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AT2 Lite䪁䅉嫵㔏ᵧ-24嫮 䰡㙑 [AT2 Lite◿䅈.zip] CN-ᴮ㒈 ⪊㢃墂 ㏎ṝᶻ⍙墂㭃 1. 楽極⍗⻄杺⋕⺖⹒☯䗷㯔壃墀㭁䖃ₛ㘹楽極ᄕ䁦ȼ 2. ᴤ䢀恑⌍楽極⎋䒱↲楽極ȼ 3. ⋐䐞『⠕㓵漓嫶??c/u㒬䐴㶏ȼ ⳦ṝ䊰➄ 1. 嫶☧廛䢺ᶹ亣䖃ⷿ攓☹☯廚坋㱊嫔Ȼ㜠Ȼ嬂㑳ㄕ㏌ṛ漓䝭Ờṛᴙ∹⛞₄㓟㓟 ᶹ⍗⎋幥庅漓攱㩡弟ㄏᶹ⍗ḣᶠㄕ尡ᶦ㉞⠰ȼ 2. 嫶廛䢺ᶹ亣Ȼ䅱䑛Ȼ斛䞌䅨Ȼ䐴䶾㙅Ȼ槗㡻⠦⊥Ȼ㘹☹⋉Ỡ⋶❓䩈漓ᷤ⁌彬⋖Ỡ ⋶ᇝ漓⏌ṛᴙȼ 3. 嫶⇾☧⠦旧Ȼ⠦旽Ȼᴊ早Ȼᅤ时Ȼ擩䐴⋉⠦柍䩈㚀䧮⠨㬓ᴊṛᴙȼ ㏎ṝ壅刄 1. 楽極⍗☧㑳ᴩ楽極廆䤊ᴬ⻄杺⪝㓵䗐㊦ṛᴙ䆵一漓䝭Ờ俼⠞⋉㓵廚坋ᶹⳤ枃ȼ 2. ㌬幼㘫䯺䷞䖃幥庅☧⁰归峮ㄕ⁰☹ᆵ坋極㓵漓↠⻄ᶹⳤ楽極ȼ 㟁㛦ᶌ杺 1. 䝭Ờ⠨䶾Ȼ壑ⶥḟ〞╧⪈埄㩢ⴷȼ⢁㘈䣺↧漓嫶㜠⌍₌Ṿ䐧ȼ 2. 䝭Ờᆵ㘈廝㊤䶾丅䆵一兮⡼ȼ凤䶾丅㉞♎漓嫶Ὓ㩡Ṿ䐧㗳㉡㒯䶾丅ȼ ⁷ᷗ㯩【ᶌ杺 1. 嫶⇾僩坋㇅≷㘫ᶦ⏀漓ᷤ⁌⏌Ờử㘌↠ȼ 2. ◟ᴌ⋮㆖↚漏时Ȼ槗⊊Ȼ䞯㎝䩈漐⫻僳媽⠆㉞♎䖃漓ᴌ⭝ᶍ㘫⋷⁌尸䷳ử刂 ◳ȼ 3. 㘫ᶦ⏀㐮(ᄀ) 9-36V 庒䐴⊊ȼᴹ嫤ᶦ⏀aʾ䐴㓵漓嫶㯧『aʾ䐴墀㭁ȼ 䝭᷷䷀㙠廟㊦ ◽ 1 1. 䐴㶏彡䶾 2. ᴺ䶾㙞 3. GNSS㊤㐵㘹䶾㙞 4. 壑ⶥḟ〞╧䷃᷵ 5. 䐴⋯⠨䶾 ㋑㇓GNSS㊤㐵㘹㋑⠳㓵漓嫶㯧『⌍䗕嚹㫌㔮⌥ℯṌ漢 攱⬗攱㬳子俼晝㬷ᵄ㘈㑇漓⋮俼ḙ斎䘿㓵擳㊧䣺ㄕⳤṛ䊮➂⋗∕伋 ⸰ȼ 1. 㘫ᄎ₋ᆵ㘈₄⪸䖃䅇㙂⹑ᴯ䒅㕹俼ᆵ㘈漓ᴤ䢀᷺ᷤṔ⸎廚坋⠌אȻ㍗⹔Ȼ⠌䐧Ȼ 幫幼䩈ȼ 2. 㘈⪈埄ȻṾ䐧⋉↞俼㗳㒯䖃嫥䷅Ỡ矢漓嫶䕺⹔⪗乐㛤攄ɃAT2 Lite僩↧楽極䯺 ䷞幮᷵Ṿ䐧嫳㔍ᵥɄ⎋ɃAT2 Lite僩↧楽極䯺䷞䝫᷵⪈埄嫳㔍ᵥɄȼ 3. ⪗乐☯☿漡www.fjdynamics.com 4. ⋷☯☿漡㳰☲ⴁ≖⭰∹䮣㱶坖归槗㒯∹䠽∹槗㒯≖ᵜ归61⋶≪㔞⠦⊥1709 (㳰 ☲ⴁ≖⭰∹塾ᴼ㙽䕼峮1026⋶≖䨫ᶋⳤᴙ◬13㜊4-5⭁漓2㜊4⭁) 幰᷷嫵㔏 ⪊埆嬄嫖 弈嫬壿→㯧₋䕺⹔尥ᆭ→❪ₘ⪈埄Ỡ矢→㤠⸎弈→廝㊤⫻→廝㊤Ỡ⋶㶏→劶 ⋕儩⌐壑→媽乭幥庅⋁㑯→㜠壑ⶥḟ〞╧→㑳幥㜆⪙→㘹⁶㜠→⪋ㄏ⪈埄嬂嫔ȼ ⿰⫽廟㊦ 1. 㾸 “ 媽⠆媽乭 -WLAN 媽⠆廝㊤ ” 漓廚廝㊤杴晡ȼ ◽ 7 2. 䯺䷞⬅僩↧ⷿ⌮叜䅘㌛䰡⫻媽⠆ȼ嫶☧媽⠆No坧ᴬ弈長䖃⫻ SN ȼ ◽ 8 3. 弈⫻媽⠆⌍漓䯺䷞⬅僩↧廚坋廝㊤ȼ 4. 廝㊤ㄏ↞⌍漓叜䅘廝㊤⬅僩↧擬漓䯺䷞旿⪙㓵擳⪋ㄏ弙Ỡℜ⣊∕ȼ ◽ 9 Ợ⋸㶑廟㊦ 廚勛≔No坧漓㾸“媽⠆媽乭”ᴬ䖃“䛪㩢Ỡ⋶㶏”漏Correction Source漐漓廚Ỡ⋶㶏 廝㊤䑋晡ȼ ◽10 ◽11 乒䷝RTK Ntrip廝㊤漡庒“⛞⌌”⎋“䧮⋢”漓㾸“劶⋕冁㾸”漓Ỡ⋶㗿⸹䖃䧮⋢⬅僩↧㔽䠹☧“冁㾸” ᴬȼ 劶⋕冁㾸⌍漓庒“尥⋶”⎋“⫅䜀”ȼ㾸“廝㊤”漓≲⋮廝㊤僲⫸ⶓ䖃乐䷛RTKȼ ◽12 ⛻䧚RTK 1. ⫸析䜀⫸析漡嫶ⷿ⌮䣺↧⛹䧘媽⠆⌍漓㾸⭎ⵔ“⫸析䜀⫸析”漓庒ᆵ旿廝㊤⛹䧘 䖃⫸析䜀ȼ漏⫸析䜀䖃庒壃℘嫶嫥壀⛹䧘Ṿ䐧嫳㔍ᵥ漐ȼ ◽13 2. 析㾸⫸析漡嫶ⷿ⌮䣺↧⛹䧘媽⠆⌍漓㾸⭎ⵔ“析㾸⫸析”漓庒ᆵ旿廝㊤⛹䧘䖃析 㾸ȼ漏⛹䧘䖃析㾸庒壃℘嫶嫥壀⠦↞䊆⛹䧘Ṿ䐧嫳㔍ᵥ漐ȼ ◽14 3. Ỡ归⫸析漡ⷿ⌮䣺↧⛹䧘漓㾸⭎ⵔᴉ䖃“Ỡ归⫸析”漏Pairing via Channel漐漓弈 Ỡ归Ȼ㯡䅸䊆⎋㓟䶾䐴弙Ỡ≎媭≲⋮廝㊤⛹䧘漏䗷⋁㑯媽乭䖃嫥䷅㏌ṛ嫶⋁伂⫸ⶓ ⛹䧘嫳㔍ᵥ漐ȼ ◽15 4. 弙䐧⫸析漡ⷿ⌮䣺↧⛹䧘漓㾸⭎ⵔᴉ䖃“弙䐧⫸析”漓庒⫸ⶓ䖃析䊆Ȼ㯡䅸䊆⎋ 㓟䶾䐴弙Ỡ≎媭≲⋮廝㊤⛹䧘漏䗷⋁㑯媽乭䖃嫥䷅㏌ṛ嫶⋁伂⫸ⶓ⛹䧘嫳㔍ᵥ漐ȼ ◽ 16 SBAS SBAS 廝㊤漡☧㔞⛹➝⸹䯺䷞漏 SBAS 漐ᴬ㾸⫸ⶓỠ归廚坋廝㊤ȼ㔞⛹➝⸹䯺䷞ 漏 SBAS 漐⪋ㄏ恌乭㐵㑚⌍漓㒸⋮ⷿ⣊ṛᴙȼ⢁旿c/u㉡僲⁵ᷕ㔞⛹➝⸹䯺䷞漏 SBAS 漐 Ỡ⋶㶏漓㾸䗭㜆Ỡ⋶㶏漓☧⸸䦖⋢ᴬ㾸 “ 䝭⪙ ” ≲⋮ȼ 廝㊤ㄏ↞⌍漓⋲ᴉ壑䖃Ỡ⋶㶏◽㜆⬅⋗ᴹ S00-S20 ȼ ◽ 17 PPP PPP廝㊤漡☧PPPᴬ㾸⫸ⶓỠ⋶㶏廚坋廝㊤ȼPPP⪋ㄏ恌乭㐵㑚⌍漓≲⋮ⷿ⣊ ṛᴙȼ廝㊤ㄏ↞⌍漓⋲ᴉ壑䖃Ỡ⋶㶏◽㜆⬅⋗ᴹPȼ ◽18 枅⠈ṝᴛ 1. 䝭媣Ⳮc/oỠ⋶㶏廝㊤漡ⷿ⣊ṛᴙ⅌漓嫶䝭媣䛪㩢Ỡ⋶㶏廝㊤䆵一ȼ ◽19 2. 劶⋕⹒⅌儩⌐漡䝭媣Ỡ⋶㶏廝㊤⌍漓⌐⅌坋極䗳僲儩⌐䝭⪙漏㫎㨠ⷿ㘹᷄旿㏌ṛ 㨠漐ȼṾ⭎ⵔᴉ幥㤠⹒⅌儩⌐ᴍ幥庅⪝敄坋極㒸⌐僳ȼ ◽20 3. ℚⷹㄕ弈庸䑋/⛹䶾漡⋮☧ᴺ䑋晡㾸“㳺↟”ℚⷹ庸䑋⎋⛹䶾漢ㄕ㾸“c/u㉡” ⻪㉶c/u㉡⳱㘈䖃庸䑋⎋⸔⫻䶾ȼ ◽21 4. ⷿ⣊ṛᴙ漡⫻⛹䶾⌍漓≲⋮ⷿ⣊ṛᴙȼ ◽22 5. ☧ᴺ䑋晡ⶔ忧”㢁壇“ᴬ⋮ᷤ㛤䘊᷺↠恌乭ㄕ㑳Ṓc/u㉡䐯♖Ȼ庸䑋Ȼ⛹䶾Ȼ᷺↠⎋ 㘹⁶ȼ ◽23 ⛻䷀㤢⸐ 廚⛹䶾ℚⷹ䖃㱀䤊⌍漓旿墀??弈⪙⛹䶾䭺⚊ȼ⹒⅌⋮弈漡AB䗳䶾ȻA+䗳䶾Ȼ 㗱䶾⎋★㗱䶾ȼ 1. AB䗳䶾漡弙廆䝭⪙AȻBᴣ㾸Ṍ乭䷗א⛹䶾漓弁䐧ᶍ壃℘䐯♖ȼ 2. A+ 䗳䶾漡弙廆䝭⪙ A 㾸Ṍ乭⎋⛹䶾㒸⌐䷗א⛹䶾漓弁䐧ᶍ⠦⚊䐯♖⎋≎⌋ṛ ᴙȼ 3. 㗱䶾㤠漡坋極廆䤊ᴬ弙廆 AB 㾸䷗א㗱䶾⛹䶾漓弁䐧ᶍᴌ壃℘䐯♖ㄕ䅸㪉☯ȼ 4. ★㗱䶾漡弙廆䷗א㪴 AB ★⸦䝭⪙⛹䶾★⻂⎋≉⺃漓弁䐧ᶍṾ䐧ᴬ⻂㚡平㽋㶈 䯺䷞䖃䐯♖ȼ ◽ 24 䗳䶾Ȼ A+ 䶾Ȼ㗱䶾Ȼ★㗱䶾 ṝᴛ䑍晣 ◽ 25 1. 䣺峜䢺漡⪝㓵㔽䠹⹒⅌ṛᴙ䗷⫸⛹䶾䖃䣺峜䢺ȼ 2. Ỡ⋶廝㊤鹵₴漡⋮㛤䘊⹒⅌䖃≪㔞Ȼ䛪㩢Ỡ⋶廝㊤鹵₴䩈 3. ⪝㓵ṛᴙỠ矢漡᷍⳥ℯ⋲ẜ㨠㔮幥庅⹒⅌ᆵ☧⛹䶾ⶎ⋶Ȼ䐯♖彡晡䣮Ȼ⳱ṛᴙ 晡䣮⋉ṛᴙ晡䣮⪋ㄏ䊆Ȼṛᴙ㑇䊆⎋⪝㓵弞ⶥȼ 4. 壅壑c/u㉡(ᄌ)掭漡㾸⋮c/u㉡2D⎋3D壅壑ȼ 5. 嬂嫔漡䐧ᆭ⋮☧ᴺ杴晡⻪弞媽乭䯺㑯ȼ 6. 䆵一(ᄌ)掭漡㾸⋮㔽䠹䯺䷞⹒⅌⪝㓵䆵一Ỡ矢ȼ 7. 㜆媯䐯⠳(ᄌ)掭漡⹒㮠㘈媽乭䐯♖庸䑋㓵漓⋮ᷤ☧䐯♖ᴣ䧮㜆媯䐯⠳Ṍ乭漏僲⬐䗷 峜50䭲漐ȼ⹒⻪墀ℯ庽䐯⠳㓵漓䯺䷞ḙ⋐枃婥ȼ 8. 䣺⛹䶾(ᄌ)掭漡㾸䣺⹒⅌⛹䶾僲幥嶪Ṍ乭ㄕ⳥⋲䣺◹⪙峜䢺ȼ᷄⋮☧ ᄎ↧楽極㓵㏌ṛȼ 9. 勛≔(ᄌ)掭漡㾸廚媽⠆媽乭Ȼ䐯♖䪠䌅Ȼ弙䐧媽乭Ȼⶓ䐧ᴬ⻂⎋䯺䷞媽乭ȼ 10. 㢁壇(ᄌ)掭漡㾸㛤䘊ㄕc/u㉡᷺↠恌乭ȼc/u㉡䐯♖Ȼ庸䑋Ȼ⛹䶾Ȼ᷺↠ㄕ㘹⁶ȼ 11. 㳺↟庸䑋/⛹䶾(ᄌ)掭漡㾸㳺↟㒯䖃庸䑋ㄕ⛹䶾ȼ 12. c/u㉡庸䑋/⛹䶾(ᄌ)掭漡㾸c/u㉡庸䑋ㄕ⛹䶾ȼ 13. ṛᴙ媯⹔(ᄌ)掭漡㾸⋮c/u㉡⋮c/u㉡ṛᴙ媯⹔䖃䆵一ȼ 坧䠹㩢☧媯⹔⹒ᴊṛᴙ㑯㉭ȼ 坧䠹ᴌ媯⹔⹒ᴊṛᴙ㑯㉭ȼ 14. 僩↧楽極(ᄌ)掭漡㾸⋮☧ᄎ↧楽極㤠⸎⎋僩↧楽極㤠⸎ᵊ擳c/u㉡ȼ 坧䠹⠃ᶍ僩↧楽極㤠⸎ȼ 坧䠹⠃ᶍᄎ↧楽極㤠⸎ȼ ᶨ⏂壅㜽 ⶎ ⋶ 忧᷵ 壃㜻⋁㑯 1 ㊦א䷇䧮 ⬹⫷漡251×170×17漏mm漐漢 ⭎ⵔ漡10凰⫷ c/o座䊆漡1280×800漢 廏坋₄⩗漡4GB ⩗ᾧ₄⩗漡64GB aʾ䐴䐴⊊漡5V 2A DC漢 ㊤㐵Ỡ⋶漡4GỠ⋶ ⳤṛ㴨ⶥ漡-10ć~+45ć ⩗ᾧ㴨ⶥ漡-20ć~+70ć 㓟䶾弙Ỡ漡2.4GHz Wi-FiȻ叜䅘5.0 2 GNSS㊤㐵㘹 析㪴漡GPS L1/L2/L5ȻGLONASS L1/L2Ȼ∖㒖 B1/B2/B3ȻḼℨ䑤E1/E5bȻSBAS ⳤṛ䐴⊊漡 9 V–36 V DC ⳤṛ䐴㱀漡<300mA ⬹⫷漡162×78漏mm漐 ⳤṛ㴨ⶥ漡-20ć~+70ć ⩗ᾧ㴨ⶥ漡-40ć~+85ć 攱ㆣ䩈䶦漡IP67 ㊤⋢漡1ᴩTNC㊤⋢Ȼ1ᴩType-C㊤⋢ 3 䐴↧㒸 ⌐䗗 幫⌐䐴 㘹 aʾ䐴䐴⊊漡 12 V/24 V DC ⯯Ἳᇗ䛨漡 20Nm 攱ㆣ䩈䶦漡 IP65 冰搭⡖ ⠙䣌⬹⫷ ⁎尤⟱㔏 長尬ᵯ䖃ᶦ⏀Ȼ㘌↠ㄕ↞俼⋖⑅ᴙ⌇⌋⎋㙠㨽䖃䶥㙞ȼ㘫嫳㔍ᵥᴬ㋏⋉䖃㛏ᶚᶦ⏀Ȼ 㘌↠ㄕ↞俼⋮俼ᴌ☧長䖃尬ᵯㄕṾ䐧刂◳₄ȼ散⌇⌋⋥㘈壃⪙⠕漓ᴯ䒅㕹俼⫸㘫嫳㔍 ᵥ䖃₄⪸ᴌṛ᷺Ṕ㔍䠹ㄕ㖖䠹䖃⟯㔍ȼ 㘫嫳㔍ᵥ⋮俼ḙ◟ᶦ⏀≆䶦ㄕ⁵ᷕ⊞◟伋㗳㒯漓ᴯ䒅㕹俼Ờ䑘ử㐸㘫嫳㔍ᵥ䖃㙂ℨ漓 水ᴌ⋥坋弙䛤ȼ 㘫嫳㔍ᵥ᷄ṛᴹṾ䐧(ᄉ)⫻漓ᴯ䒅㕹俼⳱⬼c/u↩↚Ờ嫀㘫嫳㔍ᵥᴬ䖃Ỡ矢䖃䝭子⎋ ⋮晟子漓ṅ㓟㯔䝭Ờ⪋㮠㘈搘嫮ㄕ彖㸎ȼ㘫嫳㔍ᵥᴬ䖃ᆵ㘈Ỡ矢ᵞᴌ㚃ㄏ᷺Ṕ㔍䠹 ㄕ㖖䠹䖃㇄Ờȼ 1. TW-ᴮ㒈䵂Ṕ ⪊㢃墂 ㏎ṝᶻ⏢墂㭃 1.棔棚ᶹ⏠⻄朇䉱⺖䑵☯㘈擛墎⪙ᴬ墀㭁(ᄀ)㘈䖃庱㥞棔棚⛶䁦ȼ 2.䢀㩡柱恑Ȼ䒱⇝棔棚ȼ 3.䑵䕻䐞『⠕㕁漓姊??c/u㒶旺㶏撊擛ȼ ṝ㡮䎱➄ 1.姊☧彟旡ᶹ亣䖃撊擉✳☯弱坋㴫奥Ȼ㜠㶕Ȼ妾㑳ㄕṛ㡬漓䞹Ờṛ㡬∿⛞䀠ᴌ䗷 䖃ᶹ⏠儆巉帚漓ᷤ攱㩡ᶹ⏠⋖ᾶㄕ宠䐡㌌⠰ȼ 2.姊彟旡ᶹ亣Ȼ䅱䑛Ȼ斛䠘䅨Ȼ旺䳙Ȼ槗⠦ⷹ䫈䅨Ȼ㥞✳⎋Ỡ啞䕻⬃❓䩈ȼᷤ⁌30日 Ỡ啞漓曾ṛ㡬ȼ 3.姊⇾☧⠦旧Ȼ⠦昦Ȼᴊ早Ȼ时旺Ȼ⠦枧䩈㡴䧮⠨㬢ᴬṛ㡬ȼ ㏎ṝ墐䫅 1. 巉帚棔棚䤊朇㘈棔棚⏠⫥㕁䗢㊦ṛ㡬䆿㯀漓䞹Ờ俼⠟⋉㕁ᶹⳤ᷊ȼ 2. 䑵㌬师㘫䯺䱰䖃巉帚☧⁰归峮ㄕ⁰✳ᆵ坋棚㕁漓姊⇘⻄ᶹⳤ棔棚ȼ 㦣㛦 1. 䞹Ờ⠨䳙Ȼ壑ⶥᾲ〞╧⪈埜㩢ⴷȼ⢁㘈䣺⇔漓姊㜠⺋₌Ṿ䐧ȼ 2. 䞹Ờ⌃弢㊤䳙䶛⪋⡼ȼ⢁㘈䜳㌌漓姊Ὓ㩡Ṿ䐧ᴥ㗳㋚㒯䳙䶛⺋₌Ṿ䐧ȼ ⁷ᷗ 1. 姊⇾僩坋㇅≷㘫䐡⏀⠕㪻漓ᷤ⁌曾Ờử㘌⇘ȼ 2. 夬ᾘ◟ᴌ⋮㆖↚漏时㏉Ȼ槗⟒Ȼ䞯㎝䩈漐㌌⟝漓ᴌ⭫㒻㘫⋷⁌宺䲬ử䫃☌ȼ 3.䐡⏀㐮(ᄀ)9-36V帷,䱥㘫䐡⏀aʾ旺㕁漓旿㯧『夬ᾘaʾ旺墀㭁ȼ 䝭᷷䳛㙠弤㊦ ☕1 1. 旺㶏∮㱀㊑ 2. ᴺ䳙㙞 3. GNSS㊤㐵㥞䳙㙞 4. 壑ⶥ〞㴫╧䱃᷵ 5. 旺價⠨䳙 ㋑㇓GNSS㊤㐵㘹㋑⠳㓵漓嫶㯧『⌍䗕嚹㫌㔮⌥ℯṌ漢 攱⬗攱㬳子俼晝㬷ᵄ㘈㑇漓⋮俼ḙ斎䘿㓵擳㊧䣺ㄕⳤṛ䊮➂⋗∕ 伋⸰ȼ 1. 㘫妩㔍㗷ᴬᆵ㘈⪸䖃䅇㨉㩷孏䒅㕹俼ᆵ㘈漓䢀㩡᷺Ṕ⸎䖃堆אȻ㍗戃Ȼ惌䐧Ȼ 仺≯䩈ȼ 2. 擛㒻⪈埜⎋Ṿ䐧䖃奲䰯妩㔍Ỡ矢漓姊☧⪗䲱㛤奡ɃAT2 Lite僩⇔棔棚䯺䱰州᷵Ṿ 䐧妩㔍㗷Ʉ⎋ɃAT2 Lite僩⇔棔棚䯺䱰䝫᷵⪈埜妩㔍㗷Ʉȼ⪸⢁㘈㗳㒯漓水ᴌ⋥坋弙 䛤ȼ 3. ⪗䲱☯☿漡www.fjdynamics.com 4. ⋷☯☿漡㳰☲ⴁ≖⭰∿䮴㱶坖归槗㒯∿䠽∿槗㒯≖ᵜ归61啞坚㔞❓㤒1709 漏㳰☲ⴁ≖⭰∿塾涖㙽䕼峮1026啞≖Ⱆ䨫ᶋⳤ㡬☑13㟞4-5⭣2㟞4⭣漐 巠᷷Ẁ䐩妫㔏 ⪊埞姀奧㱂䤌 彷㏆妝壿 → 夺₉ᴥ䕺ⴲ啞 → ❪⫪⪈埜密変 → 㤠⸎彷㏆ → 弢㊤ぢ⬍ → 弢㊤変啞㶏 → ⋕ ⺖儩⌐壑 → 夬⪙巉帚⋂㑷 → 㜠㶕壑ⶥ〞䛤╧ → 㑳巉㤘⪙ → 㥞⁶㜠㶕 → ⪋ㄏ⪈埜妾奥ȼ つ⬏弤㊦ 1. 淝彷 “ 埜乭夬⪙ -WLAN 埜乭弢䳙 ” 漓弱弢䳙最晡ȼ ☕ 7 2. 䯺䱰⬆僩⇔撊哌䅘ᴥ㌛⬊ぢ⬍夬ᾘȼ姊☧夬ᾘ㴄(r)ᴬ彷㏆長䖃ぢ⬍SNȼ ☕8 3. 彷㏆ぢ⬍夬ᾘ⺋漓䯺䱰⬆僩⇔弱坋弢㊤ȼ 4. 弢䳙ㄏ↞⺋漓哌䅘弢䳙⬆僩⇔擛撈漓䯺䱰旿⪙㕁撒⪋ㄏ弙変ℜ⣊∕ȼ ☕9 弤㊦Ợ啠㶑 ☧彷(r)㴄(r)䖃夬ᾘ夬⪙ᴬ淝㏉“䛮㩢Ỡ啞㶏”漓弱Ỡ啞㶏弢㊤᷊晡ȼ ◽10 ◽11 䲳䱢RTK Ntrip弢㊤漡帷“⛞⌌”⎋“䧮⋢”漓淝㏉“䉱⋕䪿淝”ȼ䪿淝ᴬ㘂僩⇔杮䠹Ỡ啞㗿⸶䖃䧮⋢ȼ 䉱⋕䪿淝⺋漓☧“ⴲ啞”⎋“⫅䞻”ᴬ帷長䖃ⴲ啞Ỡ矢ȼ淝㏉“弢㊤”漓弢㊤ℯ䗷ト䖃䲱䱠 RTKȼ ◽12 ⛻䧚RTK 1.⬌机䞻⬌机漡姊撊䣺⇔⛹䧘夬ᾘ⺋漓淝㏉⭎ⵔ“⬌机䞻⬌机”漓帷ᆵ旿弢㊤⛹䧘䖃 ⬌机䞻ȼ 漏⬌机䞻䖃帷墎ⅆ姊奲墊⛹䧘Ṿ䐧妩㔍㗷漐ȼ ◽13 2. 机淝⬌机漡姊撊䣺⇔⛹䧘夬ᾘ⺋漓淝㏉⭎ⵔ“机淝⬌机”漓帷ᆵ旿弢㊤⛹䧘䖃机 淝ȼ 漏⛹䧘䖃机淝帷墎ⅆ姊奲墊⠦↞䊆⛹䧘Ṿ䐧妩㔍㗷漐 ◽14 3. 机归⬌机漡撊坋⇔⛹☯⋯漓淝彷嚡ⵔᴉ䖃Ʌ机归⬌机Ɇ漏 Pairing via Channel 漐漓 彷㏆机归Ȼ㯡䅸䊆⎋䀠䳙旺弙変≓⪙≲⋮弢㊤⛹☯⋯漏䗷擛⋂㑷夬⪙䖃奲䰯㏌ṛ姊⋂ 伂⬌ト⛹☯⋯妩㔍㗷漐ȼ ☕ 15 4. 弙䐧⬌机漡撊坋⇔⛹☯⋯漓淝彷嚡ⵔᴉ䖃 “ 弙䐧⬌机 ” 漓帷⬌ト䖃机䊆Ȼ㯡䅸䊆 ⎋䀠䳙旺弙変≓⪙≲⋮弢㊤⛹☯⋯漏䗷擛⋂㑷夬⪙䖃奲䰯㏌ṛ姊⋂伂⬌ト⛹☯⋯妩㔍 㗷漐ȼ ☕ 16 SBAS SBAS 弢㊤漡淝㏉ SBAS ᴬ旿墀弢㊤䖃Ỡ啞㶏漓䑵 SBAS 㓀杮䠹 “ ⳱弢㊤ ” 漓≲坧䠹弢 ㊤ㄏ↞ȼ 凤旿墀c/u㋚SBAS㶏漓ⅆ淝㏉䗭㤘Ỡ啞㶏漓☧⹇䦖ᴬ淝㏉䞹妌ȼ 弢㊤ㄏ↞⺋漓⋲ᴉ壑Ỡ啞㶏☕㤘媉㾹S00-S20ȼ ◽17 PPP PPP弢䳙漡☧PPPᴬ淝彷⬌ト変啞㶏弱坋弢䳙ȼ PPP⪋ㄏ恌乭ᴥ㐵㒁⺋漓≲⋮撊⣊ ṛ㡬ȼ弢䳙ㄏ↞⺋漓⋲ᴉ壑䖃変啞㶏☕䠹⬆媉ㄏPȼ ◽18 朑ᾚṝ㡮 1. 䞹妌Ỡ啞㶏弢㊤:䑵⅌䛮㩢Ỡ啞㶏弢㊤㔮⌥㩢ⴷȼ ◽19 2. 䉱⋕儩⌐壑漡䞹妌Ỡ啞㶏弢㊤㩢ⴷ⺋漓姊⌐⅌棚僲䉱⋕儩⌐漏ῄ旿☧㫎㨠撊㥞 ⺋㏌ṛ㨠漐漓Ṿ剦ⵔᴉ庱㥞㤠⚊䖃儩⌐儆⫥斚棔棚㒸⌐僳ȼ ◽20 3. vⷹㄕ彷㏆徉䑋⎋⛹㶕䳙漡⋮☧ᴺ᷊晡淝㏉“㳺↟”vⷹ徉䑋⎋⛹㶕䳙漢 ㄕ淝㏉“c/u ㋚”⻪㉶c/u㋚徉䑋⎋⛹㶕䳙ȼ ◽21 4. 撊⣊ⳤṛ漡⬍⛹㶕䳙⺋漓≲⋮撊⣊ⳤṛȼ ◽22 5. ☧ᴺ᷊晡ⶔ忧“㢁墼”ᴬ⋮ᷤ㛤䘊᷺⇘恌⫗ㄕ㑳槓c/u㋚䐯❉Ȼ徉䑋Ȼ⛹㶕䳙Ȼ᷺⇘⎋ 㥞⁶ȼ ◽23 ⛻㶗䳛 弱⛹㶕䳙vⷹ䖃㱀䤊⺋漓旿墀??彷⪙⛹㶕䳙杝⚊ȼ 䑵⅌⋮彷㏆䖃⛹㶕䳙杝⚊∄漡 AB 䗳䳙㤠⸎Ȼ A+ 䗳䳙㤠⸎Ȼ㗱䳙㤠⸎⎋☒㗱䳙㤠⸎ȼ AB 䗳䳙㤠⸎漡弙彍䞹⪙ A Ȼ B 淝Ṍ乭䵩埼⛹㶕䳙漓彨䐧㒻墎ⅆ䐯❉ȼ A+ 䗳䳙㤠⸎漡弙彍䞹⪙ A 淝Ṍ乭⎋⛹㶕䳙㒸⌐䵩埼⛹㶕䳙漓彨䐧㒻⠦⚊䐯❉⎋≓⌋ⳤ ṛȼ 㗱䳙㤠⸎漡坋棚彍䤊ᴬ弙彍 AB 淝䵩埼㗱䳙⛹㶕䳙漓彨䐧㒻ᴌ墎ⅆ䐯❉ㄕ䅸㪉☯ȼ ☒㗱䳙㤠⸎漡弙彍䵩埼㪴 AB ☒⸦䞹⪙⛹㶕䳙☒⻂⎋≉⺐漓彨䐧㒻Ṿ䐧ᴬ⻂㤝巷㽋 㶈䯺䱰䖃䐯❉ȼ ◽24 䗳䳙 A+䳙 㗱䳙 ☒㗱䳙 ṝ㡮䑍晣 ◽25 1. 䣺峜旡漡≲㕁杮䠹䗭⅌ṛ㡬䗷⬌⛹㶕䳙䖃䣺峜旡ȼ 2. 変啞弢䳙鹵㯀漡⋮㛤䘊䗭⅌䖃坚㔞Ȼ䛮㩢変啞弢䳙䩈 3. ≲㕁ṛ㡬密変漡䐰⳥僲⋲ẜⶎ㾹巉帚䗭⅌ᆵ☧⛹㶕䳙ⶎ啞Ȼ䐯☯䴼晡䥌Ȼ⳱ṛ㡬晡…
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CALIBRATION DATA PROBE CALIBRATION DATA DIPOLE CALIBRATION DATA
Report No.: AGC12845251004AP01 Page 1 of 2 TEST SETUP PHOTOS Radiated Emission Test Setup Below 1GHz Radiated Emission Test Setup Above 1GHz Report No.: AGC12845251004AP01 Page 2 of 2 RF Conducted Test Setup RF Conducted Test Setup(DFS) ****************************************End of Report*************************************
Report No.: AGC12845251004FR01 Page 72 of 80 12. Frequency Separation Measurement 12.1 Provisions Applicable When the power is less than 0.125W: The minimum permissible channel separation for this system is 2/3 the value of the 20dB BW. When the power is less than 1W: The minimum permissible channel separation for this system is 20dB BW. 12.2 Measurement Procedure The EUT shall have its hopping function enabled. Use the following spectrum analyzer settings: 1. Span: Wide enough to capture the peaks of two adjacent channels. 2. RBW: Start with the RBW set to approximately 30% of the channel spacing; adjust as necessary to best identify the center of each individual channel. 3. Video (or average) bandwidth (VBW) ≥ RBW. 4. Sweep: Auto. 5. Detector function: Peak. 6. Trace: Max hold. g) Allow the trace to stabilize. 7. Use the marker-delta function to determine the separation between the peaks of the adjacent channels. 12.3 Measurement Setup (Block Diagram of Configuration) 12.4 Measurement Result Test Data of Frequency Separation Test Mode Channel Separation (MHz) Limits (MHz) Pass or Fail GFSK 0.997 0.563 Pass π /4-DQPSK 0.991 0.855 Pass 8DPSK 1.021 0.857 Pass Report No.: AGC12845251004FR01 Page 73 of 80 Test Graphs of Frequency Separation Test_Graph_BR_HOP_ANT1_NA_1Mbps_Hopping Separation Test_Graph_EDR_HOP_ANT1_NA_2Mbps_Hopping Separation Report No.: AGC12845251004FR01 Page 74 of 80 Test_Graph_EDR_HOP_ANT1_NA_3Mbps_Hopping Separation Report No.: AGC12845251004FR01 Page 75 of 80 13. AC Power Line Conducted Emission Test 13.1 Measurement Limit Frequency Maximum RF Line Voltage Q.P. (dBμV) Average (dBμV) 150kHz~500kHz 66-56 56-46 500kHz~5MHz 56 46 5MHz~30MHz 60 50 Note: 1. The lower limit shall apply at the transition frequency. 2. The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz to 0.50 MHz. 13.2 Measurement Setup (Block Diagram of Configuration) Report No.: AGC12845251004FR01 Page 76 of 80 13.3 Preliminary Procedure of Line Conducted Emission Test 1. The equipment was set up as per the test configuration to simulate typical actual usage per the user’s manual. When the EUT is a tabletop system, a wooden table with a height of 0.8 meters is used and is placed on the ground plane as per ANSI C63.10 (see Test Facility for the dimensions of the ground plane used). When the EUT is a floor-standing equipment, it is placed on the ground plane which has a 3-12 mm non-conductive covering to insulate the EUT from the ground plane. 2. Support equipment, if needed, was placed as per ANSI C63.10. 3. All I/O cables were positioned to simulate typical actual usage as per ANSI C63.10. 4. All support equipment received AC120V/60Hz power from a LISN, if any. 5. The EUT received DC 5V power from adapter which received AC120V/60Hz power from a LISN. 6. The test program was started. Emissions were measured on each current carrying line of the EUT using a spectrum Analyzer / Receiver connected to the LISN powering the EUT. The LISN has two monitoring points: Line 1 (Hot Side) and Line 2 (Neutral Side). 7. Two scans were taken: one with Line 1 connected to Analyzer / Receiver and Line 2 connected to a 50 ohm load; the second scan had Line 1 connected to a 50 ohm load and Line 2 connected to the Analyzer / Receiver. 8. Analyzer / Receiver scanned from 150 kHz to 30MHz for emissions in each of the test modes. 9. During the above scans, the emissions were maximized by cable manipulation. 10. The test mode(s) were scanned during the preliminary test. 11. Then, the EUT configuration and cable configuration of the above highest emission level were recorded for reference of final testing. 13.4 Final Procedure of Line Conducted Emission Test 1. EUT and support equipment was set up on the test bench as per step 2 of the preliminary test. 2. A scan was taken on both power lines, Line 1 and Line 2, recording at least the six highest emissions. Emission frequency and amplitude were recorded into a computer in which correction factors were used to calculate the emission level and compare reading to the applicable limit. 3. If EUT emission level was less –2dB to the A.V. limit in Peak mode, then the emission signal was re-checked using Q.P and Average detector. 4. The test data of the worst case condition(s) was reported on the Summary Data page. 5. A conducted emission is calculated by the following equation: • Measurement Level (dBμV) = Receiver reading (dBμV) + Transd (dB) • Transd (dB)= AMN Factor(dB)+Cable Loss(dB)+Attenuation(dB) • Margin= Limit-Level 13.5 Measurement Result Report No.: AGC12845251004FR01 Page 77 of 80 AC Power Line Conducted Emission Test Test Mode Mode 1 LISN Line Hot Side Result: Pass Report No.: AGC12845251004FR01 Page 78 of 80 AC Power Line Conducted Emission Test Test Mode Mode 1 LISN Line Neutral Side Result: Pass Report No.: AGC12845251004FR01 Page 79 of 80 Appendix I: Photographs of Test Setup Refer to the Report No.: AGC12845251004AP01 Appendix II: Photographs of Test EUT Refer to the Report No.: AGC12845251004AP02 Report No.: AGC12845251004FR01 Page 80 of 80 Conditions of Issuance of Test Reports 1. All samples and goods are accepted by the Attestation of Global Compliance (Shenzhen) Co., Ltd (the “Company”) solely for testing and reporting in accordance with the following terms and conditions. The company provides its services on the basis that such terms and conditions constitute express agreement between the company and any person, firm or company requesting its services (the “Clients”). 2. Any report issued by Company as a result of this application for testing services (the “Report”) shall be issued in confidence to the Clients and the Report will be strictly treated as such by the Company. It may not be reproduced either in its entirety or in part and it may not be used for advertising or other unauthorized purposes without the written consent of the Company. The Clients to whom the Report is issued may, however, show or send it, or a certified copy…
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Page 1 of 80 FCC Test Report Report No.: AGC12845251004FR01 FCC ID : 2BLLH-T10 APPLICATION PURPOSE : Original Equipment PRODUCT DESIGNATION : Tablet BRAND NAME : FJDynamics MODEL NAME : T10 APPLICANT : FJ Dynamics Technology Academy (Changzhou) Co., Ltd. Shenzhen Branch DATE OF ISSUE : Dec. 25, 2025 STANDARD(S) : FCC Part 15 Subpart C §15.247 REPORT VERSION : V1.0 Attestation of Global Compliance (Shenzhen) Co., Ltd Report No.: AGC12845251004FR01 Page 2 of 80 Report Revise Record Report Version Revise Time Issued Date Valid Version Notes V1.0 / Dec. 25, 2025 Valid Initial Release Report No.: AGC12845251004FR01 Page 3 of 80 Table of Contents 1. General Information ........................................................................................................................................ 5 2. Product Information ........................................................................................................................................ 6 2.1 Product Technical Description ................................................................................................................... 6 2.2 Test Frequency List ................................................................................................................................... 6 2.3 Related Submittal(S) / Grant (S) ............................................................................................................... 7 2.4 Test Methodology ...................................................................................................................................... 7 2.5 Receiver Input Bandwidth ......................................................................................................................... 7 2.6 Equally Average Use of Frequencies and Behaviour. ............................................................................. 7 2.7 Pseudorandom Frequency Hopping Sequence ........................................................................................ 8 2.8 Special Accessories .................................................................................................................................. 9 2.9 Equipment Modifications ........................................................................................................................... 9 2.10 Antenna Requirement ............................................................................................................................. 9 3. Test Environment .......................................................................................................................................... 10 3.1 Address of The Test Laboratory .............................................................................................................. 10 3.2 Test Facility .............................................................................................................................................. 10 3.3 Environmental Conditions ....................................................................................................................... 11 3.4 Measurement Uncertainty ....................................................................................................................... 11 3.5 List of Equipment Used ........................................................................................................................... 12 4.System Test Configuration ............................................................................................................................ 14 4.1 EUT Configuration ................................................................................................................................... 14 4.2 EUT Exercise ........................................................................................................................................... 14 4.3 Configuration of Tested System .............................................................................................................. 14 4.4 Equipment Used in Tested System ......................................................................................................... 15 4.5 Summary of Test Results ........................................................................................................................ 16 5. Description of Test Modes ........................................................................................................................... 17 6. RF Output Power Measurement .................................................................................................................. 19 6.1 Provisions Applicable .............................................................................................................................. 19 6.2 Measurement Procedure ......................................................................................................................... 19 6.3 Measurement Setup (Block Diagram of Configuration) .......................................................................... 19 6.4 Measurement Result ............................................................................................................................... 20 7. 20dB Bandwidth and 99% Occupied Bandwidth Measurement ............................................................... 26 7.1 Provisions Applicable .............................................................................................................................. 26 7.2 Measurement Procedure ......................................................................................................................... 26 7.3 Measurement Setup (Block Diagram of Configuration) .......................................................................... 26 7.4 Measurement Results ............................................................................................................................. 27 8. Conducted Band Edge and Out-of-Band Emissions ......…
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1 AntennaSpecification-WIFIGPS Manufacturer:ShenzhenPIFAantennadesignCo.,LTD. Addressofmanufacturer:JunxiangdaOfficeBuildingA204,Zhongshan RoadNo.9,NanlianCommunity,NantouStreet,NanshanDistrict,ShenzhenCity, GuangdongProvince 1.1BasicSpecifications No.SpecificationDescriptionsNotes 1Antennamodel PF0488-SNP118-WIFI-A3 2Antennatype WIFIGPSAntenna-PIFA 3Operation Frequency WIFI:2.4-2.48GHz 5.15-5.85GHz GPS:1.57542GHz 4Impedance50ohm 5MAXGainWIFI:2.4G:3.07dBi, 5.15G:5.1dBi 5.85G:2.88dBi GPS:1.57542GHz:2.14dBi 6Efficiency≥30% 7Returnloss≤-7 8Material quality FPC 9ConnectorTypeIPEX-4 10Cablelength (mm) 37mm 11CableColourBlack 1.2radiationpattern S11 AntennaPattern frequency:1575.42Mhz frequency:2400Mhz frequency:2480MHzfrequency:5150MHz frequency:5850MHz 1.3AntennaSize MAIN:LDScraft 1.4Physicalpicture 1.5:OTAtestdata
Report No.: AGC12845251004FH01 Page 134 of 192 Z (mm) 0.00 4.00 9.00 14.00 19.00 24.00 29.00 SAR (W/Kg) 1.617 0.970 0.515 0.317 0.210 0.148 0.101 3D screen shot Hot spot position Report No.: AGC12845251004FH01 Page 135 of 192 Test Laboratory: AGC Lab Date: Dec. 23, 2025 LTE Band 2 Mid-Body-Back (1 RB#0) DUT: Tablet; Type: T10 Communication System: LTE; Communication System Band: LTE Band 2; Duty Cycle:1:1; Conv.F=2.25; Frequency:1880MHz; Medium parameters used: f = 1900 MHz; σ= 1.35 mho/m; εr =39.33; ρ= 1000 kg/m³ ; Phantom section: Flat Section SATIMO Configuration: • Probe: SSE2; Calibrated: 2025-05-06; Serial No.: 2023-EPGO-414 • Sensor-Surface: 4mm (Mechanical Surface Detection) • Phantom: ELLI39 Phantom • Measurement SW: OpenSAR V5.3.15.8 Configuration/ LTE Band 2 Mid-Body-Back/Area Scan: Measurement grid: dx=8mm, dy=8mm Configuration/ LTE Band 2 Mid-Body-Back/Zoom Scan: Measurement grid: dx=8mm,dy=8mm, dz=5m; Area Scan dx=8mm dy=8mm, h= 5.00 mm Zoom Scan 5x5x7,dx=8mm dy=8mm dz=5mm Phantom ELLI Device Position Body Back Band LTE Band 2 Channels Middle Signal OFDM (Crest factor: 1.0) SURFACE SAR VOLUME SAR Maximum location: X=-30.00, Y=-81.00 ; SAR Peak: 1.71 W/kg SAR 10g (W/Kg) 0.484 SAR 1g (W/Kg) 0.989 Variation (%) -4.200 Horizontal validation criteria: minimum distance (mm) 16.000000 Vertical validation criteria: SAR ratio M2/M1 (%) 54.282685 Report No.: AGC12845251004FH01 Page 136 of 192 Z (mm) 0.00 4.00 9.00 14.00 19.00 24.00 29.00 SAR (W/Kg) 1.719 1.082 0.587 0.314 0.177 0.098 0.055 3D screen shot Hot spot position Report No.: AGC12845251004FH01 Page 137 of 192 Test Laboratory: AGC Lab Date: Dec. 24, 2025 LTE Band 4 High-Body-Front (1 RB#0) DUT: Tablet; Type: T10 Communication System: LTE; Communication System Band: LTE Band 4; Duty Cycle:1:1; Conv.F=2.28; Frequency: 1745 MHz; Medium parameters used: f = 1750 MHz; σ= 1.36 mho/m; εr =39.87; ρ= 1000 kg/m³ ; Phantom section: Flat Section SATIMO Configuration: • Probe: SSE2; Calibrated: 2025-05-06; Serial No.: 2023-EPGO-414 • Sensor-Surface: 4mm (Mechanical Surface Detection) • Phantom: ELLI39 Phantom • Measurement SW: OpenSAR V5.3.15.8 Configuration/ LTE Band 4 High-Body-Front/Area Scan: Measurement grid: dx=8mm, dy=8mm Configuration/ LTE Band 4 High-Body-Front/Zoom Scan: Measurement grid: dx=8mm,dy=8mm, dz=5m; Area Scan dx=8mm dy=8mm, h= 5.00 mm Zoom Scan 5x5x7,dx=8mm dy=8mm dz=5mm Phantom ELLI Device Position Body Front Band LTE Band 4 Channels High Signal OFDM (Crest factor: 1.0) SURFACE SAR VOLUME SAR Maximum location: X=-1.00, Y=-68.00 ; SAR Peak: 1.73 W/kg SAR 10g (W/Kg) 0.526 SAR 1g (W/Kg) 1.017 Variation (%) -4.770 Horizontal validation criteria: minimum distance (mm) 16.000000 Vertical validation criteria: SAR ratio M2/M1 (%) 51.826127 Report No.: AGC12845251004FH01 Page 138 of 192 Z (mm) 0.00 4.00 9.00 14.00 19.00 24.00 29.00 SAR (W/Kg) 1.739 1.061 0.550 0.289 0.159 0.088 0.052 3D screen shot Hot spot position Report No.: AGC12845251004FH01 Page 139 of 192 Test Laboratory: AGC Lab Date: Dec. 19, 2025 LTE Band 5 High-Body-Back (1 RB#0) DUT: Tablet; Type: T10 Communication System: LTE; Communication System Band: LTE Band 5; Duty Cycle:1:1; Conv.F=2.23 Frequency:844 MHz; Medium parameters used: f = 835 MHz; σ=0.93mho/m; εr =40.86; ρ= 1000 kg/m³ ; Phantom section: Flat Section SATIMO Configuration: • Probe: SSE2; Calibrated: 2025-05-06; Serial No.: 2023-EPGO-414 • Sensor-Surface: 4mm (Mechanical Surface Detection) • Phantom: ELLI39 Phantom • Measurement SW: OpenSAR V5.3.15.8 Configuration/ LTE Band 5 High-Body-Back/Area Scan: Measurement grid: dx=8mm, dy=8mm Configuration/ LTE Band 5 High-Body-Back/Zoom Scan: Measurement grid: dx=8mm,dy=8mm, dz=5m; Area Scan dx=8mm dy=8mm, h= 5.00 mm Zoom Scan 5x5x7,dx=8mm dy=8mm dz=5mm Phantom ELLI Device Position Body Back Band LTE Band 5 Channels High Signal OFDM (Crest factor: 1.0) SURFACE SAR VOLUME SAR Maximum location: X=-20.00, Y=-69.00 ; SAR Peak: 1.46 W/kg SAR 10g (W/Kg) 0.427 SAR 1g (W/Kg) 0.822 Variation (%) -3.090 Horizontal validation criteria: minimum distance (mm) 16.000000 Vertical validation criteria: SAR ratio M2/M1 (%) 53.913179 Report No.: AGC12845251004FH01 Page 140 of 192 Z (mm) 0.00 4.00 9.00 14.00 19.00 24.00 29.00 SAR (W/Kg) 1.448 0.878 0.474 0.290 0.192 0.140 0.094 3D screen shot Hot spot position Report No.: AGC12845251004FH01 Page 141 of 192 Test Laboratory: AGC Lab Date: Dec. 21, 2025 LTE Band 7 High-Body-Front (1RB#0) DUT: Tablet; Type: T10 Communication System: LTE; Communication System Band: LTE Band 7; Duty Cycle:1:1; Conv.F=2.19 Frequency: 2560MHz; Medium parameters used: f =2600 MHz; σ=1.91 mho/m; εr =39.33; ρ= 1000 kg/m³ ; Phantom section: Flat Section SATIMO Configuration: • Probe: SSE2; Calibrated: 2025-05-06; Serial No.: 2023-EPGO-414 • Sensor-Surface: 4mm (Mechanical Surface Detection) • Phantom: ELLI39 Phantom • Measurement SW: OpenSAR V5.3.15.8 Configuration/ LTE BAND 7 High-Body-Front /Area Scan: Measurement grid: dx=10mm, y=10mm Configuration/ LTE BAND 7 High-Body-Front /Zoom Scan: Measurement grid: dx=5mm, dy=5mm, dz=5mm Area Scan dx=8mm dy=8mm, h= 5.00 mm ZoomScan 7x7x7,dx=5mm dy=5mm dz=5mm Phantom ELLI Device Position Body Front Band LTE BAND 7 Channels High Signal OFDM (Crest factor: 1.0) SURFACE SAR VOLUME SAR Maximum location: X=12.00, Y=-70.00 ; SAR Peak: 2.29 W/kg SAR 10g (W/Kg) 0.507 SAR 1g (W/Kg) 1.190 Variation (%) -3.580 Horizontal validation criteria: minimum distance (mm) 10.000000 Vertical validation criteria: SAR ratio M2/M1 (%) 45.289042 Report No.: AGC12845251004FH01 Page 142 of 192 Z (mm) 0.00 4.00 9.00 14.00 19.00 24.00 29.00 SAR (W/Kg) 2.273 1.290 0.584 0.270 0.128 0.059 0.036 3D screen shot Hot spot position Report No.: AGC12845251004FH01 Page 143 of 192 Test Laboratory: AGC Lab Date: Dec. 21, 2025 LTE Band 38 Mid-Body-Back (1RB#0) DUT: Tablet; Type: T10 Communication System: LTE; Communication System Band: LTE Band 38; Duty Cycle:1:1.58; Conv.F=2.19 Frequency: 2595MHz; Medium parameters used: f =2600 MHz; σ=1.96 mho/m; εr =…
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Page 1 of 192 SAR Test Report Report No.: AGC12845251004FH01 FCC ID : 2BLLH-T10 APPLICATION PURPOSE : Original Equipment PRODUCT DESIGNATION : Tablet BRAND NAME : FJDynamics MODEL NAME : T10 APPLICANT : FJ Dynamics Technology Academy (Changzhou) Co., Ltd. Shenzhen Branch DATE OF ISSUE : Jan. 12, 2026 STANDARD(S) : IEEE Std. 1528:2013 FCC 47 CFR Part 2§2.1093 IEEE Std C95.1 ™-2019 REPORT VERSION : V1.0 Attestation of Global Compliance(Shenzhen) Co., Ltd. Report No.: AGC12845251004FH01 Page 2 of 192 Report Revise Record Report Version Revise Time Issued Date Valid Version Notes V1.0 / Jan. 12, 2026 Valid Initial Release Report No.: AGC12845251004FH01 Page 3 of 192 Test Report Applicant Name FJ Dynamics Technology Academy (Changzhou) Co., Ltd. Shenzhen Branch Applicant Address Room 501, Building 13, Nangang Second Industrial Park, Nanshan District, Shenzhen, China Manufacturer Name FJ Dynamics Technology Academy (Changzhou) Co., Ltd. Shenzhen Branch Manufacturer Address Room 501, Building 13, Nangang Second Industrial Park, Nanshan District, Shenzhen, China Factory Name FJ Dynamics Technology Academy (Changzhou) Co., Ltd. Shenzhen Branch Factory Address Room 501, Building 13, Nangang Second Industrial Park, Nanshan District, Shenzhen, China Product Designation Tablet Brand Name FJDynamics Model Name T10 Series Model N/A Different Description N/A EUT Voltage DC 3.8V by battery Applicable Standard IEEE Std. 1528:2013 FCC 47 CFR Part 2§2.1093 IEEE Std C95.1 ™-2019 Date of receipt of test item Nov. 05, 2025 Test Date Dec. 15, 2025 to Dec. 24, 2025 Report Template AGCRT-US-4G/SAR (2021-04-20) Note: The results of testing in this report apply to the product/system which was tested only. Prepared By Bibo Zhang (Project Engineer) Jan. 12, 2026 Reviewed By Jack Gui (Reviewer) Jan. 12, 2026 Approved By Angela Li (Authorized Officer) Jan. 12, 2026 Report No.: AGC12845251004FH01 Page 4 of 192 TABLE OF CONTENTS 1. SUMMARY OF MAXIMUM SAR VALUE ......................................................................................................... 5 2. GENERAL INFORMATION ............................................................................................................................... 6 2.1. EUT DESCRIPTION......................................................................................................................................... 6 3. SAR MEASUREMENT SYSTEM ........................................................................................................................ 8 3.1. THE SATIMO SYSTEM USED FOR PERFORMING COMPLIANCE TESTS CONSISTS OF FOLLOWING ITEMS .................. 8 3.2. COMOSAR E-FIELD PROBE .......................................................................................................................... 9 3.3. ROBOT .......................................................................................................................................................... 9 3.4. VIDEO POSITIONING SYSTEM ........................................................................................................................ 10 3.5. DEVICE HOLDER .......................................................................................................................................... 10 3.6. SAM TWIN PHANTOM ................................................................................................................................... 11 4. SAR MEASUREMENT PROCEDURE .............................................................................................................. 12 4.1. SPECIFIC ABSORPTION RATE (SAR) .............................................................................................................. 12 4.2. SAR MEASUREMENT PROCEDURE ................................................................................................................ 13 4.3. RF EXPOSURE CONDITIONS ......................................................................................................................... 15 5. TISSUE SIMULATING LIQUID ......................................................................................................................... 18 5.1. THE COMPOSITION OF THE TISSUE SIMULATING LIQUID..................................................................................... 18 5.2. TISSUE DIELECTRIC PARAMETERS FOR HEAD AND BODY PHANTOMS ............................................................... 19 5.3. TISSUE CALIBRATION RESULT ....................................................................................................................... 20 6. SAR SYSTEM CHECK PROCEDURE ........................................................................................................... 23 6.1. SAR SYSTEM CHECK PROCEDURES .............…
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3722 Illinois Avenue · Saint Charles, Illinois, 60174 · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 1.10 mW |

FJDynamics AT2 Lite Auto Steer System
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
FJDynamics Autosteering Kit
Equipment Class
DTS - Digital Transmission System