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A good user manual
The rules should oblige the seller to give the purchaser an operating instrucion of Renesas HSG2004, along with an item. The lack of an instruction or false information given to customer shall constitute grounds to apply for a complaint because of nonconformity of goods with the contract. In accordance with the law, a customer can receive an instruction in non-paper form; lately graphic and electronic forms of the manuals, as well as instructional videos have been majorly used. A necessary precondition for this is the unmistakable, legible character of an instruction.
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The term originates from the Latin word „instructio”, which means organizing. Therefore, in an instruction of Renesas HSG2004 one could find a process description. An instruction's purpose is to teach, to ease the start-up and an item's use or performance of certain activities. An instruction is a compilation of information about an item/a service, it is a clue.
Unfortunately, only a few customers devote their time to read an instruction of Renesas HSG2004. A good user manual introduces us to a number of additional functionalities of the purchased item, and also helps us to avoid the formation of most of the defects.
What should a perfect user manual contain?
First and foremost, an user manual of Renesas HSG2004 should contain:
- informations concerning technical data of Renesas HSG2004
- name of the manufacturer and a year of construction of the Renesas HSG2004 item
- rules of operation, control and maintenance of the Renesas HSG2004 item
- safety signs and mark certificates which confirm compatibility with appropriate standards
Why don't we read the manuals?
Usually it results from the lack of time and certainty about functionalities of purchased items. Unfortunately, networking and start-up of Renesas HSG2004 alone are not enough. An instruction contains a number of clues concerning respective functionalities, safety rules, maintenance methods (what means should be used), eventual defects of Renesas HSG2004, and methods of problem resolution. Eventually, when one still can't find the answer to his problems, he will be directed to the Renesas service. Lately animated manuals and instructional videos are quite popular among customers. These kinds of user manuals are effective; they assure that a customer will familiarize himself with the whole material, and won't skip complicated, technical information of Renesas HSG2004.
Why one should read the manuals?
It is mostly in the manuals where we will find the details concerning construction and possibility of the Renesas HSG2004 item, and its use of respective accessory, as well as information concerning all the functions and facilities.
After a successful purchase of an item one should find a moment and get to know with every part of an instruction. Currently the manuals are carefully prearranged and translated, so they could be fully understood by its users. The manuals will serve as an informational aid.
Table of contents for the manual
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Page 1
Rev.4.00 Jun 21, 2006 page 1 of 12 HSG2004 SiGe HBT High Frequency Medium Power Amplifier REJ03G0484-0400 Rev.4.00 Jun 21, 2006 Features • High Transi tion Freque ncy f T = 30 GHz ty p. • Low Distortion and Excellent Linearity P1dB at out put = +14. 5 dBm ty p. f = 5.8 GHz • High Collector to Emitter Voltage V CEO = 5 V • Ideal for 2 GHz, 5[...]
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Page 2
HSG2004 Rev.4.00 Jun 21, 2006 page 2 of 12 Electrical Characteristics (Ta = 25°C) Item Symbol Min Typ Max Unit Test Conditions DC current transfer ratio h FE 170 240 320 V CE = 3 V, I C = 30 mA Reverse Transfer Capacitanc e C re 0.6 pF V CB = 3 V, I E = 0, f = 1 MHz, emitter grounded Transition Freq uenc y f T 30.0 GHz V CE = 3[...]
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Page 3
HSG2004 Rev.4.00 Jun 21, 2006 page 3 of 12 0 5 10 15 20 25 Collector Current I C (mA) Maximum Stable Gain MSG (dB) Maximum Available Gain MAG (dB) Maximum Stable Gain, Maximum Available Gain vs. Collector Current 30 1 10 100 1000 20 0 0.1 1 10 Frequency f (GHz) 30 40 10 S 21 Parameter , Maximum Available Gain, Maximum Stable Gain vs. Frequency 100 [...]
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Page 4
HSG2004 Rev.4.00 Jun 21, 2006 page 4 of 12 2.4 GHz Characteristics Input Power P in (dBm) Output Power P out (dBm) Power Gain PG (dB) 10 -5 -10 15 20 0 25 10 0 100 0 150 200 50 300 P in - P out Characteristics I op (mA) Evaluation Board Circuit P in - P out Characteristics -20 -10 -40 0 10 -20 20 1.5 3.0 4.0 2.5 1.0 Frequency f (GHz) S parameter (d[...]
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Page 5
HSG2004 Rev.4.00 Jun 21, 2006 page 5 of 12 5.8 GHz Characteristics Input Power P in (dBm) 10 0 -10 15 20 5 25 10 20 0 P in - P out Characteristics I op (mA) OUT IN 0.5 pF *1 µ F *1 µ F 0.3 pF 1000 p F 20 Ω 2 pF 2 pF VCC VBB:Bias Control 1000 p F 0.5 pF 0.5 pF 10 p F 10 p F Evaluation Board Circuit P in - P out Characteristics -20 -10 -30 0 10 -[...]
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Page 6
HSG2004 Rev.4.00 Jun 21, 2006 page 6 of 12 Condition: V CE = 3 V, I C = 30 mA, Zo = 50 Ω 100 to 3000 MHz (100 MHz Step) 3200 to 6000 MHz (200 MHz Step) Condition: V CE = 3 V, I C = 30 mA, Zo = 50 Ω 100 to 3000 MHz (100 MHz Step) 3200 to 6000 MHz (200 MHz Step) 10 5 4 3 2 1.5 1 .8 -2 -3 -4 -5 -10 .6 .4 .2 0 -.2 -.4 -.6 -.8 -1 -1.5 .2 .4 .6 .8 1 [...]
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Page 7
HSG2004 Rev.4.00 Jun 21, 2006 page 7 of 12 Condition: V CE = 3.3 V, I C = 30 mA, Zo = 50 Ω 100 to 3000 MHz (100 MHz Step) 3200 to 6000 MHz (200 MHz Step) Condition: V CE = 3.3 V, I C = 30 mA, Zo = 50 Ω 100 to 3000 MHz (100 MHz Step) 3200 to 6000 MHz (200 MHz Step) 10 5 4 3 2 1.5 1 .8 -2 -3 -4 -5 -10 .6 .4 .2 0 -.2 -.4 -.6 -.8 -1 -1.5 .2 .4 .6 .[...]
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Page 8
HSG2004 Rev.4.00 Jun 21, 2006 page 8 of 12 Condition: V CE = 3.6 V, I C = 30 mA, Zo = 50 Ω 100 to 3000 MHz (100 MHz Step) 3200 to 6000 MHz (200 MHz Step) Condition: V CE = 3.6 V, I C = 30 mA, Zo = 50 Ω 100 to 3000 MHz (100 MHz Step) 3200 to 6000 MHz (200 MHz Step) 10 5 4 3 2 1.5 1 .8 -2 -3 -4 -5 -10 .6 .4 .2 0 -.2 -.4 -.6 -.8 -1 -1.5 .2 .4 .6 .[...]
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Page 9
HSG2004 Rev.4.00 Jun 21, 2006 page 9 of 12 S parameter (V CE = 3 V, I C = 30 mA, Zo = 50 Ω ) S11 S21 S12 S22 f (MHz) MAG A NG (deg.) MAG A NG (deg.) MA G ANG (deg.) MA G ANG (deg.) 100 0.684 -61.3 47.90 147.5 0.0103 39.8 1.006 -19.0 200 0.708 -53.6 39.45 142.1 0.0168 50.5 0.811 -53.9 300 0.664 -81.8 35.97 128.9 0.0180 41.9 0.685 -71.2 400 0.644 -[...]
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Page 10
HSG2004 Rev.4.00 Jun 21, 2006 page 10 of 12 S parameter (V CE = 3.3 V, I C = 30 mA, Zo = 50 Ω ) S11 S21 S12 S22 f (MHz) MAG A NG (deg.) MAG A NG (deg.) MA G ANG (deg.) MA G ANG (deg.) 100 0.674 -60.3 48.82 147.33 0.0124 106.4 0.755 -22.6 200 0.708 -53.6 40.51 141.98 0.0146 57.5 0.814 -53.5 300 0.668 -81.6 36.68 128.82 0.0189 39.9 0.690 -70.4 400 [...]
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Page 11
HSG2004 Rev.4.00 Jun 21, 2006 page 11 of 12 S parameter (V CE = 3.6 V, I C = 30 mA, Zo = 50 Ω) S11 S21 S12 S22 f (MHz) MAG A NG (deg.) MAG A NG (deg.) MA G ANG (deg.) MA G ANG (deg.) 100 0.686 -60.1 49.50 147.35 0.0070 30.5 0.897 -21.2 200 0.713 -53.6 41.32 141.93 0.0155 53.8 0.815 -52.9 300 0.669 -81.1 37.11 128.90 0.0200 42.6 0.690 -69.6 400 0.[...]
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Page 12
HSG2004 Rev.4.00 Jun 21, 2006 page 12 of 12 Package Dimensions 1.965 1.965 0 2.00 2.00 0.3 0.65 0.35 0.350 0.225 2.075 2.075 0.80 0.05 0.10 0.08 0.10 Reference Symbol Dimension in Millimeters Min Nom Max D E A A 1 A 2 b e L p x y y 1 Z D Z E 76 D A 1 A E 5 1 84 48 2 3 M xS A B S y 5 b 6 0.90 L p 0.05 0.60 7 32 Z D Z E C0.15 1 e A S B S y 1 P-HWQFN8[...]
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Page 13
Keep safety first in your circuit designs! 1. Renesas Technology Corp. puts the maximum effort into making semiconductor products better and more reliable, but there is always the possibility that trouble may occur with them. Trouble with semiconductors may lead to personal injury, fire or property damage. Remember to give due consideration to safe[...]