpot
®
Trimming Potentiometer
Product Dimensions
5.00
(.197)
2
2.55
(.100)
0.51 ± 0.13
3.32
(.020 ± .005)
(0.131)
TYP.
Packaging Specifications
TAPE
TAPE
0.40
MAX.
(.016)
TAPE
1.27
(0.50)
6.20
2.54
(.244)
(0.10)
1.19
(0.047)
4.50
(.177)
1.29
(0.051)
.30 MAX.
(.012)
1
2
3
0.51 ± 0.13
(.020 ± .005)
TYP.
2.74 ± 0.10
(.108 ± .004)
16.00
(.630)
7.5
(.295)
5.50 ± 0.5
(.217 ± .020)
5.26 ± 0.10 (J)
(.207 ± .004)
6.45 ± 0.10
(G)
(.254 ± .004)
12.00
(.472)
5.26 ± 0.10
(.207 ± .004)
5.50 ± 0.10
(.217 ± .004)
3.5
(.138
ROTOR POSITIONED AS SHOWN
WITHIN ± 22 ° OF CENTERLINE
OF TERMINAL 2
1
2
3
ROTOR POSITIONED AS SHOWN
WITHIN ± 22 ° OF CENTERLINE
OF TERMINAL 2
R 0.13
(.005)
3
1
MAX.
0.20
0.61
TYP.
5.56
TYP.
(.008)
(.024)
(0.219)
5.01
0.96
(.197)
3.08
(.038)
(0.121)
3.18
RECOMMENDED PCB
(.125)
5.76
LAYOUT
(0.227)
2.3
2.35
(.090)
(.092)
0.80 ± 0.10
1.3
(.031 ± .004)
(.051)
RECOMMENDED PCB LAYOUT
2 PLCS.
2 PLCS.
2.54
DIA.
(0.10)
3.2
1.3
2.01
(.126)
(0.051)
(.079)
5.5
6.20
THRU.
0.26
(.216)
(.244)
(.010)
3.48
(.137)
DIA.
1.50 + 0.10/ - 0.00
1.75
(.059 + .004/ - .000)
(.069)
4.00 ± 0.10
(.157 ± .004)
1.50 + 0.10/-0.0
(0.59 +.004/-.0)
DIA.
2.00 ± 0.05
4.00 ± 0.10
(.079 ± .020)
(.157 ± .004)
2.00 ± 0.10
(.079 ± .004)
1.50 + 0.1
(.059 + .0
DIA
4.0
(.15
2.0
(.07
8.00 ± 0.20
(.315 ± .008)
1.75 ± 0.10
(.069 ± .004)
5.50 ± 0.10
12.00 ± 0.30
(.217 ± .004)
(.472 ± .012)
5 ° MAX.
DIA.
1.50 + 0.10/ - 0.00
1.50
DIA. MIN.
(.059 + .004/ - .000)
(.059)
1
(.
5.00
2.01
(.197)
(.079)
1.30 ± 0.10
0.21
(.051 ± .004)
(.008)
1.3
2.0
(.079)
REEL
1.50
MIN.
EQUAL SPACED 3 PLCS.
(.059)
5.59 ± 0.10
20.2
(.220 ± .004)
18.4
(.795)
REEL
13.0 ± 0.51
(.724)
MIN. DIA.
(.512 ± .020)
1.50
MAX.
MIN.
EQUAL SPACED 3 PLCS.
DIA.
(.059)
(MEASURED
AT
20.2
HUB)
22.4
(.795)
13.0 ± 0.51
(.882)
MIN. DIA.
(.512 ± .020)
50.00
MAX.
DIA.
(MEASURED
(1.969)
AT
MIN.
HUB)
50.00
(1.969)
MIN.
REEL
2.01
(.051)
(.079)
2 PLCS.
13.0 ± 0.
(.512 ± .0
DIA.
4.50
(.177)
2
1
2
3
5.00 ± 0.10
(.197 ± .004)
OUTSIDE WHEN
PINS ARE PARALLEL
6.30
(.248)
4.50
(.177)
ROTOR POSITIONED AS SHOWN
WITHIN ± 22 ° OF CENTERLINE
OF TERMINAL 2
2
WIPER
0.20
(.008)
TYP.
CCW
3
1
1
3
CLOCKWISE
2.55
(.100)
CW
4.00
TYP.
(.157)
177.8 ± 2.03
DIA.*
(7.00 ± .080)
330.2 ± 2.0
DIA.**
(13.00 ± .079)
12.4 + 2.01/ -.000
(.488 + .079/ - .000)
(MEASURED AT HUB)
2.55
(.100)
1
2
3
ROTOR POSITIONED AS SHOWN
WITHIN ± 22 ° OF CENTERLINE
OF TERMINAL 2
0.6 ± 0.1
(.024 ± .004)
3 PLCS.
5.00
(.197)
2.55
(.100)
177.8 ± 2.03
DIA.*
(7.00 ± .080)
* Embossed Tape Designator "E"
16.4 + 2.0/ -.000
330.2 ± 2.0
** Embossed Tape Designator "G"
(.646 + .079/ - .000)
DIA.**
(13.00 ± .079)
(See How To Order chart for further information.)
(MEASURED AT HUB)
* Embos
** Embos
(See H
Meets EIA specification 481.
* Embossed Tape Designator "E"
** Embossed Tape Designator "G"
(See How To Order chart for further information.)
Meets EIA
5.00
(.197)
0.80
(.031)
DIA. TYP.
MM
(INCHES)
0.25
TOLERANCES: ±
EXCEPT WHERE NOTED
(.010)
Meets EIA specification 481.
DIMENSIONS:
Specifications are subject to change without notice.
Users should verify actual device performance in their specific applications.
The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at www.bourns.com/docs/legal/disclaimer.pdf.
3314 - 4 mm Square Trimpot
®
Trimming Potentiometer
Packaging Specifications
TAPE
TAPE
0.25 ± 0.10
(.010 ± .004)
)
MAX.
5
0)
3.5 ± 0.10
(.138 ± .004)
1
2
3
6 ° ± 2 °
5.52 ± 0.05
(.217 ± .002)
2.54
(0.10)
1.27
(0.05)
3.5
1.42 ± 0.13
(.138)
(0.056 ± 0.005)
0.22
2 PLCS.
(.009)
0.33
(.013)
5.61
(0.221)
TAPE
0.50 ± 0.05
(.020 ± .002)
0.3
1.05
(.012)
(0.041)
DIA.
1.5
(.059)
4.00
(.157)
4.5
(0.177)
16.00 ± 0.3
(.630 ± 0.012)
7.50 ± 0.10
(.295 ± .004)
1.75 ± 0.10
(.069 ± .004)
0.5
R TYP.
(.020)
± 0.10 (J)
± .004)
± 0.10
(G)
± .004)
1.50 + 0.10/ - 0.00
ROTOR POSITIONED AS SHOWN
(.059 + .004 - .00)
WITHIN ± 22 ° OF CENTERLINE
6.48 ± 0.10
DIA.
OF TERMINAL 2
(.255 ± .004)
4.00 ± 0.10
(.157 ± .004)
5.26 ± 0.10
(.207 ± .004)
1.50 + 0.10/ - 0.00
(.059 + .004 - .000)
DIA.
26 ± 0.10
07 ± .004)
2.00 ± 0.05
(.079 ± .002)
5.01
2.00
(.197)
(.079)
3.30
(0.130)
0.50
(.020)
0.61
(.024)
00 ± 0.20
15 ± .008)
DIA.
10/ - 0.00
04/ - .000)
1.78
(0.70)
1.75
(.069)
16.00
(.630)
1.42 REF.
(.056)
4.95 ± 0.13
(0.193 ± 0.005)
8.00
3.13
(.315)
(0.123)
5.81 ± 0.13
(0.229 ± 0.005)
1.5 + 0.1/-0.0
(0.59 +.004/-0.0)
DIA.
4.00 ± 0.10
(.157 ± .004)
2.00 ± 0.10
(.079 ± .004)
12.00 ± 0.10
(.472 ± .004)
5.5
8.3
(.217) (.327)
1.75 ± 0.10
1 2 3
(.068 ± .004)
12.00 ± 0.30
ROTOR POSITIONED AS SHOWN
(4.72 ± .012)
WITHIN ± 22 ° OF CENTERLINE
OF TERMINAL 2
REEL
1.50
MIN.
EQUAL SPACED 3 PLCS.
(.059)
7.5
(.295)
5.30 ± 0.10
(.209 ± .004)
7.30
(.287)
REEL
MIN.
1.5
DIA. MIN.
(.059)
18.4
(.724)
MAX.
MEASURED
AT
HUB)
50.00
(1.969)
MIN.
13.0 ± 0.51
(.512 ± .020)
DIA.
20.2
(.795)
MIN. DIA.
18.4
(.724)
MAX.
(MEASURED
AT
HUB)
50.00
(1.969)
MIN.
ORIENTATION
FEATURE
RECOMMENDED PCB LAYOUT
3.5
(0.138)
1.2
(0.047)
LABEL
1.50
EQUAL SPACED 3 PLCS.
(.059)
1
2
3
ROTOR POSITIONED AS SHOWN
WITHIN ± 22 ° OF CENTERLINE
OF TERMINAL 2
1.1
(0.043)
1.2
(0.047)
178.0
1.75
DIA.
(7.00)
(0.069)
1.15
(0.045)
13.0 ± 0.51
(.512 ± .020)
DIA.
20.2
(.795)
MIN. DIA.
22.4
(.882)
MAX.
(MEASURED
AT
HUB)
50.00
(1.969)
MIN.
1/ -.000
9/ - .000)
D AT HUB)
177.8 ± 2.03
DIA.*
(7.00 ± .080)
330.2 ± 2.0
DIA.**
(13.00 ± .079)
12.4 + 2.01/ -.000
(.488 + .079/ - .000)
(MEASURED AT HUB)
5.8
(.228)
* Embossed Tape Designator "E"
** Embossed Tape Designator "G"
(See How To Order chart for further information.)
1
2
Meets EIA specification 481.
3
1.6
(0.063)
1.15
(0.045)
1.75
(0.069)
177.8 ± 2.03
DIA.*
(7.00 ± .080)
330.2 ± 2.0
DIA.**
(13.00 ± .079)
16.4 + 2.0/ -.000
(.646 + .079/ - .000)
(MEASURED AT HUB)
(INCHES)
0.25
TOLERANCES: ±
EXCEPT WHERE NOTED
(.010)
ROTOR POSITIONED AS SHOWN
WITHIN ± 22 ° OF CENTERLINE
MM
OF TERMINAL 2
DIMENSIONS:
* Embossed Tape Designator "E"
** Embossed Tape Designator "G"
(See How To Order chart for further information.)
Meets EIA specification 481.
Specifications are subject to change without notice.
Users should verify actual device performance in their specific applications.
The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at www.bourns.com/docs/legal/disclaimer.pdf.
3314 - 4 mm Square Trimpot
®
Trimming Potentiometer
Packaging Specifications
How To Order
TAPE
0.40
MAX.
(.016)
16.00
(.630)
1.75
(.069)
7.5
(.295)
9)
0.96
(.038)
1.50 + 0.10/-0.0
(0.59 +.004/-.0)
DIA.
4.00 ± 0.10
(.157 ± .004)
2.00 ± 0.10
(.079 ± .004)
12.00
(.472)
5.50 ± 0.10
(.217 ± .004)
.26
010)
5.50 ± 0.10
(.217 ± .004)
5 ° MAX.
1.50
DIA. MIN.
(.059)
Model
Style
Standard or Modified Product
Indicator (Styles J, G, H & S)
-1 = Single Slot
-2 = Cross Slot
-3 = Single Slot w/Reverse Marking
-4 = Cross Slot w/Reverse Marking
Product Indicator (Style R only)
-GM5 = Cross Slot w/Extended
Lead Frame
-1 = Single Slot
-2 = Cross Slot
-3 = Single Slot w/Reverse Marking
-4 = Cross Slot w/Reverse Marking
Product Indicator (Style Z only)
-GA4 = Single Slot
-1 = Cross Slot
-3 = Single Slot w/Reverse Marking
-4 = Cross Slot w/Reverse Marking
Resistance Code
Embossed Tape Designator (MSL-1)**
E = Styles J, G and R: 500 pcs./7 ” reel
Styles S and Z: 200 pcs./7 ” reel
G = Styles J and G: 3000 pcs./13 ” reel
Style R: 2500 pcs./13 ” reel
Styles S and Z: 1000 pcs./13 ” reel
**Style H is available in tube packaging only.
3314 J - 1 - 502 E
Standard Resistance Table
Resistance
(Ohms)
10
20
50
100
200
500
1,000
2,000
5,000
10,000
20,000
50,000
100,000
200,000
250,000
500,000
1,000,000
2,000,000
Resistance
Code
100
200
500
101
201
501
102
202
502
103
203
503
104
204
254
504
105
205
Popular distribution values listed in boldface.
Special resistances available.
Tape and reel material meets Antistatic ANSI/
ESD 5541-2003 packaging standards.
5.59 ± 0.10
(.220 ± .004)
1
9)
REEL
MIN.
1.50
EQUAL SPACED 3 PLCS.
(.059)
13.0 ± 0.51
(.512 ± .020)
DIA.
20.2
(.795)
MIN. DIA.
22.4
(.882)
MAX.
(MEASURED
AT
HUB)
50.00
(1.969)
MIN.
177.8 ± 2.03
DIA.*
(7.00 ± .080)
330.2 ± 2.0
DIA.**
(13.00 ± .079)
16.4 + 2.0/ -.000
(.646 + .079/ - .000)
(MEASURED AT HUB)
* Embossed Tape Designator "E"
** Embossed Tape Designator "G"
(See How To Order chart for further information.)
Meets EIA specification 481.
MM
DIMENSIONS:
(INCHES)
0.25
TOLERANCES: ±
EXCEPT WHERE NOTED
(.010)
REV. 08/18
Specifications are subject to change without notice.
Users should verify actual device performance in their specific applications.
The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at www.bourns.com/docs/legal/disclaimer.pdf.
[align=center][align=left]The New Year customs here are similar to those in other places. On the night of the 30th (of course, this year there is only the 29th. The old people said that in this case, ...
Phase shifters are devices used to adjust transmission phase in a system, they can be fixed phase digital phase shifters or analogue variable types....
A few days ago, I was going to port UCOS II of 28335. As I didn't know much about the function of CSM, 28335 was locked. I would like to thank the great enthusiast 1009109508 and nicholas1233 who repl...
Is ADE7755 connected to the microcontroller through the CF port, or through F1 and F2? After ADE7755 detects the power, how can it be displayed on the LCD through the microcontroller?...
[float=left][color=rgb(60, 60, 60)][font=tahoma, arial,][float=left][list] [*][size=16px]Design of vending machine based on single chip microcomputer/12864 display/electronic design[/size] [*][size=16...
On August 23rd, Geely's subsidiary, Jiyao Tongxing, announced it has the industry's largest advanced production capacity for tandao
batteries
, with eight production bases across China. Jiy...[Details]
Abstract:
With the increasing complexity of smart vehicle electrical and electronic architectures, the full lifecycle management of vehicle electronic control components faces multiple challe...[Details]
To enable real-time monitoring of home security and automatically dial a number for voice prompts or send text messages when an alarm occurs, a GPRS-based embedded telephone alarm system was design...[Details]
When you are happily watching NBA or football, your wife asks you to turn off the lights in the bedroom. Would you be depressed? Of course, unless you are not afraid of your wife.
Now you are ...[Details]
The structure of an LCD TV primarily consists of the LCD display module, power module, driver module (primarily including the main driver board and tuner board), and keypad module. LCD display modu...[Details]
Recently, AstroBo Robot, a subsidiary of Chenxing Automation, launched a new mobile collaborative palletizing product. Leveraging an omnidirectional mobile chassis, an intelligent scheduling system...[Details]
Smartphones have become essential digital devices, and the growing number of smartphone-centric applications is enriching people's lives. As users, they desire a better app experience and a wider r...[Details]
As AI accelerates across industries, the demand for data center infrastructure is also growing rapidly.
Keysight Technologies, in collaboration with Heavy Reading, released the "Beyo...[Details]
Renesas Electronics' new ultra-low-power RA4C1 MCU features advanced security and a dedicated peripheral set, making it ideal for metering and other applications.
The new product mee...[Details]
introduction
Inverter air conditioners are a trend in the current era and have gradually become commonplace in countless households. Beyond their basic cooling and heating functions, air condi...[Details]
The fracture mechanism is stress concentration, which typically occurs at the capacitor lead pins or pad connection points, as shown in the figure. Under vibration, the capacitor lead pins and pad ...[Details]
Batteries are a core component of new energy vehicles, accounting for over 40% of the total cost. This is also the area where automakers are most willing to tamper with costs. Since 2021, domestic ...[Details]
The evolution of high-speed networks remains guided by the same core objectives: increasing data rates, reducing latency, improving reliability, lowering power consumption, and maintaining or exten...[Details]
Compiled from semiengineering
The industry is increasingly concerned about power consumption in AI, but there are no simple solutions. This requires a deep understanding of software and ...[Details]
With the continuous development of ultrasonic technology, ultrasound has been widely used in fields such as inspection, cleaning, welding, and medical treatment, and has even found its way into tex...[Details]