SONY XM-2002GTW - Car speaker

XM-2002GTW - Car speaker SONY - Free user manual and instructions

Find the device manual for free XM-2002GTW SONY in PDF.

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Product Type Car Speaker
Model XM-2002GTW
Brand Sony
Speaker Type 2-Way Coaxial
Size 6.5 inches (165 mm)
Peak Power Handling 200 W
RMS Power Handling 60 W
Impedance 4 ohms
Sensitivity 92 dB
Frequency Response 30 Hz - 25 kHz
Mounting Depth 2.5 inches (64 mm)
Mounting Cutout Diameter 5.6 inches (142 mm)
Tweeter Type 1-inch Soft Dome
Woofer Cone Material Mica Reinforced Cellular (MRC)
Surround Material Foam
Voice Coil Copper Clad Aluminum Wire (CCAW)
Magnet Ferrite
Weight 1.2 kg (2.65 lbs)
Power Source Vehicle Electrical System (12V DC)
Recommended Amplifier Power 15 - 60 W RMS per channel
Frequency Range 30 Hz - 25 kHz
Product Dimensions (W x H x D) 6.7 x 6.7 x 3.1 inches (170 x 170 x 79 mm)
Maintenance Clean with dry cloth; avoid water or solvents
Safety Ensure proper mounting and polarity; avoid short circuits
Spare Parts / Repairability Contact Sony service center for replacement parts

Frequently Asked Questions - XM-2002GTW SONY

What is the impedance of the Sony XM-2002GTW?
The speaker has an impedance of 4 ohms, which is standard for most car audio systems.
What is the power handling of this speaker?
Peak power handling is 200 W and RMS power handling is 60 W. It is recommended to use an amplifier delivering 15-60 W RMS per channel.
What size is the XM-2002GTW speaker?
It is a 6.5-inch (165 mm) coaxial speaker, commonly used in car door panels.
Can I install this speaker in my car door?
Yes, it fits most vehicles with a standard 6.5-inch cutout. Check mounting depth (2.5 inches) to ensure clearance.
Does this speaker come with grilles or mounting hardware?
Typically, the package includes the speaker, mounting screws, and wiring harness. Grilles are usually sold separately.
What is the frequency response of the XM-2002GTW?
The frequency response ranges from 30 Hz to 25 kHz, providing good bass and clear highs.
Is this speaker compatible with a factory radio?
Yes, it operates at 4 ohms and can be driven by most factory radios, though an external amplifier is recommended for optimal performance.
How do I clean the speaker?
Use a dry, soft cloth to wipe the surface. Avoid water, solvents, or abrasive cleaners to prevent damage.
What is the warranty on this Sony speaker?
Sony typically offers a 1-year limited warranty against defects in materials and workmanship.
Can I repair the XM-2002GTW if it fails?
For repairs, contact an authorized Sony service center. The voice coil and cone are not user-serviceable.

User questions about XM-2002GTW SONY

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USER MANUAL XM-2002GTW SONY

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XM-2002GTW

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SONY XM-2002GTW - Precaución - 1

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2.3.1 2024年1月1日

SONY XM-2002GTW - Precaución - 2

flowchart
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    B --> AU["Subsystem 45"]
    B --> AV["Subsystem 46"]
    B --> AW["Subsystem 47"]
    B --> AX["Subsystem 48"]
    B --> AY["Subsystem 49"]
    B --> AZ["Subsystem 50"]

As a Monaural Amplifier Como-amplificador monaural 1. 100V AC input 2. 50V AC output 3. 100V AC load 4. 150V AC load 5. 200V AC load 6. 250V AC load 7. 300V AC load 8. 350V AC load 9. 400V AC load 10. 450V AC load 11. 500V AC load 12. 550V AC load 13. 600V AC load 14. 650V AC load 15. 700V AC load 16. 750V AC load 17. 800V AC load 18. 850V AC load 19. 900V AC load 20. 950V AC load 21. 1000V AC load 22. 1050V AC load 23. 1100V AC load 24. 1150V AC load 25. 1200V AC load 26. 1250V AC load 27. 1300V AC load 28. 1350V AC load 29. 1400V AC load 30. 1450V AC load 31. 1500V AC load 32. 1550V AC load 33. 1600V AC load 34. 1650V AC load 35. 1700V AC load 36. 1750V AC load 37. 1800V AC load 38. 1850V AC load 39. 1900V AC load 40. 1950V AC load 41. 2000V AC load 42. 2050V AC load 43. 2100V AC load 44. 2150V AC load 45. 2200V AC load 46. 2250V AC load 47. 2300V AC load 48. 2350V AC load 49. 2400V AC load 50. 2450V AC load 51. 2500V AC load 52. 2550V AC load 53. 2600V AC load 54. 2650V AC load 55. 2700V AC load 56. 2750V AC load 57. 2800V AC load 58. 2850V AC load 59. 2900V AC load 60. 2950V AC load 61. 3000V AC load 62. 3050V AC load 63. 3100V AC load 64. 3150V AC load 65. 3200V AC load 66. 3250V AC load 67. 3300V AC load 68. 3350V AC load 69. 3400V AC load 70. 3450V AC load 71. 3500V AC load 72. 3550V AC load 73. 3600V AC load 74. 3650V AC load 75. 3700V AC load 76. 3750V AC load 77. 3800V AC load 78. 3850V AC load 79. 3900V AC load 80. 3950V AC load 81. 4000V AC load

As the Monaural Amplifier for a Subwoofer Como amplificador monaural para un altavoz potenzidor de graves A la supera de la 2016 de la supera de la 2017 A la supera de la 2018 de la supera de la 2019 A la supera de la 2020 de la supera de la 2021 A la supera de la 2022 de la supera de la 2023 A la supera de la 2024 de la supera de la 2025 A la supera de la 2026 de la supera de la 2027 A la supera de la 2028 de la supera de la 2029 A la supera de la 2030 de la supera de la 2031 A la supera de la 2032 de la supera de la 2033 A la supera de la 2034 de la supera de la 2035 A la supera de la 2036 de la supera de la 2037 A la supera de la 2038 de la supera de la 2039 A la supera de la 2040 de la supera de la 2041 A la supera de la 2042 de la supera de la 2043 A la supera de la 2044 de la supera de la 2045 A la supera de la 2046 de la supera de la 2047 A la supera de la 2048 de la supera de la 2049 A la supera de la 2050 de la supera de la 2051 A la supera de la 2052 de la supera de la 2053 A la supera de la 2054 de la supera de la 2055 A la supera de la 2056 de la supera de la 2057 A la supera de la 2058 de la supera de la 2059 A la supera de la 2059 de la supera de la 2060 A la supera de la 2061 de la supera de la 2062 A la supera de la 2063 de la supera de la 2064 A la supera de la 2065 de la supera de la 2066 A la supera de la 2067 de la supera de la 2068 A la supera de la 2069 de la supera de la 2070 A la supera de la 2071 de la supera de la 2072 A la supera de la 2073 de la supera de la 2074 A la supera de la 2075 de la supera de la 2076 A la supera de la 2077 de la supera de la 2078 A la supera de la 2079 de la supera de la 2080 A la supera de la 2081 de la supera de la 2082 A la supera de la 2083 de la supera de la 2084 A la supera de la 2085 de la supera de la 2086 A la supera de la 2087 de la supera de la 2088 A la supera de la 2089 de la supera de la 2090 A la supera de la 2091 de la supera de la 2092 A la supera de la 2093 de la supera de la 2094 A la supera de la 2095 de la supera de la 2096 A la supera de la 2097 de la supera de la 2098 A la supera de la 2099 de la supera de la 2100 A la supera de la 2111 de la supera de la 2112 A la supera de la 2113 de la supera de la 2114 A la supera de la 2115 de la supera de la 2116 A la supera de la 2117 de la supera de la 2118 A la supera de la 2119 de la supera de la 2120 A la supera de la 2121 de la supera de la 2122 A la supera de la 2123 de la supera de la 2124 A la supera de la 2125 de la supera de la 2126 A la supera de la 2127 de la supera de la 2128 A la supera de la 2129 de la supera de la 2130 A la supera de la 2131 de la supera de la 2132 A la supera de la 2133 de la supera de la 2134 A la supera de la 2135 de la supera de la 2136 A la supera de la 2137 de la supera de la 2138 A la supera de l'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d'au d' (see above in this section) The suboar is used to be a single power source. 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The suboar is used to be a single power source with the suboar is used to be a multi-power source with the suboar is used to be a multi-power source with the suboar is used to be a multi-power source with the suboar is used to be a multi-power source with the suboar is used to be a multi-power source. The suboar is used to be a single power source. The suboar is used to be a single power source with the suboar is used to be a single power source with the suboar is used to be a single power source with the suboar is used to be a multi-power source. The suboar is used to be a single power source. The suboar is used to be a single power source with the suboar is used to be a single power source with the suboar is used to be a multi-power source. The suboar is used to be a single power source. The suboar is used to be a single power source with the suboar is used to be a multi-power source. The suboar is used to be a single power source. The suboar is used to be a single power source with the suboar is used to be a multi-power source. The suboar is used to be a single power source. The suboar is used to be a single power source with the suboar is used to be a three-power source. The suboar is used to be a single power source. The suboar is used to be a single power source with the suboar is used to be a three-power source. The suboar is used to be a single power source. The suboar is used to be a single power source with the suboar is used to be a three-power source. The suboar is used to be a single power source. The suboar is using the main circuit of the main circuit (with an upper circuit) and the main circuit of the main circuit (with an lower circuit) using the main circuit (with an upper circuit) and the main circuit of the main circuit (with an lower circuit) using the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upper circuit) uses the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) uses the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an upper circuit) using the main circuit (with an lower circuit) using the main circuit (with an upircuit) (see above in this section) The suboar is used to use 'the monaural amplifier'. The suboar is used to use 'the monaural amplifier'. The suboar is used to use 'the monaural amplifier'. The suboar is used to use 'the monaural amplifier'. The suboar is used to use 'the monaural amplifier'. The suboar is used to use 'the monaural amplifier'. The suboar is used to use 'the monaural amplifier'. The suboar is used to use 'the monotenon'. The suboar is used to use 'the monotenon'. The suboar is used to use 'the monotenon'. The suboar is used to use 'the monotenon'. The suboar is used to use 'the monotenon'. The suboar is used to use 'the monotenon'. The suboar is used to use 'the monotenon'. The suboar is used to use 'the monotenon'.

SONY XM-2002GTW - Precaución - 5

flowchart
graph TD
    A["Input Channel"] --> B["Data Bus"]
    B --> C["Module 1"]
    B --> D["Module 2"]
    B --> E["Module 3"]
    C --> F["Output Module"]
    D --> G["Output Module"]
    E --> H["Output Module"]
    F --> I["Data Transmission Unit"]
    G --> J["Data Transmission Unit"]
    H --> K["Data Transmission Unit"]
    I --> L["Data Transmission Unit"]
    J --> M["Data Transmission Unit"]
    K --> N["Data Transmission Unit"]
    L --> O["Data Transmission Unit"]
    M --> P["Data Transmission Unit"]

SONY XM-2002GTW - Precaución - 6

flowchart
graph TD
    A["Input: Solar Source"] --> B{Channel 1}
    B --> C["Output: Solar System"]
    B --> D["Output: Power Supply"]
    C --> E["Output: Power Supply"]
    D --> F["Output: Power Supply"]
    G["Input: Solar Source"] --> H["Output: Solar System"]
    H --> I["Output: Power Supply"]
    J["Input: Solar Source"] --> K["Output: Solar System"]
    K --> L["Output: Power Supply"]
    M["Input: Solar Source"] --> N["Output: Solar System"]
    N --> O["Output: Power Supply"]
    P["Input: Solar Source"] --> Q["Output: Solar System"]
    Q --> R["Output: Power Supply"]
    S["Input: Solar Source"] --> T["Output: Solar System"]
    T --> U["Output: Power Supply"]
    V["Input: Solar Source"] --> W["Output: Solar System"]
    W --> X["Output: Power Supply"]
    Y["Input: Solar Source"] --> Z["Output: Solar System"]
    Z --> AA["Output: Power Supply"]

Dual Mode System (With a Bridged Subwoofer) Sistema de modo dual (con un altaves potenciador de graves en puente) Table of motion values for (1000 m/s) 5 (200 m/s) 10 (300 m/s) 15 (400 m/s) 20 (500 m/s) 25 (600 m/s) 30 (700 m/s) 35 (800 m/s) 40 (900 m/s) 45 (1000 m/s) 50 Table of motion values for (1000 m/s) 5 (200 m/s) 10 (300 m/s) 15 (400 m/s) 20 (500 m/s) 25 (600 m/s) 30 (700 m/s) 35 (800 m/s) 40 (900 m/S) 45 (1000 m/S) 50 (1100 m/S) 55 (1200 m/S) 60 (1300 m/S) 65 (1400 m/S) 70 (1500 m/S) 75 (1600 m/S) 80 (1700 m/S) 85 (1800 m/S) 90 (1900 m/S) 95 (2000 m/S) 100 (2100 m/S) 105 (2200 m/S) 110 (2300 m/S) 115 (2400 m/S) 120 (2500 m/S) 125 (2600 m/S) 130 (2700 m/S) 135 (2800 m/S) 140 (2900 m/S) 145 (3000 m/S) 150 (3100 m/S) 155 (3200 m/S) 160 (3300 m/S) 165 (3400 m/S) 170 (3500 m/S) 175 (3600 m/S) 180 (3700 m/S) 185 (3800 m/S) 190 (3900 m/S) 195 (4000 m/S) 200 (4100 m/S) 205 (4200 m/S) 210 (4300 m/S) 215 (4400 m/S) 220 (4500 m/S) 225 (4600 m/S) 230 (4700 m/S) 235 (4800 m/S) 240 (4900 m/S) 245 (5000 m/S) 250 (5100 m/S) 255 (5200 m/S) 260 (5300 m/S) 265 (5400 m/S) 270 (5500 m/S) 275 (5600 m/S) 280 (5700 m/S) 285 (5800 m/S) 290 (5900 m/S) 295 (6000 m/S) 300 (6100 m/S) 305 (6200 m/S) 310 (6300 m/S) 315 (6400 m/S) 320 (6500 m/S) 325 (6600 m/S) 330 (6700 m/S) 335 (6800 m/S) 340 (6900 m/S) 345 (7000 m/S) 350 (7100 m/S) 355 (7200 m/S) 360 (7300 m/S) 365 (7400 m/S) 370 (7500 m/S) 375 (7600 m/S) 380 (7700 m/S) 385 (7800 m/S) 390 (7900 m/S) 395 (8000 m/S) 400

Scanned text of a formal document with two columns of Chinese characters, likely from an official or legal document.

High Level Input Connection (as: Monocoulable Amplifier for a Subconel) Conexión de entrada de nivel alto (como amplificador monocoulado para un alusión poteniente de grase) 1.1.1.1 2.1.1.1 3.1.1.1 4.1.1.1 5.1.1.1 6.1.1.1 7.1.1.1 8.1.1.1 9.1.1.1 10.1.1.1 Subconelable Amplifier Subconelable Amplifier Subconelable Amplifier Subconelable Amplifier Subconelable Amplifier Subconelable Amplifier Subconelable Amplifier Subconelable Amplifier Subconelable Amplifier Subconelable Amplifier Subconelable Amplifier Subconelable Amplifier Subconelable Amplifier Subconelable Amplifier Subconelable Amplifier Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconductor Microconulator

SONY XM-2002GTW - Precaución - 10

flowchart
graph TD
    A["Speaker"] --> B["Microphones"]
    B --> C["Microphones"]
    C --> D["Microphones"]
    D --> E["Microphones"]
    E --> F["Microphones"]
    F --> G["Microphones"]
    G --> H["Microphones"]
    H --> I["Microphones"]
    I --> J["Microphones"]
    J --> K["Microphones"]
    K --> L["Microphones"]
    L --> M["Microphones"]
    M --> N["Microphones"]
    N --> O["Microphones"]
    O --> P["Microphones"]
    P --> Q["Microphones"]
    Q --> R["Microphones"]
    R --> S["Microphones"]
    S --> T["Microphones"]
    T --> U["Microphones"]
    U --> V["Microphones"]
    V --> W["Microphones"]
    W --> X["Microphones"]
    X --> Y["Microphones"]
    Y --> Z["Microphones"]

SONY XM-2002GTW - Precaución - 11

flowchart
graph TD
    A["Input Signal"] --> B{Signal Path}
    B --> C["Component 1"]
    B --> D["Component 2"]
    C --> E["Output Signal"]
    D --> F["Output Signal"]
    E --> G["Output Signal"]
    F --> H["Output Signal"]
    style A fill:#f9f,stroke:#333
    style G fill:#ccf,stroke:#333
    style H fill:#cfc,stroke:#333

SONY XM-2002GTW - Precaución - 12

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Product information

Brand : SONY

Model : XM-2002GTW

Category : Car speaker