Drawings, Accessories, Detailed request for product
Newly available variants corresponding to V-Lock mating cordset. The connector is equipped with a notch intended for use with the latching cordset.
The cord latching system prevents against accidental removal of the cordset.
Technical Data
Ratings IEC
Ratings UL/CSA
Dielectric Strength
10 A / 250 VAC; 50 Hz
10 A / 250 VAC; 60 Hz
> 3 kVAC between L-N
> 4 kVAC between L/N-PE
(1 min/50 Hz)
-25 °C to 70 °C
from front side IP 40 acc. to IEC 60529
Suitable for appliances with protection
class I acc. to IEC 61140
For PCB mounting
Snap-in: 1.5/2/2.5/3 mm
Thermoplastic, black, UL 94V-0
Appliance Inlet
C14 acc. to IEC 60320,
UL 498, CSA C22.2 no. 42 (for cold
conditions) pin-temperature 70 °C,
10 A, Protection Class I
optional, 1 or 2 pole, Shocksafe cate-
gory PC2 acc. to IEC 60127-6,
for fuse-links 5 x 20 mm
5 x 20: 3.15 W (1 pole)/ 2.5 W (2-pole)
per pole
Admissible power acceptance at hig-
her ambient temperature see derating
curves
Fuseholder
Allowable Operation Temp.
Degree of Protection
Protection Class
Terminal
Panel Thickness s
Material: Housing
Rated Power Acceptance @
Ta 23 °C
Power Acceptance @ Ta >
23°C
Connectors
1
GSF1
Dimensions
19.3
6
A S
Power entry modules without line filter
www.schurter.com/PG05
with insulation cover
24.45
21.9
26.8
19.35
max. R4.5
25.5
12
29.9
34
1.5
11.5
15.9
30.3
±0.1
A = 6 mm for standard versions
A = 5 mm for pick and place versions
S = 0 mm for mounting from rear-side
for mounting from rear-side
27
19.7
±0.1
max. R2
27.7
±0.1
27.5
A = 6 mm for standard versions
A = 5 mm for pick and place versions
for sandwich mounting
Drilling diagrams
without fuseholder
18.1
1.4
with 1-pole fuseholder
9.05 12.7
1.4
5.5
with 2-pole fuseholder
25.4
1.4
5.5
Pick and Place versions
without / with 1-pole or
2-pole fuseholder
25.4
±0.10
1.4
10.9
±0.05
3.5
1.6
6.5
±0.05
5.8
2.3
±0.05
9.9
9.9
9.9
2.5
D1
27
1.6
D1
27
1.6
D1
27
1.6
1*
1.6
1.6
26.7
±0.10
2.3
±0.05
D1 for snap-in mounting = 6 ± 0.05
D1 for self-tapping screw = 3.6 ± 0.1
D1 for snap-in mounting = 6 ± 0.05
D1 for self-tapping screw = 3.6 ± 0.1
D1 for snap-in mounting = 6 ± 0.05
D1 for self-tapping screw = 3.6 ± 0.1
1* only for protection class II
Derating Curves
1-pole
3.15
2-pole
Admissible power acceptance in Watt per pole
2.5
2.0
1.5
1.0
0.5
0.0
0
20
40
60
80
100
I = 1.0 I
n
I = 0.7 I
n
I = < < I
n
Admissible Power Acceptance in Watt
2.5
2.0
1.5
1.0
0.5
0.0
0
20
40
60
80
100
I = 1.0 I
n
I = 0.7 I
n
I = << I
n
Ambient Air Temperature Ta °C
Ambient Air Temperature Ta °C
2
Connectors
22.3
±0.1
Power entry modules without line filter
www.schurter.com/PG05
GSF1
Fuseholder
-
-
-
-
-
-
-
-
1-pole
1-pole
1-pole
1-pole
1-pole
1-pole
1-pole
1-pole
2-pole
2-pole
2-pole
2-pole
2-pole
2-pole
2-pole
2-pole
-
-
-
-
-
-
-
-
1-pole
1-pole
1-pole
1-pole
1-pole
1-pole
1-pole
1-pole
2-pole
2-pole
2-pole
2-pole
2-pole
2-pole
2-pole
-
-
1-pole
1-pole
2-pole
2-pole
-
-
Ground terminal 4.8
x 0.8 mm
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
Ground terminal direction
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
straight
Packaging
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
Order Number
GSF1.0002.31
GSF1.0001.31
GSF1.0002.41
GSF1.0001.41
GSF1.0002.51
GSF1.0001.51
GSF1.0002.61
GSF1.0001.61
GSF1.1002.31
GSF1.1001.31
GSF1.1002.41
GSF1.1001.41
GSF1.1002.51
GSF1.1001.51
GSF1.1002.61
GSF1.1001.61
GSF1.2002.31
GSF1.2001.31
GSF1.2002.41
GSF1.2001.41
GSF1.2002.51
GSF1.2001.51
GSF1.2002.61
GSF1.2001.61
GSF1.0202.31
GSF1.0201.31
GSF1.0202.41
GSF1.0201.41
GSF1.0202.51
GSF1.0201.51
GSF1.0202.61
GSF1.0201.61
GSF1.1202.31
GSF1.1201.31
GSF1.1202.41
GSF1.1201.41
GSF1.1202.51
GSF1.1201.51
GSF1.1202.61
GSF1.1201.61
GSF1.2202.31
GSF1.2201.31
GSF1.2202.41
GSF1.2201.41
GSF1.2202.51
GSF1.2201.51
GSF1.2201.61
GSF1.0002.01
GSF1.0001.01
GSF1.1002.01
GSF1.1001.01
GSF1.2002.01
GSF1.2001.01
GSF1.0202.01
GSF1.0201.01
█
█
█
Variants
Mounting side
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Sandwich
Rear Side
Rear Side
Rear Side
Rear Side
Rear Side
Rear Side
Rear Side
Rear Side
Panel mounting
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Screw
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Snap-in
Screw
Screw
Screw
Screw
Screw
Screw
Snap-in
Snap-in
Panel Thickness
s [mm]
1.5
1.5
2
2
2.5
2.5
3
3
1.5
1.5
2
2
2.5
2.5
3
3
1.5
1.5
2
2
2.5
2.5
3
3
1.5
1.5
2
2
2.5
2.5
3
3
1.5
1.5
2
2
2.5
2.5
3
3
1.5
1.5
2
2
2.5
2.5
3
6
6
6
6
6
6
6
6
Connectors
3
GSF1
Mounting side
Rear Side
Rear Side
Rear Side
Rear Side
Rear Side
Rear Side
Rear Side
█
Most Popular.
Panel mounting
Snap-in
Snap-in
Snap-in
Snap-in
Metal snaps
Metal snaps
Metal snaps
Panel Thickness
s [mm]
6
6
6
6
6
6
6
Fuseholder
1-pole
1-pole
2-pole
2-pole
-
1-pole
2-pole
Ground terminal 4.8
x 0.8 mm
l
l
l
l
l
l
l
Power entry modules without line filter
www.schurter.com/PG05
Ground terminal direction
angled to pin axis
straight
angled to pin axis
straight
angled to pin axis
angled to pin axis
angled to pin axis
Packaging
-
-
-
-
Blister tray
Blister tray
Blister tray
Order Number
GSF1.1202.01
GSF1.1201.01
GSF1.2202.01
GSF1.2201.01
GSF1.3402.01
GSF1.4402.01
GSF1.5402.01
█
█
█
Availability for all products can be searched real-time:http://www.schurter.com/en/Stock-Check/Stock-Check-SCHURTER
Insulation cover must be ordered separately. Order No. 0098.0078
Suffix ".21" corresponds to the version with V-Lock mating cordset. The connector is equipped with a notch intended for use with the latching cordset. The cord latching
system prevents against accidental removal of the cordset.
Optional blister tray packaging 250 Pcs
Packaging unit
Accessories
50 Pcs
Description
Assorted Covers
Rear Cover
Mating Outlets/Connectors
Category / Description
Appliance Outlet Overview complete
IEC Appliance Outlet F, Screw-on Mounting, Front Side, Solder Terminal
IEC Appliance Outlet F, Snap-in Mounting, Front Side, Solder or Quick-connect Terminal
IEC Appliance Outlet F or H, Screw-on Mounting, Front Side, Solder, PCB or Quick-connect Terminal
Appliance Outlet further types to GSF1
4787
4788
5091
Connector Overview complete
IEC Connector C15A, Rewireable, Straight
IEC Connector C15A, Rewireable, Straight
IEC Connector C15A, Rewireable, Angled
IEC Connector C13, Rewireable, Angled
IEC Connector C13, Rewireable, Straight
Connector further types to GSF1
0102
0102-G
0112
4012
4022
...
4
Connectors
The specifications, descriptions and illustrations indicated in this document are based on
current information. All content is subject to modifications and amendments.
I need to use the second CAN with the STM32 105 chip. The library function version I use is V2.0.2. Because the library function does not support two CAN channels, I copied the CAN part of the 3.0.0 l...
I have recently been working on a USB flash drive filter driver, which is overloaded below the disk driver and is a lower-level filter driver. Now I want to interact with the application layer, so I a...
I have been experimenting with RTC these days, but I often find that the values in BKP are inexplicably lost. I have a few questions and understandings about these. I hope the moderator can confirm th...
The seventh line from the bottom --- "ADC10MEM." This is not a period, it should be ADC10MEM0 (default), or ADC10MEMx:lol:lol:lol [[i] This post was last edited by woaiweibo on 2013-10-31 21:39 [/i]]...
Which manufacturer and model of microcontroller do you use when making microcontrollers? What are the advantages of these microcontrollers? Please talk about it, on the one hand, to provide some sugge...
Hello everyone! Does anyone have any information about wireless remote control, as well as source code, and preferably wireless function module functions? This is too much to ask. I want to learn abou...
A single-chip microcomputer is also called a single-chip microcontroller. It is not a chip that completes a certain logical function, but a computer system integrated into one chip. In general, a c...[Details]
Microcontrollers (MCUs), which are widely used in automotive electronics, are rapidly facing time and cost pressures. The main advantage of using MCUs has always been to create high-level system in...[Details]
1. Introduction
This design was made for participating in an electronic design competition. It effectively solved the problem of the operation and control of an electric car on a seesaw. The s...[Details]
0. Introduction
In daily life, we often see some special-purpose vehicles. When these vehicles pass through intersections, they often obtain the right of way at intersections by temporarily op...[Details]
Do you often have to add brake fluid to your car's brakes? The fact that you need to pump out the brake fluid to make sure there is no gas in the brake fluid line may not be done by the car owner h...[Details]
With the advent of increasingly powerful processors, image sensors, memory, and other semiconductor devices, as well as the algorithms that enable them, computer vision can be implemented in a wide...[Details]
Abstract: In order to generate a stable excitation signal, the design of a digital frequency synthesizer is implemented on FPGA using Verilog hardware language. The design includes accumulator, wav...[Details]
For a long time, due to the limitation of hardware conditions, the display devices of traditional small handheld devices such as PDA are usually monochrome LCD, and the user interface is very simpl...[Details]
Power management solutions for today's portable application processors are becoming increasingly integrated. Total power consumption, standby and sleep current consumption affect battery size, bill...[Details]
With the continuous improvement of the requirements of intelligent building security systems and the continuous improvement of people's safety awareness, indoor anti-theft has gradually attracted peop...[Details]
1 Introduction
Building Automation System (BAS) is a distributed monitoring system (DCS) designed according to distributed information and control theory. It is the result of the mutual de...[Details]
1 Introduction
With the development of control, computer, communication, network technology, etc., a new control technology, namely fieldbus, has emerged in the field of industrial control...[Details]
This controller uses PIC16C54 single-chip microcomputer as the controller, and it is very easy to use: just connect a telephone line to the loudspeaker through the controller, and you can rem...[Details]
As people's requirements for safety and comfort in the process of driving cars continue to increase, automotive radars are widely used in the car's adaptive cruise system, collision avoidance syste...[Details]
LED technology has made rapid progress, and improvements in chip design and materials have promoted the development of brighter and more durable light sources, and the scope of light source applica...[Details]