E7765AXF Semtech, E7765AXF Datasheet

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E7765AXF

Manufacturer Part Number
E7765AXF
Description
Manufacturer
Semtech
Datasheet

Specifications of E7765AXF

Lead Free Status / Rohs Status
Not Compliant
The E7765 four channel, monolithic ATE pin electronics
solutions manufactured in a high-performance
complementary bipolar process.
The E7765 power consumption can be minimized to ac-
commodate the required performance and levels. The
E7765 has bias and other inputs that provide a means to
adjust performance versus power consumption. The
E7765 operates at data rates up to 1.3 GHz/2.6 Gbps.
The power supplies to the E7765 are specified over a wide
range to accommodate between –2V, +7V and –0.5V,
+4.2V output voltage ranges.
The E7765 driver is capable of generating 8V swings over
a –2 to +7V range. The driver minimum swing is 100 mV.
A differential driver mode configures pairs of adjacent driv-
ers on-chip to drive differential signals from a single data
input. The driver pairs are DOUT[0]:DOUT[1] and
DOUT[2]:DOUT[3]. The on-chip distribution of the driving
signal and the close matching of performance on-chip will
result in very low skew for differential output to output.
• Memory Testers
• Programmable Clock Drivers
• Test Instruments
TEST AND MEASUREMENT PRODUCTS
Revision 11 / July 18, 2006
Description
Applications
– Companion Chip to E7725 as Drive-Only
Channels
1
• Four Fully Integrated, Three-Statable Drivers
• Wide Choice of Range, Performance vs. Power
• Differential Driver Mode
• Programmable Driver Rise, Fall Times
• –2V, +7V Driver Voltage Range
• Small, 80-Pin LQFP Package
Features
Functional Block Diagram
SEL_DHI
SEL_DHI
ANODE
DBIAS
DBIAS
DBIAS
DBIAS
DEN*
DEN*
DEN*
DEN*
DHI*
DHI*
DHI*
DHI*
DVH
PON
PON
DVH
DVH
PON
PON
DVH
DEN
DEN
DEN
DEN
DVL
DVL
DVL
DVL
DHI
DHI
DHI
DHI
Pin Electronics Driver
Channel 0
Channel 1
Channel 2
Channel 3
SEL
SEL
DE
DH
DH
DE
DE
DH
DH
DE
1.3 GHz Quad
www.semtech.com
E7765
CATHODE
RADJ
DOUT
FADJ
FADJ
DOUT
RADJ
RADJ
DOUT
FADJ
FADJ
DOUT
RADJ

Related parts for E7765AXF

E7765AXF Summary of contents

Page 1

... DVH DBIAS Channel 1 ANODE Channel 2 DBIAS DVH DE DEN DEN* DH DVL PON DHI DHI* SEL_DHI SEL DHI DHI* PON DVL DH DE DEN DEN* DVH DBIAS Channel 3 1 E7765 RADJ DOUT FADJ FADJ DOUT RADJ CATHODE RADJ DOUT FADJ FADJ DOUT RADJ www.semtech.com ...

Page 2

... Ref efer ers t [0: Channels Channels Channels Channels [0:3] R [0: Channels Note 1: All VEEs must be connected, externally, to the same supply. All VCCs must be connected, externally, to the same supply. All GNDs must be connected, externally. © 2006 Semtech Corp. , Rev. 11, 7/18/ " " " " ...

Page 3

... VCC[3] 12 DHI[3] 13 DHI*[3] 14 SEL_DHI[1] 15 VEE[3] 16 DOUT[3] 17 DOUT[3] 18 VCC[3] 19 VCC[3] 20 PON[3] © 2006 Semtech Corp. , Rev. 11, 7/18/06 80 Lead LQFP P 80 Lead LQFP P 80 Lead LQFP Pack ack ack ackage age age age 80 Lead LQFP P 80 Lead LQFP P ack age .4mm .4mm ...

Page 4

... Channels 1, 2 and 3 similar. SEL_DHI[0] and [1] at logical low able 1. Driv able 1. Driv able 1. Driv able 1. Driver Contr able 1. Driv er Contr er Control T er Contr er Contr Truth © 2006 Semtech Corp. , Rev. 11, 7/18/06 DBIAS[0] DVH[0] DEN[0] DEN*[0] DVL[0] PON[0] DHI DHI*[0] SEL_DHI[0] DHI[1] DHI*[1] PON[1] DVL[1] DEN[1] ...

Page 5

... DHI[3] has no effect in differential mode since the Channel 3 output will follow the complemented state of DHI[2 able 2. Dif able 2. Dif able 2. Dif able 2. Diff erential Mode Contr able 2. Dif © 2006 Semtech Corp. , Rev. 11, 7/18/06 Channel 1 Control Output DHI[1] DEN[1] PON[1] DOUT[1] ...

Page 6

... © 2006 Semtech Corp. , Rev. 11, 7/18/06 SEL_DHI[ used for outputting a differential signal where DOUT[1] is the inverse of DOUT[0] with the mini- mum of skew, and both drivers respond to the DHI/DHI*[0] signal. More detail is shown in Table 2. Notice that power- on (PON) and drive enable (DEN) controls are all still in effect for individual drivers ...

Page 7

... A logical 1 will power up the driver. The PON inputs remain effective on a per-driver basis in differential mode. © 2006 Semtech Corp. , Rev. 11, 7/18/06 Thermal Monitor An on-chip thermal diode string of five diodes in series exists (see figure below). This string allows accurate die temperature measurements. An external bias current of 100 µ ...

Page 8

... Furthermore, the DVH/L inputs will have voltage offsets and gain error specifications. These © 2006 Semtech Corp. , Rev. 11, 7/18/06 specifications require that the DVH/L input programming range be greater than the required DOUT voltage range if the worst case offset and gain figures are used. The equa- tion for the resulting minimum and maximum voltage at DOUT is ...

Page 9

... Min Supplies Typ Supplies More information on heatsink system selections can be read on heatsink vendors’ web sites and in the Semtech Application Note #ATE-A2 Cooling High Power, High Den- sity Pin Electronics. 9 E7765 - oring the die t oring the die t ...

Page 10

... VCC[3] 18, 19 PON[3] 20 15,21,22 VEE[3] VEEs, VCCs and GNDs of all channels must be connected together. All capacitors shown are 0.1µF unless otherwise noted. © 2006 Semtech Corp. , Rev. 11, 7/18/06 E7765 Hookup DVL/DVH, DBIAS, DVL/DVH, DBIAS, RADJ, FADJ[2] RADJ, FADJ[0] DEN[0, ...

Page 11

... Vie op Vie op Vie op View Vie STANDOFF A .25 b θ ddd M C A– © 2006 Semtech Corp. , Rev. 11, 7/18/ 1.4 mm, 80-Pin LQFP mm, 80-Pin LQFP P .4 mm, 80-Pin LQFP Pack .4 mm, 80-Pin LQFP P .4 mm, 80-Pin LQFP P ack ack ackage (Die Do ack age (Die Down) age (Die Do ...

Page 12

... Exposure to conditions above those “recommended” for extended periods may affect device reliability. © 2006 Semtech Corp. , Rev. 11, 7/18/06 Symbol Min VCC ...

Page 13

... Thermal Resistance of Package (Note 2) Junction Temperature Note 1: For ‘Negative’ ECL “Flex” inputs (DHI, DEN) with range down to –2V input voltage, VEE - –4.75V. Note 2: Measured at top of package on exposed heat slug. © 2006 Semtech Corp. , Rev. 11, 7/18/06 Symbol Min Typ VCC ...

Page 14

... Gain (Measured @ allowable –FS and +FS) Linearity (Full Range @ 0V and 75% of DVH/L max input calibration points) (Note 4) Digital Inputs (DHI/DHI*, DEN/DEN*) Input Voltage Range (Note 2) Differential Input Swing Input Current Input Capacitance © 2006 Semtech Corp. , Rev. 11, 7/18/06 Symbol Min VIL 0 VIH 2 IIN –50 ...

Page 15

... All Drivers Powered ON (PON = 1) Positive Supply Negative Supply All Drivers Powered Down (PON = 0) Positive Supply Negative Supply DC conditions: DVL = 0V, DVH = 3V, SEL_DHI[0:1] and DHI[0:3] at logical low. DBIAS = 0.6mA, RADJ = FADJ = 0.9mA. © 2006 Semtech Corp. , Rev. 11, 7/18/06 > VEE + 2.75V. Symbol Min ICC IEE –490 ICC IEE – ...

Page 16

... TEST AND MEASUREMENT PRODUCTS DC Characteristics (continued) Highest Performance Total Power Curves Minimum Lower Performance Total Power Curves Minimum © 2006 Semtech Corp. , Rev. 11, 7/18/06 PON = 1 PON = 0 Typical Maximum Power Supply Settings PON=1 PON=0 Typical Maximum Power Supply Settings 16 E7765 www.semtech.com ...

Page 17

... TEST AND MEASUREMENT PRODUCTS AC Characteristics Test Cir C T est Cir est Cir est Circuit est Cir cuit cuit cuit cuit 45.3Ω DOUT © 2006 Semtech Corp. , Rev. 11, 7/18/06 50Ω Transmission Line (20 inches, ~2 ns) 3pF (RL) 953Ω Oscilloscope C 50Ω www.semtech.com ...

Page 18

... AC test conditions (unless otherwise specified): "Recommended Operating Conditions". VCC = +10V, VEE = –5V. Note 1: Propagation delays for LV_PECL differential logic inputs. Note 2: At 10% output amplitude attenuation. CLOAD in AC test circuit = 0 pF. Note 800 mV outputs. © 2006 Semtech Corp. , Rev. 11, 7/18/06 Symbol Min Typ Rout 4 ...

Page 19

... TEST AND MEASUREMENT PRODUCTS AC Characteristics (continued) Parameter Control Logic SEL_DHI (Note 1) Note 1: Includes the time needed to settle new drive levels to within 10% of programmed values. © 2006 Semtech Corp. , Rev. 11, 7/18/06 Symbol Min Typ T DIFF_D 19 E7765 Max Units 50 ns www.semtech.com ...

Page 20

... VOL + 0.1 * (VOH–VOL) VOL Figure 3. Driv Figure 3. Driver Minimum Pulse Width Measurement Def Figure 3. Driv Figure 3. Driv Figure 3. Driv © 2006 Semtech Corp. , Rev. 11, 7/18/06 Period = 50 ns Tpw, in1 = PWmin Tpw, in2 = PWmin Tpw,in1 Tpw,in2 OUTPUT: OUT(H) = 0.8V; OUT(L) = 0.0V Tpw,out2 Tpw,out1 ∆ ...

Page 21

... Tpd: DHI t er Tpd: DHI t Figure 5. Driv Figure 5. Driv Figure 5. Driver Tpd: DHI t er Tpd: DHI to OUT er Tpd: DHI t 2006 Semtech Corp. , Rev. 11, 7/18/06 © OUTPUT: DVH = 0.8V, DVL = 0.8V TPZA TPAZ (R LOAD at DOUT = 50 to GND) er HiZ Enable/Disable Dela er HiZ Enable/Disable Delay Measurement Def ...

Page 22

... Figure 6. Driv Figure 6. Driver T er Transition Times and OUT OUT(H) 0.0V © 2006 Semtech Corp. , Rev. 11, 7/18/06 Tr ransition Times and T ransition Times and T ransition Time Matc ransition Time Matc ransition Times and T ransition Times and Transition Time Matc ransition Time Matc ...

Page 23

... Figure 8. Driver Ov Figure 8. Driv Figure 8. Driv Figure 8. Driv DVH to DVL DVL to DVH Figure 9. Driv Figure 9. Driv Figure 9. Driver Output Cr Figure 9. Driv Figure 9. Driv © 2006 Semtech Corp. , Rev. 11, 7/18/06 undershoot Test Cases: V1:V2 = DVL:DVH = DVT:DVH = DVL:DVT Over ershoo shoo shoo shoot, U shoo t, U ...

Page 24

... TEST AND MEASUREMENT PRODUCTS Ordering Information Contact Information 10021 Willow Creek Rd., San Diego, CA 92131 © 2006 Semtech Corp. , Rev. 11, 7/18/ Semtech Corporation Test and Measurement Division Phone: (858)695-1808 FAX (858)695-2633 E7765 www.semtech.com ...

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