CEPT T R 20-04 E-1988 Low-Power Narrow-Band Telecommand and Telemetry Equipment for Use Outside the ISM Frequency Bands《在ISM波段以外使用的低功率窄带遥测和遥控设备》.pdf
《CEPT T R 20-04 E-1988 Low-Power Narrow-Band Telecommand and Telemetry Equipment for Use Outside the ISM Frequency Bands《在ISM波段以外使用的低功率窄带遥测和遥控设备》.pdf》由会员分享,可在线阅读,更多相关《CEPT T R 20-04 E-1988 Low-Power Narrow-Band Telecommand and Telemetry Equipment for Use Outside the ISM Frequency Bands《在ISM波段以外使用的低功率窄带遥测和遥控设备》.pdf(23页珍藏版)》请在麦多课文档分享上搜索。
1、CEPT T/R*i1,35 n 81.35 n Cable to the measuring 0 receiver Ceiling - c 1f2 -i- 3-4 l hl m Absorbant material Reference point of the equipment under test 1- 0,75 hz I I I -L m / Wall Floor Figure 1 (TIR 20-04). Indoor site arrangement (shown for horizontal polarization). The potential reflections fro
2、m the wall behind the equipment under test are reduced by placing a barrier of absorbent material in front of it. The corner reflector around the test antenna is used to reduce the effect of reflections from the opposite wall and from the floor and ceiling in the case of horizontally polarized measu
3、rements. Similarly, the comer reflector reduces the effects of reflections from the side walls for vertically polarized measurements. For measurements in the lower part of the frequency range (below approx. 175 MHz) no corner reflector or absorbent barrier is needed. For measurements in the higher p
4、art of the frequency range, no corner reflector is needed if use is made of a horn radiator or a parabolic antenna. For practical reasons, the h/2 antenna in Figure 1 (T/R 20-03) may be replaced by an antenna of constant length, allowing it to be used at frequencies corresponding to a length between
5、 h/4 and h, as long as the sensitivity is sufficient. In the same way the distance of h/2 to the apex may be varied. The test antenna, test receiver, substitution antenna and calibrated signal generator are used in a way similar to the general method. To ensure that errors are not caused by the prop
6、agation path approaching the point at which phase cancellation between direct and the remaining reflected signals occurs, the substitution antenna shall be moved through a distance of f 10 cm in the direction of the test antenna as well as in the two directions perpendicular to this first direction.
7、 If these changes of distance cause a signal change of greater than 2 dB, the test sample should be resited until a change of less than 2 dB is obtained. 4. TRANSMITTER 4.1. Frequency error 4.1.1. Definition The frequency error of the transmitter is the difference between the measured carrier freque
8、ncy and its nominal value. Edition of September IS, 1988 _- I l CEPT T/R*20-04E = 2326434 000b407 4 f 0.6 - - 4.1.2. 4.1.3. - - f 1.5 f 1.5 *2 f 2.5 4.2. 4.2.1. 4.2.2 4.2.3. 4.2.3.1 TIR 20-04 E Annex 11, Page 7 Method of measurement The carrier frequency shall be measured in the absence of modulatio
9、n (if possible) with the transmitter connected to an artificial antenna (Clause 3.2.). Equipment with integral antennae shall be placed in a test fixture (Clause 3.4.2.) connected to the artificial antenna (Clause 3.2.). The measurement shall be made under normal test conditions (Clause 2.3.) and ex
10、treme test conditions (Clause 2.4.), (Clauses 2.4.1. and 2.4.2. applied simultaneously). Limit The frequency error shall not exceed the values given in Table 1 (T/R 20-04) in both normal and extreme test conditions or in any intermediate set of conditions. Channel spacing (kH4 20 and 25 Transmitter
11、carrier power Dejnition Frequency error 27.3-32.3 MHz I 146-174 MHz I 430-460 MHz The transmitter carrier power is the mean power delivered to the artificial antenna during a radio frequency cycle or, in the case of equipment with integral antennae, the effective radiated power in the direction of m
12、aximum field strength under specified conditions of measurement (Clause 3.5.), if possible in the absence of modulation. The rated output power is the carrier power declared by the manufacturer. Method of measurement for equipment with an outlet for connection to an external antennae The transmitter
13、 shall be connected to an artificial antenna (Clause 3.2.), and the power delivered to this .artificial antenna shall be measured. The measurements shall be made under normal test conditions (Clause 2.3.) and extreme test conditions (Clause 2.4.), (Clauses 2.4.1. and 2.4.2. applied simultaneously).
14、Method of measurement of equipment with integral antennae Method of measurement under normal test conditions On a test site fulfilling the requirements of Clause 3.5. the sample shall be placed on the support in the following position: (a) for equipment with internal antennae, it shall stand vertica
15、lly, with that axis vertical which is closest (b) for equipment with rigid external antennae, the antenna shall be vertical; (c) for equipment with non-rigid external antennae, with the antenna extended vertically upwards by a The transmitter shall be switched on, without modulation (if possible), a
16、nd the test receiver shall be tuned to the frequency of the signal being measured. The test antenna shall be orientated for vertical polarisation and shall be raised or lowered through the specified height range until a maximum signal level is detected on the test receiver. The transmitter shall be
17、rotated through 360“ until a higher maximum signal is received. Note. This maximum may be a lower value than the value obtainable at heights outside the specified limits. to vertical in normal use; non-conducting support. The transmitter shall be replaced by the substitution antenna as defined in Cl
18、ause 3.5., and the test antenna raised or lowered as necessary to ensure that the maximum signal is still received. The input signal to the substitution antenna shall be adjusted in level until an equal or a known related level to that detected from the transmitter is obtained in the test receiver.
19、The carrier power is equal to the power supplied to the subsitution antenna, increased by the known relationship if necessary. The measurement shall be repeated for any alternative antenna supplied by the manufacturer. A check should be made at other planes of polarization to ensure that the value o
20、btained above is the maximum. If larger values are obtained, this fact should be recorded in the test report. Edition of September IS, 1988 CEPT T/R*20-04E 232b4l14 000b408 b TIR 20-04 E Annex II, Page 8 4.2.3.2. 4.2.4. 4.3. 4.3.1. 4.3.2. 4.3.2.1. 4.3.2.2. Method of measurement under extreme test co
21、nditions The equipment shall be placed in the test fixture (Clause 3.4.2.), and the power delivered to the artificial antenna shall be measured. The measurements shall be made under normal test conditions (Clause 2.3.) and extreme test conditions (Clause 2.4.), (Clauses 2.4.1. and 2.4.2. applied sim
22、ultaneously). Limits The carrier output power under normal test conditions and under extreme test conditions shall not exceed the values given in Table II (T/R 20-04). I Carrier frequencies I Below 50 MHz I Above 50 MHz I I Effective radiated power I 0.1 W I 0.5 W I I Output power I 0.5 W 0.5 w Tabl
23、e II (T/R 20-04). Adjacent channel power Definition The adjacent channel power is that part of the total output power of a transmitter modulated under defined conditions of modulation which falls within a specified passband centered on the nominal frequency of either of the adjacent channels. This p
24、ower is the sum of the mean power produced by the modulation, hum and noise of the transmitter. Methods of measurement General Two methods are proposed, the results of which are equivalent. The member Administrations of CEPT are requested to use one or both of these methods. The method applied shall
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