433MHz /510MHz /868MHz for Lora Signal Booster Transmitting & Receiving Two-Way Power Amplifier Signal Amplification Module There are Patch modules and SMA modules option! If you select the option with power adapter(5V/1A), we will send US, UK, EU or AU plugs depending on the destination country. Purchase notice: (AB-IOT series amplifier is an upgraded version of XQ-433, with a wider range of power supply voltage, please refer to the manual carefully before purchasing, or consult customer service, thank you!): * The applicable frequency bands of “AB-IOT-433” and “AB-IOT-433-SMA” are: 420MHz-480MHz; The applicable frequency bands of “AB-IOT-510” and “AB-IOT-510-SMA” are: 470MHz-520MHz; Amplifier: 1. The product is a two-way amplified TDD working mode (that is, the transmit power and receiving sensitivity will be amplified equally); 2. The working voltage is 3.6V-6V; Current requirement for power adapter(Not included) : Max. 0.72A 3. This product is highly professional, and wireless communication is greatly affected by the environment. We only guarantee that all parameters are measured by the instrument. AB-IOT-433/AB-IOT-510 model: Description: AB-IOT-433/AB-IOT-510 series two-way signal amplification modules are designed for various applications in the 433MHz (420MHz-480MHz) and 510M (470MHz-520MHz) frequency bands. Its compact size and convenient use make it easier to design products for high-power and long-distance applications in this frequency band. Mainly used in various occasions in the 400MHz-480MHz frequency band that have special requirements for signal transmission distance and connection stability, such as: 433MHz remote control aircraft, 433MHz wireless data acquisition system, Lora products, 470MHz-510MHz, etc. Working in the 400MHz-520MHz frequency band Micro-power wireless products within the range can use this two-way amplification module to increase the transmission distance. (Note: Hand-held walkie-talkies cannot use this module to achieve the purpose of extending the transmission range due to their high transmission power.) Performance characteristics The built-in intelligent receiving/sending discrimination circuit does not require front-end equipment to provide receiving/sending switching control signals. The module works in the receiving state by default and amplifies the received signal. When the front-end equipment is detected to transmit external signals, it will instantly switch to the transmitting and amplifying state. The transmission gain is manually adjustable, which is convenient for compatible wireless devices with different transmission powers. The receiving/sending link has a high degree of isolation, and the receiving link can withstand strong external interference without causing self-excitation of the loop. Compatible with various modulation methods such as LORA and FSK/ASK/OOK/MSK/GFSK. The default working frequency band is 420MHz-480MHz, and it can be applied to any frequency band between 300MHz-600MHz by adjusting the parameters (bandwidth 60MHz, such as 300MHz-360MHz, 520MHz-580MHz…), if you have such a requirement, please contact us . parameter: Working frequency band: 420MHz-480MHz;, 470MHz-520MHz (optional) Receiving gain: 11dB±2dB Receiving noise figure: ≤2.0dB Transmission gain: 5dB – 11dB (±2dB) adjustable Recognition threshold for receiving and sending switching: -2dBm Input power range: 1dBm-25dBm Maximum transmit power: 31.5dBm (1.4w) at 3.7V supply voltage 33.5dBm (2.3w) at 5.0V supply voltage 34.5dBm (2.8w) at 6.0V supply voltage Work status indication: Receiving status: green light is on, blue light is off Transmitting status: blue light is on, green light is off In TDD working mode, the blue light and green light will flash alternately Operating Voltage: The power supply voltage can be between 3.6V-6.0V. The maximum transmission power increases as the supply voltage increases. Working current: RX status: 10mA (±3mA) TX status: ≤800mA (3.7v power supply) ≤1000mA (5.0v power supply) ≤1500mA (6.0v power supply) Patch module dimensions: 38.2mm*26.2mm*4.5mm(L*W*H) Remarks: The working voltage only affects the maximum transmission power, and has little effect on the transmission gain. Therefore, for applications where the output power of the front-end equipment is not large, it is generally recommended to use a 3.7V lithium battery for direct power supply or a 5.0V power supply, and it is not necessary to use a 6.0V power supply. Since the maximum transmit gain of the module is about 11dB, if the actual output power of the module can reach the maximum, the output power of the front-end equipment must be sufficient. For example, if the actual output power reaches 34.5dBm when the power supply voltage is 6.0V, the front-end The output power of the device must reach 13.5dBm (23.5+11=34.5). If the output power of the front-end device is only 10dBm, even if the working voltage is 6.0V, the actual output of the module can only reach 21dBm instead of 34.5dBm. Please pay attention to this point. Under normal circumstances, the maximum gain (power) transmission is not recommended, because the greater the transmission power, the greater the power consumption and heat generation. If the power consumption is large, it is extremely disadvantageous for battery-powered equipment. In actual use, it is recommended to adjust the gain while testing coverage Scope, so that it can just meet the actual coverage requirements and a slight surplus is better. In order to ensure reliable switching, the transmit power of the front-end equipment needs to reserve at least 3dB margin, that is, the minimum transmit power of the front-end equipment cannot be lower than 1dBm, otherwise it may cause the instability of the receiving/transmitting switch. When the module is working, most of the sequence is in the receiving state, and the current in the receiving state is about 10mA. When the module is switched to the transmitting state and transmitting at maximum power, the instantaneous current can reach up to 1.5A. Because the transmission sequence is generally very short (normally, each group of data packets is ms or even us level), so the average current is generally not higher than 200mA during the entire working period. Warning: The module is not recommended for applications with constant emission (that is, the blue light is always on)! If it is necessary to work in constant transmission mode and the transmission power is high (close to 1.3w), there will be large current and serious heat generation. At this time, additional heat dissipation measures (such as adding a heat sink or fan) must be added, otherwise the maximum transmission power will be It will automatically decrease due to high temperature, and the amplifier module will be burnt in severe cases. Transmission gain adjustment method: The transmit gain when the potentiometer turns counterclockwise to the end is 5dB; The transmission gain when the potentiometer is turned to the end is 11dB. Module pin definition: 868MHz Band Bi-directional signal amplification module Technical Specification Model : AB-IOT-868 Introduction The AB-IOT-868Series Bi-directional signal amplification module is suitable for micro-power wireless products in the frequency range of 850MHz-930MHz. It is suitable for various IoT wireless data acquisition products working in the 868MHZ frequency band in Europe and the 902MHZ-928MHZ frequency band in North America. Main characteristics 1. Built-in TX/RX automatic switching circuit, TX/RX status can be switched independently without external control signal. 2. It works in RX status by default, and enhances the receiving signal. When the transmitting signal of the superior device is detected, the module instantly switches to the TX status. 3. The TX gain is adjustable, which is convenient to be compatible with wireless devices with different transmission powers. 4. Compatible with various modulation methods such as LORA and FSK/ASK/OOK/MSK/GFSK. Specifications Working frequency: 850MHz – 930MHz RX gain: 11dB±2dB NF: ≤2.0dB TX gain: 5dB – 11dB (±2dB) Adjustable TX/RX switching threshold: -2dBm TX input power range: 1dBm – 20 dBm Maximum transmit power: 31dBm (1.3w) Status indication : RX status: Green light is on, Blue light is off RX status: Blue light is on, Green light is off Operating Voltage : AB-IOT-868-A: 5V(4.75V-5.25V) Working current : RX status :10mA(±3mA) TX status :≤720mA Overall dimension : 38.2mm*26.2mm*4.5mm(L*W*H) Tips: The output power of the upper-level device must be at least 3dB higher than the switching threshold, which means that the output power of the upper-level device cannot be lower than 1dBm, otherwise it may cause unstable operation. Chang the TX Gain When the potentiometer is turned counterclockwise to the limit, the gain is 5dB; When the potentiometer is turned clockwise to the limit, the gain is 11dB. Overall dimension and Pin description 1. The RF_IN pin is connected to the upper-level device RF signal output port. 2. The ANT pin is connected to the Antenna. 3 . When the module outputs at maximum power, the current can reach 720mA,It is recommended to connect a large-capacity capacitor in parallel with the VCC pin, the capacity is not less than 220uF. 4 . All pins marked with NC are used in specific occasions, please ignore them for general applications. 5 . This module supports the switching state of the transceiver is controlled by the MCU IO port. Reference design 868MHz Filter TypeA: The filter has a 1dB bandwidth of 4MHz, Cut-off characteristic steep. Performance optimization for 868MHz RFID receivers, European standard LoRa IoT node devices. It can effectively filter out out-of-band signals, reduce noise, and increase dynamic range. Model: FBP-868s Impedance: 50 Ohms Center frequency: 868 MHz Passband (1dB bandwidth): 866 to 870 MHz In-band insertion loss: < 3.5 dB Maximum Carrying Power: 100 mW (20 dBm) Interface: SMA-M, SMA-F Frequency response diagram (3dB bandwidth, Scanning center frequency: 868MHz, Blue line span: 100MHz, Vertical scale: 10dB per division): 868MHz Filter TypeB: Sound meter bandpass 868MHz filter. Bandwidth 867-869MHz. Features. 1 : Small size, light weight, small insertion loss, center frequency of 868MHz. 2: Gold-plated SMA connectors on both sides (one side is sma female connector with one male inner thread; the other side is sma male connector with one female inner thread) (one side is sma male connector with one inner threaded pin), double-sided circuit board design, high mechanical strength and stable electrical performance. High mechanical strength and stable electrical performance. 3: With good passband ripple coefficient and out-of-band suppression capability. 4: unique shielding design, beautiful and practical. 5:Imported SMD components, stable performance. Maximum withstand power not more than 20mW! 6: Size: 35mm * 7mm * 6. 5mm 7: Weight: 5.42g
60%
433MHz /510MHz /868MHz for Lora Signal Booster Transmitting & Receiving Two-Way
$8.60 Original price was: $8.60.$5.16Current price is: $5.16.
Meta:
Type : Filter
Country/Region of Manufacture : China
Brand : XINTE
Country/Region of Manufacture : China
Brand : XINTE
size | AB-IOT-433MHz Patch, AB-IOT-510MHz Patch, AB-IOT-433MHz SMA, AB-IOT-510MHz SMA, 868MHz SMA, 868MHz Patch, 868MHz Filter TypeA, 868MHz Filter TypeB |
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