SDA and ALX MiniFlex Super Distribution Amplifiers 1002 MHz

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1 SDA and AX MiniFlex Super Distribution Amplifiers 002 Mz The ACI MiniFlex super distribution amplifiers are now offered with the Gallium Nitride (GaN) hybrid technology that allows for 3 higher output levels while maintaining close to the same specifications as the previous stations with the Gallium Arsenide (GaAs) hybrids. With this increase in the output level capabilities the cable operators are now able to extend the fiber deeper in their networks at a lower cost by reducing the number of active that are needed. The GaN hybrid technology is also extremely beneficial for use in the traditional FC networks with the increase in station performance at the standard output levels over the GaAS hybrid stations. Features 002 Mz may be dropped into the 0 or 870 Mz spacing Availability of an 85/05 or 204/258 Mz option to increase the reverse bandwidth Common 002 Mz housing platform, 8 or 4 Mz reverse path rejection filter (sold separately) 5 to 42, 55, 65, 85 or 204 Mz reverse path Patented DSIM Technology (Digital ) Increased reliability with higher surge Ideal for fiber deep networks with the extended reach of the amplifiers Ideal for traditional FC networks for increased performance & reliability ower power consumption Upgradable, reverse split options Page of 3

2 SDAT (Type A, T & M) 002 Mz GaN Amplifier Block Diagram 8 or 20 Mid/igh ow End BSW Mz 3.0 Trunk Standard 4.0 Standard 34.0 Trunkigh 44.0 igh Mz 33.0 Trunk Standard Standard 36.0 Trunkigh igh 3 4 P4 Note:. Forward gain stated at 002 Mz with. Reverse gain stated at 40 Mz. SDBT (Type 6A, 6T & 6M) 002 Mz GaN Amplifier Block Diagram 8 or 20 Mid/igh ow End 3 BSW Mz 40.0 Standard igh Mz 4.0 Standard 44.0 igh 5 6 P4 Note:. Forward gain stated at 002 Mz with. Reverse gain stated at 40 Mz. Page 2 of 3

3 SDAF (Type 2ATRI, 2TTRI, 2MTRI) 002 Mz GaN Amplifier Block Diagram Mid/igh ow End Fixed 2 BSW 8 or 20 See options listed below Plugin Jumper Splitter or Coupler (DC/S) 3 4 P4 Notes:. Forward gain stated at 002 Mz with and 7.2 of slope at. Reverse gain stated at 40 Mz. 2. For 5.0 slope the forward gain is degrease by. 3. Amplifiers are configured at the factory with jumper in Position #2 to have & P4 active. Splitters and Couplers are sold separately. Jumper Position # ( & active) Jumper Position #2 ( & P4 active) SDAGSPTR3.5 SDAGDC7 SDAGDC7 SDAGDC2 SDAGSPTR3.5 TRU SDAGDC7 7 TRU SDAGDC7 7 TRU SDAGDC2 2 SDAGDC2 TRU SDAGDC2 2 G SG P4 N/A N/A G SG N/A N/A P4 G SG P G SG P G SG P G SG P4 4.0 G SG P SDAB (Type 2A, 2T & 2M) 002 Mz GaN Amplifier Block Diagram Mid/igh ow End 2 8 or 20 BSW 5.0 Mz 42.0 Standard 45.0 igh Mz Standard igh 3 4 P4 Note:. Forward gain stated at 002 Mz with. Reverse gain stated at 40 Mz. Page 3 of 3

4 SDA (Type 3A, 3T, & 3M Dual) 002 Mz GaN Amplifier Block Diagram Mid/igh ow End 2 8 or 23 BSW 5.0 Mz 34.5 Standard Mz 35.5 Standard 4 P4 Note:. Forward gain stated at 002 Mz with. Reverse gain stated at 40 Mz. SDE (Type 3A, 3T, & 3M) 002 Mz GaN Amplifier Block Diagram Mid/igh ow End 2 8, 2 or 24 BSW 5.0 Mz 34.5 Standard 37.5 igh Mz 35.5 Standard 38.5 igh Note:. Forward gain stated at 002 Mz with. Reverse gain stated at 40 Mz. Page 4 of 3

5 AX (Type 3A, 3T, & 3M) 002 Mz GaN Amplifier Block Diagram Mid/igh ow End 2 8, 2 or 24 PF 5.0 Mz 34.5 Standard 37.5 igh Mz 35.5 Standard 38.5 igh Note:. Forward gain stated at 002 Mz with. Reverse gain stated at 40 Mz. Page 5 of 3

6 STATION PARAMETERS: 002 Mz 4253 Mz Split SDA 002 Mz With GaN ybrids 7.2 Forward 002 Mz igh ousing passband CONDITIONS UNITS Mz Input current capacity Any port, worst case Amp um modulation Time rated current above Return loss Any port, worst case s Frequency range Mz Test point type Directional coupler Test point level Forward & reverse Test point accuracy Forward & reverse ± Station Slope Operational slope trunk & 54 / 550 / 002 Mz Slope control type Cable equalizers Slope control range Includes cable equivalent Slope control steps Equalizer value steps Station Group Delay Channel 2 (Std) Channel 3 Channel 4 Channel 5 & > Pilot Channel Type Compensation Range Accuracy Nominal ºF (25 ºC) Center frequency bandwidth Configuration Operational Specifications Station passband Station flatness trunk out Station flatness feeder out Gain ( / Manual) Gain ( / Manual) Gain ( / Manual) Gain control type ± Mz ± ± Gain control steps value steps Station Output evels Digital Station Output evels Analog Station Noise Figure Noise figure (w / for input loss) Station Distortions (Worse Case) Normalized w / 0 slope + / 002 Mz (Temperature 54 / 550 / / 550 / 002 Mz 54 Mz 550 Mz 002 Mz SDAT (Type ) igh Gain 38 / 47 / / 47 / / 47 / / 47 / / 47 / Trunk / 550 Mz analog channel loading, 79 channels +450 Mz digital channel loading, 256 QAM at 6 c relative to its associated visual carrier SDAF (Type 2TRI) igh Gain / 47 / 55.2 SPECIFICATIONS 5 to Mz Mz to 40 (Reverse) / 54 to 002 (Forward) nsec / Mz 0 mv mv 36 / / 9.0 / 7.2 Plugin 's 2.0 to (.0 steps) & (2.0 steps).0 to 5.0 (.0 steps) 40 (35 Typical) 4 DSIMA Single Pilot Channel NTSC Analog or QAM System compensation input change 002 Mz (Mz) 54 to 002 SDAB (Type 2) igh Gain / 47 / / 47 / / / / 5 43 / / / / 5 SDBT (Type 6) igh Gain / / / 37 / / 47 / / 49 Plugin pads 22 / 3.0 / / 4.0 / / 4.0 / / 4.0 / / 4.0 / / 4.0 / / 4.0 / / 4.0 / / 4.0 / / 47.0 / / 4.0 / / 4.0 / 49.2 SDE igh Gain / 47 / AX igh Gain / / 47 / Composite Triple Beat (CTB) Cross Modulation (XMOD) Composite Second Order (CSO) (Vc +0. &.25 Mz) Composite Second Order (CSO+) (Vc +.25 Mz ) CarriertoIntermodulation Noise (CIN) / / / / / Page 6 of 3

7 STATION PARAMETERS: 002 Mz 4253 Mz Split SDA 002 Mz With GaN ybrids 7.2 Forward 002 Mz Standard ousing passband CONDITIONS UNITS Mz Input current capacity Any port, worst case Amp um modulation Time rated current above Return loss Any port, worst case s Frequency range Mz Test point type Directional coupler Test point level Forward & reverse Test point accuracy Forward & reverse ± Station Slope Operational slope trunk & 54 / 550 / 002 Mz Slope control type Cable equalizers Slope control range Includes cable equivalent Slope control steps Equalizer value steps Station Group Delay Channel 2 (Std) Channel 3 Channel 4 Channel 5 & > Pilot Channel Type Compensation Range Accuracy Nominal ºF (25 ºC) Center frequency bandwidth Configuration Operational Specifications Station passband Station flatness trunk out Station flatness feeder out Gain ( / Manual) Gain ( / Manual) Gain ( / Manual) Gain control type ± Mz ± ± Gain control steps value steps Station Output evels Digital Station Output evels Analog Station Noise Figure Noise figure (w / for input loss) Normalized w / 0 slope + / 002 Mz (Temperature 54 / 550 / / 550 / 002 Mz 54 Mz 550 Mz 002 Mz nsec / 3.58 Mz mv mv SDAT (Type ) DSIMA Single Pilot Channel NTSC Analog or QAM System compensation input change 002 Mz (Mz) 9 / 38 / / 38 / / 38 / / 38 / / 38 / / 38 / / 38 / / 38 / / 38 / / 38 / / 38 / / 38 / / 38 / / 44 / / 44 / / 44 / / 44 / / 44 / SPECIFICATIONS Station Distortions (Worse Case) Trunk / 5 to Mz Mz to 40 (Reverse) / 54 to 002 (Forward) to / / 48 4 / / / / 34 / / 44 / / 44 / / 44 / SDBT (Type 6) 4 / 44 SDAF (Type 2TRI) 0 / 9.0 / 7.2 Plugin 's 2.0 to (.0 steps) & (2.0 steps).0 to 5.0 (.0 steps) 40 (35 Typical) SDAB (Type 2) SDA (Type 3DUA) SDE 43 / 48 4 / / / / / / 4 Plugin pads 35 / 44 / / 44 / / 44 / / 44 / AX / 4 29 / 38 / / 44 / Mz analog channel loading, 79 channels +450 Mz digital channel loading, 256 QAM at 6 c relative to its associated visual carrier Composite Triple Beat (CTB) Cross Modulation (XMOD) Composite Second Order (CSO) (Vc +0. &.25 Mz) Composite Second Order (CSO+) (Vc +.25 Mz ) CarriertoIntermodulation Noise (CIN) 8 / 80 / 7 / 7 82 / / Page 7 of 3

8 STATION PARAMETERS: 002 Mz 4253 Mz Split SDA 002 Mz With GaN ybrids 5.0 Forward 002 Mz igh ousing passband CONDITIONS UNITS Mz Input current capacity Any port, worst case Amp um modulation Time rated current above Return loss Any port, worst case s Frequency range Mz Test point type Directional coupler Test point level Forward & reverse Test point accuracy Forward & reverse ± Station Slope Operational slope trunk & 54 / 550 / 002 Mz Slope control type Cable equalizers Slope control range Includes cable equivalent Slope control steps Equalizer value steps Station Group Delay Channel 2 (Std) Channel 3 Channel 4 Channel 5 & > Pilot Channel Type Compensation Range Accuracy Nominal ºF (25 ºC) Center frequency bandwidth Configuration Operational Specifications Station passband Station flatness trunk out Station flatness feeder out Gain ( / Manual) Gain ( / Manual) Gain ( / Manual) Gain control type ± Mz ± ± Gain control steps value steps Station Output evels Digital Station Output evels Analog Station Noise Figure Noise figure (w / for input loss) Normalized w / 0 slope + / 002 Mz (Temperature 54 / 550 / / 550 / 002 Mz 54 Mz 550 Mz 002 Mz nsec / 3.58 Mz mv mv SDAT (Type ) igh Gain SDBT (Type 6) igh Gain / / / / / / / / / / 48 SDE igh Gain 39 / 46.8 / / 46.8 / / 46.8 / / 46.8 / Station Distortions (Worse Case) Trunk / AX igh Gain / / 30.8 / / 40.8 / / 40.8 / / 40.8 / / 40.8 / / 40.8 / / 40.8 / / 40.8 / / 40.8 / / 40.8 / / 40.8 / / 40.8 / / 36.8 / / 46.8 / / 46.8 / / 46.8 / / 46.8 / 54 SPECIFICATIONS 5 to Mz Mz to 40 (Reverse) / 54 to 002 (Forward) / 7.9 / 5.0 Plugin 's 2.0 to (.0 steps) & (2.0 steps).0 to 5.0 (.0 steps) 40 (35 Typical) DSIMA Single Pilot Channel NTSC Analog or QAM System compensation input change 002 Mz SDAF (Type 2TRI) igh Gain (Mz) 54 to 002 Plugin pads SDAB (Type 2) igh Gain 37.5 / / 46.8 / / 46.8 / Mz analog channel loading, 79 channels +450 Mz digital channel loading, 256 QAM at 6 c relative to its associated visual carrier 39 / 46.8 / Composite Triple Beat (CTB) Cross Modulation (XMOD) Composite Second Order (CSO) (Vc +0. &.25 Mz) Composite Second Order (CSO+) (Vc +.25 Mz ) CarriertoIntermodulation Noise (CIN) / / / / 72 / Page 8 of 3

9 STATION PARAMETERS: 002 Mz 4253 Mz Split SDA 002 Mz With GaN ybrids 5.0 Forward 002 Mz Standard ousing passband CONDITIONS UNITS Mz Input current capacity Any port, worst case Amp um modulation Time rated current above Return loss Any port, worst case s Frequency range Mz Test point type Directional coupler Test point level Forward & reverse Test point accuracy Forward & reverse ± Station Slope Operational slope trunk & 54 / 550 / 002 Mz Slope control type Cable equalizers Slope control range Includes cable equivalent Slope control steps Equalizer value steps Station Group Delay Channel 2 (Std) Channel 3 Channel 4 Channel 5 & > Pilot Channel Type Compensation Range Accuracy Nominal ºF (25 ºC) Center frequency bandwidth Configuration Operational Specifications Station passband Station flatness trunk out Station flatness feeder out Gain ( / Manual) Gain ( / Manual) Gain ( / Manual) Gain control type ± Mz ± ± Gain control steps value steps Station Output evels Digital Station Output evels Analog Station Noise Figure Noise figure (w / for input loss) Normalized w / 0 slope + / 002 Mz (Temperature 54 / 550 / / 550 / 002 Mz 54 Mz 550 Mz 002 Mz nsec / 3.58 Mz mv mv SDAT (Type ) SDBT (Type 6) DSIMA Single Pilot Channel NTSC Analog or QAM System compensation input change 002 Mz 30 / 37.8 / / 37.8 / / 37.8 / / 37.8 / / 37.8 / / 37.8 / / 37.8 / / 37.8 / / 37.8 / / 37.8 / (Mz) 3 / / / / / / / / 45 4 / / / / / / 27.8 / / 37.8 / / 37.8 / / 37.8 / / 33.8 / 4 36 / 43.8 / 5 36 / 43.8 / 5 36 / 43.8 / 5 36 / 43.8 / 5 36 / 43.8 / 5 36 / 43.8 / 5 36 / 43.8 / 5 36 / 43.8 / 5 36 / 43.8 / 5 36 / 43.8 / 5 36 / 43.8 / Station Distortions (Worse Case) Trunk / 550 Mz analog channel loading, 79 channels +450 Mz digital channel loading, 256 QAM at 6 c relative to its associated visual carrier SPECIFICATIONS 5 to to Plugin pads SDE Mz Mz to 40 (Reverse) / 54 to 002 (Forward) / 7.9 / 5.0 Plugin 's 2.0 to (.0 steps) & (2.0 steps).0 to 5.0 (.0 steps) SDAF (Type 2TRI) 40 (35 Typical) SDAB (Type 2) 36 / 43.8 / 5 SDA (Type 3DUA) AX / / 43.8 / Composite Triple Beat (CTB) Cross Modulation (XMOD) Composite Second Order (CSO) (Vc +0. &.25 Mz) Composite Second Order (CSO+) (Vc +.25 Mz ) CarriertoIntermodulation Noise (CIN) 83 / 82 / 79 / / 8 / Page 9 of 3

10 REVERSE SPECTRUM: v REVERSE CANNE OADING Typically 23 each,.5 MZ wide QPSK channels. Reverse General CONDITIONS UNITS Station passband MZ Station flatness Normalized w / 0 slope ± Reverse Station Gain SPECIFICATION 5 to 42 Gain + / 40 Mz (Temperature stabilized) 8 or 20 for SDAT, SDBT, SDAF & SDAB 8 or 23 for SDA 8, 2 or 24 for SDE & AX Gain control type Gain control range Gain control steps value steps Reverse Station Slope Slope control type Cable equalizers Slope control range Slope control steps Equalizer value steps Reverse Station Output Forward input port Average mv REVERSE STATION DISTORTIONS Composite Second Order (CSO) Composite Tripe Beat (CTB) Cross Modulation (XMOD) Reverse Station Group Delay Configuration Reverse Noise Figure 5 Mz 7 Mz 0 Mz 35 Mz 38.5 Mz SDAT (Type ) SDBT (Type 6) SDAF (Type 2TRI) SDAB (Type 2) SDA (Type 3DUA) Station noise figure (w / ) Across the bandwidth Requirements: DSIMA Includes reverse W Manual (Worst case) W AC Voltage Input ranges Current Draw (with ) 40 VAC A VAC A VAC A VAC A VAC A VAC A Weight SDE AX SDAT SDBT SDAF SDAB SDA SDE AX Weight lbs. (kg) 6.0 (7.26) 6.0 (7.26) 6.0 (7.26) 6.0 (7.26) 4.5 (6.58) 4.5 (6.58).0 (4.99) Physical Dimensions ( X W X D) In, (cm) Environmental Operating temperature 6 channel loading nsec /.5 Mz o F ( o C) 6. X 4.25 X 9.00 (7. X 36.2 X 22.9) Plugin pads 2.0 Plugin s 0 to to +40 (40 to +60) 4.00 X 4.25 X 9.00 (0.2 X 36.2 X 22.9) Page 0 of 3

11 SDA & AX 5 Amp 002 Mz GaN Product Configuration Worksheet Customer: Created By: Order Date: ORDERING MATRIX August 6, 208 PART NUMBER Position STATION TYPE A = AX Output ow Profile E D = SDA 2 Output E = SDE Output E B = SDAB 2 Output F = SDAF 2 or 3 Output T = SDAT 3 Output Trunk J = SDBT 3 Equal Output 2 BANDWIDT FRUENCY = 002 Mz Upper Frequency B 3,4 STATION GAIN (Forward) For gain values, use the first two digits listed in the part number Station Type TYPE TYPE 6 TYPE 2 TRI TYPE 2 TYPE 3 DUA TYPE 3 TYPE 3 Amplifier Model SDAT SDBT SDAF SDAB SDA SDE AX Frequency Max gain with / Thermal Max gain w/ bypass ,6 CONTRO TYPE D2 = DSIMA Single Pilot (Analog or Digital pilot) Pilot channel loaded during setup M = Manual ( Bypass) 7 B CURRENT PASSING CAPACITY 5A (Continuous on all ports) 8 STATION SOPE E= F= T= *K= 42/54 85/05 240/ *Slope option "K" is only available on the SDE and SDA 002 Mz stations 9 OUSING OPTIONS 0 = No housing or power pack B = SDA Standard with TP (Same as option E) = Module upgrade kit with power supply and seizure screws G = AX Standard low profile line extender with TP E = SDA Standard with TP C = SDA Standard with TP (Same as option E) 0 DIPEX FRUENCY SPIT 4 =42 / 53 5 =55 / 70 6 =65 / 85 8 =85 / 05 2 =204 / 258 STATION GAIN (Reverse) 0 = None 4 = 8 min (SDA: T, B, F, A, BT) J = 20 min (SDA: T, B, F, A, BT) = Passive = 8 min (SDE & AX) T = 23 min (SDA: B, A) R = 2 min (SDE, A & AX) U = 24 min (SDE & AX) 2 SURGE PROTECTION A = Version 5 SDA 4590 VAC power supply and plugin sidactor or AX with Plugin sidactor (Standard) B = Version 4 SDA 4090 VAC power supply with fuse surge protection D = Version 5 SDA 4590 VAC power supply and plugin sidactor K = Version 6 SDA 4590 VAC power supply with fuse surge protection and plugin sidactor F = AX with plugin sidactor & fuse in power supply C = No Sidactor Triac only (Included in the SDA power supply) * For SDA module only units, select the power supply version that is in the current complete station. 3,4 X X TEST SPECS (Determined by ACI engineering) 5 X SPECIA/CUSTOMER: ABES, FUNCTIONS, (Determined by Product Management) 0, = No special instructions 2 = Customer P/N in description 3 = SDAF w/3 splitter installed T or R = Trunk line extender for AX A = GaN ybrids & adjustable 's N = GaN Forward ybrids Generic Order Form: Not all configurations are available Page of 3

12 Accessory Ordering Information: The SDA ordering matrix provides the part number information to order the configured stations. This page contains the ordering information for the required accessories that will be needed to make the stations functional in the field or the optional accessories that can be ordered separately. Required Accessories (For using fixed value plugin equalizers) Description JXP style attenuator pads Required for forward input Required for reverse output (if active) Forward equalizers Required forward input Reverse equalizers Required reverse output (if active) Part Numbers (Where XX.X = value) JX.38XX.X (0 to 20 in steps) DAG/XX (.0 to 8.0 in.0 steps) (20.0 to 30.0 in 2.0 steps) CG/XX (.0 to 5.0 in.0 steps) RDA42/XX (0 to 2.0 in.0 steps) RDA85/XX ( to 2.0 in.0 steps) Accessories Description Part Numbers Digital Station Intelligence Manager Single Pilot Module (Analog or Digital) Digital Station Intelligence Manager Controller DSIMAMD02 DSCTxxxyyy xxx = Pilot Channel Number yyy = Channel Type IRC = Analog IRC Spacing DIG = Digital / QAM Digital Station Intelligence Manager Cable Assembly For Computer Interface DSIM Bluetooth Dongle Apple ios or android DSIMDONGE02 Cable assembly DSIM adaptor to connect controller Manual (Bypass plugin) Adjustable Equalizer JXP Platform 08 Adjustable Cable Equivalent Equalizers JXP Platform 09 Adjustable Reverse Equalizers 542, 85 and 204 Mz JXP Platform 02 Adjustable Reverse Equalizers 585 Mz JXP Platform 02 Reverse 4 Mz Reverse 8 Mz Reverse bypass BYPASSG ADAG ACG ARDA42 ARDA85 ARDA204 ARDA85 RPTR4 RPTR8 RPTRJMP Page 2 of 3

13 Accessories (Continued) Description Part Numbers DC/S Plugin SDAF only SDAGSPTR3.5 SDAGDC7 SDAGDC2 Test Probe (5.5 ong) Test Probe (.57 / 4 cm ong) TP04 Test Adapter for Test Probe to Seizure Screw ( Connector) 006 Thruhousing Test Cable. Allows reading of internal test points with the housing closed AC Puller Tool 303 Nut Driver /2" 3032 Nut Driver 5/8" 3033 Supply with fuse (4090 VAC) Version 4 Supply (4590 VAC) Version 5 Replacement SDA ousing Replacement AX ousing Metal 5/8" Port ousing Caps SDA90VSPV4 SDA90VSPV5 SG03/00 SG5/00 5/8PUG ousing Port Dielectric Insert Seizure Screw / Connector 5A ACI Communications, Inc th Avenue South Kent, WA Rev W Printed in U.S.A. ACI Communications, Inc. reserves the right to discontinue the manufacture or change specifications without prior notice on any parts illustrated in this data sheet. Registered trademarks are the property of their respective owners Page 3 of 3

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