A“ TAOGLASE
SPE-13-8-070/K/WY Page 1 of 22
SPECIFICATION
Part No. :
PCS.06.A Havok
Product Name :
Havok - Low Profile LTE/Cellular 4G/3G/2G SMD
Dielectric Antenna
Features :
SMD Dielectric Antenna
GSM / CDMA / DCS / PCS / WCDMA /
UMTS /HSDPA / GPRS / EDGE
698~960MHz/1710~2690MHz High Efficiency Multi-Band
SMD antenna
Low profile 42*10*3mm
RoHs Compliant
A“ TAOGLASD
SPE-13-8-070/K/WY Page 2 of 22
1. Introduction
The Havok PCS.06.A is a low profile SMT LTE/cellular 4G/3G/2G embedded antenna
designed for direct SMT mount on a device PCB. It provides high efficiency in a very
small factor 42*10*3mm. If tuning is required it can be tuned for the device
environment, while there is no need for new tooling. Its rectangular shape and very
small size makes it very easy to integrate packaged in tape and reel, it can be
mounted via pick and place to reflow solder directly on the edge of the PCB board. This
antenna is recommended to be used with longer ground-plane lengths of 120mm or
more to attain its highest rated efficiency, note the return loss and efficiency graphs on
page 22.
The antenna is suitable for lower cost LTE/cellular applications, especially for
telematics and automotive sector. Contact Taoglas local regional sales office for quick
and professional support from our senior engineering team on integration and
matching of the antenna to your device.
A, TAOGLASQ
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2. Specification Table
ELECTRICAL
Frequency
(MHz)
698~803
824~894
880~960
1850~1990
2500~2690
Peak Gain
(dBi)*
-0.21
0.77
0.61
2.92
3.72
Average Gain
(dBi)*
-2.52
-1.91
-2.16
-1.85
-2.30
Efficiency (%)*
45%
64.38
60.99
65.36
58.99
Return Loss
(dB)*
<-10 typ.
<-7 at the band edge
<-10 typ.
<-7 at the band edge
<-10 typ.
<-6 at the band edge
Polarization
Linear
Impedance
50
Maximum Input
Power
5W
MECHANICAL
Antenna Dimensions
42mm x 10mm x 3mm
Material
FR4
Weight
2.50g
Soldering Type
SMT through Reflow
ENVIRONMENTAL
Operation Temperature
-40°C ~ +85°C
Storage Temperature
-40°C ~ +85°C
* all measurements were done on 123*45mm EVB board with 100mm length ground
plane.
A“ TAOGLAS. Uplink UL: 1920 m 1980 UL: 1850 m 1910 UL: 1710 m 1785 UL: 1710 m 1755 UL: 824 m 849 UL: 2500 m 2570 UL: 880 m 915 UL: 1749.9 m 1784.9 UL: 1427.9 m 1447.9 UL: 699 m 716 UL: 777 m 787 UL: 788 m 798 UL: 704 m 716 UL: 815 m 830 UL: 830 m 845 UL: 832 m 862 UL: 1447.9 m 1462.9 UL: 3410 m 3490 UL:2000 to 2020 UL: 16255 to 16605 UL: 1850 m 1915 UL: 814 m 849 UL: 807 m 824 UL: 703 m 748 UL: - UL: 2305 m 2315 UL: 452.5 m 457.5 UL: — DL: DL: DL: DL: DL: Downlillk Covered 2110 tn 2170 1930 tn 1990 1805 tn 1880 2110 tn 2155 869 tn 894 DL:2620 to 2690 DL: DL: DL: DL: DL: DL: DL: DL: DL: DL: DL: DL: DL: DL: DL: DL: DL: DL: DL: DL: DL: DL: 925 m 960 1844.9 m 1879.9 1475.9 m 1495.9 x 729 m 746 746 m 756 758 m 768 734 m 746 (LTE nnly) 860 m 875 (LET nnly) 875 m 890 791 m 821 1495.9 m 1510.9 4: 3510 m 3590 x 2180 m 2200 (LTE only) 1525 m 1559 (LTE only) 1930 m 1995 859 m 894 852 m 869 (LTE nnly) 758 m 803 (LTE nnly) 717 m 728 (LTE nnly) 2350 m 2360 (LTE only) 462.5 to 467.5 (LTE nnly) x 1452 - 1496 x 1850 tn 1910 2570 tn 2620 1880 tn 1920 2300 tn 2400 2496 tn 2690 3400 tn 3600 X 3600 tn 3800 X
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LTE BANDS
Band Number
LTE / LTE-Advanced / WCDMA / HSPA / HSPA+ / TD-SCDMA
Uplink
Downlink
Covered
1
UL: 1920 to 1980
DL: 2110 to 2170
2
UL: 1850 to 1910
DL: 1930 to 1990
3
UL: 1710 to 1785
DL: 1805 to 1880
4
UL: 1710 to 1755
DL: 2110 to 2155
5
UL: 824 to 849
DL: 869 to 894
7
UL: 2500 to 2570
DL:2620 to 2690
8
UL: 880 to 915
DL: 925 to 960
9
UL: 1749.9 to 1784.9
DL: 1844.9 to 1879.9
11
UL: 1427.9 to 1447.9
DL: 1475.9 to 1495.9
12
UL: 699 to 716
DL: 729 to 746
13
UL: 777 to 787
DL: 746 to 756
14
UL: 788 to 798
DL: 758 to 768
17
UL: 704 to 716
DL: 734 to 746 (LTE only)
18
UL: 815 to 830
DL: 860 to 875 (LET only)
19
UL: 830 to 845
DL: 875 to 890
20
UL: 832 to 862
DL: 791 to 821
21
UL: 1447.9 to 1462.9
DL: 1495.9 to 1510.9
22
UL: 3410 to 3490
DL: 3510 to 3590
23
UL:2000 to 2020
DL: 2180 to 2200 (LTE only)
24
UL:1625.5 to 1660.5
DL: 1525 to 1559 (LTE only)
25
UL: 1850 to 1915
DL: 1930 to 1995
26
UL: 814 to 849
DL: 859 to 894
27
UL: 807 to 824
DL: 852 to 869 (LTE only)
28
UL: 703 to 748
DL: 758 to 803 (LTE only)
29
UL: -
DL: 717 to 728 (LTE only)
30
UL: 2305 to 2315
DL: 2350 to 2360 (LTE only)
31
UL: 452.5 to 457.5
DL: 462.5 to 467.5 (LTE only)
32
UL: -
DL: 1452 - 1496
35
1850 to 1910
38
2570 to 2620
39
1880 to 1920
40
2300 to 2400
41
2496 to 2690
42
3400 to 3600
43
3600 to 3800
*Covered bands represent an efficiency greater than 20%
TAOGLASB -Relurn Ins:- 500 1000 1500 2000 2500 3000 (MM) 100 —Efflcioncy 9o 80 40 30 20 10 500 1000 1500 2000 2500 3000mm)
SPE-13-8-070/K/WY Page 5 of 22
3. Antenna Characteristics
3.1. Return Loss
3.2. Efficiency
A“ TAOGLASE 10 ma) —Maximum Gain WV” -5 500 1000 1500 2000 2500 3000“”) 5 —Average Gain 0 a M E, -5 .10 1500 2000 2500 3000“”) 500 1000
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3.3. Peak Gain
3.4. Average Gain
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4. Radiation Patterns
Y
X
Z
A“ TAOGLASQ Y —MMHX _azuumz —m —m H,»- V Y —mnwz —-2500Wx —mswz J —mnwx J —2mwz —mow: —ZI7DW2 —ZMWX ‘ cccc
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4.1. XY Plane
_mowz -stwz \ —mowz — mow: —2110wz A“ TAOGLASD —mMHx _azmm —mMHx ‘5: —25WM-11 m —262Mz —2mwx
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4.2. XZ Plane
TAOGLASQ
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4.3. YZ Plane
A“ TAOGLASD 6.8pF | 6.8nH (I 7/7 Tog View ;i‘ @ PCS.06.A 5:" ‘taoglas . vvwwx YVWWrDa‘e (ode J Bo‘tom View Production year & week |:| Side View E
SPE-13-8-070/K/WY Page 11 of 22
5. Matching Circuits
6. Drawing
6.1. PCS.06.A Antenna
Note: 1. mymm Detail A , Scuiezt/t Lam Side View A“ TAOGLASQ View Bottom ’3i'. 4 scam-h: summon imam nsmk LIE/ceuutar SMD Antenna 700735019001170011600 neon/210012600 MHz Week Butch Cnde Example: 2013 Week 10:1310 Slodered urea - Copper area S Logo 5c Text ink Printing : Biock Ground Ciearunce Area \:| Nome Moler‘tai Finish QTY i PCSDDS A [VB PCB Cumposite Ofit Au Plated i 2 SMA(F) ST PCB Brass Au Plated 1 3 PCSDGA PCB Antenna thiempemtmeCnmpwteh ta Plated t 4 6.8nH Inductm‘ (0402) Ceramic N/A 1 5 mar Capacitor (0402) Ceramic N/A t
SPE-13-8-070/K/WY Page 12 of 22
6.2. PCS.06.A Antenna with Evaluation Board
\ A’ PCB Footprint M 255104 33in4 : +4 ,I)‘ , x/ f / ' * \ <1- l="" (7)="" w="" v="" n="" 5410.4="" \\\="" 6a8nh="" inductor—="" ground="" 6.8pf="" capacitor—="" 43ioe="" —feed="" line="" 50="" ohm="" cpw="" notes:="" 1.="" week="" batch="" code="" example:="" 2013="" week="" 10:1310="" 2‘="" slodered="" area="" -="" 3‘="" copper="" area="" v//////a="" 4‘="" ground="" clearance="" area="" m="" 5.="" tin="" plated="" 6.="" silkscreen="" (black)="" l:l="" 7.="" saldermask="" (gold)="" -="" 8‘="" matching="" —="" value="" changes="" according="" to="" ground="" and="" layout.="">
SPE-13-8-070/K/WY Page 13 of 22
7. Antenna Footprint
A“ TAOGLASQ Pads 1 and 2 are the same size, Pads 3 and 4 are the same size, Pad 4 should be connected to a 50 ohm transmission line. 663 4.48 44.4 6. Ground keepout should extend through any inner PCB layers and any sides around the antenna till the board edge to minimize coupling from RF NOTE: feed to ground. except me side facing system ground 1. Tin Plated area — 7. Any vias in pads should be either filled or tented to prevent solder from 2. Solder Mask area _ wickirlg away from the pad during reflow. 3- Copper area _ 8. The dlmension tolerances should follow standard PCB manufacturing 4. Paste area guidelines 5- Keepout Region 3'53 m 9. " ’ " Critical Dimensions.
SPE-13-8-070/K/WY Page 14 of 22
7.1. Top Copper
A, TAOGLASD Pads 1 and 2 are the same size,Pads 3 and 4 are the same size. 6.63 4.48 t 3 {fig , L ,,,,, %, qui I 39 6. Ground keepout should extend through any inner PCB layers and any sides around the antenna ii“ the board edge to minimize coupling from RF NOTEI feed to ground, except the side facing system ground 1. Tin Plated area _ 7. Any was in pads should be either filled or tented to prevent solder from 2. Solder Mask area _ Wicking away from the pad during reflow. 3- Copper area — 8. The dimension tolerances should follow standard PCB manufacturing 4. Paste area guidelines 5- Keepout Region 3’93 m 9. " ’ " Critical Dimensions,
SPE-13-8-070/K/WY Page 15 of 22
7.2. Top Solder Paste
TAOGLASB 6. Ground keepout should extend through any inner PCB layers and any sides around the antenna lill the board edge to minlmlze coupllng 1mm RF NOTE: feed to ground. except the side facing system ground 1. Tin Plaled area _ 7. Any was in pads should be either filled or tented to prevent solder from 2- Solder Mask area _ wlcking away from the pad during reflow. 3- Copper area — 8. The dlmension tolerances should follow standard PCB manufaclurlng 4. Paste area guidelines 5- Keepoul R990“ area m 9. " * “ Critlcal Dimensions,
SPE-13-8-070/K/WY Page 16 of 22
7.3. Top Solder Mask
NOTE: 1. Tin Plated area _ 2. Solder Mask area _ 3. Copper area — 4. Paste area 5. Keepout Region area m A“ TAOGLASQ 6. Ground keepout should extend through any inner PCB layers and any sides around the antenna till the board edge to minimize coupling from RF feed to ground. except the side facing system ground 7. Any vias in pads should be eilher filled or tented to prevent solder from wicking away from the pad during reflow. 8. The dimension tolerances should follow standard PCB manufacturing guidelines 9. " " " Critical Dimensions.
SPE-13-8-070/K/WY Page 17 of 22
7.4. Composite Diagram
A“ TAOGLASQ 1000 pc PCS.06 A per reeL Dlmenslcns , @330‘6Dmm Welght , 32309 995 52.4
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8. Packaging
1000 pcs PCS.05.A reel Dimensions , 330‘330'6Umm Weight -32309 1000 pcs PCS.06.A/1 Reel in small box Dimensions , 340*340‘90mm Weight >3.5Kg 3 reels. 3000 pas in one carton Carton Dimensions - 370*360‘275mm Weight —1‘i.3Kg PalLet Dimensions 1200‘1000‘1320mm 24 Carlnns per Palm 6 Cartons per layer A Layers 90mm 340mm A“ TAOGLASE 340mm
SPE-13-8-070/K/WY Page 19 of 22
TAOGLASQ a .w —Grounding \engthjflmm 345 —Grounding a lengthisnmm —Groundin!l 2n , length_1nnmm —Groundlng lengm_1zomm .2; —Gmundlng lenglh_140mm .u. am: ma 10m: 12m: 1am mm W m 220:) um) 2mm 2mm zaanmm I00 —Gvounuing ungm_somm —quminq huqm_80mm no mumlnghnm_mom roundlnq huqthzflmm —Gruundlnglumm_|wm no 70 no so to lo 20 w fl o 550 use 1050 use usn Isso 1m zasu zzsn use 1550 (WI!
SPE-13-8-070/K/WY Page 20 of 22
9. Application Note
Investigations of PCS.06.A antenna performance on different lengths of ground plane
were conducted, the return loss is shown as below.
9.1. Return Loss
9.2. Efficiency
m —Groundmg lennlhjomm —6mundmg InnsfllJornm —qunqu lenll'l 100mm —Gmunding lung"! 120mm —crounamq Imum_mmm s “3:. 3d: 5‘ .5 fl .m m my msn Izsn «an «m "5n znsn 215.. mu znsq mm 5 —Glound[ng llngthJflmm —Gvoundln§ I-nmh_samm —Gvoundina Innmh_1nomm —Gvound|ng mngzumm —Gmund|nfi lenmh_1lflmm n .m .15 am 350 min <25» msn="" «m="" 155::="" use="" 225:)="" 245a="" 255a="" mm)="" taoglasq="">
SPE-13-8-070/K/WY Page 21 of 22
9.3. Peak Gain
9.4. Average Gain
A“ TAOGLASD
SPE-13-8-070/K/WY Page 22 of 22
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reserves the right to make changes to specifications and product descriptions at any time without notice.
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Reproduction, use or disclosure to third parties without express permission is strictly prohibited.
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