ASEM MOTO BLE & MB Distribution Amplifiers 1002 MHz
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1 BLE (1 Output Line Extender) MB (2 or 3 Output Bridger) ASEM MOTO BLE & MB Distribution Amplifiers 1002 The ACI ASEM Moto BLE and MB 1G RF upgrade modules 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 HFC networks with the increase in station performance at the standard output levels over the GaAS hybrid stations. Features Drop-in 1G replacement RF modules for Motorola Starline MB Mini-Bridger and BLE Line Extender 5 to 42, 65, 85 or 204 reverse path Ideal for traditional HFC networks for increased performance & reliability Ideal for fiber deep networks with the extended reach of the amplifiers Patented DSIM technology (Digital AGC) adjustable forward and return EQ s Increased reliability with higher surge protection in the GaN hybrids Up to 3 higher output levels with same distortion performance with GaN Hybrids Lower power consumption then OEM amplifiers Page 1 of 8
2 BLOCK DIAGRAMS ASEM-BLE ASEM-MB ASEM MB (Type 2A-TRI & 2M-TRI) 1002 GaN Amplifier Block Diagram P1 Input Reverse Output AC/ RF -20 Power Director Fuse H L EQ EQ 1 Thermal Control Circuit Rejection Filter Net Board Mid/High Net Board Low End Peaking BSW H L -20 AC/ RF Power Director Fuse P2 Output Reverse Input Reverse Gain Optional HPF Optional BODE -20 Gain 42 with DSIM-GI 46 With AGC Bypass Power Director Fuse Control Circuit Power Director Fuse P3 Output Reverse Input AC/ RF DSIM-GI Net Board 4 L H Plug-in Jumper Splitter -20 AC/ RF P4 Output Reverse Input Note: 1. gain stated at Reverse gain stated at of 8
3 SPECIFICATIONS (BLE - Line Extender) 42/53 Split STATION PARAMETERS: Split ASEM - Moto BLE 1002 With GaN Hybrids High Gain Housing passband CONDITIONS UNITS Flatness Normalized w / 0 slope Minimum Full Gain Operation Gain +1.0 / 1002 Noise Figure (w / 1 for input EQ loss) & Loss Any port, worst case Hum Modulation Time rated 15A c Slope Reference Frequency Reference Output Level mv Operating Interstage 1002 Distortion Performance (Worse Case) Composite Triple Beat (CTB) Composite Second Order (CSO) Cross Modulation (XMOD) Carrier-to-Intermodulation Noise (CIN) SPECIFICATIONS Channel loading Station Group Delay ADU Pilot Channel Type nsec / 3.58 N / A ± = = 7 20 (±1.0 ) <60 54 / 550 / / 44 / 51 DSIM-GI Single Pilot Channel ADU NTSC Analog or QAM 5-42 ± NA 35 (flat) 9 ± 1 NA NTSC/550 analog channel loading, 79 channels +450 digital channel loading, 256 QAM at -6 c relative to its associated visual carrier (35 Typical) (±1.0 ) <60-6 channel analog Compensation Range System compensation input change 1002 Accuracy Nominal 77 ºF (25 ºC) Center Frequency Bandwidth Power Requirements DC Voltage ± VDC Current DC Max. Current VDC ma Power Consumption Max. AC Input Voltage Range AC Current Draw 38VAC Physical W VAC A lbs. (kg) Dimensions (H x W x D) In, (cm) Environmental Operating Temperature o F ( o C) () (1.5) 5.12 X 8.72 X 3.20 (13.0 X X 8.20) -40 to +140 (-40 to +60) 3 of 8
4 SPECIFICATIONS (MB Mini-Bridger) 42/53 Split STATION PARAMETERS: Split ASEM Moto-MB 1002 With GaN Hybrids High Gain SPECIFICATIONS CONDITIONS UNITS Housing passband Flatness Normalized w / 0 slope Minimum Full Gain Operation Gain +1.0 / 1002 Noise Figure (w / 1 for input EQ loss) & Loss Any port, worst case Hum Modulation Time rated 15A c Slope Reference Frequency Reference Output Level mv Operating Interstage 1002 Distortion Performance (Worse Case) ADU Channel loading Composite Triple Beat (CTB) Composite Second Order (CSO) Cross Modulation (XMOD) Carrier-to-Intermodulation Noise (CIN) Station Group Delay Pilot Channel Type nsec / 3.58 N / A ± 0.6 ± 46 NA (±1.0) 20 (±1.0) ± 1 NA NTSC/550 analog channel loading, 79 channels +450 digital channel loading, 256 QAM at -6 c relative to its associated visual carrier (35 Typical) 10 4 DSIM-GI Single Pilot Channel ADU NTSC Analog or QAM 14.5 <60 <65 54 / 550 / (flat) 37 / 44 / 51-6 channel analog Compensation Range System compensation input change 1002 Accuracy Nominal 77 ºF (25 ºC) Center Frequency Bandwidth Power Requirements DC Voltage ± VDC Current DC Max. Current VDC ma Power Consumption Max. AC Input Voltage Range AC Current Draw 38VAC Physical W VAC A lbs. (kg) Dimensions (H x W x D) In, (cm) Environmental Operating Temperature o F ( o C) -40 to +140 (-40 to +60) () (1.7) 5.9 X 12.6 X 2.36 (15 X 32 X 6) 4 of 8
5 SPECIFICATIONS (BLE - Line Extender) 85/105 Split STATION PARAMETERS: Split ASEM - Moto BLE 1002 With GaN Hybrids High Gain SPECIFICATIONS CONDITIONS UNITS Housing passband Flatness Normalized w / 0 slope Minimum Full Gain Operation Gain +1.0 / 1002 Noise Figure (w / 1 for input EQ loss) & Loss Any port, worst case Hum Modulation Time rated 15A c Slope Reference Frequency Reference Output Level mv Operating Interstage 1002 Distortion Performance (Worse Case) ADU Channel loading Composite Triple Beat (CTB) Composite Second Order (CSO) Cross Modulation (XMOD) Carrier-to-Intermodulation Noise (CIN) Station Group Delay Pilot Channel Type nsec / 3.58 N / A ± ± 38 NA = = 7 20 (±1.0 ) 20 (±1.0 ) 109 / 550 / (flat) 38 / 44.4 / 51-8 ± 1 NA NTSC/550 analog channel loading, 71 channels +450 digital channel loading, 256 QAM at -6 c relative to its associated visual carrier DSIM-GI Single Pilot Channel ADU NTSC Analog or QAM 15 <60 <60 6 channel analog Compensation Range System compensation input change 1002 Accuracy Nominal 77 ºF (25 ºC) Center Frequency Bandwidth Power Requirements DC Voltage ± VDC Current DC Max. Current VDC ma Power Consumption Max. AC Input Voltage Range AC Current Draw 38VAC Physical W VAC A lbs. (kg) Dimensions (H x W x D) In, (cm) Environmental Operating Temperature o F ( o C) -40 to +140 (-40 to +60) () (1.5) 5.12 X 8.72 X 3.20 (13.0 X X 8.20) 5 of 8
6 SPECIFICATIONS (MB Mini-Bridger) 85/105 Split STATION PARAMETERS: Split ASEM Moto-MB 1002 With GaN Hybrids High Gain SPECIFICATIONS CONDITIONS UNITS Housing passband Flatness Normalized w / 0 slope Minimum Full Gain Operation Gain +1.0 / 1002 Noise Figure (w / 1 for input EQ loss) & Loss Any port, worst case Hum Modulation Time rated 15A c Slope Reference Frequency Reference Output Level mv Operating Interstage 1002 Distortion Performance (Worse Case) ADU Channel loading Composite Triple Beat (CTB) Composite Second Order (CSO) Cross Modulation (XMOD) Carrier-to-Intermodulation Noise (CIN) Station Group Delay Pilot Channel Type nsec / 3.58 N / A ± 0.6 ± 46 NA (±1.0) 20 (±1.0) 14.5 NTSC/550 analog channel loading, 71 channels +450 digital channel loading, 256 QAM at -6 c relative to its associated visual carrier DSIM-GI Single Pilot Channel ADU NTSC Analog or QAM 14.5 <60 < / 550 / (flat) 38 / 44.4 / ± 1 NA 6 channel analog Compensation Range System compensation input change 1002 Accuracy Nominal 77 ºF (25 ºC) Center Frequency Bandwidth Power Requirements DC Voltage ± VDC Current DC Max. Current VDC ma Power Consumption Max. AC Input Voltage Range AC Current Draw 38VAC Physical W VAC A lbs. (kg) Dimensions (H x W x D) In, (cm) Environmental Operating Temperature o F ( o C) -40 to +140 (-40 to +60) () (1.7) 5.9 X 12.6 X 2.36 (15 X 32 X 6) 6 of 8
7 Accessory Ordering Information: The ASEM Moto 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 Description JXP style attenuator pads 1 Required for forward input 1 Required for reverse output 1 Required for forward input Equalizer 1 Required for reverse output Equalizer Part Numbers (Where XX.X = value) JXP137B-XX (0 to 26 in 1.0 steps) Optional Accessories Description Digital Station Intelligence Manager - Single Pilot AGC Module (Analog or Digital) DSIM-GI-MDL-02 Part Numbers Digital Station Intelligence Manager -Controller DSIM Bluetooth Dongle Apple ios or android Digital Station Intelligence Manager - Cable Assembly For Computer Interface DSCT-xxx-yyy xxx = Pilot Channel Number yyy = Channel Type IRC = Analog IRC Spacing DIG = Digital / QAM DSIM-DONGLE Cable assembly DSIM adaptor to connect controller Adjustable Equalizer JXP Platform 0-18 Adjustable Cable Equivalent Equalizers JXP Platform 0-9 Adjustable Reverse Equalizers 5-42, 85 and 204 JXP Platform 0-12 (5 Pin) Reverse Rejection Filter 14 Reverse Rejection Filter 8 Reverse Rejection Filter by-pass Motorola MB DC/SP2 For P3 or P4 AEQDA1G ACEQ1G AREQ42 AREQ85 AREQ204 RPRFLTR-14 RPRFLTR-8 RPRFLTR-JMP (Jumper One include with Unit) SDASPLTR3.5 SDADC7 SDADC10 SDADC12 Test Probe (5.5 Long) Test Probe (1.57 / 4 cm Long) TP-7504 Seizure 15 Amp RED 10 Amp Housing for Motorola MB (QTY 4) Seizure 15 Amp RED 15 Amp Housing for Motorola MB (QTY 4) Conversion Kit, 85/105 ASEM MOTO BLE Conversion Kit, 85/105 ASEM MOTO MB of 8
8 Ordering Matrix ASEM Moto Product Configuration Worksheet Customer: Created By: ORDERING MATRIX Order Date: October 9, 2018 PART NUMBER 1,2 STATION TYPE Position BL = 1 Output LE MB = 2 or 3 Output Bridger 3 BANDPASS SPLIT K = 5-42 / N = 5-85 / H = / ,5 STATION GAIN () Amplifier Model BL MB Max gain with DSIM-GI Max gain w/agc bypass FORWARD GAIN CONTROL TYPE M = Manual (AGC Bypass) D = Digital Station Intelligence Manger (DSIM-GI) 7 STATION SLOPE A = 42/54 85/ /258 MB BL MB BL MB BL STATION GAIN (Reverse) B = 20 min (MB Only) L = min (BL Olny) 9 HOUSING OPTIONS M = RF Module Only 10 CUSTOM OPTIONS 0 = NONE X = Determined by Product Management Generic Order Form: Not all configurations are available ACI Communications, Inc th Avenue South Kent, WA Rev J 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 8 of 8
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