ABBREVIATIONS A N D SYMBOLS
A o r a m p
am peres
L
in d u c ta n c e
A C o r ac
a lte r n a tin g c u rre n t
X
la m b d a — w a v e le n g th
AF
a u d io fre q u e n c y
»
la rg e co m p a re d w ith
a
a lp h a — co m m o n -b a se c u rre n t a m p lific a tio n fa c to r
<
less th a n
A M
a m p litu d e m o d u la tio n
LF
lo w fre q u e n c y
a p p ro x im a te ly e q u a l to
ig
le n g th o r lo n g
B
b e ta — c o m m o n -e m itte r c u rre n t a m p lific a tio n fa c to r
LV
lo w v o lta g e
BHB
b in d in g h e a d brass
M
m e g a o r 106
BHS
b in d in g h e a d steel
m
m illi o r 10-3
BNC
b a b y series " N “ co n n e c to r
M12 o r meg
m egohm
X
by o r tim es
m ic ro o r 10‘ 6
C
c a rb o n
me
m e g a cycle
C
c a p a c ita n c e
m et.
m e ta l
cap.
c a p a c ito r
M H z
m e g a h e rtz
cer
c e ra m ic
mm
m illim e te r
cm
ce n tim e te r
ms
m illis e c o n d
com p
c o m p o s itio n
—
m inus
conn
c o n n e cto r
m tg h d w
m o u n tin g h a rd w a re
~
cycle
n
n a n o o r 10” 9
c / s o r cps
cycles pe r second
*
o
o
c
n u m ber
CRT
c a th o d e -ra y tube
ns
n a n osecond
csk
coun tersunk
O D
o u ts id e d ia m e te r
A
in cre m e n t
O H B
o v a l he a d brass
dB
d e c ib e l
O H S
o v a l h e a d steel
dBm
d e c ib e l r e fe rre d to o n e m illiw a t t
«
o m e g a — ohm s
DC o r d c
d ire c t c u rre n t
u
o m e g a — a n g u la r fre q u e n c y
DE
d o u b le end
P
p ic o o r 10“ ’ 2
O
d eg ree s
/
pe r
°c
d eg ree s C elsius (degrees c e n tig ra d e )
%
pe rce n t
°F
d eg ree s F a h re n h e it
PHB
pan he a d brass
° K
d e g re e s K e lvin
<4
p h i— pha se a n g le
d ia
d ia m e te r
V
p i— 3.1416
- r -
d iv id e by
PHS
pan he a d steel
d iv
d iv is io n
+
plus
EHF
e x tre m e ly h ig h fre q u e n c y
+
plus o r m inus
e le c t.
e le c tro ly tic
PIV
p e a k in verse v o lta g e
EMC
e le c tro ly tic , m e ta l cased
piste
p la s tic
EMI
e le c tro m a g n e tic in te rfe re n c e (see RFI)
PMC
p a p e r, m e ta l cased
EMT
e le c tr o ly tic , m e ta l t u b u la r
p o ly
p o ly s ty re n e
c
e p s ilo n — 2.71828 o r % o f e rro r
p rec
pre cisio n
>
e q u a l to o r g r e a te r than
PT
p a p e r, tu b u la r
<
e q u a l to o r less than
PTM
p a p e r o r p la s tic , t u b u la r, m o ld e d
ext
e x te rn a l
p w r
p o w e r
F o r f
fa ra d
Q
fig u r e o f m e rit
F & 1
focus a n d in te n s ity
RC
resistance c a p a c ita n c e
FHB
f la t h e a d brass
RF
r a d io fre q u e n c y
FHS
f la t he a d steel
RFI
r a d io fre q u e n c y in te rfe re n c e (see EM I)
Fil HB
f illis t e r hea d brass
RHB
ro u n d h e a d brass
F il HS
fillis t e r he a d steel
0
rh o — re s is tiv ity
FM
fre q u e n c y m o d u la tio n
RHS
ro u n d he a d steel
f t
fe e t o r fo o t
r / m in o r rpm
re v o lu tio n s p e r m in u te
G
g ig a o r 109
RMS
ro o t m ean squa re
9
a c c e le ra tio n due to g r a v ity
s o r sec.
second
G e
g e rm a n iu m
SE
sin g le end
G H z
g ig a h e rtz
Si
silico n
G M V
g u a ra n te e d m in im u m v a lu e
SN o r S / N
s e ria l n u m b e r
GR
G e n e ra l R a dio
«
sm all c o m p a re d w ith
>
g r e a te r th a n
T
te ra o r 1 0 12
H o r h
h en ry
TC
te m p e ra tu re co m p e n sa te d
h
h e ig h t o r h ig h
TD
tu n n e l d io d e
hex.
h e x a g o n a l
THB
truss hea d brass
HF
h ig h fre q u e n c y
0
th e ta — a n g u la r phase d is p la c e m e n t
HHB
hex h e a d brass
thk
thick
HHS
hex he a d steel
THS
truss h e a d steel
HSB
hex socket brass
tu b .
tu b u la r
HSS
hex socket steel
UHF
u ltra h ig h fre q u e n c y
HV
h ig h v o lta g e
V
v o lt
Hz
h e rtz (cycles p e r second)
V A C
vo lts, a lte r n a tin g c u rre n t
ID
in sid e d ia m e te r
v a r
v a r ia b le
IF
in te rm e d ia te fre q u e n c y
VD C
vo lts , d ire c t cu rre n t
in .
in ch o r inches
VHF
ve ry h ig h fre q u e n c y
in cd
in ca n d e sce n t
VSWR
v o lta g e s ta n d in g w a v e r a tio
cc
in fin ity
W
w a tt
in t
in te rn a l
w
w id e o r w id th
f
in te g ra l
w /
w ith
k
kilo h m s o r k ilo (103)
w / o
w ith o u t
k n
k ilo h m
W W
w ire -w o u n d
kc
k ilo c y c le
x m fr
tra n s fo rm e r
kHz
k ilo h e rtz
Содержание 1L40
Страница 30: ...Fig 3 1 Type 1L40 Block Diagram CO K ISO 2 5 0 MHz 75 MHz Circuit Description Type 1L40 ...
Страница 40: ...NOTES ...
Страница 54: ...NOTES ...
Страница 85: ...NOTES ...
Страница 103: ......
Страница 117: ...I ...
Страница 119: ...T Y P E I L 4 0 S F t C T R U M A N A U V t R A ...
Страница 120: ...L R O G 8 R F P H A S E L O C K D I A G R A M A ...
Страница 124: ... 75V T Y P L I L A Q S P f c C T R U M A N A L Y Z t R ...
Страница 126: ... T y p t S P E C T R u M A N A U V 2 f e R A ...
Страница 127: ...4 A P H A S t L O C K C I R C U I T ...
Страница 128: ...iv r AMPUH19 1 rRon J9A 4 T Y P E L 4 0 S P E C T R U M A N A L Y Z C R A I ...
Страница 130: ......
Страница 133: ... IF ATTEW de 1 C 151 LI5I C I52 ci 7 V 185 C 168 FORM A LOW PASS FILTER CHARACTERISTIC I F 1068 ATTENUATOR ...
Страница 134: ... IS MHZ IP lO M Hx OSCILLATOR r T Y P E IL 4 0 SPECTRUM ANALYZED ...
Страница 135: ... lL I z 5 a or lJ ui Ul X i u tt O a i d id u it l h 5 12 2 a or PO S 3 J3 ...
Страница 139: ...DETECTORS i 4 1066 OUTPUT AMPLIPIER ...
Страница 140: ...FIG 1 FRONT REAR TYPE 1L40 SPECTRUM ANALYZER ...
Страница 141: ...FIG 2 IF CHASSIS PHASE LOCK AS 6 1 ...
Страница 142: ...F CHASSIS PHASE LOCK ASSEMBLIES TYPE 1L40 SPECTRUM ANALYZER ...
Страница 145: ......