PRODUCTS GUIDE ENGINEERING THERMOPLASTICS FLAME RETARDANT HIGH PERFORMANCE

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1 PRODUCTS GUIDE ENGINEERING THERMOPLASTICS FLAME RETARDANT HIGH PERFORMANCE

2 WHO IS LATI? LATI is a company founded in Italy in Since its foundation, it has been gaining a prestigious position in the field of engineering thermoplastic compounds in Italy and worldwide. In fact, LATI is: an independent compounder with the widest range of products in Europe; one of the most qualified suppliers of self-extinguising compounds in the world; a partner in the development of high performance customized special products. The company has two plants in Italy with a potential production capacity of 38,000 tons per year. LATI products are used in the main application fields, from automotive to precision mechanics, from household appliances to electronics, from medical to biobased applications. LATI s technical compounds are distributed in all major foreign markets through the company s own sales network. LATI s mission is to achieve customer satisfaction through a high technical content service ranging from the compound development to the support for the development of final projects according to customer s needs and with maximum flexibility. 01

3 SUPPORT & SERVICE LATI has been developing high-tech compounds during the last forty-year. New formulations are constantly being proposed to satisfy the requirements of many special applications. The introduction of high end materials has to be supported by a specific technical knowledge, accurate and complete, to be shared with Customers to market well designed and innovative projects. Today LATI provides a wide range of development services including co-design support, numerical simulation and training courses focused on materials and technologies. Fluid-dynamical simulations LATI engineers implement accurate rheological characterizations in finite element analysis software to study the whole moulding process, from the filling phase to deformation of moulded parts. Results of computer simulations provide solutions to improve molds performance, to modify geometry of parts reducing deformation issues, to fine tune injection parameters. Qualified by more than 20 years of continuous experience on the field, LATI engineers carry on CAE activity by the mean of state-of-the-art software and know-how. Structural analysis Computer aided simulations can be used as a reliable tool to investigate the performance of thermoplastic compounds in metal replacement activities. Thanks to a well trained scientific knowledge and a fully equipped laboratory, it is possible to evaluate the behavior of compounds in actual working conditions, including side effects of temperature, moisture, creep, etc. Data generated by experimental testing are forwarded to CAE stations where finite element analyses are performed on Customers projects to get indications about feasibility and reliability in time. Thermal analysis Benefits provided by thermally conductive compounds can be evaluated in all those applications where heat exchange plays a fundamental role. LATI can calculate the efficiency of polymer based heat exchanging devices, eg. in E&E industry, by the mean of FEAs promoting metal replacement and cost reduction activities. Technical courses Polymer specialists and Customers have to share their specific knowledge to market new compounds and winning applications. LATI can provide technical training courses, held in the company or to the Customer, focused on design of plastic parts and intended for engineers, technicians and designers. During LATI tech courses passion for plastic compounds meets seventy years of experience on the field. 02

4 Products guide Engineering Thermoplastics Flame Retardant High Performance LATI Industria Termoplastici S.p.A. Via F. Baracca, 7 I Vedano Olona (VA) Tel Fax marketing@it.lati.com

5 MATERIALS Latest updates on: FEATURES Physical Testing conditions Norms Units (SI) Density 23 C ISO 1183 g/cm³ Linear shrinkage at moulding* longitudinal 2 mm thickness - packing pressure: 60MPa transversal ISO % Moisture absorption 50% RH - 24h ISO 62-4 % Mechanical Notched CHARPY 23 C (sample 80 x 10 x 4 mm) -20 C ISO 179-1eA kj/m 2 Unnotched CHARPY 23 C (sample 80 x 10 x 4 mm) -20 C ISO 179-1eU kj/m 2 23 C 60 C Tensile elastic modulus 90 C 120 C 150 C ISO R 527 (1) MPa 23 C Tensile strength (at yield) 60 C 90 C 120 C 150 C ISO 527 (1) MPa 23 C Tensile strength (at break) 60 C 90 C 120 C 150 C ISO 527 (1) MPa 23 C Tensile elongation (at yield) 60 C 90 C 120 C 150 C ISO 527 (1) % 23 C Tensile elongation (at break) 60 C 90 C 120 C 150 C ISO 527 (1) % Thermal Coefficient of linear thermal expansion 20 C 100 C ISO x10-6/ C Continuous Use Temperature (CUT) continuous h LATI C Vicat - Softening point 49 N - 50 C/h ISO 306 C HDT Heat Deflection Temperature 0.45 MPa 1.82 MPa ISO 75 C Electrical Electrical resistivity (surface) ASTM D 257 ohm CTI - Comparative Tracking Index IEC 112 V Processing conditions Pre-drying temperature (at least 3 hours...) C Melt temperature C Mould Temperature C LATI s UL approvals Features a b c d e f g h i j k l m n Low smoke density and low toxicity index Low thermal expansion coefficient Electrically conductive High stiffness Halogen free Red phosphorous free PBB/PBDE free Very good aesthetics Very good impact resistance Very good chemical resistance Very high dimensional stability Very good thermal properties Tribological properties LATI s UL certified product

6 ENGINEERING THERMOPLASTICS AMORPHOUS ABS SAN PC PPOm PUR ABS/PC LASTILAC SP G/17 LASTILAC RT K/10 LASTIL G/30 LATILON 28D LATILON 28D G/20 LATILON 28D G/30 LATILON 28D K/20 LATILON 28D K/40 LARIL 13 G/20 LARIL 13 G/30 LASTANE 50 LASTANE 50 G/25 LASTILAC 10 LASTILAC 11 G/10 b c k a h i k a k a k a b c a b c b k b k i k b i h i k h k NR NR NR NR NR NR NR NR NR NR NR > > > > > > E n n n n AF PBB/PBDE and Sb 2 O 3 free H, H2, VH2 Heat stabilisation AG Chemically coupled HF Halogen free B Low viscosity K Carbon fibre C High viscosity KB, KB1 Red phosphorous CE, CER, CET, KC, MX, TR, T, TES Mineral filler KB3 Red phosphorous, suitable for warm & humid environments CP Special mineral filler KB4 Red Phosphorous, improved CTI CT1 Improved CTI L Oil stabilisation CT2 Improved CTI, PBB/PBDE free S Glass beads CT3 Improved CTI, halogen and red phosphorous free UV UV stabilization CT4 Improved CTI, low smoke density and low toxicity index V Flame retardant E, PX Improved impact resistance VH Glycol and hydrolisis stabilisation FE Magnetizable filler W Stabilisation for metal contact G Glass fibres V0E PBB/PBDE free 03

7 ENGINEERING THERMOPLASTICS SEMICRYSTINE PPh PPc POM LATENE 22H2 MX/25 LATENE 7H2W TR/40 LATENE 9H TES/30 LATENE AG7H G/30 LATENE AG7H K/30 LATENE AG7H2 G/50 LATENE AG9H MI/40 LATENE EP 22UVH2 MX/25 LATENE EP7 TES/30 LATAN 9 LATAN 13 G/30 LATAN 13 K/30 LATAN 13 S/15 LATAN 13 S/20 h k k b c b k h k k h m b c NR NR NR NR NR NR NR NR NR NR NR NR NR NR NR > > > >100 >100 > >100 >100 > >100 >100 > >100 > n n n n n * Values obtained according to ISO norm at the specified pressure. Actual shrinkage values may differ because of the design. 04

8 LATAN 13 S/30 ENGINEERING THERMOPLASTICS SEMICRYSTINE POM PBT PA6 LATAN 13E71 LATAN 2 LATAN 23UV LATAN 23UVE71 LATAN 3E71 LATER 4 LATER 4E61 LATER 4 G/20 LATER 4 G/30 LATER 4 G/50 LATAMID 6 BH LATAMID 6 E02 i h m h m i i h i b h i NR NR NR NR NR NR NR NR NR 38 NR NR NR NR NR NR 25 NR NR NR NR NR NR NR NR NR NR NR NR NR NR NR NR NR NR NR NR NR NR NR NR NR >100 >100 > > >100 >100 >100 >100 >100 >100 > >100 >100 >100 >100 >100 >100 >100 >100 >100 > >100 >100 >100 > >100 > >100 > n n n n AF PBB/PBDE and Sb 2 O 3 free H, H2, VH2 Heat stabilisation AG Chemically coupled HF Halogen free B Low viscosity K Carbon fibre C High viscosity KB, KB1 Red phosphorous CE, CER, CET, KC, MX, TR, T, TES Mineral filler KB3 Red phosphorous, suitable for warm & humid environments CP Special mineral filler KB4 Red Phosphorous, improved CTI CT1 Improved CTI L Oil stabilisation CT2 Improved CTI, PBB/PBDE free S Glass beads CT3 Improved CTI, halogen and red phosphorous free UV UV stabilization CT4 Improved CTI, low smoke density and low toxicity index V Flame retardant E, PX Improved impact resistance VH Glycol and hydrolisis stabilisation FE Magnetizable filler W Stabilisation for metal contact G Glass fibres V0E PBB/PBDE free 05

9 ENGINEERING THERMOPLASTICS SEMICRYSTINE PA6 PA66 LATAMID 6 H2 G/30 LATAMID 6 H2 G/35 LATAMID 6 CUVHPX10 G/35 LATAMID 6 H2 G/50 LATAMID 6 H2 G/65 LATAMID 6 H2E04 G/30 LATAMID 6 S/30 KELON B H CER/30 KELON B H CET/30 KELON B H CETG/300 E21 E21 G/15 E21 G/30 i b b d i h k k k h i i b i NR NR NR NR NR NR NR NR NR NR NR NR NR NR > >100 > >100 > >100 > >100 > n n n n n n * Values obtained according to ISO norm at the specified pressure. Actual shrinkage values may differ because of the design. 06

10 ENGINEERING THERMOPLASTICS SEMICRYSTINE PA66 E21 K/30 H2 G/25 H2 G/30 H2 G/35 H2 G/50 H2 G/60 H2 K/20 H2 K/30 H2 K/40 H2 K/50 S/30 H2E21 G/13 LH2 G/35 VH G/30 c b i b b b b b d b c b c d b c d b c d i b b E4 1E4 1E3 1E2 1E n n n n n n AF PBB/PBDE and Sb 2 O 3 free H, H2, VH2 Heat stabilisation AG Chemically coupled HF Halogen free B Low viscosity K Carbon fibre C High viscosity KB, KB1 Red phosphorous CE, CER, CET, KC, MX, TR, T, TES Mineral filler KB3 Red phosphorous, suitable for warm & humid environments CP Special mineral filler KB4 Red Phosphorous, improved CTI CT1 Improved CTI L Oil stabilisation CT2 Improved CTI, PBB/PBDE free S Glass beads CT3 Improved CTI, halogen and red phosphorous free UV UV stabilization CT4 Improved CTI, low smoke density and low toxicity index V Flame retardant E, PX Improved impact resistance VH Glycol and hydrolisis stabilisation FE Magnetizable filler W Stabilisation for metal contact G Glass fibres V0E PBB/PBDE free 07

11 ENGINEERING THERMOPLASTICS SEMICRYSTINE PA66 PA12 PA6.10 PA6.12 BLEND VH2 G/30 KELON A H CEG/40 LATAMID 12 CP/85 LATAMID 12 H FE90 LATAMID 12 H2 G/30 LATAMID 12H2 K/30 LATAMID SP1 LATAMID SP1 G/50 LATAMID SP2 H2 G/35 LATIBLEND 3675 G/10 LATIBLEND 6252 LATIBLEND 6252 H2 G/30 b b b c h b b b i b NR NR NR NR NR NR NR NR NR NR > > > > > n n n * Values obtained according to ISO norm at the specified pressure. Actual shrinkage values may differ because of the design. 08

12 FLAME RETARDANT AMORPHOUS SEMICRYSTINE ABS PC PPOm PPh LASTILAC AR G/17-V0E LASTILAC ARUV-V0 LASTILAC AR-V0E LATILON 28D-V0 LATILON 28D G/20-V0 LATILON 30D-V0 LATILON 30D G/10-V0 LARIL 13 G/10-V1 LARIL 13 G/20-V1 LARIL 13 G/30-V1 LARIL 13-V1KC LATENE 7 TR-V2 LATENE 7H2- V2HF LATENE 7H2W T-V0E e f g k h k e g k f a e f k a e f k a e f k a e f k b e f b e f b e f b e f k e f f g NR 40 NR NR NR NR NR NR NR NR NR NR NR NR >100 > > >100 > >100 > > >100 > n n n n n n n n n n n n n AF PBB/PBDE and Sb 2 O 3 free H, H2, VH2 Heat stabilisation AG Chemically coupled HF Halogen free B Low viscosity K Carbon fibre C High viscosity KB, KB1 Red phosphorous CE, CER, CET, KC, MX, TR, T, TES Mineral filler KB3 Red phosphorous, suitable for warm & humid environments CP Special mineral filler KB4 Red Phosphorous, improved CTI CT1 Improved CTI L Oil stabilisation CT2 Improved CTI, PBB/PBDE free S Glass beads CT3 Improved CTI, halogen and red phosphorous free UV UV stabilization CT4 Improved CTI, low smoke density and low toxicity index V Flame retardant E, PX Improved impact resistance VH Glycol and hydrolisis stabilisation FE Magnetizable filler W Stabilisation for metal contact G Glass fibres V0E PBB/PBDE free 09

13 FLAME RETARDANT SEMICRYSTINE PPh PPc PBT PA6 LATENE 7H2W-V0 LATENE 7-V2 LATENE AG3H2W G/30-V0E LATENE EP 7-V2 LATENE EP7- V2HF LATER 4-V0HF1 LATER 4 E61 GCER/450-V0 LATER 4 G/30-V0 LATER 4 G/30-V0HF1 LATER 4 G/30-V0CT2 LATER 4-V0 LATIBLEND 7587 E61-V0 LATAMID 6 H-V0 LATAMID 6 H2PX-V0 LATAMID 6 H2 G/20-V0 e f f g i e f e f f i f g e f g f g f b f i e f h k f g k f g NR NR 40 NR NR NR NR 75 NR NR NR 45 NR NR NR 30 NR NR NR NR 25 NR NR NR NR NR 20 NR NR NR NR > > > > >100 > >100 > >100 >100 4 >100 > >100 >100 7 >100 > >100 >100 >100 2 > >100 >100 >100 > > >100 >100 > n n n n n n n n n n n n * Values obtained according to ISO norm at the specified pressure. Actual shrinkage values may differ because of the design. 10

14 FLAME RETARDANT SEMICRYSTINE PA6 PA66 LATAMID 6 H2 G/20-V2HF e f g LATAMID 6 H2 G/30-V0CT1 f g LATAMID 6 H2 LATAMID 6 H2 G/30-V0HF1 G/30-V2HF e f g e f g KELON B FR H CET/30-V0 f g k KELON B FR H KELON B FR H2 KELON B FR CETG/250-V0 CE/25-V2HF H2 CEG/500- V0CT3 f g e f g b f H-V0 e f h k H2PX-V2 g i k H2PX-V0 g i k H2 G/25-V0CT1 H2 G/25-V0HF1 b b e f g H2 G/50-GWHF1 b e f g NR NR NR NR NR NR NR NR NR NR NR >100 >100 > >100 >100 > >100 >100 > n n n n n n n n n n n n n AF PBB/PBDE and Sb 2 O 3 free H, H2, VH2 Heat stabilisation AG Chemically coupled HF Halogen free B Low viscosity K Carbon fibre C High viscosity KB, KB1 Red phosphorous CE, CER, CET, KC, MX, TR, T, TES Mineral filler KB3 Red phosphorous, suitable for warm & humid environments CP Special mineral filler KB4 Red Phosphorous, improved CTI CT1 Improved CTI L Oil stabilisation CT2 Improved CTI, PBB/PBDE free S Glass beads CT3 Improved CTI, halogen and red phosphorous free UV UV stabilization CT4 Improved CTI, low smoke density and low toxicity index V Flame retardant E, PX Improved impact resistance VH Glycol and hydrolisis stabilisation FE Magnetizable filler W Stabilisation for metal contact G Glass fibres V0E PBB/PBDE free 11

15 FLAME RETARDANT SEMICRYSTINE PA66 PA6/ PA66 PA6.66 PPA H2 G/50-V0HF1 b e f g LATAMID 66 H2 G/25- V0KB b e g LATAMID 66 H2 G/25- V0KB1 LATAMID 66 H2 G/25- V0KB3 LATAMID 66 H2 G/25- V0KB4 H2 G/35-V0KB b g e e g e g b g e LATAMID 66 H2 G/35- V0KB1 b e g LATAMID 66 H2 G/35- V0KB3 b e g LATAMID 66 H2 G/50- V0KB1 b e g KELON A FR H2 CETG/300-V0 KELON A FR H2 CET/35-V2 B G/20-V B H-V0 f g f g e f e f h k LATAMID 68 H2-V0 e f k LARAMID G/30- V0HF1 e f g NR NR NR NR NR NR > >100 > >100 > >100 > n n n n n n n n n n n n n n n * Values obtained according to ISO norm at the specified pressure. Actual shrinkage values may differ because of the design. 12

16 HIGH PERFORMANCE AMORPHOUS SEMICRYSTINE PSU PES PPSU PPA LASULF LASULF G/15 LASULF G/20 LASULF G/30 LAPEX A LAPEX A G/10 LAPEX A G/20 LAPEX A G/30 LAPEX R LAPEX R G/10 LAPEX R G/20 a b h i k l a b k l a b k l a b k l a b h i k l a b h k l a b k l a b k l a b h i j k l a b h j k l LARAMID CE/60 LARAMID G/15 LARAMID G/30 a b j k l b l l b l NR NR NR NR 40 NR NR NR NR NR NR NR NR NR NR NR NR NR NR NR NR > > > > > > > > > > > > > > > n AF PBB/PBDE and Sb 2 O 3 free H, H2, VH2 Heat stabilisation AG Chemically coupled HF Halogen free B Low viscosity K Carbon fibre C High viscosity KB, KB1 Red phosphorous CE, CER, CET, KC, MX, TR, T, TES Mineral filler KB3 Red phosphorous, suitable for warm & humid environments CP Special mineral filler KB4 Red Phosphorous, improved CTI CT1 Improved CTI L Oil stabilisation CT2 Improved CTI, PBB/PBDE free S Glass beads CT3 Improved CTI, halogen and red phosphorous free UV UV stabilization CT4 Improved CTI, low smoke density and low toxicity index V Flame retardant E, PX Improved impact resistance VH Glycol and hydrolisis stabilisation FE Magnetizable filler W Stabilisation for metal contact G Glass fibres V0E PBB/PBDE free 13

17 PPA HIGH PERFORMANCE SEMICRYSTINE PPS LARAMID G/35 LARAMID G/45 LARAMID G/60 LARAMID K/40 HM LARTON CE/60 LARTON G/40 LARTON G/40 I6 LARTON GCE/600 LARTON GCE/650 LARTON GK/400 LARTON K/20 LARTON K/30 LARTON K/40 HM b l b l b d l b d l a b j k l a b j l a b j l a b j k l a b d j k l a b d j l a b c j l a b c d j l a b c d j l E1 1E3 1E2 1E n n n n * Values obtained according to ISO norm at the specified pressure. Actual shrinkage values may differ because of the design. 14

18 L-PPS HIGH PERFORMANCE SEMICRYSTINE PEEK LARTON L G/40 LARTON L K/20 LARPEEK 10 LARPEEK 10 G/30 LARPEEK 10 G/40 LARPEEK 10 G/60 LARPEEK 10 GCE/600 LARPEEK 10 K/20 LARPEEK 10 K/30 LARPEEK 10 K/40 LARPEEK 50 LARPEEK 50 G/30 LARPEEK 50 K/30 a b j l a b c j l a i j k l m a j l m a j l m a b d j l m a b j k l m a b c j l m a b c d j l m a b c d j l m a i j k l m a j l m a b c d j l m NR NR >300 >300 >300 >300 >300 >300 >300 >300 >300 >300 > >300 >300 >300 >300 >300 > >300 > >300 >300 >300 >300 > >300 >300 1E3 1E3 1E2 1E n Values shown are based on testing of injection moulded laboratory test specimens, conditioned according to the practice and represent data that fall within the standard range of properties for noncoloured material, if not otherwise specified. As they may be subject to variations, these values do not represent a sufficient basis for any part design and are not intended for use in establishing values for specification purposes. Properties of moulded parts can be influenced by a wide range of factors including, but not limited to, colorants, part design, processing conditions, post-treatment conditions, environmental conditions and usage of regrind during the moulding process. If data are explicitely explicitly indicated as provisional, range of properties has to be considered wider. This information and technical assistance are provided as a convenience for informational purposes only and are subject to change without notice. The customer shall always ensure that the latest release of technical information is at his own disposal. Lati S.p.A. extends no warranties or guarantee, including a warranty of merchantability of whatever use is made of the product, and make no representations as to the accuracy, suitability, reliability, completeness and sufficiency of the information provided, and assume no responsibility regarding the consequences of its use or for any printing errors. It is the customer s responsibility to inspect and test our products in order to determine to his own satisfaction whether they are suitable for his intended uses and applications or used in conjunction with third-party materials This application-specific analysis shall at least include preliminary testing to determine the suitability for the customer s particular purpose from a technical as well as health, safety, and environmental standpoint. Such testing has not necessarily been done by us as the manner in which the customer uses and the purpose to which utilises our products are beyond our control. Lati S.p.A. does not accept and hereby disclaims liability for, any damages whatsoever in connection with the use of or reliance on this information. No one is authorised to make any warranties, issue any immunities or assume any liabilities on behalf of Lati S.p.A. except in a writing signed by a specifically authorised Lati S.p.A. executive. Unless otherwise agreed in writing, the exclusive remedy for all claims is replacement of the product or refund of the purchase price at Lati s option, and in no event shall Lati S.p.A. be liable for special, consequential, incidental, punitive or exemplary damages. No information herein can be considered as a suggestion to use any product in conflict with intellectual property rights. Lati S.p.A. disclaims any liability that may be claimed for infringement or alleged infringement of patents. Unless specifically stated in writing, the products mentioned herein are not suitable for applications in the pharmaceutical, medical or dental sector, in contact with foodstuff or for potable water transportation. For any other issues Lati S.p.A. Conditions of Sales apply. Copyright LATI S.p.A LATI does not guarantee that the data contained in this list are current, complete and error-free. To double check the values, users are kindly requested to contact LATI Technical Assistance or commercial network. LATI Industria Termoplastici S.p.A. declines all responsibility arising from any use of the information described in this document. 15

19 STATUS OF LATI S UL APPROVALS LATI S.p.A. - updated - September 2015 file LATI: E QMFZ2, QMFZ8 UL FOOTNOTES (a) Indicates glass loadings from 1-30 percent (b) Indicates glass loadings from 6-34 percent (c) Indicates glass loadings from 5-30 percent (d) Indicates glass loadings from 1-29 percent (e) Indicates glass loadings from percent (f1) Suitable for outdoor use with respect to exposure to Ultraviolet Light, Water Exposure and Immersion in accordance with UL746C. (f2) Subjected to one or more of the following tests: Ultraviolet Light, Water Exposure or Immersion in accordance with UL 746C, where the acceptability for outdoor use is to be determined by UL Inc. (g) Indicates glass loadings from percent (h) Indicates glass loadings from percent (i) Indicates glass loadings from percent (@) All color except black (k) Indicates glass loadings from percent (l) Indicates glass loadings from percent (m) Indicates glass loadings from percent (n) Indicates glass loadings from percent (p) Indicates glass loadings from percent (q) Optional marking consisting of a generic indication of color (English or Italian) followed by an alphanumeric code (consisting of 4 digits and 1 letter) indicating color shade. (r) Optional marking consisting of an alphanumeric code (consisting of 1 or 2 letters followed by one number) referring to manufacturing process information. (s) Indicates glass loadings from percent (u) Recognition valid up to 50% regrind (1-30) indicates MFI from 1-30 g/cm 3 LATI Products listed in UL file E54080 meet US and Canadian requirements. R.T.I. H D G G Min UL 94 Elec Mech H H V 4 C W W Thk Flame With w/o W A T 9 T I F Product Material Colors mm Class Imp Imp I I R 5 I T I PA66 Latamid 66 (q) (r) 0.75 V Latamid 66 PX15 (q) (r) BK 0.86 HB HB Latamid 66 H2 G/25 (q) (r) 1.50 HB HB Latamid 66 H2 G/(g) (q) (r) (see notes) Latamid 66 H2 G/30 (q) (r) Latamid 66 H2 G/50 (q) (r) 0.75 HB HB HB HB HB ,00 HB HB HB HB Latamid 66 H2 G/60 (q) (r) NC,BK 0.75 HB HB Latamid 66 VH2 G/15 (q) (r) NC, BK 1.50 HB HB HB Latamid 66 VH2 G/(m) (q) (r) NC, BK 1.50 HB (see notes) 3.00 HB HB Latamid 66 VH2 G/25 (q) (r) NC, BK 1.50 HB HB Latamid 66 VH2 G/(n) (q) (r) (see notes) Latamid 66 VH2 G/30 (q) (r) Latamid 66 VH2 G/35 (q) (r) Latamid 66 VH2 G/(p) (q) (r) (see notes) Latamid 66 VH2 G/50 (q) (r) NC, BK NC, BK NC, BK NC, BK 0.71 HB HB HB HB HB HB HB HB HB HB HB HB HB HB HB Latamid 66 S/30 (q) (r) 0.75 HB HB Kelon A H CE/40 (q) (r) 1.50 HB HB NC 0.41 V Latamid 66 H-V0 (q) (r) 0.81 V V V Latamid 66 H2PX30-V0 (q) (r) 0.71 V

20 R.T.I. H D G G Min UL 94 Elec Mech H H V 4 C W W Thk Flame With w/o W A T 9 T I F Product Material Colors mm Class Imp Imp I I R 5 I T I 0.40 V NC,WT,RD 0.75 V BK 0.75 V NC,WT,RD 0.90 V Latamid 66 H2PX-V0 (q) (r) BK 0.90 V NC,WT,RD 1.00 V BK 1.00 V V V V V V Latamid 66 BH-V V V V V V Latamid 66 H2PX-V V V V Latamid 66 BG/20-V (q) (r) 0.75 V Latamid 66 G/20-V0 (q) (r) 1.50 V V V Latamid 66 H2 G/05-V0 (q) (r) 1.50 V V Latamid 66 H2 G/(b)-V0 (q) (r) (see notes) Latamid 66 H2 G/25-V0 (q) (r) Latamid 66 H2 G/35-V0 (q) (r) Latamid 66 H2 G/25-V0KB (q) (r) Latamid 66 H2 G/35-V0KB (q) (r) Latamid 66 H2 G/15-V0KB1 (q) (r) Latamid 66 H2 G/(h)-V0KB1 (q) (r) (see notes) Latamid 66 H2 G/35-V0KB1 (q) (r) Latamid 66 H2 G/50-V0KB1 (q) (r) Latamid 66 H2 G/25-V0KB3 (q) (r) Latamid 66 H2 G/35-V0KB3 (q) (r) NC, BK NC, BK NC, BK NC, BK, GY NC, BK 0.81 V V V V V V V V V V V V V V V HB V V HB V V HB V V V V V V V HB V V V V Latamid 66 H2 G/25-V0KB4 (q) (r) f1 BK 3.00 V V Latamid 66 H2 G/25-V0KB4 (q) (r) f2 BK 2.00 V V Latamid 66 H2 G/25-V0KB4 (q) (r) NC, BK 2.00 V-0,5VA V-0,5VA V Latamid 66 H2 G/25-V0KB4 (q) (r) 0.90 V NC, BK, 1.00 V GY, GN 2.00 V V NC 0.40 V V V V Latamid 66 H2 G/25-V0CT1 (q) (r) 2.00 V NC, GY 2.30 V-0,5VA V NC, GY 3.00 V-0,5VA dielectric strength = 13 kv/mm volume resistivity = 10x10^10 ohm-cm ball pressure test IEC = 165 C

21 R.T.I. H D G G Min UL 94 Elec Mech H H V 4 C W W Thk Flame With w/o W A T 9 T I F Product Material Colors mm Class Imp Imp I I R 5 I T I Latamid 66 H2 G/25-V0HF1 (q) (r) f1 BK 3.00 V V Latamid 66 H2 G/25-V0HF1 (q) (r) f2 BK 2.00 V V GY 0.50 HB V V Latamid 66 H2 G/25-V0HF1 (q) (r) 2.00 V NC, BK 2.00 V-0,5VA V NC, BK 3.00 V-0,5VA inclined plane tracking: 60 min at 1kV 0.75 V Latamid 66 H2 G/(35)-V0HF1 (q) (r) 1.50 V V V Latamid 66 H2 G/(g)-V0HF1 (q) (r) 1.50 V V V Latamid 66 H2 G/50-V0HF1 (q) (r) 1.50 V V NC, RD, BK 0.75 V Latamid 66 H2 G/25-V0CT4 (q) (r) 0.75 V V V Latamid 66 H2 G/25-V0HF (q) (r) 0.75 V V V Latamid 66 H2 G/20-V2 (q) (r) 1.00 V V V Kelon A FR H2 CEG/250-V0 (q) (r) 0.74 HB V V Kelon A FR H2 CETG/300-V0 (q) (r) 1.00 V V V V Kelon A FR H2 CET/35-V2 (q) (r) 1.50 V V V Kelon A FR H2 CER/25-V2HF 0.80 V V V PA66/6 Latamid 68 H2-V0 (q) (r) V V V dielectric strength = 13 kv/mm volume resistivity = 10x10^10 ohm-cm ball pressure test IEC = 165 C 0.75 V Latamid 68 H2-V0H (q) (r) RD, BK 1.50 V V-0,5VA V-0,5VA PA6 Latamid 6 (q) (r) NC, BK 0.75 V V Latamid 6 BH (q) (r) 1.50 V V Latamid 6 BH (q) (r) f1 BL 1.50 V V HB Latamid 6 H2 G/10 (q) (r) 1.50 HB HB HB Latamid 6 H2 G/30 (q) (r) 0.75 HB HB HB HB Latamid 6 H2 G/35 (q) (r) 1.50 HB HB HB Latamid 6 H2 G/(s) (q) (r) 1.50 HB HB HB Latamid 6 H2 G/50 (q) (r) 1.50 HB HB

22 R.T.I. H D G G Min UL 94 Elec Mech H H V 4 C W W Thk Flame With w/o W A T 9 T I F Product Material Colors mm Class Imp Imp I I R 5 I T I 0.71 HB Kelon B H CET/30 (q) (r) 1.50 HB HB Kelon B H CETG/300 (q) (r) 1.50 HB V Latamid 6 H2 PX-V0 (q) (r) NC 1.00 V V V V Latamid 6 H-V0 (q) (r) 0.86 V V V V Latamid 6 H2 PX-V V V V Latamid 6 G/20-V1 (q) (r) 1.50 V V Latamid 6G/(k)-V1 (q) (r) 1.50 V (see notes) 3.00 V Latamid 6 G/30-V1 (q) (r) 1.50 V V Latamid 6 H2 G/15-V0 (q) (r) 1.50 V Latamid 6 H2 G/(l)-V0 (q) (r) (see notes) 1.50 V Latamid 6 H2 G/30-V0 (q) (r) 1.50 V V Latamid 6 H2 G/20-V2HF (f2) (q) (r) 1.50 V V V Latamid 6 H2 G/(k)-V2HF (q) (r) 1.50 V V V Latamid 6 H2 G/30-V2HF (q) (r) 1.50 V V V Latamid 6 H2 G/30-V0CT1 (q) (r) inclined plane tracking: 65 min at 1.5 kv 1.50 V V WT 0.75 V Latamid 6 H2 G/20-V0HF1 BK 0.75 V WT, BK 1.50 V WT, BK 3.00 V V Latamid 6 H2 G/30-V0HF V V V V Kelon B FR H CET/05-V2HF (q) (r) 0.71 V V Kelon B FR H CET/30-V0 (q) (r) 1.50 V V V Kelon B FR H CETG/250-V0 (q) (r) 1.50 V V V Kelon B FR H2 CEG/500-V0CT3 (q) (r) 1.20 V V Kelon B FR H2 CE/25-V2HF (q) (r) 0.70 V V PPA Laramid G/30-V0HF V V PP Latene AG7H G/30 (q) (r) 1.50 HB Latene AG20H G/40 (q) (r) 0.75 HB Latene 9H TES/30 (q) (r) 1.50 HB Latene 7H2W TR/ HB Latene 7 T/40 GY HB Latene 22H2 MX/25 (q) (r) 1.50 HB HB Latene 9-V0 FE66 (q) (r) NC, BN 1.80 V Latene 7 TR-V2 (q) (r) 0.75 V Latene 7-V2 (q) (r) 1.50 V V

23 R.T.I. H D G G Min UL 94 Elec Mech H H V 4 C W W Thk Flame With w/o W A T 9 T I F Product Material Colors mm Class Imp Imp I I R 5 I T I 0.75 V Latene 7 H2-V2HF 1.00 V V V NC 0.55 V BK 0.45 V Latene 7H2W-V0 (q) (r) NC, BK 1.00 V V V Latene 1H2W-V0 (q) (r) 1.50 V V Latene (1-30)H2W-V0 (q) (r) (see notes) 1.50 V V Latene 30H2W-V0 (q) (r) 1.50 V V V Latene 7H2W T-V0 (q) (r) 1.50 V V WT, GY VA V Latene 7H2W T-V0E (q) (r) 1.50 V V-0,5VB V-0,5VB dielectric strength = 44 kv/mm volume resistivity = 10^16 ohm-cm Latene 7 T-V0 (q) (r) NC 1.50 V V Latene 7 G/25-V0 (q) (r) NC 1.50 V Latene AG3H2W G/30-V0 (q) (r) 0.89 V VA V BK, RD 0.75 V Latene AG3H2W G/30-V0E (q) (r) 1.50 V V-0,5VA Latene AG3H2W G/30-V0 (f2) (q) (r) BK Latene AG7H2 G/30-V0HF (q) (r) BK 1.50 V Latene EP 7-V2 (q) (r) 1.50 V Latene EP 3H-V0 (q) (r) YL 1.50 V ABS Lastilac SP G/05 (q) (r) 1.50 HB Lastilac SP G/ (c) (q) (r) (see notes) 1.50 HB Lastilac SP G/30 (q) (r) 1.50 HB Lastilac RT-HB (q) (r) 1.50 HB Lastilac RT S/20 (q) (r) 1.50 HB HB Lastilac AR-V0 (q) (r) 1.50 V VA Lastilac AR-V0E 1.50 V Lastilac ARUV-V0 (q) (r) 1.70 V V-0,5VA Lastilac TR1-V0 (q) (r) NC 1.70 V Lastilac AR G/(d)-V0 (q) (r) (see notes) 1.50 V Lastilac AR G/30-V0 (q) (r) 1.50 V Alloys Lastilac 11 G/10 (q) (r) NC 1.50 HB Lastiflex AR-V0 (q) (r) 0.71 V VA PS Lastirol R-V0 (q) (r) NC 1.60 V V Lastirol R-V2 (q) (r) NC 1.60 V Lastirol TR G/10-V1 ES (q) (r) NC 3.00 V V Lastirol TR G/10-HB ES (q) (r) NC, BK 1.50 HB PPOm Laril 13-V1 (q) (r) NC, BK 1.50 V Laril 13-V1KC (q) (r) GY 1.50 V V Laril 13 G/(a)-V1 (q) (r) (see notes) NC 1.50 V V Laril 13 G/20-V1 (q) (r) GY, NC, BK 1.50 V NC 6.00 V PC Latilon 24D-V2 (q) (r) V Latilon 26D-V2 (q) (r) V

24 R.T.I. H D G G Min UL 94 Elec Mech H H V 4 C W W Thk Flame With w/o W A T 9 T I F Product Material Colors mm Class Imp Imp I I R 5 I T I Latilon 28D-V2 (q) (r) V Latilon 30D-V2 (q) (r) V Latilon 28-V0 (q) (r) 0.89 V V Latilon 28D-V0 (q) (r) 0.89 V V Latilon 30-V0 (q) (r) NC 0.91 V V Latilon 30D-V0 (q) (r) NC 0.91 V V HB Latilon 28TF20:0079 (q) (r) NC 3.00 V V Latilon 28D G/(e) (q) (r) (see notes) 1.50 V V GN 0.60 HB Latilon 30D G/10-V0 (q) (r) 0.89 V V Latilon 28D G/20-V0 (q) (r) 1.50 V HB PBT Later 4 G/15 (q) (r) 1.50 HB HB HB Later 4 G/(l) (q) (r) (see notes) 1.50 HB HB HB Later 4 G/30 (q) (r) 1.50 HB HB Later 4 CE/50 (q) (r) NC 0.71 HB V Later 4-V0 (q) (r) 1.50 V V V Later 4 G/10-V0 (q) (r) 1.50 V V V Later 4 G/(i)-V0 (q) (r) (see notes) 1.50 V V V Later 4 G/30-V0 (q) (r) 1.50 V V V Later 4 G/30-V0CT1 (q) (r) NC 1.50 V V Later 4 G/30-V0CT2 (q) (r) 0.75 V V V Later 4 G/30-V0GW 1.00 V V V V V Later 4 G/30-V0HF V V V V Later 4E61 GCER/450-V0 (q) (r) GY 1.50 V V POM Latan 9 (q) (r) NC 1.50 HB Latan 13 S/30 (q) (r) 1.50 HB V PPS Larton G/40 (q) (r) NC, BK 0.75 V V V V Larton GCE/600 (q) (r) NC, BK 1.50 V V V Larton GCE/ V V Larton L G/40 (q) (r) NC 0.75 V PSU Lasulf (q) (r) 1.50 HB

25 R.T.I. H D G G Min UL 94 Elec Mech H H V 4 C W W Thk Flame With w/o W A T 9 T I F Product Material Colors mm Class Imp Imp I I R 5 I T I SPECIAL MATERIALS PA6 Latilub 62-01M G/30 (q) (r) NC 0.86 HB PA66 Latilub 66-20T G/20 (q) (r) 0.75 HB HB HB Latilub 66-01M (q) (r) NC 0.72 HB Latilub 66-01M G/(a) (q) (r) (see notes) NC 0.72 HB Latilub 66-01M G/30 (q) (r) NC 0.72 HB PA12 Latamid 12 H FE90:0081 (q) (r) NC, BK HB PC Latilub 87/28-20T (q) (r) NC, BK 1.50 HB V V Latilub 87/24UV-20T (q) (r) GY 0.75 HB Latilub 87/28-12T G/20 (q) (r) NC, BK PBT Latilub 75/4-05T G/30-V0 BK 1.40 HB V V HB V V dielectric strength = 30 kv/mm volume resistivity = 11x10^10 ohm-cm POM Latilub 73/13-20T (q) (r) NC, BK 1.50 HB Latilub 73/13-15T G/15 (q) (r) NC 1.50 HB HB PPS Latilub 80-15T G/30 (q) (r) NC, BK 0.74 V Latilub 80-10T G/40 Latilub 80-10T Y/15 NC NC 0.75 V V V V V PA/PP Latiblend 6252 H2 G/30 (q) (r) 0.75 HB PA6 Latiohm PD02 G/ HB PA66 Latiohm PD08 G/30 BK Latiohm PD01 G/25-V0CT1 PA6 Laticonther 62 GR/50 NC Laticonther 62 GR/50-V0 Laticonther 62 CEG/500-V0HF1 (q) (r) BK NC PC Latiohm 87/26-06 PD01-V1 BK 0.75 HB HB HB V V V HB HB V V V V V V V V V V REMARKS LATI does not guarantee that the data contained in this list are current, complete and error-free. To double check the values, users are kindly requested to contact LATI Technical Assistance or commercial network. LATI Industria Termoplastici S.p.A. declines all responsibility arising from any use of the information described in this document. 22

26 Special materials Special materials guide LATI profile LATI Thermoplastic industries profile Products guide Engineering thermoplastics flame retardant high performance Latilub Engineering polymers featuring low coefficient of friction and high wear resistance Metal replacement Hi-performance compounds, with high mechanical properties Laticonther Thermally conductive thermoplastic compounds Lati Pro-medical LATI range for medical applications Lati Compounds For water & food contact Copyright LATI S.p.A. - All rights reserved - Printed in Italy 11/01/2017 MKT004 Latigray Radiopaque thermoplastic compounds Latiohm Electrically conductive compounds [ ] LATI Industria Termoplastici S.p.A. - Via F. Baracca, VEDANO OLONA (VA) Italy Tel Fax marketing@it.lati.com

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