Microwave Garnets 204672A · DATA SHEET • MICROWAVE GARNETS Phone [301] 695-9400 • Fax [301]...

16
Phone [301] 695-9400 Fax [301] 695-7065 [email protected] www.skyworksinc.com 204672A Trans-Tech Proprietary Information Products and Product Information are Subject to Change Without Notice July 12, 2017 1 DATA SHEET Microwave Garnets Aluminum Doped Composition and Type Number Magnetization 4πMs (Gauss) Lande’§ G-factor g-eff (Nominal Value) Line Width§ h Oe @ -3 dB Dielectric§ Constant εDielectric Loss Tangent Tan δ = ε”/εCurie Temperature Tc (°C) (Nominal Value) Spin Wave Line Width Hk oe (Nominal Value) Remanent Induction* B r (Gauss) (Nominal Value) Coercive Force* H c (oe) (Nominal Value) Initial Permeability† μo (Nominal Value) G-1009 175 ± 25g 2.03 <50 13.8 ± 5% < 0.0002 85 1.5 40 0.90 11 G-250 250 ± 25g 2.02 <45 13.8 ± 5% < 0.0002 105 1.4 123 0.62 34 G-300 300 ± 25g 2.02 <45 14.0 ± 5% < 0.0002 120 2 162 0.62 46 G-350 350 ± 25g 2.01 <45 14.0 ± 5% < 0.0002 130 1.4 213 0.66 31 G-400 400 ± 25g 2.01 <45 14.1 ± 5% < 0.0002 135 1.4 224 0.69 41 G-475 475 ± 25g 2.01 <45 14.1 ± 5% < 0.0002 140 1.4 310 0.60 40 G-510 550 ± 5% 2.00 <48 14.3 ± 5% < 0.0002 155 1.3 398 0.55 37 G-610 680 ± 5% 2.00 <48 14.5 ± 5% < 0.0002 185 1.5 515 0.70 50 § Measured @ 9.4 GHz † Measured @ 1 KHz * Measured @ 60 Hz or 2 KHz with H app = 5xHc For any composition the minimum line width is fixed by Kl/Ms. For some shapes and sizes, line widths even closer to the theoretical limit are possible. Typical value for this series is 20oe, which is available in some shapes and sizes. Bars and Rods are Available for All Material Types, as well as discs, triangles and composites.

Transcript of Microwave Garnets 204672A · DATA SHEET • MICROWAVE GARNETS Phone [301] 695-9400 • Fax [301]...

Phone [301] 695-9400 • Fax [301] 695-7065 • [email protected] • www.skyworksinc.com 204672A • Trans-Tech Proprietary Information • Products and Product Information are Subject to Change Without Notice • July 12, 2017 1

DATA SHEET

Microwave Garnets

Aluminum Doped

Composition and Type Number

Magnetization 4πMs

(Gauss)

Lande’§ G-factor

g-eff (Nominal

Value)

Line Width§ ∆h Oe

@ -3 dB

Dielectric§ Constant

ε’

Dielectric Loss Tangent Tan δ = ε”/ε’

Curie Temperature

Tc (°C) (Nominal

Value)

Spin Wave Line Width ∆Hk oe

(Nominal Value)

Remanent Induction* Br (Gauss) (Nominal

Value)

Coercive Force* Hc (oe)

(Nominal Value)

Initial Permeability†

μo (Nominal

Value) G-1009 175 ± 25g 2.03 <50 13.8 ± 5% < 0.0002 85 1.5 40 0.90 11

G-250 250 ± 25g 2.02 <45 13.8 ± 5% < 0.0002 105 1.4 123 0.62 34

G-300 300 ± 25g 2.02 <45 14.0 ± 5% < 0.0002 120 2 162 0.62 46

G-350 350 ± 25g 2.01 <45 14.0 ± 5% < 0.0002 130 1.4 213 0.66 31

G-400 400 ± 25g 2.01 <45 14.1 ± 5% < 0.0002 135 1.4 224 0.69 41

G-475 475 ± 25g 2.01 <45 14.1 ± 5% < 0.0002 140 1.4 310 0.60 40

G-510 550 ± 5% 2.00 <48 14.3 ± 5% < 0.0002 155 1.3 398 0.55 37

G-610 680 ± 5% 2.00 <48 14.5 ± 5% < 0.0002 185 1.5 515 0.70 50

§ Measured @ 9.4 GHz † Measured @ 1 KHz * Measured @ 60 Hz or 2 KHz with Happ = 5xHc For any composition the minimum line width is fixed by Kl/Ms. For some shapes and sizes, line widths even closer to the theoretical limit are possible. Typical value for this series is 20oe, which is available in some shapes and sizes. Bars and Rods are Available for All Material Types, as well as discs, triangles and composites.

DATA SHEET • MICROWAVE GARNETS

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Gadolinium Doped

Composition and Type Number

Magnetization 4Ms (Gauss)

Lande’§ G-factor g-eff

(Nominal Value)

Line Width§

h Oe @ -3 dB

Dielectric§

Constant ’

Dielectric Loss Tangent

Tan = ”/’

Curie Temperature Tc (°C)

(Nominal Value)

Spin Wave Line Width Hk oe

(Nominal Value)

Remanent Induction* Br (Gauss)

(Nominal Value)

Coercive Force* Hc (oe)

(Nominal Value)

Initial Permeability†

μo (Nominal Value)

G-1005 725 ± 5% 2.02 <300 15.4 ± 5% < 0.0002 280 7.6 357 1.51 26

G-1003 870 ± 5% 2.00 <186 15.4 ± 5% < 0.0002 280 6.4 543 1.10 36

G-1002 1000 ± 5% 1.99 <132 15.4 ± 5% < 0.0002 280 5.8 672 0.93 48

G-1001 1200 ± 5% 1.99 <96 15.2 ± 5% < 0.0002 280 4.3 717 1.00 72

G-1600 1600 ± 5% 1.98 <66 15.1 ± 5% < 0.0002 280 3.8 986 0.83 116

Gadolinium Aluminum Doped

Composition and Type Number

Magnetization 4Ms (Gauss)

Lande’§ G-factor g-eff

(Nominal Value)

Line Width§

h Oe @ -3 dB

Dielectric§

Constant ’

Dielectric Loss Tangent

Tan = ”/’

Curie Temperature Tc (°C)

(Nominal Value)

Spin Wave Line Width Hk oe

(Nominal Value)

Remanent Induction* Br (Gauss)

(Nominal Value)

Coercive Force* Hc (oe)

(Nominal Value)

Initial Permeability†

μo (Nominal Value)

G-1006 400 ± 25g 2.01 <78 14.2 ± 5% < 0.0002 150 4.2 185 1.00 23

G-500 550 ± 5% 2.00 <78 14.4 ± 5% < 0.0002 180 3.5 280 0.80 28

G-600 680 ± 5% 2.00 <72 14.6 ± 5% < 0.0002 200 4.0 375 0.69 347

G-1004 800 ± 5% 2.00 <90 14.8 ± 5% < 0.0002 240 5.2 493 0.93 38

G-800 800 ± 5% 2.00 <66 14.7 ± 5% < 0.0002 230 4.3 504 0.69 60

G-1000 1000 ± 5% 1.99 <66 14.7 ± 5% < 0.0002 250 3.6 641 0.97 56

G-1021 1100 ± 5% 1.99 <108 15.2 ± 5% < 0.0002 280 5.4 722 0.76 54

G-1200 1200 ± 5% 1.98 <60 15.1 ± 5% < 0.0002 260 3.2 795 0.83 65

G-1400 1400 ± 5% 1.98 <60 15.1 ± 5% < 0.0002 265 3.1 918 0.69 89

Holmium Doped

Composition and Type Number

Magnetization 4Ms (Gauss)

Lande’§ G-factor g-eff

(Nominal Value)

Line Width§

h Oe @ -3 dB

Dielectric§

Constant ’

Dielectric Loss Tangent

Tan = ”/’

Curie Temperature Tc (°C)

(Nominal Value)

Spin Wave Line Width Hk oe

(Nominal Value)

Remanent Induction* Br (Gauss)

(Nominal Value)

Coercive Force* Hc (oe)

(Nominal Value)

Initial Permeability†

μo (Nominal Value)

G-4260 550 ± 5% 2.00 <120 14.4 ± 5% < 0.0002 180 8.5 280 0.80 28

G-4259 800 ± 5% 2.00 <132 14.8 ± 5% < 0.0002 240 8.1 493 0.93 38

G-4258 1000 ± 5% 1.99 <156 15.4 ± 5% < 0.0002 280 8.9 672 0.93 48

G-4257 1200 ± 5% 1.99 <120 15.2 ± 5% < 0.0002 280 8.1 717 1.00 72

G-4256 1600 ± 5% 1.98 <84 15.1 ± 5% < 0.0002 280 5.4 986 0.83 116

§ Measured @ 9.4 GHz

† Measured @ 1 KHz * Measured @ 60 Hz or 2 KHz with Happ = 5xHc For any composition the minimum line width is fixed by Kl/Ms. For some shapes and sizes, line widths even closer to the theoretical limit are possible. Typical value for this series is 20oe, which is available in some shapes and sizes. Bars and Rods are Available for All Material Types, as well as discs, triangles and composites.

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Narrow Line Width Series*

Composition and Type Number

Magnetization 4Ms (Gauss)

Lande’§ G-factor g-eff

(Nominal Value)

Line Width§

h Oe @ -3 dB

Dielectric§

Constant ’

Dielectric Loss Tangent

Tan = ”/’

Curie Temperature Tc (°C)

(Nominal Value)

Spin Wave Line Width Hk oe

(Nominal Value)

Remanent Induction* Br (Gauss)

(Nominal Value)

Coercive Force* Hc (oe)

(Nominal Value)

Initial Permeability†

μo (Nominal Value)

G-113 1780 ± 5% 1.97 <25 15.0 ± 5% < 0.0002 280 1.4 1277 0.45 134

G-810 800 ± 5% 1.99 <25 14.6 ± 5% < 0.0002 200 1.5 543 0.62 46

G-1010 1000 ± 5% 1.99 <25 14.7 ± 5% < 0.0002 210 1.4 694 1.55 66

G-1210 1200 ± 5% 1.98 <25 14.8 ± 5% < 0.0002 220 1.3 784 0.69 87

Calcium Vanadium Doped

Composition and Type Number

Magnetization 4Ms (Gauss)

Lande’§ G-factor g-eff

(Nominal Value)

Line Width§

h Oe @ -3 dB

Dielectric§

Constant ’

Dielectric Loss Tangent

Tan = ”/’

Curie Temperature Tc (°C)

(Nominal Value)

Spin Wave Line Width Hk oe

(Nominal Value)

Remanent Induction* Br (Gauss)

(Nominal Value)

Coercive Force* Hc (oe)

(Nominal Value)

Initial Permeability†

μo (Nominal Value)

TTVG-800 800 ± 5% 2 <15 13.9 ± 5% < 0.0002 192 2 560 0.6 129

TTVG-930 930 ± 5% 2 <10 14.0 ± 5% < 0.0002 188 2 380 0.4 225

TTVG-1000 1000 ± 5% 2 <10 14.0 ± 5% < 0.0002 199 2 320 0.3 210

TTVG- 1100 1100 ± 5% 2 <10 14.1 ± 5% < 0.0002 205 2 600 0.6 209

TTVG-1200 1200 ± 5% 2 <10 14.4 ± 5% < 0.0002 208 2 635 0.3 221

TTVG-1400 1400 ± 5% 2 <10 14.5 ± 5% < 0.0002 215 2 825 0.3 263

TTVG-1600 1600 ± 5% 2 <10 14.6 ± 5% < 0.0002 220 2 1000 0.6 227

TTVG-1850 1850 ± 5% 2 <10 14.8 ± 5% < 0.0002 200 2 1232 0.5 388

TTZ1950 1950 ± 5% 2 <15 15.0 ± 5% < 0.0002 235 2 — — —

§ Measured @ 9.4 GHz † Measured @ 1 KHz * Measured @ 60 Hz or 2 KHz with Happ = 5xHc For any composition the minimum line width is fixed by Kl/Ms. For some shapes and sizes, line widths even closer to the theoretical limit are possible. Typical value for this series is 20oe, which is available in some shapes and sizes. Bars and Rods are Available for All Material Types, as well as discs, triangles and composites.

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Hysteresis Loop

H Oersteds

B Ga

uss

300

225

150

75

0

-75

-150

-225

-300-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 84Br = 40Hc = 0.90

0.5" O.D. by 0.4" I.D. by 0.5" length toroidTemperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

280

240

200

160

120

80

40

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-60 -40 -20 0 20 40 60 80 100 120 140

4πMs

204672-001

204672-002Hysteresis Loop H Oersteds

B Ga

uss

300

225

150

75

0

-75

-150

-225

-300

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 168Br = 123Hc = 0.62

0.5" O.D. by 0.4" I.D. by 0.5" length toroidTemperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

525

450

375

300

225

150

75

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-60 -40 -20 0 20 40 60 80 100 120 140

4πMs

204672-003Hysteresis Loop H Oersteds

B Ga

uss

300

225

150

75

0

-75

-150

-225

-300

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 207Br = 162Hc = 0.62

0.5" O.D. by 0.4" I.D. by 0.5" length toroidTemperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

525

450

375

300

225

150

75

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-60 -40 -20 0 20 40 60 80 100 120 140

4πMs

G-1009 Aluminum Doped

G-250 Aluminum Doped

G-300 Aluminum Doped

DATA SHEET • MICROWAVE GARNETS

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204672-004Hysteresis Loop H Oersteds

B Ga

uss

300

225

150

75

0

-75

-150

-225

-300-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 269Br = 213Hc = 0.66

0.5" O.D. by 0.4" I.D. by 0.5" length toroidTemperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

525

450

375

300

225

150

75

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-60 -40 -20 0 20 40 60 80 100 120 140

4πMs

204672-005Hysteresis Loop

H Oersteds

B Ga

uss

300

225

150

75

0

-75

-150

-225

-300-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 291Br = 224Hc = 0.69

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

700

600

500

400

300

200

100

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-60 -40 -20 0 20 40 60 80 100 120 140

4πMs

204672-006

600

450

300

150

0

-150

-300

-450

-600

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 360Br = 310Hc = 0.60

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

700

600

500

400

300

200

100

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4

πMs G

auss

-60 -40 -20 0 20 40 60 80 100 120 140

4πMs

G-350 Aluminum Doped

G-400 Aluminum Doped

G-475 Aluminum Doped

DATA SHEET • MICROWAVE GARNETS

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204672-007

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 448Br = 398Hc = 0.55

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

700

600

500

400

300

200

100

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-008

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 582Br = 515Hc = 0.70

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-009

500

375

250

125

0

-125

-250

-375

-500

Hysteresis Loop H Oersteds

B Ga

uss

-10 -8 -6 -4 -2 0 2 4 6 8 10

Bm = 439Br = 357Hc = 1.51

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

G-510 Aluminum Doped

G-610 Aluminum Doped

G-1005 Gadolinium Doped

DATA SHEET • MICROWAVE GARNETS

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204672-010

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 616Br = 543Hc = 1.10

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-011

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 756Br = 672Hc = 0.93

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-012

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 851Br = 717Hc = 1.0

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

G-1003 Gadolinium Doped

G-1002 Gadolinium Doped

G-1001 Gadolinium Doped

DATA SHEET • MICROWAVE GARNETS

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204672-013

1600

1200

800

400

0

-400

-800

-1200

-1600

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 1165Br = 986Hc = 0.83

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

2800

2400

2000

1600

1200

800

400

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-014

300

225

150

75

0

-75

-150

-225

-300

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 235Br = 185Hc = 1.0

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

700

600

500

400

300

200

100

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-015

500

375

250

125

0

-125

-250

-375

-500

Hysteresis Loop H Oersteds

B Ga

uss

-10 -8 -6 -4 -2 0 2 4 6 8 10

Bm = 336Br = 280Hc = 1.4

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 10 oe

700

600

500

400

300

200

100

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

G-1600 Gadolinium Doped

G-1006 Gadolinium Aluminum Doped

G-500 Gadolinium Aluminum Doped

DATA SHEET • MICROWAVE GARNETS

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204672-016

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 482Br = 375Hc = 0.69

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B m

, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-017

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 560Br = 493Hc = 0.93

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-018

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 594Br = 504Hc = 0.69

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

G-600 Gadolinium Aluminum Doped

G-1004 Gadolinium Aluminum Doped

G-800 Gadolinium Aluminum Doped

DATA SHEET • MICROWAVE GARNETS

Phone [301] 695-9400 • Fax [301] 695-7065 • [email protected] • www.skyworksinc.com 10 July 12, 2017 • Trans-Tech Proprietary Information • Products and Product Information are Subject to Change Without Notice • 204672A

204672-019

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 729Br = 641Hc = 0.97

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-020

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 823Br = 722Hc = 0.76

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-021

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 930B

r = 795

Hc = 0.83

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B m

, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

G-1000 Gadolinium Aluminum Doped

G-1021 Gadolinium Aluminum Doped

G-1200 Gadolinium Aluminum Doped

DATA SHEET • MICROWAVE GARNETS

Phone [301] 695-9400 • Fax [301] 695-7065 • [email protected] • www.skyworksinc.com 204672A • Trans-Tech Proprietary Information • Products and Product Information are Subject to Change Without Notice • July 12, 2017 11

204672-022

1600

1200

800

400

0

-400

-800

-1200

-1600

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 107Br = 918Hc = 0.69

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

2800

2400

2000

1600

1200

800

400

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B m

, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-023

500

375

250

125

0

-125

-250

-375

-500

Hysteresis Loop H Oersteds

B Ga

uss

-10 -8 -6 -4 -2 0 2 4 6 8 10

Bm = 336Br = 280Hc = 1.4

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 10 oe

700

600

500

400

300

200

100

0

Bm

BrHc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-024Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 560Br = 493Hc = 0.93

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1000

750

500

250

0

-250

-500

-750

-1000

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

G-1400 Gadolinium Aluminum Doped

G-4260 Gadolinium & Aluminum Holmium Doped

G-4259 Gadolinium & Aluminum Holmium Doped

DATA SHEET • MICROWAVE GARNETS

Phone [301] 695-9400 • Fax [301] 695-7065 • [email protected] • www.skyworksinc.com 12 July 12, 2017 • Trans-Tech Proprietary Information • Products and Product Information are Subject to Change Without Notice • 204672A

204672-025

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 756Br = 672Hc = 0.93

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-026

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 851Br = 717Hc = 1.0

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-027

1600

1200

800

400

0

-400

-800

-1200

-1600

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 1165Br = 986Hc = 0.83

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

2800

2400

2000

1600

1200

800

400

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

G-4258 Gadolinium & Aluminum Holmium Doped

G-4257 Gadolinium & Aluminum Holmium Doped

G-4256 Gadolinium & Aluminum Holmium Doped

DATA SHEET • MICROWAVE GARNETS

Phone [301] 695-9400 • Fax [301] 695-7065 • [email protected] • www.skyworksinc.com 204672A • Trans-Tech Proprietary Information • Products and Product Information are Subject to Change Without Notice • July 12, 2017 13

204672-028

1600

1200

800

400

0

-400

-800

-1200

-1600

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 1449Br = 1277Hc = 0.45

0.5" O.D. by 0.4" I.D.by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

2800

2400

2000

1600

1200

800

400

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-029

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 644Br = 543Hc = 0.62

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-030

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 773Br = 694Hc = 0.55

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

G-113 Yttrium

G-810 Aluminum Doped

G-1010 Aluminum Doped

DATA SHEET • MICROWAVE GARNETS

Phone [301] 695-9400 • Fax [301] 695-7065 • [email protected] • www.skyworksinc.com 14 July 12, 2017 • Trans-Tech Proprietary Information • Products and Product Information are Subject to Change Without Notice • 204672A

204672-031

1000

750

500

250

0

-250

-500

-750

-1000

Hysteresis Loop H Oersteds

B Ga

uss

-5 -4 -3 -2 -1 0 1 2 3 4 5

Bm = 896Br = 784Hc = 0.69

0.5" O.D. by 0.4" I.D. by 0.5" length toroid

Temperature: 25 °C.Frequency: 2 KHzDrive Field: 5.0 oe

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-032

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

1400

1200

1000

800

600

400

200

0

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

Bm

Br

Hc

4πMs

204672-033

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

2800

2400

2000

1600

1200

800

400

0

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 0 40 80 120 160 200 240 280 320

Bm

Br

Hc

4πMs

G-1210 Aluminum Doped

TTVG-800 Narrow Line Width Garnet

TTVG-930 Narrow Line Width Garnet

TTVG-1000 Narrow Line Width Garnet

TTVG-1400 Narrow Line Width Garnet

DATA SHEET • MICROWAVE GARNETS

Phone [301] 695-9400 • Fax [301] 695-7065 • [email protected] • www.skyworksinc.com 204672A • Trans-Tech Proprietary Information • Products and Product Information are Subject to Change Without Notice • July 12, 2017 15

204672-034

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

2800

2400

2000

1600

1200

800

400

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 40 80 120 160 200 240 280 320

4πMs

204672-035

1400

1200

1000

800

600

400

200

0

Bm

Br

Hc

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 0 40 80 120 160 200 240 280 320

4πMs

2800

2400

2000

1600

1200

800

400

0

4.03.02.01.0

0

Hc Oersteds

Hysteresis Loop Temperature °C

B r, B

m, 4πM

s Gau

ss

-80 -40 0 0 40 80 120 160 200 240 280 320

Bm

Br

Hc

4πMs

TTVG-1100 Narrow Line Width Garnet TTVG-1600 Narrow Line Width Garnet

TTVG-1200 Narrow Line Width Garnet TTVG-1850 Narrow Line Width Garnet

DATA SHEET • MICROWAVE GARNETS

Phone [301] 695-9400 • Fax [301] 695-7065 • [email protected] • www.skyworksinc.com 16 July 12, 2017 • Trans-Tech Proprietary Information • Products and Product Information are Subject to Change Without Notice • 204672A

Copyright © 2006-2010, 2015, 2017, Trans-Tech Inc., All Rights Reserved.

Information in this document is provided in connection with Trans-Tech, Inc. ("Trans-Tech"), a wholly-owned subsidiary of Skyworks Solutions, Inc. These materials, including the information contained herein, are provided by Trans-Tech as a service to its customers and may be used for informational purposes only by the customer. Trans-Tech assumes no responsibility for errors or omissions in these materials or the information contained herein. Trans-Tech may change its documentation, products, services, specifications or product descriptions at any time, without notice. Trans-Tech makes no commitment to update the materials or information and shall have no responsibility whatsoever for conflicts, incompatibilities, or other difficulties arising from any future changes. No license, whether express, implied, by estoppel or otherwise, is granted to any intellectual property rights by this document. Trans-Tech assumes no liability for any materials, products or information provided hereunder, including the sale, distribution, reproduction or use of Trans-Tech products, information or materials, except as may be provided in Trans-Tech Terms and Conditions of Sale. THE MATERIALS, PRODUCTS, AND INFORMATION ARE PROVIDED "AS IS" WITHOUT WARRANTY OF ANY KIND,WHETHER EXPRESS, IMPLIED, STATUTORY, OR OTHERWISE, INCLUDING FITNESS FOR A PARTICULAR PURPOSE OR USE, MERCHANTABILITY, PERFORMANCE, QUALITY, OR NON-INFRINGEMENT OF ANY INTELLECTUAL PROPERTY RIGHT; ALL SUCH WARRANTIES ARE HEREBY EXPRESSLY DISCLAIMED. TRANS-TECH DOES NOT WARRANT THE ACCURACY OR COMPLETENESS OF THE INFORMATION, TEXT, GRAPHICS, OR OTHER ITEMS CONTAINED WITHIN THESE MATERIALS. TRANS-TECH SHALL NOT BE LIABLE FOR ANY DAMAGES, INCLUDING BUT NOT LIMITED TO ANY SPECIAL, INDIRECT, INCIDENTAL, STATUTORY, OR CONSEQUENTIAL DAMAGES, INCLUDING WITHOUT LIMITATION, LOST REVENUES OR LOST PROFITS THAT MAY RESULT FROM THE USE OF THE MATERIALS OR INFORMATION,WHETHER OR NOT THE RECIPIENT OF MATERIALS HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. Trans-Tech products are not intended for use in medical, lifesaving, or life-sustaining applications, or other equipment in which the failure of the Trans-Tech products could lead to personal injury, death, or physical or environmental damage. Trans-Tech customers using or selling Trans-Tech products for use in such applications do so at their own risk and agree to fully indemnify Trans-Tech for any damages resulting from such improper use or sale. Customers are responsible for their products and applications using Trans-Tech products, which may deviate from published specifications as a result of design defects, errors, or operation of products outside of published parameters or design specifications. Customers should include design and operating safeguards to minimize these and other risks. Trans-Tech assumes no liability for applications assistance, customer product design, or damage to any equipment resulting from the use of Trans-Tech products outside of stated published specifications or parameters. Skyworks and the Skyworks symbol are trademarks or registered trademarks of Skyworks Solutions, Inc., in the United States and other countries. Third-party brands and names are for identification purposes only, and are the property of their respective owners.