Plastic Handle (AGS)

Caution
- Selling Price had been changed from 1 June ,2023 due to Maker adjusted the cost
Product Description
Classic resin handle with high functionality.
[Features]
· Self-extinguishing handles are UL94V-O certified.
· Conductive specification also available.
· AGS-AE: -30 to +150°C.
· AGS, AGSE: -30 to +130°C.
· AGS-PP: 0 to 100°C.
[Applications]
· Can be used when mounting and removing panels and covers, etc.
Plastic Handle Outline Drawing & Dimensions

AGS

AGSE (Antistatic)

AGS-AE (Self-extinguishing)

AGS-PP (Polypropylene plastic)

AGE/AGSE/AGS-AE/AGS-PP (Front Mounting) outline drawing
*AGS180 and AGS180PP handles have long mounting holes.
AGS
| Black | Orange | Gray | L | L1 | L2 | H | A | B | R | Lr | C | Lc | Weight (g) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Part Number | Part Number | Part Number | |||||||||||
| AGS110 | AGS110-OG | AGS110-GR | 93.5 | 109 | 74 | 38 | 21 | 6 | 6.5 | 13 | 10.5 | 7 | 26 |
| AGS130 | AGS130-OG | AGS130-GR | 117 | 137 | 93 | 41 | 26 | 7 | 8.5 | 15 | 13.5 | 8.5 | 42 |
| AGS150 | AGS150-OG | AGS150-GR | 132 | 150 | 108 | 45 | 27 | 16 | 47 | ||||
| AGS180 | - | - | 149 | 172 | 125 | 47 | 17 | 53 | |||||
| AGS200 | AGS200-OG | AGS200-GR | 179 | 196 | 151 | 50 | 28 | 7.5 | 70 | ||||
| AGS260 | AGS260-OG | AGS260-GR | 235 | 260 | 201 | 54 | 30 | 8.5 | 10.5 | 20 | 16.5 | 10.5 | 118 |
AGSE (Antistatic)
| Part Number | L | L1 | L2 | H | A | B | R | Lr | C | Lc | Weight (g) |
|---|---|---|---|---|---|---|---|---|---|---|---|
| AGSE110 | 93.5 | 109 | 74 | 38 | 21 | 6 | 6.5 | 13 | 10.5 | 7 | 21 |
| AGSE130 | 117 | 137 | 93 | 41 | 26 | 7 | 8.5 | 15 | 13.5 | 8.5 | 34 |
AGS-AE (Self-extinguishing)
| Black | L | L1 | L2 | H | A | B | R | Lr | C | Lc | Weight (g) |
|---|---|---|---|---|---|---|---|---|---|---|---|
| Part Number | |||||||||||
| AGS110AE | 93.5 | 109 | 74 | 38 | 21 | 6 | 6.5 | 13 | 10.5 | 7 | 28 |
| AGS130AE | 117 | 137 | 93 | 41 | 26 | 7 | 8.5 | 15 | 13.5 | 8.5 | 50 |
| AGS150AE | 132 | 150 | 108 | 45 | 27 | 16 | 55 | ||||
| AGS200AE | 179 | 196 | 151 | 50 | 28 | 7.5 | 17 | 80 |
AGS-PP (Polypropylene plastic)
| Black | L | L1 | L2 | H | A | B | R | Lr | C | Lc | Weight (g) |
|---|---|---|---|---|---|---|---|---|---|---|---|
| Part Number | |||||||||||
| AGS110PP | 93.5 | 109 | 74 | 38 | 21 | 6 | 6.5 | 13 | 10.5 | 7 | 21 |
| AGS130PP | 117 | 137 | 93 | 41 | 26 | 7 | 8.5 | 15 | 13.5 | 8.5 | 34 |
| AGS150PP | 132 | 150 | 108 | 45 | 27 | 16 | 40 | ||||
| AGS180PP | 149 | 172 | 125 | 47 | 17 | 46 | |||||
| AGS200PP | 179 | 196 | 151 | 50 | 28 | 7.5 | 62 | ||||
| AGS260PP | 235 | 260 | 201 | 54 | 30 | 8.5 | 10.5 | 20 | 16.5 | 10.5 | 92 |
Technical Data
Operating Temperature
- AGS-AE: -30 to +150°C
- AGS/AGSE: -30 to +130°C
- AGS-PP: 0 to 100°C
Thermal and Electric Properties of Antistatic Type
| Type | Volume Specific Resistance | Surface Resistance |
|---|---|---|
| AGSE | 103 Ωcm | 103 Ω |
Mechanical strength
| Part Number | FH[N] | FV[N] | LH[J] | LV[J] |
|---|---|---|---|---|
| AGS110 | 3,500 | 2,500 | 15 | 8 |
| AGSE110 | ||||
| AGS110AE | 1,750 | 1,700 | 9 | 5 |
| AGS110PP | 1,700 | 1,300 | 8 | 3 |
| AGS130 | 4,500 | 2,500 | 20 | 13 |
| AGSE130 | ||||
| AGS130AE | 3,500 | 2,200 | 10 | 8 |
| AGS130PP | 2,000 | 1,500 | 4 | |
| AGS150 | 3,500 | 2,500 | 27 | 14 |
| AGS150AE | 3,000 | 1,800 | 12 | 8 |
| AGS150PP | 2,000 | 1,300 | 5 | |
| AGS180 | 3,000 | 2,600 | 27 | 15 |
| AGS180PP | 1,500 | 1,300 | 14 | 7 |
| AGS200 | 2,800 | 2,700 | 28 | 17 |
| AGS200AE | 1,400 | 2,100 | 20 | 13 |
| AGS200PP | 1,800 | 1,300 | 16 | 8 |
| AGS260 | 3,200 | 3,500 | 30 | 22 |
| AGS260PP | 1,600 | 1,700 | 17 | 11 |
Notes
Dimensions, such as mounting pitch, can deviate depending on temperature and humidity. (Deviated values can be adjusted in slightly warm water).
The material properties of the resin may degrade when used under high temperatures or high humidity conditions.
Tensile Stress

FH and FV values denote the average of breaking loads measured in a breaking test under normal working conditions.
Impact Strength

Denotes the average of breaking loads measured in a drop test with a load of 6.7N.
L(J) = P(N) × h(m)