Datenblatt für 2540C Series Manual von B&K Precision
K Efilfi“. ®
"EUIWV
Series: 254°C
2 CH
Digital Storage Oscilloscope
Mixed Signal Oscilloscopes
USER MANUAL

AWARNING
AWARNING
AWARNING
AWARNING
AWARNING
AWARNING
AWARNING
AWARNING
ACAUTION
AWARNING
AWARNING
AWARNING
AWARNING
AWARNING
AWARNING
AWARNING
AWARNING
AWARNING
AWARNING
ACAUTION
ACAUTION
AWARNING
This product is subject to Directive 2002/96/EC of the
Refer to the user manual for warning
Off (Supply). This is the AC mains
Calls attention to an operating procedure,
I I Gil life»?
Calls attention to an operating procedure,
fl
DSO Model 2540!: 2542C 2544C
MSOMudeI 2540C-MSO 2542C-MSO ZSMC-MSO
Bandwidth 70 MHz 100 MHz 200 MHz
Channels 2 2 2
jigsaw:
DD DDDD©
@O@I
._.\_4|_.\_¢»_:\_-
DDDDODOW
Fiure 5 -Tri_ er settin_s dis-lay
Function
Description
Trigger Type
Displays the currently selected trigger type and trigger
Trigger Sou rce
Displays the trigger source currently selected. Different
Trigger Slope
Displays the current trigger slopet
Trigger Coupling
Displays the coupling mode (DC/AC/LF Reject/HF Reject)
Trigger Level
Displays the trigger voltage or current level of the
Universal Knob
Function
Channel Number
'1 l] III
[I I] I] n |
Description
Represents the channel number
Input impedance
Displays the currently selected input impedance of
t
Channel coupling
Displays the coupling mode of the current channel.
T
Vertical Scale
Represents the voltage value of each vertical main
d
Vertical Offset
Represents the vertical displacement ofthe trace in
voltage above or below the center ofthe screent
Function
' ger Level Knob
Displays the connection status ofthe USB host, USB device, and LAN port. Indicates
Indicates that the USB Host is connected.
Indicates there is a LAN connections
Indicates there is no LAN connection.
strument operating in rated
_ The included Ac power cord is safety cert d for th
Model Fuse Specification
All Models T125 A, 250V
Do not connect power to the instrument until the line voltage is configured
Any disassembling of the case or changing the fuse not performed by an authorized
Flgu re 10 - Suppnnlng feet adjustment
The model and
yand pr
version
Oscilloscope Bandw Probe Probe Type
Model probes supp :4 Model
2540C 70 MHz 2 PRISDB 150 MHI, X1/X10
2542C 100 MHZ 2 PRISDB 150 MHI, X1/X10
2544C 200 MHZ 2 PRZSDB 250 MHI, X10
55 the
of
in
to
al
‘ Before m
ation set
ending
wing mate ButtonNam
Dgzlal
Pull-I
Purpose
: V \ Turns the measurement cursors on and off. These are used to make voltage and
ursors
' \
Acquln
This menu lets the user choose the acquisition method (normal, peak-detect,
k e
(say‘ The save/recall menu lets you save waveforms and instrument settings to
LRoc-Il
- Turn on and offthe optional function generator with 11 types of waveforms. The
7/
Turn on and off the oscilloscope's measuring functions. A variety of waveform
ra meters can
ms“; This menu lets you set the display type (dots: the sampled points, vectors: lines
\ onlu
’1 \ Perform utility tasks such as:
uumy
\
Press the Decode button to open the decode menu (Decode is an optional
Press the button to reset the oscilloscope to its default setup state This is a useful
This button has two effects. When measurement statistics are being displayed,
Turn history mode on and off. The history feature allows you to save a series of
en review th a-time or d
Press the Digital button to open the digital menu for the optional M50 16-

nne
Analog Input
Vertical Scale
Vertical
The colors correspond to the color of the traces on the
sc
n
o
Adjust the volts/division or amperes/division for the
cha
wil
sw
se
5
Adjust the waveform position (offset) on the screen‘ The
offset voltage or cur
the screen under th
the offset to zero.
Volts/div Setting Range of Vertical Adjustment
2 mV/div to 100 mV/div :1 V
102 mV/div to 1 V/div $10 V
1.02 V/divto 10 V/div iIOOV
ing mode
Set the nuation
ensure or curr
paneL
attenu
tenuation of the pro
do t ’5, press the
Un ersal Knob
l-
H
l-
H
Enter ro|| mode, which displays slow waveforms like a strip
Sets the horizontal location of the trigger event on the
L)
Horizontal Scale
Horizontal Scale
ssthes
ecur
To change Horizontal Scale Horizontal
Horizontal
ssubstan
s ff 5
change the zoom
Horizontal Scale
ZZ » Run control
Use this button to set the state of the instrument to RUN or STOP, In the RUN
e
Auto The Auto Setup button automatically adjusts the oscilloscope's settings to get
Sr! u p
In non-me ation mode, (the m is actuated by a re
press), tu ob to adjust wavef Turn clockwise to
the brigh counterclockwise
Universal Kno-
g and stori
When the R
pture an
isition (whethe
lets you captu
to keep the
After trigg
5. The actual sam
Horizontal Scale
Atte
—>
Figure 28 - Bandwidm and sampling rate
f /4 fN f
Frequency —>
Universal Knob
e Mem Depth
Interpolation
K mm: De‘a/Dflflus
E ISFL—‘Y
Pay as
Cff
M 2 HUN: 3% a [Bus
Ammsnnn Made
F33! ‘
f: ‘59 993MHz
Edn‘
5
L J Hum
V
500mm
4 m m\
NE t Pane
cm [way Page v5
DOM
in n V cm
4 Nu m\
NmPage E?
Pages? 3915 an m
M 7 Bins Dehyfl [Ops f: EBBWWZ
V sa 1UUGSa/s
Cu" 28m:
Edge
5 no
L J Dan
/\ /\ A A *2:-
/\ /'\ /\ /\ f
ACQUIRE
Stu/x Amusnun Mud; Ned Page .
Sm Fifi Page 712 a“: an : 43
n ersal Kno
M 1m Ely: Dela, a um»:
i ‘ 1 my“
my mum;
ACCUIRE
Ammsflm‘w
Narma‘
Mam Dem NM Page
“awake , 14M . Page W
Figure 33 - Acquisn Ion. Normal
K ’
V Hmw 1‘
na
4
‘
w
z m
9 4
I, ‘.»—("1:r‘ 1
‘ ” ‘ I‘m-1": a.
:-:H, L "Z4,
K H:
mm, m
m m
. V”. ‘ h !.w.‘>1:»- u
«u ' My): .
ct Average m key, a (:1 select Ave
K - mamas Dav/amps v: Immcz
V 5: ‘ onesws
Cun 28Kpls
em I
I no
L 4 oumv
V -
sno mwm
ma mv
AOOUIF‘E
AW. ”$335. a Seam, MM, MP3?
K mums De‘ayDlIIus
V
Before
Iflowaw
495V
mu mm“
w After r“ ”
H4 H y
__ H ,__
o ..‘" ..J” MM 4
M .—v-/‘ H
w w W
!_I
C4
nuntilthe
Ilin
Universal Knob
e List softkey vi The list shows th
d highlights displayed on the
Universal Knob
I Auto
Normal
Single
Single: This is the same as normal triggering except the trigger is disabled after
the first waveform
waveform that cau
that don't repeat.
Lave
40
e—
Multiple cycles
One cycle
Rising edge
Falling edge
Restore previous settings
Noisy sine wave
Shows multiple cycles. This is the default behavior.
Shows one cycle of the waveform.
Puts a rising edge at the center of the screen by changing the
Puts a falling edge at the center of the screen by changing the
Go back to your previous settings. This acts like an undo button.
Changes to averaging mode with a sample size of 16 to reduce
Trigger Event
1
Pre-trigger Buffer Post—trigger Buffer
v
Acquisition Memory
Figure 43 - Acquisition Memory Schematic
Choosing the right trigger mode and setting it up correctly can take some practice and it is best
on on the front
Universal Knob
e-
ge trigger. The t
rigger Level
rigger Level knob
rigger Level
menu. If the Trig
Universal Knob
Holdof‘f
>1
bl >l
200ns 600ns f
Trigger Point
Horizontal Scale
e-
Universal Knob
When
mm .m
an m,
wmv aim:
19H, 1 I 4.
. / :H, “37" I!
.. WUFVLJH,‘ '57" o ' I”, l
mu r:
U-H
Rising Edge Falling Edge
__________________ Trigger Level
Trigger Point Trigger Point
Universal Knob
rigger Level
- 'he upper limit of trigger level
'he lowerllmlt ofmgger level
Posmve slope time
Universal Knob
Universal Knob
e—
Universal Knob
Figure 52 - Pulse Trigger
Universal Knob
e Universal Knob
rigger Level Knob
Limit Range Universal Knob
K [DOM—4
le 1 Wm fl, Trigger
a J;
Trigger
Io—llilUns—4 |.— —.4 —.| 1,,Trlgger
Universal Knob
gger Level
NTSC
PAL
HDTV 720P/50
HDTV 720P/60
HDTV 1080P/50
HDTV 1osov/eo
HDTV 1080i/50
HDTV mam/so
Custom
Interlaced
Interlaced
Progressive
Progressive
Progressive
Progressive
Interlaced
Interlaced
Bi-Ievel
Bi-Ievel
Tri-Ievel
Tri-Ievel
Tri-Ievel
Tri-Ievel
Tri-Ievel
Tri-Ievel
- Frame rate 25 Hz, 30 Hz,
Of Lines 300 - 2000
Of Fields 1, 2, 4, or 8
Interlace 1:1, 2:1, 4:1, 8:1
Trigger Position Lifi
(line value)/1
(line value)/2
Field
(line value)/3
(line value)/4
(line value)/5
(line value)/6
(line value)/7
ooxlmu-Ibw
(line value)/8
800 1 1:1 800 1
800 1, 2, 4 or 8 2:1 400 1, 1-2, 1-4, 1-8
800 1, 2, 4 or 8 4:1 200 1, 1-2, 1-4, 1-8
800 1, 2, 4 or 8 8:1 100 1, 1-2, 1-4, 1-8
on any of the her
ran the line and
Universal Knob
——m
NTsc 1 to 262 1 to 263
PAL no 312 1m 313
HDTV 720P/50, HDTV 720P/60 1 to 750
HDTV 1080P/50, HDTV 1080P/60 1 to 1125
HDTV 1080iP/50, HDTV 1080i/60 1 to 562 1 to 563
UnIversal Knob
Press the Sync soft e softk
U 'versal Knob to s
Universal Knob
Universal Knob
g softkey to ente
Universal Knob
Universal Knob
Universal Knob
Universal Knob
Absolu
Horizontal Trigger Position
7777777777777777 High Level
________________ Low Level
rsal Knob
ersa‘ Knob
Universal Knob
Universa‘ Knob
Universal Knob
Universal Knob
Universal Knob
g |—%
H |—’l
Figure 60 - Edge dropout trigger
Setting Edge DropOut Trigger
ersal Knob
Un ersal Knob
inlfl,
Trigger
Figure 62 » State trigger
An example of use would be a digital system clock where an isolated pulse gets stretched in time
Universal Knob
Universal Knob
Universal Kno-
Figure 63 - Stale DropOut nigger
Figure 64 — Run! Trigger Description
Triggering will occur when
e Universal Knob
Universa‘ Knob
Universal Knob
UmS mm mm
V Si NH '1? a!»
W ”M
1Wvdn
mu m
T31 BEEF.
'v; ‘5 Lu ‘ wt Raw my a . N-xl Pm: E
Ru ‘1 ‘ ': ‘ 7 9 2 mm ‘5 Page Vi
RIGGER menu Press
nlversal Kno
K - means Dawnmus v=7mmm:
V snooosws
CWIHKDIS
M I
_n_ no
_ — — _ — — u 189‘!
L2 I‘WV
_ ‘ -
—. iflUmVlflN
. 439V
4
7319353 7 7 7 7
Type Law that! can Nusefls'n NM .
Rn‘ mwmw‘ 00‘} ON P3333E 3'..-
1 1
Trigger Posirion 1 Tngger Posirionz
Figure 67 - Pattern Trigger
Universal Knob
Channel 1 High
Channel 1 Low
Channel 1 High
Universal Knob
nlversal Kn b
ThrEShUhj ‘ ‘ Q ThrEShDM
74E‘Elm‘v 16 Elm /
softkey and
Iversal Kno
soAf\L/— —\_/'C: :x:>\_/”\J/T
I
SCLT_r\ /'i.7\ /_\ /_\l /‘1-7\_/F\_/’\_.._/"
Stan Address RI Ack Data Ack Slop
Condition Condition
PROM -The tri the EEPR
owed by a Re ck bit. It
Read
SDA:\{:/107107xx;*\_ /V X ”’
SCL::\_/1-7V\_/L/1-8 \_::
_ _
Start or Control RI Ack Data Ack
Restart byte Trigger point
Condition
when the
The osci scope will event
is found 5 data b . The
oscillos will trig
Read Write
soA‘N_/— w: :><:x_f*\_v't sclw1-7wu1t="" vflmj="" s'arl="" or="" address="" ri="" ack="" slop="" resian="" trigger="" pom="" condition="" mm="" 11».="" clock="" edge="" sdafif="" w="" —\_/c:="" mu="" sclfiln="" 7w1?="" 8w="" wwwi/="" ._="" _.'="" 5.3.1="" address="" riw="" auk="" data="" auk="" data="" 2="" |="" slop="" condition="" trigger="" point="" condition="" 26th="" dad="" edge="" e="" universal="" knob="" universal="" knob="">
If "don't care" (0 ll be ign
always occur on th cloc
If you have sel
Universal Knob
ddress b
ite fram
rite: Add
ite fram
Wr‘ne
soAfiJ—’—\/ /—’—\ m M :n
sum, , r1: am; .W aw F‘J
Start or Address RI Add Address Mk2 Dela I Slop
Restart 1s! byte 2"“ We Trigge! poinl Comm"
Condition 26m clock edge
gth » The use
Universal Knob
'versal Knob
Universal Knob
55 the Bit Roll 50f Universal Knob
Universal knob
MISO :HIHDIIJ
flnw pull“
Fr me‘ ‘ Swgfla‘
UA RT
r FH]:1_Jnrr , mmvm ’ 31W” ‘“"‘
T, T u
0— ’ '
‘vTFtt
Emma Ty pa
TX
Figure 76: UART TRIG SET menu
Use the data v
“H‘-
.
Universal Knob
Press the Baud so
your CAN bus sig
up to 1 Mb/s or
listed, select C
Universal Knob
Universal Knob
Universal Knob
Universal Knob
Universal Knob
Universal Knob
Universal Knob
Universal Knob
Universal Knob
turn the Universal Knob select the ba
N baud r redefined b
d rate st Ifthe d
Universal Knob
Figure 78 - CAN trigger
Universal Knob
Universal Knob
Universal Knob
scope triggers w
Universal Knob
3 (Frame and Data ggers when a fram
Ito the cted va Universal Knob
55 the Bit Rate n the ct the baud rate that
LIN bus Sign ate can be aud rates from 600
stom bau 0000‘ If is not listed, sele
Universal Knob
Math ra Symbol Unit
Addition or subtraction + or » V, A
Multiplication * VAZ, AAZ or W (Volt-Amp)
Division / Q, S, or None
FFT FFT dBVrms, Vrms, dBArms, Arms
Differentiation d/dt V/s or A/s
Integration J'dt Vs or A5
Square root \l sqr(V) or sqr(A)
Universal Knob
Universal Knob
U niversal Knob
Universal Knob
e Universal Knob
Universal Knob
Universal Knob
Universal Knob
Universal Knob
Universal Knob
Universal Knob
Characteristics
Applications
Rectangle The best frequency Transient or short pulses. Sine
Hanning Better frequency resolution; Sine, periodic and narrow band
Hamming Somewhat better frequency Transient or short pulse, the signal
Blackman The best amplitude Single frequency signal, search for
U niversal Knob
Universal Knob
Universal Knob or turn the
Universal Knob
Un' ersal Knob
gum; [may mm: mg Hm; , ' [@ersz
am
(u m;
Eda?
I m:
D A L mom
1
Mn Wm
a [m m
:awu
\ A
/ \I\ ,
HvflM/y 3/ \L/\vfl/\LK\/‘L/\VJUV\\ \
anramfl Source ijmr Center Me" Page
FFF CH1 Han w u 40 DDMHZ Page v3:
Cw)! um
_, r,
‘rlfh , Mn
Bx-
AM] Hurry 1 ‘ Tm >
v ‘ ‘ u
:u‘ mm
5 function calculatesthe sq
negative are set to zero.
F' we 83 - Square root
Ilines on
splay tha
current,
ersal Knob
Universal Knob.
and turn th Universal Knob
Universal Knob
wnum vanum
man I
I Fr
l man
I own I mu
we mum am mmunum «as a
Noie: Ifthe parameter is unable to be measured, it will display as *m,
Un versal Knob
Description
The peaketorpeakvalue is the difference between Maximum and Minimum
The Amplitude of a waveform is the difference between its Top and Base
values.
The Top of a waveform is the mode (most common value) ofthe upper part
of the waveform, or if the mode is not well defined, the top is the same as
Maximum.
The Base of a waveform is the mode (most common value) of the lower part
of the wave
Minimum.
Overshoot is distortion that follows a major edge transition expressed as a
percentage of Amplitude. ROV means rising edge overshoot and FOV means
falling edge overshoot.
Falling preishoot and rising preishool. Preishoot is distortion that precedes
FPRE and a major edge tran
cursors show whi
reference point).
+SR Slew rate on rising slope
-SR Slew rate on falling slope
Description
The time between the middle threshold points of two consecutive, liker
polarity edges
The time difference between the 50% threshold of a rising edge to the 50%
threshold ofthe next falling edge of the pulse
The time difference between the 50% threshold of a falling edge to the 50%
threshold ofthe next rising edge of the pulse
chann
Description
The time between the first rising edge of source 1 and the first rising edge
of source 2 at the 50% voltage level
The time between the first rising edge of source 1 and the first falling edge
of source 2 at the 50% voltage level
The time between the first falling edge of source 1 and the first rising edge
of source 2 at the 50% voltage level
The time between the first falling edge of source 1 and the first falling edge
of source 2 at the 50% voltage level
The time between the last rising edge of source 1 and the last rising edge
of source 2 at the 50% voltage level
The time between the last rising edge of source 1 and the last falling edge
of source 2 at the 50% voltage level
The time between the last falling edge of source 1 and the last rising edge
of source 2 at the 50% voltage level
The time between the last falling edge of source 1 and the last falling edge
of source 2 at the 50% voltage level
mm
mm
mu
IND:—
atistics
veform can be adj
Un versal Knob‘
HE WI:
Display/Persist
DISPLAY
TYPE
Venurs
M50315 DelayDles
Curr-Grade Persst
Off Off
Dear Dspby
Awgv Huh-Z f = ZEDUUEMHZ
3a 1 DDGSa/s
Cu" mm:
Edge
5 DC
L U DUmV
1
mn wuw
mun mV
NExt Page l
Page 1/2 3%
Display/Persis
Universal Knob
ion menu and p
Clear Sweeps
Display/Persisn
Universal Knob
splay/Persisn
Universal Knob
splay/Persisn
Universal Knob
Display/Persisn
Universal Knob
yin *DAT format. an AS
or other software. Rec
U niversal Knob
Universal Knob
Universal Knob
Universal Knob
Universal Knob
e Universal Knob
e Universal Knob
Universal Knob.
ftkey and Universal Knob
Figure 93 - Input Keyboard
nt of the cu
Universal Knob
then turn Universal Knob
Universal Knob
then turn Universal Knob
ss the DaSeIfCaIsoftkey and the oscilloscope will display a message box shown as follows:
’ "'l w ii: lil'
Figure 94 - Do self cal
e Universal Knob
nu “9m
ll '
Figure 95 - Pass/Fail test
act which param
nlversal Kn
f: The oscillos
tected‘ The t
tput from th
ed wavefor
e: To ena
ast softk
-
-
ll
El
Figure 97 - LAN configuration interface
Press the left-most softkey (the first softkey belowthe screen; the firmware calls it F1) continualiy
Universal Knob
Universal Knob
vmuawa-amvzsuc
4.4.».
w“.
mm m,
Gen mm
Q, Mmm.‘““v‘~{'” mm pm.
i' 3"
may mm “’
Hum-mm
Turn
ersal Knob
Universal Knob
Figure 99 - Screen test
>1» ‘vuwlp‘l. ~ MW » .v
Figure 100 - Keyboard Test
Universal Knob
Figure 101 - OPTION function menu
Universal Knob
w,
m
Universal Knob
Universal Knob
REF
ss the Scale soft
Universal Knob.
Press the Offse
Universal Knob
Hmv'dx
the oscillosc
will be red
n the stop
op state.
‘ m
‘ m H y‘-
-Em»
3 L“
L u u,
‘ new
‘m’ m
' me 105 - History
Universal Knob
theus
frame.
Th
Sample Rate Curr (ptsJ Max‘ Frame Sample Rate Curr(pts) Max‘ Frame
S 280 80000 35K 783
700 57227 70K 39 1
114K 33528 140K 195
218K 18338 350K 77
7K 7773 700K 38
14K 3982 1.4M 18
28K 1993 3.5M 6
70K 798 7M 3
140K 398 14M 1
280K 198 3.5K 3779
700K 78 7K 1891
114M 38 14K 945
218M 18 17.5K 757
7M 7 35K 378
14M 3 70K 188
35 80000 140K 93
70 77026 175K 74
140 65667 700K 17
350 45526 1.4M 8
700 29140 1.8M 6
114K 16945 3.5M 3
315K 75 10 7M 1
7K 39 12 14M 1
14K 1958
General Set ngs
Horizontal Vertical Cursor
T/diV HIS/div Channel on/off CH‘l 2°“ 32‘
Dela 0 S - we
V VIEW 1 V/div Source CH1
Zoom Off Offset. 0 V Xi _3- Sus
Format Y-T Coupling Dc X2 3’5le
BW Limit Full
Display :dj:st goerse
Type Vectors r0 9 Trigger
Color or Impedance 1 M0 Type Edge
Persist Off Unit V Source CH1
Grid Invert Off Slope Rising
' Hold off Off
lntensiiy Acquire .
Coupling DC
Brightness 40% Aoquisilion Normal _ _
Sinx/x Sinx Noise Reiect Off
a
Transparem 50/" Mem Depth 14 Mpts Mode Auio
IO Set Pass/Fail sys‘e'“ sew"
use Device USBTMC Enable Test on Qu'CkCal Off
Aux Output Trig Out Source CH1 Screen Saver 30min
Operate Off
Sound Mes Display Off
Sound On X Mask 0.2
Y Mask 0.2
Location Internal
Fail To Stop Off
Output
Ill—
Math Set ings
Source A CH1 Source A CH1 Source A CH1
Source H CH1 Source B CH1 Source B CH1
Invert Off Invert Off Invert Off
V/dlv 1.00 Vldlv V’d'V 1'00 V’d'v V/dlv 1.00 V"2/dlv
offset 0v “56‘ 0 V offset 0 VAZ
I FFT
dldt Source CH1
Source A CH1 Source CH1 Window Hanning
Source B CH1 Vertical Scale $3,8in Horizontal 1x
Invert Off .
V/div ‘LO/div Vertical Offset 0 Vertical Scale 20 dBVrms
offset 0 dx 02 div Display Split
Math l Thiesm'd j l 150V Horizontal Scale 100MHz
dt
0 t Off
pera S Source CH1 V
REF Offset 0 Source 23:;
. 1.00 v ,
Source CH1 Vertical Scale eve/div Vertical Scale Via/div
Location REF A
Display Off Vertical Offset 0 Vertical Offset 0
Decodin Se
Decode 1
Serial IZC
Display Off
List Off
Decode 2
Serial SPI
Display Off
List Off
SPI UARTIR5232 CAN
CLK CH1 RX CH1 CAN-H CH1
Threshold 1.60V Threshold 1.60V Threshold 1.60V
Edge Select Rising TX CH2 CAN—L CH2
MISO CH2 Threshold 1.60V Threshold ‘l.60V
Threshold 1.80V 3”“ 9500 EN” ‘00ka s
MOSl CH1 Parity Check None Decode Source CANiH
Threshold 1.80V 3m" B" 1
CS Type CS Idle Level Low
CS CH2 Data Length 8
Idle Level Low
Bit Order LSB
Data Length 8
Wave Gen Square Sine
Function Off Frequency 1 KHZ Frequency 1 KHz
Wave Type Sine _
Ampllmde 4 VPP Amplitude 4 Vpp
Output Load High-Z Offset o Vdc Offset o Vdc
Duty 50%
Pulse Noise
Ramp
Frequency 1 KHZ Stdev 443 "‘V
Frequency 1 KHz Mean 0 mV
Amplitude 4 Vpp
Amplitude 4 Vpp
Offset 0 Vdc Exp Rise
. offset 0 Vdc
Wldth 200i” Frequency 1 KHz
Symmetry 50%
Cardiac Amplitude 4 Vpp
Frequency 1 KHz offset 0 Vdc
Gauss Pulse
Amplitude 4 Vpp
Frequency 1 KHz EXP Fall
Offset 0 Vdc
_ Frequency 1 KHz
DC Amplitude 4 Vpp
Offset 0.0dec Offset o Vdc Amplitude 4 VPP
Offset 0 Vdc
The oscilloscope provides IZC, SPI, UART/RSZ32, CAN and LIN serial trigger and decode. This
chapter shows how to set and use these types of serial decoding. Serial bus decoding requires
the license to be installed. To purchase a license key please fill out the license request form or
visit the 2540C Series accessories Bagel
Universal Knob
Universal Knob
Universal Knob
d the Lines softk
K M um: DEM/47 1n mmwz
NH TMI:V , FW D«T- 15‘ HHS?”
) ‘ Sz‘OUDSn) mss x aw “uv‘flH/m
) m w w W 92H
1 m
1 WW“
UDDHW
I) _ _._ ... - _ _ _ _ _ _ .— _
1 JEI V‘d‘
mm
— a A M
arm [1&qu ‘ Sgfla‘ Anmm mm m E I
Say a 1 11C 0 7 m On *
F me 108 IZC decode result
Universal Knob
Un ersal Knob
Universal Knob
Universal Knob
Universal Knob
Universal Knob
Universal Knob
key and turn Universal Knob
me line. T
: Select Clock Ti
ersal Kno
ns) be
Universal Knob
ersal Knob
d the Lines softk
Universal Knob
R ' My ‘ , ‘w
‘ v , H M
m
n .— __ .— __ __ _,_ __ _—
Figure 114 - SPI DECODE menu
Interpreting SPI Decode
Universal Knob
Universal Kno-
the Baud the Universal Knob lect a baud rate t
gnal in y . If the d s not listed, sele
Universal Knob
d the Lines softk
ersal Knob
:[C; a:
Press t Universal Knob.
Universal Kno-
d softkey a Universal Knob rate that matches
I. The CA be set to es from 5 kb/s up
om bau o 1 Mb/s ate is not listed,
Universal Knob
and Lines softke
Universal Knob
Figure 121 -CAN Decode
Press
Press the
LIN bus si
storn b
Universal Knob
Universal Knob
urn the Universal Knob ectthe baud rate t
rate can baud rates from
0 20000 ate is not listed,
Universal Knob
Prizmnl
ll‘v
Un versal Knob
Figure 124 - LIN DECODE example
This chapter describes how to use the digital channels of a Mixed»Single Oscilloscope (M50) The
digital channels are enabled on the 254XC series oscilloscopes that have installed the M50
license. To purchase a license key please fill out the license request form or visit the 2540C Series
accessories page
m in mm; Lemmas mm; v mum»:
w m
0w 3n; ,
v , uumm
3
’slr’wfl mummw "mur‘iuw _ gum“,
Mm ‘ UL ‘ Ju~w’ " ' g ’
usz Em Jutp: , v mum:
Cum m k
1
U‘m :\ mm- L mam :1 My»:
th LU ‘
Fi ure 129-Channel He ht H h
hanneIContmI softkey a
ss the ChanneICo
Universal Knob
ct to select which se ight digital channels
Universal Knob. earrow to the sety
e Universal Knob
Universal Knob
E‘E‘rr [i ii
TTL
Fam y Threshold Voltage
TTL 1.5 V
CMOS 1.65 V
LVCM053.3 1.65 V
LVCMOSZS 1.25 V
Custom Variable from -3 V to +3 V
If the
e Un' ersal Knob
Un' ersal Knob
Universal Knob
Universal Knob
butto
[\l ‘HAH Ln WIEEEJEEEEJEEEEJEEEEM
Eu 1
Figure 132 - DIGITALBUS menu
Bus Select softke
5 display in blue
Universal Knob or press
UnIversal Knob
cy softk e Universal Knob
Universal Knob
Universal Knob
m3,“ 'vv .uo
Sine Frequency, Amplitude, Offset
Square Frequency, Amplitude, Offset, Duty (duty cycle)
Ramp Frequency, Amplitude, Offset, Symmetry
Pulse Frequency, Amplitude, Offset, Width
DC Offset
Noise Stdev (standard deviation), Mean
Cardiac Frequency, Amplitude, Offset
Gaus Pulse Frequency, Amplitude, Offset
Exp Rise Frequency, Amplitude, Offset
Exp Fall Frequency, Amplitude, Offset
Arb Frequency, Amplitude, Offset
softkeys have two 0
Low-Level and Lo
s on the softkey
Universal Knob
Sine 25
Square 10
Ramp 0.3
Pulse 10
Cardiac 5
Gaus Pulse 5
Exp Rise 5
Exp Fall 5
ESK M 10m: [‘Eh m: Awg ngh-Z
V
1
mm mm,
Zlflflurh
1 4
W—kaL-x‘M
v ' 9 F ‘ ~ Aw‘md mm ‘ D
aeryp‘ a quemy Q up [a jam Q :3: as“
,nv: EIEIEN‘: ‘ 4mm pp ‘
nlversal Kno
HIM: DE"! WW: Awg thl f mmnm/H:
V [WHEN
Cu ‘ 1» \m
Inn w
mam,
1 4
VVFVE’UFM
‘ vane I we Hewyuer 0/ An pmme unse: Lruty q Ea
Swan: ‘3 1quth ‘ *3 4mmw’ *3 Emma ’ *3 'mu ”m” ’ :3 was
Iversal Kno
M Imus
Dew [ ElEluS
V
W/wgrow
Wake Me
Farm
Freuuenw
. Ammuce
1 EIEIEIkHz
Q Q 40mm: ‘
—t
M ZEIEIus DE‘ay E ElEluS
VVAVE’UHM
Wa'e Type Frequency Anpmuue Offsa
Pu‘se ‘3 mum—42 ‘ ‘3 Auqup ‘ ‘3 EIEIde: ‘
Q
Wm
ZEIEI Elus
Semng ,
Sa 5 DUMSa/s
Cw Mn:
Sa 5 EIEIMSa/s
Cw mm:
mm V/dw
EIEIEImV
W M 2m: Deay El Elm: Awg ngnrz
V Ca 3 mu
0va Wm;
«nu Hm
[ un mV
N’WEFCQM
WM ’Wu ‘ o M
DC
Universal Knob
Universa‘ Knob
M ZEIEIus DE‘ay E ElEluS
V Sa 5 EIEIMSa/s
Cw «mm
mm v/mv
u an mv
VVAVE’UHM
Wa'e Type 51m Mean Ca
ND‘SE ‘ ‘3 am am ‘3 H mm 59mm 0
aw w ZElEluS Bea/DEM: Awg nghrZ f : WEIH:
V Sa annMSa/s
(Am 1pr s
ttge
5 DC
, , , ‘ L 2 w
VVAVEHJHV‘
Wave Type
L arma:
Arrpmuds ovrsa
Frsquenty ‘ Q .
4 mm]; EIEIMW:
° mum: ‘
a
38M - Mum: [we‘avEUEluS AWg nghrZ -/1u>—:
V Sa ‘ UUM‘SV‘S
m 1am--
‘
nu V/Jw
A npmv ? Offset
‘3 41qu; ‘ ‘ LUmw:
F E
”m“ ' g; m w
ave Gen
dows PC that has the
www.bkgrecision‘com
Send operahon
Pa'amuu semng
Deuce Lust 2544C.511C17w1.238010524 V
Sure loam ”251 "
m wave 1 v
Camel
mm
mu , m
um
rerlarrnanca characteristics
Wavalonn Math
Bandwidth
70 MHZ/160 MHz/260 MHz
Rise Time
<5>5><3.5>3.5><1.a ns="" wavalonn="" measurement:="" digital.="" 15="" (vmsd="" rnodels="" or="" with="" lazsak="" upgradel="" waverom,="" and”="" ram="" 60.000="" wrung/5="" delay="" l="">lrase, FRR, FRF, FFR, w, LRR, LRF, er, skew
“MW“ gandwmm Limits 20 MHZ 5t Current, Mean, Min, Max, 5tdev, Count
Input Coupling 0:, Ac, GND 62mg ' 2 domain
l/D Interline
so a 1 2% Standard LISB Must, use Device, LAN, Pass/Fail, rngger 0m
cn to an isolation >40dB Pass/Fail 3.3 V m Dulpm
mulflflnn System Dlsplfly Syflem
Peak Detect 1 ns Display a" CularTFFLCD, 5m x 430 Resolution
Average 11, 15, 32, 54, 123, 255, 512, 1024 Wave Display Mode Vectors, Duts
Enhanced Resullfllon
0.51, 1.5, 2., 2,5, 3 trits selectable
Persistence
Off, in e, 1 sec, 5 sec, 10 sec, so sec
interpolation
sinlxl/x, Linear
lntznsllv Grading
255 Levels
Venlul 5mm
Venlcal Resolution
3 tnts
Vertical5en ' '
WV
500 uv/diu to 1m V/dlv 1125 l
Maximum lupin Voltage
1 Mn < 1100="" vpk;="" so="" n=""><5 vrrns="" envlmnmnnnl="" and="" salary="" occaln="" accuracy="" gm="" 5="" mv/div="" to="" 10="" v/dlv;="" 14%.="">5>< 2="" mv/div="" riaruonral="" 915mm="" storage.="" 720="" 'c="" to="" «so="" ”a="" 1irne="" aase="" range="" 2.0="" nsldivtu="" sos/div="" storage:="" 55%="" rh,="" 55="" 1,24="" nuurs="" storage:="" 15,255="" rn="" lectrornagnetlc="" cumpa="" twe="" 2005="" 1.2001="" general="" power="" requlvemems="" 1m)="" to="" 240="" vac,="" cat="" h,="" so="" va="" max,="" 45="" hz="" to="" me="" hz="" dimensiuns="" (wx="" h="" x="" d)="" 4,3"="" x="" 7.2”="" x="" 13.114123="" x="" 134="" x="" 340="" mm)="" w="" 7.3="" ltrs="" (3.3="" kg)="" thle="" eor="" warranty="" time="" aase="" accunw="" :25="" ppm="" air="" to="" en="" deskew="" range="" 1100="" ns="" inner="" system="" modes="" auto,="" normal,="" single="" coupling="" dqac,="" lf="" relect,="" hf="" reject,="" noise="" reject="" cn14lr2="" internal="" 5="" div="" lrarn="" center="" ext/5:13="" v="" hulerff="" range="" 100="" us="" to="" 1.5="" 5="" serial="" trigger="" lzc,="" spl,="" uart/r5232,="" can,="" lln="" cumvs="" mode="" manual,="" track="" measurements="" at,="" 1m,="" x2,="" x1,="" av,="" v2,="" v1="" 1s-cnannel="" digital="" logic="" probe="" llstaoc)="">1.a>
ine, Squ
Noise
Rise
Arbitrary A slots for Arbitrary Wavelorms
Maximum Output Frequency 25 MHz
sample Rate 125 M5a/s
Frequency Resolution 1 pH:
Frequency Accuracy :50 ppm
Vertical Resnlution 14 hits
50 (1
Mn
Output Impedance 50 0 cm
short-circuit Protection
Prnlecllnn
Frequency 1 mm 25 MHz
as * Offselsett
mVpp)
(100 kHz, 5 Vpp)
5 MHZ In 25 MHz: -50 dB:
5 MHZ In 25 MHz: -45 dB:
Frequency 1 mm 10 MHz
Duty cycle 20% to 80%
Rise/Fall Time < 2:="" ns="" (10%="" to="" 90%)="" evershodtu="" khz="" typical)="" pulse="" width=""> 50 ns
Jitter < 500="" ps="" t="" 10="" ppm="" frequency="" 1="" pm="" to="" 300="" khz="" symmetry="" mm="" 100%="" (adjustable)="" :15="" v="" (50="" m="" l?="" vihigh-zl="" accuracy="" siloflsetmms="" mv)="" bandwidth=""> 25 MHz (-3 da)
Frequency 1 szto 5 MHZ
Wave Length 15 Km;
Sample Rate 115 M52]:
Threshold
Recorded List
signal
Address
signal
Edge Select
IdIe tevel
Bit Order
signal
Data width
Parity check
Stop Bit
IdIe tevel
signal
Source
Supported Specification
Digital channels
sample Rate
Meni D
um Input
Swing
Input Impedance
Maximum Input Frequency
-A.5 m A.5 div
1 to 7 Lines
scL, SDA
7 hit, 10 bit
CLK, MlSO, MOSI, CS
Rising Falling
tow, High
MSE, LSB
RX, TX
5, 5, 7, a hit
None, odd, Even
1, 1.5, 2 hit
tow, High
cAIxLH, CANiL
cAILH, CAN}, cAILH-CAILL
Ver1.3, Ver2.0
1s
5m Msa/s
14 M mm
s 20 Vpeak
ol threshold
mvl
:mv
1cm kn H a pr
an MHz
1116i talsampleinterval)
Custom [73m .3 vi
ensur
Ensure you h
the trigger s
impossible t
to put the o
Warranty Service: Pl
www.bkgrecision.com
Non-Warranty Service
www.bkgrecision.com
mponent p
one yearf
er serve you, please com
ww kgreclslo com


